首页> 外文期刊>Tissue engineering, Part A >Enhanced Regeneration of Corneal Tissue via a Bioengineered Collagen Construct Implanted by a Nondisruptive Surgical Technique
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Enhanced Regeneration of Corneal Tissue via a Bioengineered Collagen Construct Implanted by a Nondisruptive Surgical Technique

机译:通过无中断外科手术技术植入的生物工程胶原构建体,增强角膜组织的再生。

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Severe shortage of donor corneas for transplantation, particularly in developing countries, has prompted the advancement of bioengineered tissue alternatives. Bioengineered corneas that can withstand transplantation while maintaining transparency and compatibility with host cells, and that are additionally amenable to standardized low-cost mass production are sought. In this study, a bioengineered porcine construct (BPC) was developed to function as a biodegradable scaffold to promote corneal stromal regeneration by host cells. Using high-purity medical-grade type I collagen, high 18% collagen content and optimized EDC-NHS cross-linker ratio, BPCs were fabricated into hydrogel corneal implants with over 90% transparency and four-fold increase in strength and stiffness compared with previous versions. Remarkably, optical transparency was achieved despite the absence of collagen fibril organization at the nanoscale. In vitro testing indicated that BPC supported confluent human epithelial and stromal-derived mesenchymal stem cell populations. With a novel femtosecond laser-assisted corneal surgical model in rabbits, cell-free BPCs were implanted in vivo in the corneal stroma of 10 rabbits over an 8-week period. In vivo, transparency of implanted corneas was maintained throughout the postoperative period, while healing occurred rapidly without inflammation and without the use of postoperative steroids. BPC implants had a 100% retention rate at 8 weeks, when host stromal cells began to migrate into implants. Direct histochemical evidence of stromal tissue regeneration was observed by means of migrated host cells producing new collagen from within the implants. This study indicates that a cost-effective BPC extracellular matrix equivalent can incorporate cells passively to initiate regenerative healing of the corneal stroma, and is compatible with human stem or organ-specific cells for future therapeutic applications as a stromal replacement for treating blinding disorders of the cornea.
机译:供体角膜移植的严重短缺,特别是在发展中国家,已促使生物工程组织替代品的发展。寻求可以承受移植同时保持透明性和与宿主细胞相容性的生物工程角膜,并且它们还适合于标准化的低成本大规模生产。在这项研究中,生物工程猪构建体(BPC)被开发为可生物降解的支架,以促进宿主细胞角膜基质再生。使用高纯度的医用I型胶原蛋白,高18%的胶原蛋白含量和优化的EDC-NHS交联剂比率,将BPC制成水凝胶角膜植入物,其透明度超过90%,强度和刚度比以前提高了四倍。版本。值得注意的是,尽管在纳米级不存在胶原纤维组织,但仍实现了光学透明。体外测试表明,BPC支持融合的人类上皮和基质来源的间充质干细胞群体。借助新型飞秒激光辅助兔角膜手术模型,将无细胞BPC在8周的时间内体内植入10只兔的角膜基质中。在体内,植入的角膜在整个术后期间保持透明性,而愈合迅速发生而没有炎症并且无需使用术后类固醇。当宿主基质细胞开始迁移到植入物中时,BPC植入物在8周时的保留率为100%。通过移植的宿主细胞从植入物内部产生新的胶原蛋白,观察到了基质组织再生的直接组织化学证据。这项研究表明,具有成本效益的BPC细胞外基质等效物可以被动地掺入细胞以启动角膜基质的再生愈合,并且与人类干细胞或器官特异性细胞相容,可作为将来的治疗用途,作为基质替代物治疗角膜基质盲症角膜。

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