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1.
Rev. bras. pesqui. méd. biol ; Braz. j. med. biol. res;47(7): 533-539, 07/2014. tab
Article de Anglais | LILACS | ID: lil-712964

RÉSUMÉ

Development and selection of an ideal scaffold is of importance for tissue engineering. Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBHHx) is a biocompatible bioresorbable copolymer that belongs to the polyhydroxyalkanoate family. Because of its good biocompatibility, PHBHHx has been widely used as a cell scaffold for tissue engineering. This review focuses on the utilization of PHBHHx-based scaffolds in tissue engineering. Advances in the preparation, modification, and application of PHBHHx scaffolds are discussed.


Sujet(s)
Humains , /composition chimique , Matériaux biocompatibles/composition chimique , Caproates/composition chimique , Ingénierie tissulaire/méthodes , Structures d'échafaudage tissulaires/composition chimique , /usage thérapeutique , Matériaux biocompatibles/usage thérapeutique , Os et tissu osseux/physiologie , Caproates/usage thérapeutique , Cartilage/physiologie , Lyophilisation , Muscles lisses/physiologie , Régénération , Propriétés de surface
2.
Rev. bras. pesqui. méd. biol ; Braz. j. med. biol. res;47(4): 279-286, 8/4/2014. tab, graf
Article de Anglais | LILACS | ID: lil-705770

RÉSUMÉ

SRY-related high-mobility-group box 9 (Sox9) gene is a cartilage-specific transcription factor that plays essential roles in chondrocyte differentiation and cartilage formation. The aim of this study was to investigate the feasibility of genetic delivery of Sox9 to enhance chondrogenic differentiation of human umbilical cord blood-derived mesenchymal stem cells (hUC-MSCs). After they were isolated from human umbilical cord blood within 24 h after delivery of neonates, hUC-MSCs were untreated or transfected with a human Sox9-expressing plasmid or an empty vector. The cells were assessed for morphology and chondrogenic differentiation. The isolated cells with a fibroblast-like morphology in monolayer culture were positive for the MSC markers CD44, CD105, CD73, and CD90, but negative for the differentiation markers CD34, CD45, CD19, CD14, or major histocompatibility complex class II. Sox9 overexpression induced accumulation of sulfated proteoglycans, without altering the cellular morphology. Immunocytochemistry demonstrated that genetic delivery of Sox9 markedly enhanced the expression of aggrecan and type II collagen in hUC-MSCs compared with empty vector-transfected counterparts. Reverse transcription-polymerase chain reaction analysis further confirmed the elevation of aggrecan and type II collagen at the mRNA level in Sox9-transfected cells. Taken together, short-term Sox9 overexpression facilitates chondrogenesis of hUC-MSCs and may thus have potential implications in cartilage tissue engineering.


Sujet(s)
Humains , Différenciation cellulaire/génétique , Chondrogenèse/génétique , Sang foetal/cytologie , Cellules souches mésenchymateuses/cytologie , Facteur de transcription SOX-9/génétique , Agrécanes/biosynthèse , Technique de Western , Cartilage/métabolisme , Prolifération cellulaire/génétique , Chondrocytes/métabolisme , Collagène de type II/biosynthèse , Cytométrie en flux , Protéines à fluorescence verte , Régulation de l'expression des gènes/physiologie , Cellules endothéliales de la veine ombilicale humaine/cytologie , Immunohistochimie , Immunophénotypage , Culture de cellules primaires , RT-PCR , Ingénierie tissulaire , Transfection
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