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CARTILAGINOUS TISSUE FORMATION WITH AN ELASTIC PLCL SCAFFOLD AND HUMAN ADIPOSE TISSUE-DERIVED STROMAL CELLS

机译:用弹性PLCL支架和人脂肪组织衍生的基质细胞形成软骨组织形成

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In cartilage tissue engineering, as a cell source, adult stem cells are very attractive for clinical applications. Recent studies suggest that human adipose tissue-derived stromal cells (ASCs) have multilineage potential similar to bone marrow-derived stromal cells (BMSCs). ASCs are obtained from adipose tissue easily isolated by suction-assisted lipectomy in various body parts. Also, as one of major factors of cartilage tissue engineering, scaffolds have an important role in cartilage formation. Poly(L-lactide-co-ε-carprolactone) scaffolds have physiological activity, biodegradability, high cell affinity, and mechano-activity. The object of this study is cartilaginous tissue formation using highly elastic PLCL scaffolds and ASCs in vitro and in vivo. Poly(L-lactide-co-ε-carprolactone) copolymers were synthesized from lactide and ε-carprolactone in the presence of stannous octoate as catalyst. The scaffolds with 85% porosity and 300-500μm pore size were fabricated by gel-pressing method. ASCs were seeded on scaffolds and cultured for 21 days in vitro. Cell/polymer constructs were characterized by reverse transcriptase-polymerase chain reaction for confirming differentiation to chondrocytes onto PLCL scaffolds. Also, for examining cartilaginous tissue formation in vivo, ASCs seeded scaffolds which were induced chondrogenesis for 2 weeks were implanted in nude mice subcutaneously for up to 8weeks. Histological studies showed that implants partially developed cartilaginous tissue within lacunae. And there was an accumulation of sulfated glycoaminoglycans. Immunohistochemical analysis revealed that implants were positively stained for specific extracellular matrix. These results indicate that ASCs and PLCL scaffols could be used to cartilage tissue engineering.
机译:在软骨组织工程中,作为细胞来源,成人干细胞对临床应用非常有吸引力。最近的研究表明,人脂肪组织衍生的基质细胞(ASCS)具有类似于骨髓衍生的基质细胞(BMSC)的多线粒电位。通过在各种身体部位中容易被吸附辅助碱度切除术,从脂肪组织获得ASC。此外,作为软骨组织工程的主要因素之一,支架在软骨形成中具有重要作用。聚(L-丙交酯-Co-ε-鲤唑酮)支架具有生理活性,生物降解性,高细胞亲和力和机械活性。本研究的目的是使用高弹性PLCL支架和体内和体内ascs的软骨组织形成。在辛酸辛酸盐作为催化剂存在下,从丙交酯和ε-丙戊烷中合成聚(L-丙交酯-Co-Co-Carprogerone)共聚物。通过凝胶压制方法制造具有85%孔隙率和300-500μm孔径的支架。 ASC在支架上播种并体外培养21天。通过逆转录酶 - 聚合酶链反应表征细胞/聚合物构建体,用于确认与软骨细胞的分化在PLCL支架上。此外,为了检查体内的软骨状组织形成,将诱导软骨发生的ASCS种子支架2周的裸鼠植入裸鼠培养至高达8周。组织学研究表明,植入物在LELUNAE内部分开发的软骨组织。并且存在硫酸化甘油糖苷的积累。免疫组织化学分析显示植入物针对特异性细胞外基质呈正染色。这些结果表明,ASC和PLCL支架可用于软骨组织工程。

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