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利用软骨细胞外基质衍生的多孔支架和骨髓间充质干细胞进行体外软骨组织工程

[In vitro cartilage tissue engineering with cartilage extracellular matrix-derived porous scaffolds and bone marrow mesenchymal stem cells].

作者信息

Yang Qiang, Peng Jiang, Lu Shi-bi, Xia Qun, Hu Yong-cheng, Xu Bao-shan, Guo Quan-yi, Wang Ai-yuan, Zhao Bin, Zhang Li, Yao Jun, Xu Wen-jing

机构信息

Key Laboratory of People Liberation Army, Institute of Orthopedics, Chinese PLA General Hospital, Beijing 100853, China.

出版信息

Zhonghua Yi Xue Za Zhi. 2011 May 10;91(17):1161-6.

Abstract

OBJECTIVE

To develop a novel cartilage ECM-derived porous scaffold (CEDPS) and investigate the attachment, proliferation and distribution of bone marrow mesenchymal stem cells (BMSCs) cultured in vitro within the scaffolds.

METHODS

Cartilage microfilaments were prepared after pulverization and gradient centrifugation and prepared into suspension after acellularization treatment. The scaffolds were examined by histological staining, scanning electron microscope (SEM), biochemical and biomechanical analysis. After labeling with PKH26, the canine BMSCs were seeded onto the scaffolds. The attachment, proliferation and differentiation of cells were observed by inverted fluorescent microscope and SEM.

RESULTS

On histology, most extracellular matrices were retained in the scaffold after the removal of cell fragments. Safranin O staining and immunofluorescence examination with collagen II antibodies provided positive results. Biochemical analysis showed that the collagen content was (708.2 ± 44.7) µg/mg, glycosaminoglycan (254.7 ± 25.9) µg/mg and DNA (0.021 ± 0.007) µg/mg. Mechanical testing showed the compression moduli (E) were (1.226 ± 0.288) and (0.052 ± 0.007) MPa under dry and wet conditions respectively. Inverted fluorescent microscope and SEM showed moderate cell adhesion, chondrocyte-like morphology and matrix synthesis around cells.

CONCLUSION

The CEDPS retains most extracellular matrices after a thorough decellularization so as to possess an excellent microstructure with ideal biomechanical characteristics and a good biocompatibility. Thus it is a suitable candidate as an alternative cell-carrier for cartilage tissue engineering. Chondrogenic BMSCs and CEDPS may be used to construct cartilage-like tissue in vitro.

摘要

目的

研发一种新型软骨细胞外基质衍生多孔支架(CEDPS),并研究体外培养的骨髓间充质干细胞(BMSCs)在该支架内的黏附、增殖及分布情况。

方法

将软骨粉碎并经梯度离心后制备软骨微丝,经脱细胞处理后制成悬浮液。通过组织学染色、扫描电子显微镜(SEM)、生化及生物力学分析对支架进行检测。用PKH26标记犬BMSCs后接种到支架上。通过倒置荧光显微镜和SEM观察细胞的黏附、增殖及分化情况。

结果

组织学上,去除细胞碎片后支架中保留了大部分细胞外基质。番红O染色及用Ⅱ型胶原抗体进行的免疫荧光检查呈阳性结果。生化分析显示,胶原含量为(708.2±44.7)μg/mg,糖胺聚糖为(254.7±25.9)μg/mg,DNA为(0.021±0.007)μg/mg。力学测试表明,干燥和湿润条件下的压缩模量(E)分别为(1.226±0.288)和(0.052±0.007)MPa。倒置荧光显微镜和SEM显示细胞黏附适中,呈软骨细胞样形态,细胞周围有基质合成。

结论

CEDPS经彻底脱细胞后保留了大部分细胞外基质,具有优良的微观结构、理想的生物力学特性及良好的生物相容性。因此,它是软骨组织工程中合适的细胞载体替代品。成软骨BMSCs和CEDPS可用于体外构建类软骨组织。

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