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The Osteogenic Differentiation of Adipose Tissue-Derived Precursor Cells in a 3D Scaffold/Matrix Environment.

机译:在3D支架/基质环境中,脂肪组织衍生的前体细胞的成骨分化。

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摘要

This paper details an in-vitro study using human adipose tissue-derived precursor/stem cells (ADSCs) in three-dimensional (3D) tissue culture systems. ADSCs from 3 donors were seeded onto NaOH-treated medical grade polycaprolactone-tricalcium phosphate (mPCL-TCP) scaffolds with two different matrix components; fibrin glue and lyophilized collagen. ADSCs within these scaffolds were then induced to differentiate along the osteogenic lineage for a 28-day period and various assays and imaging techniques were performed at Day 1, 7, 14, 21 and 28 to assess and compare the ADSC's adhesion, viability, proliferation, metabolism and differentiation along the osteogenic lineage when cultured in the different scaffold/matrix systems. The ADSC cells were proliferative in both collagen and fibrin mPCL-TCP scaffold systems with a consistently higher cell number (by comparing DNA amounts) in the induced group over the non-induced groups for both scaffold systems. In response to osteogenic induction, these ADSCs expressed elevated osteocalcin, alkaline phosphatase and osteonectin levels. Cells were able to proliferate within the pores of the scaffolds and form dense cellular networks after 28 days of culture and induction. The successful cultivation of osteogenic ADSCs within a 3D matrix comprising fibrin glue or collagen, immobilized within a robust synthetic scaffold is a promising technique which should enhance their potential usage in the regenerative medicine arena, such as bone tissue engineering.
机译:本文详细介绍了在三维(3D)组织培养系统中使用源自人类脂肪组织的前体/干细胞(ADSC)进行的体外研究。将来自3个供体的ADSCs接种到NaOH处理的医用级聚己内酯-磷酸三钙(mPCL-TCP)支架上,该支架具有两种不同的基质成分;纤维蛋白胶和冻干胶原蛋白。然后将这些支架中的ADSC沿成骨谱系分化28天,并在第1、7、14、21和28天进行了各种测定和成像技术,以评估和比较ADSC的粘附力,生存力,增殖,在不同的支架/基质系统中培养时,沿成骨谱系的代谢和分化。 ADSC细胞在胶原蛋白和血纤蛋白mPCL-TCP支架系统中均具有增生作用,两个支架系统的诱导组中的细胞数(通过比较DNA量)始终高于未诱导组。响应成骨诱导,这些ADSCs表达升高的骨钙素,碱性磷酸酶和骨连接素水平。培养和诱导28天后,细胞能够在支架的孔内增殖并形成致密的细胞网络。在包含纤维蛋白胶或胶原蛋白的3D基质中固定在坚固的合成支架中的成骨ADSCs的成功培养是一种有前途的技术,应增强其在再生医学领域(如骨组织工程)中的潜在用途。

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