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层状海藻酸钠水凝胶增强人脂肪来源干细胞的生物学性能。

Layer-shaped alginate hydrogels enhance the biological performance of human adipose-derived stem cells.

机构信息

Department of Biochemistry and Molecular Biology, University of Bucharest, 91-95 Splaiul Independentei, sect 5, Bucharest, Romania.

出版信息

BMC Biotechnol. 2012 Jun 29;12:35. doi: 10.1186/1472-6750-12-35.

Abstract

BACKGROUND

The reconstruction of adipose tissue defects is often challenged by the complications that may occur following plastic and reconstructive surgery, including donor-site morbidity, implant migration and foreign body reaction. To overcome these problems, adipose tissue engineering (ATE) using stem cell-based regeneration strategies has been widely explored in the last years. Mounting evidence has shown that adipose-derived stem cells (ADSCs) represent a promising cell source for ATE. In the context of a small number of reports concerning adipose tissue regeneration using three-dimensional (3-D) systems, the present study was designed to evaluate the biological performance of a novel alginate matrix that incorporates human ADSCs (hADSCs).

RESULTS

Culture-expanded cells isolated from the stromal vascular fraction (SVF), corresponding to the third passage which showed the expression of mesenchymal stem cell (MSC) markers, were used in the 3-D culture systems. The latter represented a calcium alginate hydrogel, obtained by the diffusion of calcium gluconate (CGH matrix), and shaped as discoid-thin layer. For comparative purposes, a similar hADSC-laden alginate hydrogel cross-linked with calcium chloride was considered as reference hydrogel (RH matrix). Both hydrogels showed a porous structure under scanning electron microscopy (SEM) and the hADSCs embedded displayed normal spherical morphologies, some of them showing signs of mitosis. More than 85% of the entrapped cells survived throughout the incubation period of 7 days. The percentage of viable cells was significantly higher within CGH matrix at 2 days post-seeding, and approximately similar within both hydrogels after 7 days of culture. Moreover, both alginate-based hydrogels stimulated cell proliferation. The number of hADSC within hydrogels has increased during the incubation period of 7 days and was higher in the case of CGH matrix. Cells grown under adipogenic conditions for 21 days showed that both analyzed 3-D culture systems support adipogenic differentiation in terms of neutral lipid accumulation and perillipin expression. Furthermore, the cells encapsulated in CGH matrix displayed a more differentiated phenotype.

CONCLUSIONS

The results of this study suggest that both CGH and RH matrices successfully support the survival and adipogenesis of hADSC. An enhancement of biological performance was detected in the case of CGH matrix, suggesting its promising application in ATE.

摘要

背景

整形和重建外科手术后可能出现的并发症常常给脂肪组织缺陷的重建带来挑战,包括供区发病率、移植物迁移和异物反应。为了克服这些问题,近年来,基于干细胞的再生策略的脂肪组织工程(ATE)已被广泛探索。越来越多的证据表明,脂肪来源干细胞(ADSCs)是 ATE 的一种很有前途的细胞来源。在少数关于使用三维(3-D)系统进行脂肪组织再生的报告的背景下,本研究旨在评估一种新型藻酸盐基质的生物学性能,该基质包含人 ADSCs(hADSCs)。

结果

从基质血管部分(SVF)分离的培养细胞,经过三代传代,表达间充质干细胞(MSC)标志物,用于 3-D 培养系统。后者代表一种由葡萄糖酸钙(CGH 基质)扩散获得的藻酸钙水凝胶,形状为圆盘状薄片。为了进行比较,考虑了一种类似的用氯化钙交联的负载 hADSC 的藻酸盐水凝胶作为参考水凝胶(RH 基质)。扫描电子显微镜(SEM)下两种水凝胶均显示多孔结构,嵌入的 hADSCs 呈正常球形形态,其中一些呈有丝分裂迹象。在整个 7 天孵育期内,超过 85%的包封细胞存活。在接种后 2 天,CGH 基质内的活细胞百分比显著更高,在培养 7 天后,两种水凝胶内的活细胞百分比大致相似。此外,两种藻酸盐水凝胶均能刺激细胞增殖。在 7 天孵育期内,水凝胶内的 hADSC 数量增加,CGH 基质内的数量更高。在 21 天的成脂条件下培养的细胞表明,两种分析的 3-D 培养系统均支持中性脂质积累和 perillipin 表达的成脂分化。此外,包埋在 CGH 基质中的细胞显示出更分化的表型。

结论

本研究结果表明,CGH 和 RH 基质均能成功支持 hADSC 的存活和脂肪生成。在 CGH 基质的情况下检测到生物性能增强,表明其在 ATE 中具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e29/3407005/6b6777348327/1472-6750-12-35-1.jpg

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