![]() |
Volumn 5, Issue 1, 2009, Pages 114-124
|
Independent tuning of multiple biomaterial properties using protein engineering
|
Author keywords
[No Author keywords available]
|
Indexed keywords
ADHESION;
AMINES;
BIOCHEMICAL ENGINEERING;
BIOLOGICAL MATERIALS;
BIOMATERIALS;
BIOMIMETICS;
CELL ADHESION;
CELL CULTURE;
CELLS;
COLLOIDS;
CROSSLINKING;
CYTOLOGY;
DEGRADATION;
ENZYME INHIBITION;
GENETIC ENGINEERING;
MECHANICAL PROPERTIES;
PROTEINS;
SCAFFOLDS;
SUBSTRATES;
TUNING;
ADHESIVITY;
CELL LINES;
CENTRAL NERVOUS SYSTEMS;
CHEMICAL IDENTITIES;
CROSSLINKED;
CROSSLINKED PROTEINS;
DEGRADATION RATES;
DESIGN STRATEGIES;
IN VITRO STUDIES;
INDUCED DEGRADATIONS;
KEY ATTRIBUTES;
LIFE-TIMES;
MATERIAL PARAMETERS;
NEURAL REGENERATIONS;
NEURITE OUTGROWTHS;
NEURITES;
NEURONAL DIFFERENTIATIONS;
ORDERS OF MAGNITUDES;
PROTEASE DEGRADATIONS;
PROTEIN ENGINEERINGS;
PROTEIN SUBSTRATES;
RGD PEPTIDES;
SUBSTRATE SPECIFICITIES;
SYSTEMATIC VARIATIONS;
UROKINASE PLASMINOGEN ACTIVATORS;
BIOMECHANICS;
|
EID: 57849124608
PISSN: 1744683X
EISSN: 17446848
Source Type: Journal
DOI: 10.1039/b808504h Document Type: Article |
Times cited : (147)
|
References (64)
|