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Membrane-Disrupting Nanofibrous Peptide Hydrogels
Biplab Sarkar
, Zain Siddiqui
, Peter K. Nguyen
, Namita Dube
, Wanyi Fu
, Steven Park
, Shivani Jaisinghani
, Reshma Paul
, Stephen D. Kozuch
, Daiyong Deng
, Patricia Iglesias-Montoro
,
Mengyan Li
, David Sabatino
, David S. Perlin
,
Wen Zhang
, Jagannath Mondal
, Vivek A. Kumar
Bio-Medical Engineering
Chemistry and Environmental Science
Civil and Environmental Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
45
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Scopus citations
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Keyphrases
Nanofibrous
100%
Self-assembling Peptide
100%
Peptide Hydrogel
100%
Membrane Protection
100%
Peptide Nanofibers
75%
Material Properties
50%
Ionic Strength
50%
Nanocomposite Hydrogel
50%
Amphiphilic
50%
Ionic Crosslinking
50%
Self-assembled Nanofibers
50%
Bacterial Membrane
50%
Extracellular Matrix
25%
High-order
25%
Self-assembly
25%
Stiffness
25%
Antimicrobial
25%
Ionic Concentration
25%
Peptide Nanofibrils
25%
Noncovalent Interactions
25%
Atomic Force Microscopy
25%
Charge Density
25%
Injectable Hydrogel
25%
Supramolecular Nanofibers
25%
Biodegradable Hydrogel
25%
Antimicrobial Activity
25%
Nanomechanics
25%
Rheometry
25%
Storage Modulus
25%
Thixotropic
25%
Multivalent
25%
Peptide Concentration
25%
Coarse-grained Simulations
25%
Physiological pH
25%
Individual Self
25%
Microsecond Timescale
25%
Pseudomonas Aeruginosa (P. aeruginosa)
25%
Tunable Material Properties
25%
Non-covalent
25%
Osmotic Equilibrium
25%
Viscoelastic Network
25%
Amphiphilicity
25%
Peak Force
25%
Scale Elasticity
25%
Nanomechanical Analysis
25%
Reversible Interaction
25%
Cell Morphological Change
25%
Peptide Membrane
25%
Terminal Charges
25%
Human Antimicrobial Peptides
25%
Material Science
Hydrogel
100%
Peptide
100%
Nanofiber
87%
Materials Property
37%
Antiinfective Agent
25%
Elasticity
12%
Density
12%
Self Assembly
12%
Elastic Moduli
12%
Antimicrobial Peptide
12%
Atomic Force Microscopy
12%