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Journal of the American Chemical Society|January 21, 2011
Mechanical load induces a 100-fold increase in the rate of collagen proteolysis by MMP-1Arjun S Adhikari, Jack Chai, Alexander R DunnJournal of the American Chemical Society|June 23, 2012
Conformational dynamics accompanying the proteolytic degradation of trimeric collagen I by collagenasesArjun S Adhikari, Emerson Glassey, Alexander R DunnJournal of Visualized Experiments : Jove|August 9, 2012
Multiplexed single-molecule force proteolysis measurements using magnetic tweezersArjun S Adhikari, Jack Chai, Alexander R DunnBiomacromolecules|December 22, 2011
Strain tunes proteolytic degradation and diffusive transport in fibrin networksArjun S Adhikari, Armen H Mekhdjian, Alexander R DunnNano Letters|July 18, 2013
Molecular tension sensors report forces generated by single integrin molecules in living cellsMasatoshi Morimatsu, Armen H Mekhdjian, Arjun S Adhikari, et al.Biophysical Reviews|July 19, 2017
Hypertrophic cardiomyopathy and the myosin mesa: viewing an old disease in a new lightDarshan V Trivedi, Arjun S Adhikari, Saswata S Sarkar, et al.Cell Reports|December 16, 2016
Early-Onset Hypertrophic Cardiomyopathy Mutations Significantly Increase the Velocity, Force, and Actin-Activated ATPase Activity of Human β-Cardiac MyosinArjun S Adhikari, Kristina B Kooiker, Saswata S Sarkar, et al.Science Advances|April 15, 2020
The hypertrophic cardiomyopathy mutations R403Q and R663H increase the number of myosin heads available to interact with actinSaswata S Sarkar, Darshan V Trivedi, Makenna M Morck, et al.Molecular Biology of the Cell|June 9, 2017
A cytoskeletal clutch mediates cellular force transmission in a soft, three-dimensional extracellular matrixLeanna M Owen, Arjun S Adhikari, Mohak Patel, et al.Nature Structural & Molecular Biology|May 9, 2017
The myosin mesa and the basis of hypercontractility caused by hypertrophic cardiomyopathy mutationsSuman Nag, Darshan V Trivedi, Saswata S Sarkar, et al.Pageof 2