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用于兔骨髓间充质干细胞和生长因子递送以进行软骨组织工程的可注射生物可降解水凝胶复合材料

Injectable biodegradable hydrogel composites for rabbit marrow mesenchymal stem cell and growth factor delivery for cartilage tissue engineering.

作者信息

Park Hansoo, Temenoff Johnna S, Tabata Yasuhiko, Caplan Arnold I, Mikos Antonios G

机构信息

Department of Bioengineering, Rice University, MS-142, P.O. Box 1892, Houston, TX 77251-1892, USA.

出版信息

Biomaterials. 2007 Jul;28(21):3217-27. doi: 10.1016/j.biomaterials.2007.03.030. Epub 2007 Apr 5.

DOI:10.1016/j.biomaterials.2007.03.030
PMID:17445882
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2964378/
Abstract

We investigated the development of an injectable, biodegradable hydrogel composite of oligo(poly(ethylene glycol) fumarate) (OPF) with encapsulated rabbit marrow mesenchymal stem cells (MSCs) and gelatin microparticles (MPs) loaded with transforming growth factor-beta1 (TGF-beta1) for cartilage tissue engineering applications. Rabbit MSCs and TGF-beta1-loaded MPs were mixed with OPF, a poly(ethylene glycol)-diacrylate crosslinker and the radical initiators ammonium persulfate and N,N,N',N'-tetramethylethylenediamine, and then crosslinked at 37 degrees C for 8 min to form hydrogel composites. Three studies were conducted over 14 days in order to examine the effects of: (1) the composite formulation, (2) the MSC seeding density, and (3) the TGF-beta1 concentration on the chondrogenic differentiation of encapsulated rabbit MSCs. Bioassay results showed no significant difference in DNA amount between groups, however, groups with MPs had a significant increase in glycosaminoglycan content per DNA starting at day 7 as compared to controls at day 0. Chondrocyte-specific gene expression of type II collagen and aggrecan were only evident in groups containing TGF-beta1-loaded MPs and varied with TGF-beta1 concentration in a dose-dependent manner. Specifically, type II collagen gene expression exhibited a 161+/-49-fold increase and aggrecan gene expression a 221+/-151-fold increase after 14 days with the highest dose of TGF-beta1 (16 ng/ml). These results indicate that encapsulated rabbit MSCs remained viable over the culture period and differentiated into chondrocyte-like cells, thus suggesting the potential of OPF composite hydrogels as part of a novel strategy for localized delivery of stem cells and bioactive molecules.

摘要

我们研究了一种可注射的、可生物降解的水凝胶复合材料,该材料由低聚(聚乙二醇富马酸酯)(OPF)与包裹的兔骨髓间充质干细胞(MSCs)以及负载转化生长因子-β1(TGF-β1)的明胶微粒(MPs)组成,用于软骨组织工程应用。将兔MSCs和负载TGF-β1的MPs与OPF、聚乙二醇二丙烯酸酯交联剂以及自由基引发剂过硫酸铵和N,N,N',N'-四甲基乙二胺混合,然后在37℃交联8分钟以形成水凝胶复合材料。进行了三项为期14天的研究,以考察:(1)复合材料配方,(2)MSC接种密度,以及(3)TGF-β1浓度对包裹的兔MSCs软骨形成分化的影响。生物测定结果显示,各组之间DNA量无显著差异,然而,与第0天的对照组相比,含有MPs的组从第7天开始每DNA的糖胺聚糖含量显著增加。II型胶原蛋白和聚集蛋白聚糖的软骨细胞特异性基因表达仅在含有负载TGF-β1的MPs的组中明显,并且随TGF-β1浓度呈剂量依赖性变化。具体而言,在最高剂量的TGF-β1(16 ng/ml)作用14天后,II型胶原蛋白基因表达增加了161±49倍,聚集蛋白聚糖基因表达增加了221±151倍。这些结果表明,包裹的兔MSCs在培养期间保持存活并分化为软骨样细胞,因此表明OPF复合水凝胶作为干细胞和生物活性分子局部递送新策略一部分的潜力。

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