sn
int64 | material
string | shape
string | coat_functional_group
string | synthesis_method
string | surface_charge
string | size_in_medium_nm
float64 | zeta_in_medium_mv
float64 | no_of_cells_cells_well
float64 | human_animal
string | cell_source
string | cell_tissue
string | cell_morphology
string | cell_age
string | time_hr
int64 | concentration
float64 | test
string | test_indicator
string | viability_%
float64 | doi
string | article_list
int64 | core_nm
float64 | hydrodynamic_nm
float64 | potential_mv
float64 | cell_type
string | journal_name
string | publisher
string | year
int64 | title
string | journal_is_oa
bool | is_oa
string | oa_status
string | pdf
string | access
int64 |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
5,809 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
lung
|
Macrophage
|
A
| 24 | null |
Vialight
|
luciferase
| 95.11112 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
primary alveolar Macrophage
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,810 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
lung
|
Epithelial
|
A
| 24 | null |
Vialight
|
luciferase
| 87.08861 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
primary alveolar epithelial cells
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,811 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Vialight
|
luciferase
| 77.90576 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
RAW 264.7
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,812 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Vialight
|
luciferase
| 32.67016 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
RAW 264.7
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,813 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Vialight
|
luciferase
| 59.47644 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
RAW 264.7
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,814 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Lung
|
Epithelial
|
A
| 24 | null |
Vialight
|
luciferase
| 96.9697 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
A549
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,815 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Lung
|
Epithelial
|
A
| 24 | null |
Vialight
|
luciferase
| 123.6364 |
10.1021/nn304439f
| 158 | null | 369 | 79 |
A549
|
ACS Nano
|
American Chemical Society (ACS)
| 2,013 |
Nanoparticle Geometry and Surface Orientation Influence Mode of Cellular Uptake
| false |
TRUE
|
green
|
158_herd2013.pdf
| 1 |
5,816 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 103.3514 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,817 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 103.3514 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,818 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 104 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,819 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 100.5405 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,820 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 88.64865 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,821 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 39.78378 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,822 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 16.86486 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,823 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 12.97297 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,824 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Colon
|
Epithelial
|
A
| 4 | null |
Vialight
|
luciferase
| 15.35135 |
10.1080/17435390802513204
| 159 | null | 29.5 | null |
Caco-2
|
Nanotoxicology
|
Informa UK Limited
| 2,008 |
Novel luminescence assay offers new possibilities for the risk assessment of silica nanoparticles
| false |
FALSE
|
closed
|
159_wahl2008.pdf
| 0 |
5,825 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
CellTiterBlue
|
Alamar blue
| 107.1956 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,826 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
CellTiterBlue
|
Alamar blue
| 100.5946 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,827 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
CellTiterBlue
|
Alamar blue
| 69.8427 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,828 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
CellTiterBlue
|
Alamar blue
| 22.48542 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,829 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
XTT
|
tetrazolium salt
| 123.0784 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,830 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
XTT
|
tetrazolium salt
| 114.2165 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,831 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
XTT
|
tetrazolium salt
| 82.70829 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,832 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
XTT
|
tetrazolium salt
| 24.78658 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,833 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
LDH
|
LDH activity assay kit
| 3.117029 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,834 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
LDH
|
LDH activity assay kit
| 5.571066 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,835 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
LDH
|
LDH activity assay kit
| 22.36634 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,836 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
LDH
|
LDH activity assay kit
| 70.10661 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,837 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
Propidium iodide
| 95.2263 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,838 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
Propidium iodide
| 85.60647 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,839 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
Propidium iodide
| 69.19419 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,840 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
Propidium iodide
| 9.763044 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,841 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
calcein AM
| 93.75227 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,842 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
calcein AM
| 91.6796 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,843 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
calcein AM
| 71.49213 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,844 |
SiO2
| null | null | null | null | null | null | null |
A
|
Mouse
|
Blood
|
Monocyte/Macrophage
|
A
| 24 | null |
Live/Dead
|
calcein AM
| 45.27015 |
10.5402/2012/454072
| 2 | null | 13 | -27 |
RAW 264.7
|
ISRN Nanotechnology
|
Hindawi Limited
| 2,012 |
Evaluation of Viability and Proliferation Profiles on Macrophages Treated with Silica Nanoparticles <i>In Vitro</i> via Plate-Based, Flow Cytometry, and Coulter Counter Assays
| true |
TRUE
|
gold
|
2_International Scholarly Research Notices - 2012 - Bancos - Evaluation of Viability and Proliferation Profiles on.pdf
| 1 |
5,845 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 108.2927 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,846 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 103.4146 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,847 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 109.2683 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,848 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 107.3171 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,849 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 104.5161 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,850 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 112.9032 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,851 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 112.9032 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,852 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 105.8065 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,853 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
LDH
|
LDH activity assay kit
| 98.41272 |
10.1007/s11051-013-2229-6
| 160 | null | 25 | 30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,854 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 108.2927 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,855 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 110.2439 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,856 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 105.3659 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,857 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 109.2683 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,858 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 100.6452 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,859 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 98.06451 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,860 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 103.871 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,861 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 103.871 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,862 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
LDH
|
LDH activity assay kit
| 100.0335 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | 32 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,863 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 102.996 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,864 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 102.996 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,865 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 108.8259 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,866 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 104.9393 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,867 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 104.2915 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,868 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 108.1781 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,869 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 111.417 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,870 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 82.2672 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,871 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
LDH
|
LDH activity assay kit
| 101.3927 |
10.1007/s11051-013-2229-6
| 160 | null | 60 | -30 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,872 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 90.68826 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,873 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 101.0526 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,874 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 90.68826 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,875 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 48 | null |
Alamar blue
|
Alamar blue
| 82.91498 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,876 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 104.2915 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,877 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 101.7004 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,878 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 86.15385 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,879 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
Alamar blue
|
Alamar blue
| 75.78947 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,880 |
SiO2
| null | null | null | null | null | null | null |
H
|
Human
|
Umbilical cord
|
Endothelial
|
E
| 96 | null |
LDH
|
LDH activity assay kit
| 99.82557 |
10.1007/s11051-013-2229-6
| 160 | null | 115 | -48 |
HUVEC
|
Journal of Nanoparticle Research
|
Springer Science and Business Media LLC
| 2,014 |
Effect of silica nanoparticles with variable size and surface functionalization on human endothelial cell viability and angiogenic activity
| false |
FALSE
|
closed
|
160_guarnieri2014.pdf
| 0 |
5,881 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 113.4783 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,882 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 97.17391 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,883 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 108.2609 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,884 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 97.82609 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,885 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 98.47826 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,886 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 100.4348 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,887 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 95.86957 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,888 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 79.56522 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,889 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 94.56522 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,890 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 79.56522 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,891 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 105.2632 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,892 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 120.7018 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,893 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 117.193 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,894 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 105.9649 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,895 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 84.91228 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,896 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 95.4386 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,897 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 94.03509 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,898 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 103.8597 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,899 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 79.29825 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,900 |
SiO2
| null |
CTAB
| null | null | null | null | null |
A
|
Rat
| null | null | null | 24 | null |
MTT
|
tetrazolium salt
| 63.85965 |
10.3109/15376516.2015.1070229
| 1 | null | 386.9 | -35.9 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,901 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 97.82609 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,902 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 95.21739 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,903 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 89.34782 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,904 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 106.3043 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,905 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 95.21739 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,906 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 96.52174 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,907 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 93.91304 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
|
5,908 |
SiO2
| null |
Phosphonate
| null | null | null | null | null |
A
|
Rat
| null | null | null | 12 | null |
MTT
|
tetrazolium salt
| 72.3913 |
10.3109/15376516.2015.1070229
| 1 | null | 375.4 | -26.8 |
PC12
|
Toxicology Mechanism and Methods
|
Taylor & Francis
| 2,015 |
Effect of mesoporous silica nanoparticles on cell viability and markers of oxidative stress
| false |
FASLE
|
hybrid
| 0 |
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