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首页> 外文期刊>Tissue Engineering Part A >In Vivo Bone Formation Following Transplantation of Human Adipose–Derived Stromal Cells That Are Not Differentiated Osteogenically
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In Vivo Bone Formation Following Transplantation of Human Adipose–Derived Stromal Cells That Are Not Differentiated Osteogenically

机译:人体成骨的人脂肪基质细胞移植后体内的骨形成。

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摘要

A number of studies have shown in vivo bone regeneration by transplantation of osteogenic cells differentiated in vitro from adipose-derived stromal cells (ADSCs). However, the in vitro osteogenic differentiation process requires an additional culture period, and the dexamethasone that is generally used in the process may be cytotoxic. Here, we tested the hypothesis that ADSCs that are not differentiated osteogenically in vitro prior to transplantation would extensively regenerate bone in vivo when exogenous bone morphogenetic protein-2 (BMP-2) is delivered to the transplantation site. We fabricated a poly(dl-lactic-co-glycolic acid)/hydroxyapatite (PLGA/HA) composite scaffold with osteoactive HA that is highly exposed on the scaffold surface. This scaffold was able to release BMP-2 over a 4-week period in vitro. Human ADSCs cultured on BMP-2–loaded PLGA/HA scaffolds for 2 weeks differentiated toward osteogenic cells expressing alkaline phosphatase (ALP), osteopontin (OPN), and osteocalcin (OCN) mRNA, while cells on PLGA/HA scaffolds without BMP-2 expressed only ALP. To study in vivo bone formation, PLGA/HA scaffolds (group 1), BMP-2–loaded PLGA/HA scaffolds (group 2), undifferentiated ADSCs seeded on PLGA/HA scaffolds (group 3), and undifferentiated ADSCs seeded on BMP-2–loaded PLGA/HA scaffolds (group 4) were implanted into dorsal, subcutaneous spaces of athymic mice. Eight weeks after implantation, group 4 exhibited a 25-fold greater bone formation area and 5-fold higher calcium deposition than group 3. Bone regeneration by transplanted human ADSCs in group 4 was confirmed by expression of human-specific osteoblastic genes, ALP, collagen type I, OPN, OCN, and bone sialoprotein, while group 3 expressed much lower levels of collagen type I and OPN mRNA only. This study demonstrates the feasibility of extensive in vivo bone regeneration by transplantation of ADSCs without prior in vitro osteogenic differentiation, and that a PLGA/HA composite BMP-2 delivery system stimulates bone regeneration following transplantation of undifferentiated human ADSCs.
机译:大量研究表明,通过移植从脂肪来源的基质细胞(ADSC)体外分化出的成骨细胞,可以进行体内骨再生。但是,体外成骨分化过程需要额外的培养时间,该过程中通常使用的地塞米松可能具有细胞毒性。在这里,我们测试了这样的假设:当将外源骨形态发生蛋白2(BMP-2)传递到移植部位时,在移植前在体外没有成骨分化的ADSC会在体内大量再生骨骼。我们制造了具有骨活性HA的聚(dl-乳酸-乙醇酸)/羟基磷灰石(PLGA / HA)复合支架,该支架高度暴露于支架表面。该支架能够在体外4周内释放BMP-2。在装有BMP-2的PLGA / HA支架上培养2周的人类ADSC分化为表达碱性磷酸酶(ALP),骨桥蛋白(OPN)和骨钙蛋白(OCN)mRNA的成骨细胞,而在PLGA / HA支架上的细胞则不含BMP-2仅表示ALP。为了研究体内骨骼的形成,PLGA / HA支架(第1组),BMP-2加载的PLGA / HA支架(第2组),接种在PLGA / HA支架上的未分化ADSC(第3组)和接种在BMP-HA上的未分化ADSC将2倍负荷的PLGA / HA支架(第4组)植入无胸腺小鼠的背部皮下空间。植入后八周,第4组的骨形成面积比第3组大25倍。钙沉积高5倍。第4组中移植的人ADSC的骨再生通过人类特异性成骨细胞基因,ALP,胶原蛋白的表达得以证实。 I型,OPN,OCN和骨唾液蛋白,而第3组仅表达低得多的I型胶原和OPN mRNA。这项研究证明了通过ADSC移植进行广泛的体内骨再生而不进行体外成骨分化的可行性,并且PLGA / HA复合物BMP-2递送系统可刺激未分化的人ADSC移植后的骨再生。

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  • 来源
    《Tissue Engineering Part A》 |2008年第8期|1285-1294|共10页
  • 作者单位

    Graduate School of Life Science and Biotechnology, Pochon CHA University & CHA Stem Cell Institute, Seoul, Korea.|Department of Bioengineering, Hanyang University, Seoul, Korea.|Weldon School of Biomedical Engineering and Department of Pharmaceutics, Purdue University, West Lafayette, Indiana.;

    Department of Plastic Surgery, Catholic University College of Medicine, Seoul, Korea.;

    Department of Oral Biology & Institute of Oral Biology, Kyunghee University, Seoul, Korea.;

    Graduate School of Life Science and Biotechnology, Pochon CHA University & CHA Stem Cell Institute, Seoul, Korea.;

    Department of Bioengineering, Hanyang University, Seoul, Korea.;

    Graduate School of Life Science and Biotechnology, Pochon CHA University & CHA Stem Cell Institute, Seoul, Korea.;

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