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Nature Chemistry
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August 19, 2020
Predictable phase-separated proteins
Soumik Ray, Samir K Maji
Biochemistry
|
January 6, 2025
Deciphering the Seed Size-Dependent Cellular Internalization Mechanism for α-Synuclein Fibrils
Arunima Sakunthala, Samir K Maji
Trends in Biotechnology
|
September 20, 2025
Are amyloid-based materials conducive to tissue engineering?
Komal Patel, Samir K Maji
Cell Biochemistry and Biophysics
|
May 26, 2012
Amyloid-like fibril formation by tachykinin neuropeptides and its relevance to amyloid β-protein aggregation and toxicity
Pradeep K Singh, Samir K Maji
Chemical Science
|
November 15, 2021
A generic approach to decipher the mechanistic pathway of heterogeneous protein aggregation kinetics
Baishakhi Tikader, Samir K Maji, Sandip Kar
Biochimica Et Biophysica Acta. Proteins and Proteomics
|
March 12, 2019
α-Synuclein misfolding and aggregation: Implications in Parkinson's disease pathogenesis
Surabhi Mehra, Shruti Sahay, Samir K Maji
Journal of the American Chemical Society
|
October 4, 2016
Defining a Physical Basis for Diversity in Protein Self-Assemblies Using a Minimal Model
Srivastav Ranganathan, Samir K Maji, Ranjith Padinhateeri
ACS Chemical Neuroscience
|
October 14, 2020
Computational Model for Studying Breakage-Dependent Amyloid Growth
Jennifer Joseph, Samir K Maji, Ranjith Padinhateeri
Methods and Applications in Fluorescence
|
February 14, 2017
Site-specific structural dynamics of α-Synuclein revealed by time-resolved fluorescence spectroscopy: a review
Shruti Sahay, G Krishnamoorthy, Samir K Maji
Advances in Experimental Medicine and Biology
|
November 13, 2019
Protein Nanofibrils as Storage Forms of Peptide Drugs and Hormones
Reeba Susan Jacob, A Anoop, Samir K Maji
Page
of 11
Search research articles
Search
Showing results (1-10 of 103) with videos related to
Sort By:
Page
of 11
Nature Chemistry
|
August 19, 2020
Predictable phase-separated proteins
Soumik Ray, Samir K Maji
Biochemistry
|
January 6, 2025
Deciphering the Seed Size-Dependent Cellular Internalization Mechanism for α-Synuclein Fibrils
Arunima Sakunthala, Samir K Maji
Trends in Biotechnology
|
September 20, 2025
Are amyloid-based materials conducive to tissue engineering?
Komal Patel, Samir K Maji
Cell Biochemistry and Biophysics
|
May 26, 2012
Amyloid-like fibril formation by tachykinin neuropeptides and its relevance to amyloid β-protein aggregation and toxicity
Pradeep K Singh, Samir K Maji
Chemical Science
|
November 15, 2021
A generic approach to decipher the mechanistic pathway of heterogeneous protein aggregation kinetics
Baishakhi Tikader, Samir K Maji, Sandip Kar
Biochimica Et Biophysica Acta. Proteins and Proteomics
|
March 12, 2019
α-Synuclein misfolding and aggregation: Implications in Parkinson's disease pathogenesis
Surabhi Mehra, Shruti Sahay, Samir K Maji
Journal of the American Chemical Society
|
October 4, 2016
Defining a Physical Basis for Diversity in Protein Self-Assemblies Using a Minimal Model
Srivastav Ranganathan, Samir K Maji, Ranjith Padinhateeri
ACS Chemical Neuroscience
|
October 14, 2020
Computational Model for Studying Breakage-Dependent Amyloid Growth
Jennifer Joseph, Samir K Maji, Ranjith Padinhateeri
Methods and Applications in Fluorescence
|
February 14, 2017
Site-specific structural dynamics of α-Synuclein revealed by time-resolved fluorescence spectroscopy: a review
Shruti Sahay, G Krishnamoorthy, Samir K Maji
Advances in Experimental Medicine and Biology
|
November 13, 2019
Protein Nanofibrils as Storage Forms of Peptide Drugs and Hormones
Reeba Susan Jacob, A Anoop, Samir K Maji
Page
of 11