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首页> 外文期刊>Brain research >Study of biocompatibility of small intestinal submucosa (SIS) with Schwann cells in vitro.
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Study of biocompatibility of small intestinal submucosa (SIS) with Schwann cells in vitro.

机译:小肠粘膜下层(SIS)与雪旺细胞的生物相容性研究。

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No satisfactory method currently exists for repairing long peripheral nerve defects. Efforts have been made to fabricate bioactive artificial nerve conduits, comprised of a biomaterial pre-seeded with Schwann cells (SCs), which creating a favorable micro-environment for axonal regeneration, to be an alternative to autografting by means of tissue engineering. Small intestinal submucosa (SIS) possesses special biological characteristics and is comprehensively researched for tissue repairing at varied tissues and organs. This study investigated the biocompatibility of SIS with SCs in vitro. Cultured rat SCs were seeded on SIS. Cell morphology was observed by light microscopy, scanning electron microscopy and transmission electron microscope. The viability of SCs was measured by MTT assay. Secretion of NGF-beta and BDNF was quantitatively assessed by ELISA, and NGF-beta mRNA and BDNF mRNA were semi-quantitatively assessed by RT-PCR. The results indicated that SCs could adhere, migrate and proliferate on the surface of SIS in good condition with productive function of secreting growth factors. SIS has a good biocompatibility with SCs and SIS pre-seeded with SCs has potential to be an alternate candidate of autografting for repairing long peripheral nerve defects.
机译:目前尚不存在令人满意的修复长周围神经缺损的方法。已经做出努力来制造生物活性人工神经导管,该生物活性人工神经导管由预先接种有雪旺氏细胞(SCs)的生物材料组成,可为轴突再生创造良好的微环境,以替代通过组织工程进行的自体移植。小肠粘膜下层(SIS)具有特殊的生物学特性,并已被广泛研究用于修复各种组织和器官的组织。这项研究调查了SIS与SCs的体外生物相容性。将培养的大鼠SC接种在SIS上。通过光学显微镜,扫描电子显微镜和透射电子显微镜观察细胞形态。通过MTT测定法测量SC的生存力。通过ELISA定量评估NGF-β和BDNF的分泌,通过RT-PCR半定量评估NGF-βmRNA和BDNF mRNA。结果表明,SCs可以在SIS表面附着,迁移和增殖,并具有分泌生长因子的生产功能。 SIS与SC具有良好的生物相容性,并且预先植入SC的SIS有望成为自体移植修复长周围神经缺损的备选方法。

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