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Evaluation of novel decellularizing corneal stroma for cornea tissue engineering applications 被引量:16

Evaluation of novel decellularizing corneal stroma for cornea tissue engineering applications
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摘要 AIM:To develop a new decellularization method depended upon the natural corneal structure and to harvest an ideal scaffold with good biocompatibilities for corneal reconstruction.METHODS:The acellular cornea matrix (ACM) were prepared from de-epithelium fresh porcine corneas (DFPCs) by incubation with 100% fresh human sera and additional electrophoresis at 4℃. Human corneal epithelial cells (HCEs) were used for the cytotoxicity tests of ACM. ACM were implanted into the Enhanced Green Fluorecence Protein (eGFP) transgenic mouse anterior chamber for evaluation of histocompatibility.RESULTS:HE and GSIB4 results showed fresh porcine cornea matrix with 100% human sera and electrophoresis could entirely decellularize stromal cell without reducing its transparency. ACM has no cytotoxic effect ex vivo. Animal test showed there was no rejection for one month after surgery.CONCLUSION:These results provide a decellularizing approach for the study of corneal tissue engineering and had the broader implications for the field of biological tissue engineering in other engineered organ or tissue matrix. AIM:To develop a new decellularization method depended upon the natural corneal structure and to harvest an ideal scaffold with good biocompatibilities for corneal reconstruction.METHODS:The acellular cornea matrix (ACM) were prepared from de-epithelium fresh porcine corneas (DFPCs) by incubation with 100% fresh human sera and additional electrophoresis at 4℃. Human corneal epithelial cells (HCEs) were used for the cytotoxicity tests of ACM. ACM were implanted into the Enhanced Green Fluorecence Protein (eGFP) transgenic mouse anterior chamber for evaluation of histocompatibility.RESULTS:HE and GSIB4 results showed fresh porcine cornea matrix with 100% human sera and electrophoresis could entirely decellularize stromal cell without reducing its transparency. ACM has no cytotoxic effect ex vivo. Animal test showed there was no rejection for one month after surgery.CONCLUSION:These results provide a decellularizing approach for the study of corneal tissue engineering and had the broader implications for the field of biological tissue engineering in other engineered organ or tissue matrix.
作者 Yi Shao, Lu Yang
出处 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2012年第4期415-418,共4页 国际眼科杂志(英文版)
基金 National Natural Science Foundation of China (No.81160118,81100648,81101858,81100649) Natural Science Foundation of Jiangxi Province,China (No.20114BAB215029) Technology Foundation of Jiangxi Province,China (No.20111BBG70026-2) Health Department Science and Technology Foundation,China (No.20121026) Education Department Youth Scientific Research Foundation,China (No.JJJ12158) National High Technology Research of China (863 project)(No.2006AA02A131)
关键词 CORNEA human sera ELECTROPHORESIS tissue engineering DECELLULARIZATION BIOCOMPATIBILITY cornea human sera electrophoresis tissue engineering decellularization biocompatibility
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