A Redox Modulatory Mn3O4 Nanozyme with Multi‐Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - Angewandte …, 2017 - Wiley Online Library
Nanomaterials with enzyme‐like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a …

A Redox Modulatory Mn3O4 Nanozyme with Multi‐Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - Angewandte Chemie …, 2017 - Wiley Online Library
Nanomaterials with enzyme‐like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a …

A Redox Modulatory Mn3O4Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - Angewandte Chemie …, 2017 - hero.epa.gov
Nanomaterials with enzyme-like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a …

A Redox Modulatory Mn3O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model.

N Singh, MA Savanur, S Srivastava… - Angewandte …, 2017 - search.ebscohost.com
Nanomaterials with enzyme-like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a Mn< …

[引用][C] A Redox Modulatory Mn3 O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - Angewandte …, 2017 - ui.adsabs.harvard.edu
A Redox Modulatory Mn3 O4 Nanozyme with Multi-Enzyme Activity Provides Efficient
Cytoprotection to Human Cells in a Parkinson's Disease Model - NASA/ADS Now on home page …

A Redox Modulatory Mn3O4 Nanozyme with Multi‐Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava, P D'Silva… - Angewandte Chemie …, 2017 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Nanomaterials with enzyme‐like activities
(nanozymes) attracts significant interest due to their therapeutic potential for the treatment of …

A Redox Modulatory Mn3 O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model.

N Singh, MA Savanur, S Srivastava… - … (International ed. in …, 2017 - europepmc.org
Nanomaterials with enzyme-like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a Mn 3 …

A Redox Modulatory Mn3 O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - … (International ed. in …, 2017 - pubmed.ncbi.nlm.nih.gov
Nanomaterials with enzyme-like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a Mn 3 …

A Redox Modulatory Mn3O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - ANGEWANDTE …, 2017 - eprints.iisc.ac.in
Nanomaterials with enzyme-like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a …

A Redox Modulatory Mn3O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

N Singh, MA Savanur, S Srivastava… - ANGEWANDTE …, 2017 - eprints.iisc.ac.in
Nanomaterials with enzyme-like activities (nanozymes) attracts significant interest due to
their therapeutic potential for the treatment of various diseases. Herein, we report that a …