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Development and Characterization of an Acellular Porcine Small Intestine Submucosa Scaffold for Use in Corneal Epithelium Tissue Engineering

机译:角膜上皮组织工程中用于角膜上皮组织工程的无细胞猪小肠粘膜支架的开发与鉴定

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Purpose: To produce an acellular small intestine submucosa (SIS) that would be a suitable scaffold for corneal epithelium tissue engineering. Methods: The SIS was decellularized by immersion in 0.1% (wt/vol) sodium dodecyl sulfate (SDS). The efficacy of acellularization was confirmed by histological observation and DNA quantification. The mechanical properties were evaluated by uniaxial tensile testing. ELISA was performed to assess the growth factor contents. The cytotoxicity of SIS scaffolds and extracts to rabbit corneal epithelial cells was determined by CCK-8 assay. We also investigated the inflammatory reaction of SIS implanted subcutaneously in a rat. The biocompatibility was studied by rabbit interlamellar corneal transplantation and reseeding assay with cornea-derived cells. Immunofluorescent staining was used to detect the expression of CK3, ZO-1 and K13. Results: Histological analyses showed that complete cell removal was achieved, and the DNA quantity, which reflects the presence of cellular materials, was significantly diminished in acellular SIS. Collagen fibers were properly preserved and appeared in an orderly fashion. The tissue structure, the mechanical properties and the growth factor contents within the acellular SIS were well retained. The CCK8 assay demonstrated that the acellular SIS scaffolds and extracts had no cytotoxicity to rabbit corneal epithelial cells. There was no sign that an immune reaction occurred with acellular SIS implanted subcutaneously in a rat. In fact, in vivo implantation to rabbit interlamellar stromal pockets showed good biocompatibility. We also observed that clusters of rabbit corneal epithelial cells were growing well on the surface of the SIS in vitro and the distinctive CK3, ZO-1 for corneal epithelial cells was detected. Conclusions: The decellularized SIS retained the major structural components. The matrix is biocompatible with cornea-derived cells and might be a suitable scaffold for corneal epithelium tissue engineering.
机译:目的:生产一种用于角膜上皮组织工程的合适支架的无细胞小肠粘膜下皮(SIS)。方法:通过浸入0.1%(wt /体积)十二烷基硫酸钠(SDS)中脱叶状化。通过组织学观察和DNA定量证实了无牙细胞化的疗效。通过单轴拉伸试验评估机械性能。进行ELISA以评估生长因子含量。通过CCK-8测定法测定SIS支架和兔角膜上皮细胞的细胞毒性。我们还研究了在大鼠中皮下植入的SIS的炎症反应。通过兔层内膜移植研究生物相容性,并用角膜衍生细胞重定进行测定。免疫荧光染色用于检测CK3,ZO-1和K13的表达。结果:组织学分析显示,实现了完全的细胞去除,并且反映细胞材料存在的DNA量在无细胞SIS中显着降低。胶原纤维被正确保存并以有序的方式出现。组织结构,机械性质和生长因子含量良好地保留。 CCK8测定证明,无细胞瘤支架和提取物对兔角膜上皮细胞没有细胞毒性。没有迹象表明,在大鼠中皮下植入的细胞瘤发生免疫反应。事实上,在体内植入到兔层间基质口袋表现出良好的生物相容性。我们还观察到,兔角膜上皮细胞的簇在体外表面的表面上生长良好,并且检测到角膜上皮细胞的独特CK3。结论:脱细胞的SIS保留了主要的结构部件。基质与角膜衍生细胞生物相容,并且可能是用于角膜上皮组织工程的合适支架。

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