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灭菌对细胞外基质支架的影响:第二部分。生物活性与基质相互作用。

Effects of sterilization on an extracellular matrix scaffold: part II. Bioactivity and matrix interaction.

作者信息

Hodde Jason, Janis Abram, Hiles Michael

机构信息

Cook Biotech Incorporated, 1425 Innovation Place, West Lafayette, IN 47906, USA.

出版信息

J Mater Sci Mater Med. 2007 Apr;18(4):545-50. doi: 10.1007/s10856-007-2301-9.

Abstract

Small intestinal submucosa (SIS) has been successfully used to treat a variety of damaged or diseased tissues in human patients. As a biologic scaffold, SIS stimulates repair of damaged or diseased tissues and organs with tissue that is similar in structure and function to the material it was meant to replace. To meet clinical safety requirements, biologic materials from animal tissues must undergo processing treatments to minimize host immune response and to eliminate the possibility of disease transmission. The effect of peracetic acid disinfection, lyophilization, and ethylene oxide sterilization on the in vitro bioactivity of the processed SIS was therefore examined in murine fibroblasts and pheochromocytoma (PC12) cells. Specifically, the ability of processed SIS to support fibroblast attachment, to stimulate PC12 cell differentiation, and to upregulate fibroblast VEGF secretion was examined. Fibroblasts attach to the sterilized SIS, remain viable, and more than double their secretion of VEGF as a result of interacting with the SIS matrix components. Additionally, PC12 cells exhibit increased neurite outgrowth following stimulation by SIS matrix proteins versus controls. We conclude that a biologic scaffold can be prepared for human use and still retain significant bioactivity.

摘要

小肠黏膜下层(SIS)已成功用于治疗人类患者的多种受损或患病组织。作为一种生物支架,SIS能刺激受损或患病组织和器官的修复,其所用组织的结构和功能与它要替代的材料相似。为满足临床安全要求,来自动物组织的生物材料必须经过处理,以尽量减少宿主免疫反应并消除疾病传播的可能性。因此,在小鼠成纤维细胞和嗜铬细胞瘤(PC12)细胞中检测了过氧乙酸消毒、冻干和环氧乙烷灭菌对处理后的SIS体外生物活性的影响。具体而言,检测了处理后的SIS支持成纤维细胞附着、刺激PC12细胞分化以及上调成纤维细胞VEGF分泌的能力。成纤维细胞附着于经灭菌的SIS,保持活力,并且由于与SIS基质成分相互作用,其VEGF分泌增加一倍以上。此外,与对照组相比,PC12细胞在受到SIS基质蛋白刺激后神经突生长增加。我们得出结论,一种可用于人类的生物支架能够制备出来,并且仍保留显著的生物活性。

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