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接种神经分化的人间充质干细胞的胶原蛋白包被的聚乳酸-乙醇酸共聚物(PLGA)作为一种潜在的神经导管。

Collagen-coated polylactic-glycolic acid (PLGA) seeded with neural-differentiated human mesenchymal stem cells as a potential nerve conduit.

作者信息

Sulong Ahmad Fadzli, Hassan Nur Hidayah, Hwei Ng Min, Lokanathan Yogeswaran, Naicker Amaramalar Selvi, Abdullah Shalimar, Yusof Mohd Reusmaazran, Htwe Ohnmar, Idrus Ruszymah Bt Hj, Haflah Nor Hazla Mohamed

机构信息

Department of Orthopaedics and Traumatology, Universiti Kebangsaan Malaysia Medical Centre, Kuala Lumpur, Malaysia.

Tissue Engineering Centre, Universiti Kebangsaan Malaysia Medical Centre, Kuala Lumpur, Malaysia.

出版信息

Adv Clin Exp Med. 2014 May-Jun;23(3):353-62. doi: 10.17219/acem/37125.

Abstract

BACKGROUND

Autologous nerve grafts to bridge nerve gaps pose various drawbacks. Nerve tissue engineering to promote nerve regeneration using artificial neural conduits has emerged as a promising alternative.

OBJECTIVES

To develop an artificial nerve conduit using collagen-coated polylactic-glycolic acid (PLGA) and to analyse the survivability and propagating ability of the neuro-differentiated human mesenchymal stem cells in this conduit.

MATERIAL AND METHODS

The PLGA conduit was constructed by dip-molding method and coated with collagen by immersing the conduit in collagen bath. The ultra structure of the conduits were examined before they were seeded with neural-differentiated human mesenchymal stem cells (nMSC) and implanted sub-muscularly on nude mice thighs. The non-collagen-coated PLGA conduit seeded with nMSC and non-seeded non-collagen-coated PLGA conduit were also implanted for comparison purposes. The survivability and propagation ability of nMSC was studied by histological and immunohistochemical analysis.

RESULTS

The collagen-coated conduits had a smooth inner wall and a highly porous outer wall. Conduits coated with collagen and seeded with nMSCs produced the most number of cells after 3 weeks. The best conduit based on the number of cells contained within it after 3 weeks was the collagen-coated PLGA conduit seeded with neuro-transdifferentiated cells. The collagen-coated PLGA conduit found to be suitable for attachment, survival and proliferation of the nMSC. Minimal cell infiltration was found in the implanted conduits where nearly all of the cells found in the cell seeded conduits are non-mouse origin and have neural cell markers, which exhibit the biocompatibility of the conduits.

CONCLUSIONS

The collagen-coated PLGA conduit is biocompatible, non-cytotoxic and suitable for use as artificial nerve conduits.

摘要

背景

自体神经移植来桥接神经缺损存在各种缺点。利用人工神经导管促进神经再生的神经组织工程已成为一种有前景的替代方法。

目的

研发一种使用胶原包被的聚乳酸 - 乙醇酸共聚物(PLGA)的人工神经导管,并分析神经分化的人间充质干细胞在该导管中的存活能力和增殖能力。

材料与方法

采用浸涂法构建PLGA导管,并将导管浸入胶原浴中进行胶原包被。在接种神经分化的人间充质干细胞(nMSC)并将其植入裸鼠大腿肌肉下之前,检查导管的超微结构。还植入了接种nMSC的未包被胶原的PLGA导管和未接种的未包被胶原的PLGA导管用于比较。通过组织学和免疫组织化学分析研究nMSC的存活能力和增殖能力。

结果

胶原包被的导管内壁光滑,外壁多孔。接种nMSC的胶原包被导管在3周后产生的细胞数量最多。基于3周后其中所含细胞数量,最佳的导管是接种了神经转分化细胞的胶原包被PLGA导管。发现胶原包被的PLGA导管适合nMSC的附着、存活和增殖。在植入的导管中发现极少的细胞浸润,接种细胞的导管中几乎所有细胞均非小鼠来源且具有神经细胞标志物,这显示了导管的生物相容性。

结论

胶原包被的PLGA导管具有生物相容性、无细胞毒性,适合用作人工神经导管。

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