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Development of human umbilical cord based scaffold for tissue engineering application

机译:基于人脐带的组织工程应用的脚手架的发展

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Bioactive scaffolds composed of decellularized Extracellular Matrix (ECM) are attractive for Tissue engineering (TE) applications as such scaffolds provide natural biologic signals which are essential for the regeneration of tissues and exhibit excellent cell attachment and proliferation ability. This study compares different methods to optimise the decellularization of human umbilical cord (UC) tissues and subjecting these tissues to solubilization and film formation. The decellularization process consisted of a single freeze thaw cycle where the stored tissues at -20°C are thawed at room temperature followed by dissection of UC in appropriate sizes. Trypsin/EDTA and Peracetic acid was not successful in decellularzing UC tissues. Decellularization using Sodium dodecyl sulfate (SDS) and Triton-X 100 revealed that both 1% SDS and 0.1% SDS was successful in removing the cells from the small UC tissues (~0.5cm). When the UC tissues were large (~1 cm) only 1% SDS was able to completely decellularize cells. 1% SD S decelluarized UC tissues were ground in cryomill and solubilized in pepsin for 48 hours. UC tissues washed with several phosphate buffered saline (PBS) washes were not able to solubilize in porcine pepsin. Hence 1% SDS protocol was optimised by washing the decellularized tissues with 75% ethanol and was solubilized in pepsin. The film developed from the decellularized UC tissues support amniotic epithelial cell (AME) attachment and can be suitable for TE applications.
机译:由脱细胞化细胞外基质(ECM)组成的生物活性支架对于组织工程(TE)应用具有吸引力,因为这种支架提供了对组织再生至关重要的天然生物信号,并且表现出优异的细胞附着和增殖能力。该研究比较了不同的方法来优化人脐带(UC)组织的脱细胞化并使这些组织对溶解和成膜进行溶解。脱细胞化方法由单冻过精循环组成,其中-20℃的储存组织在室温下解冻,然后以适当的尺寸解剖UC。胰蛋白酶/ EDTA和过乙酸在脱细胞瘤UC组织中不成功。使用十二烷基硫酸钠(SDS)和Triton-X 100的脱细胞化表明,1%SDS和0.1%SDS成功地从小UC组织(〜0.5cm)中除去细胞。当UC组织大(〜1cm)时,只有1%SDS能够完全脱细胞。将1%SD S Decelluized UC组织在冷冻罩中研磨,并在胃蛋白酶中溶解48小时。用几种磷酸盐缓冲盐水(PBS)洗涤的UC组织不能在猪胃蛋白中溶解。因此,通过用75%乙醇洗涤脱细胞组织并在胃蛋白酶中溶解1%SDS协议。从脱细胞化的UC组织中产生的薄膜支持羊膜上皮细胞(AME)附着,可以适用于TE应用。

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