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Volumn 95, Issue 1, 2010, Pages 172-179
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Silicate, borosilicate, and borate bioactive glass scaffolds with controllable degradation rate for bone tissue engineering applications. II. In vitro and in vivo biological evaluation
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Author keywords
Bioactive glass; Bone repair; Cell culture; Scaffold; Subcutaneous implantation
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Indexed keywords
ALKALINE PHOSPHATASE ACTIVITY;
BIOLOGICAL EVALUATION;
BONE DEFECT;
BONE REPAIR;
BONE TISSUE ENGINEERING;
CELL VIABILITY;
CONTROLLABLE DEGRADATION;
DEGRADATION RATE;
GLASS COMPOSITIONS;
GLASS SCAFFOLDS;
HUMAN TRABECULAR BONE;
IMMERSION TIME;
IMPLANTATION MODELS;
IN-VITRO;
IN-VIVO;
OSTEOGENIC;
SIMULATED BODY FLUIDS;
SUBCUTANEOUS IMPLANTATION;
ANIMAL CELL CULTURE;
BIOACTIVE GLASS;
BIODEGRADATION;
BONE;
BOROSILICATE GLASS;
CELL CULTURE;
CELL PROLIFERATION;
DEGRADATION;
PHOSPHATASES;
REPAIR;
SEEPAGE;
SILICATES;
SOIL MECHANICS;
TISSUE ENGINEERING;
SCAFFOLDS;
ALKALINE PHOSPHATASE;
BORIC ACID;
BOROSILICATE;
GLASS;
INORGANIC COMPOUND;
MOLECULAR SCAFFOLD;
SILICATE;
UNCLASSIFIED DRUG;
TISSUE SCAFFOLD;
BORON DERIVATIVE;
CELL EXTRACT;
ANIMAL CELL;
ARTICLE;
BODY FLUID;
BONE STRUCTURE;
BONE TISSUE;
CELL FUNCTION;
CELL PROLIFERATION;
CELL VIABILITY;
DEGRADATION;
IN VITRO STUDY;
IN VIVO STUDY;
MOUSE;
NONHUMAN;
TISSUE ENGINEERING;
TRABECULAR BONE;
ANIMAL EXPERIMENT;
ANIMAL TISSUE;
BONE DEVELOPMENT;
IMPLANTATION;
RAT;
SCANNING ELECTRON MICROSCOPY;
ANIMAL;
BONE;
CELL CULTURE;
CELL SURVIVAL;
CHEMISTRY;
FLUORESCENCE MICROSCOPY;
HUMAN;
IMPLANT;
MATERIALS TESTING;
METABOLISM;
METHODOLOGY;
PHYSIOLOGY;
ALKALINE PHOSPHATASE;
ANIMALS;
BONE AND BONES;
BORATES;
BORON COMPOUNDS;
CELL EXTRACTS;
CELL SURVIVAL;
CELLS, CULTURED;
GLASS;
HUMANS;
IMPLANTS, EXPERIMENTAL;
MATERIALS TESTING;
MICE;
MICROSCOPY, ELECTRON, SCANNING;
MICROSCOPY, FLUORESCENCE;
RATS;
SILICATES;
TISSUE ENGINEERING;
TISSUE SCAFFOLDS;
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EID: 77956468013
PISSN: 15493296
EISSN: 15524965
Source Type: Journal
DOI: 10.1002/jbm.a.32823 Document Type: Article |
Times cited : (169)
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References (10)
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