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Ambika Nadkarni
Ambika Nadkarni
Verified email at stanford.edu
Title
Cited by
Cited by
Year
Aip1 destabilizes cofilin-saturated actin filaments by severing and accelerating monomer dissociation from ends
AV Nadkarni, WM Brieher
Current Biology 24 (23), 2749-2757, 2014
902014
Catastrophic actin filament bursting by cofilin, Aip1, and coronin
VW Tang, AV Nadkarni, WM Brieher
Journal of Biological Chemistry 295 (38), 13299-13313, 2020
272020
Microfluidic surgery in single cells and multicellular systems
KS Zhang, AV Nadkarni, R Paul, AM Martin, SKY Tang
Chemical Reviews 122 (7), 7097-7141, 2022
192022
Modular, cascade-like transcriptional program of regeneration in Stentor
P Sood, A Lin, C Yan, R McGillivary, U Diaz, T Makushok, A Nadkarni, ...
Elife 11, e80778, 2022
172022
Reconstitution of muscle cell microtubule organization in vitro
AV Nadkarni, R Heald
Cytoskeleton 78 (10-12), 492-502, 2021
32021
The role of cytoskeletal mechanics in conferring wound resilience in the giant single-celled ciliate Stentor coeruleus
R Paul, A Nadkarni, K Zhang, M Das, W Marshall, S Tang
Bulletin of the American Physical Society, 2024
2024
Mechanically-driven closure of extreme membrane wounds in a single cell
K Zhang, A Nadkarni, M Koch, W Marshall, S Tang
Bulletin of the American Physical Society, 2024
2024
Reconstitution of muscle cell microtubule organization in vitro
RH Ambika V. Nadkarni
bioRxiv, 2022
2022
Electron microscopic evidence that Aip1 disintegrates cofilin-saturated F-actin domains in the presence of coronin
VW Tang, AV Nadkarni, WM Brieher
bioRxiv, 199463, 2017
2017
A biochemical investigation of actin disassembly mechanisms
AV Nadkarni
University of Illinois at Urbana-Champaign, 2016
2016
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Articles 1–10