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Whole-organ tissue engineering: Decellularization and recellularization of three-dimensional matrix liver scaffolds

机译:全器组织工程:三维基质肝脏脚手架的脱细胞化和透速

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摘要

To report the results of whole liver decellularization by two different methods. To present the results of grafting rat and sheep decellularized liver matrix (DLM) into the normal rat liver and compare natural cell seeding process in homo/xenograft of DLM. To compare the results of in vitro whole liver recellularization with rats' neonatal green fluorescent protein (GFP)-positive hepatic cells with outcomes of in vivo recellularization process. Whole liver of 8 rats and 4 sheep were resected and cannulated via the hepatic vein and perfused with sodium dodecyl sulfate (SDS) or Triton+SDS. Several examinations were performed to compare the efficacy of these two decellularization procedures. In vivo recellularization of sheep and rat DLMs was performed following transplantation of multiple pieces of both scaffolds in the subhepatic area of four rats. To compare the efficacy of different scaffolds in autologous cell seeding, biopsies of homograft and xenograft were assessed 8 weeks postoperatively. Whole DLMs of 4 rats were also recellularized in vitro by perfusion of rat's fetal GFP-positive hepatic cells with pulsatile bioreactor. Histological evaluation and enzymatic assay were performed for both in vivo and in vitro recellularized samples. The results of this study demonstrated that the triton method was a promising decellularization approach for preserving the three-dimensional structure of liver. In vitro recellularized DLMs were more similar to natural ones compared with in vivo recellularized livers. However, homografts showed better characteristics with more organized structure compared with xenografts. In vitro recellularization of liver scaffolds with autologous cells represents an attractive prospective for regeneration of liver as one of the most compound organs. In vivo cell seeding on the scaffold of the same species may have more satisfactory outcomes when compared with the results of xenotransplantation. This study theoretically may pave the road for in situ liver regeneration probably by implantation of homologous DLM or in vitro recellularized scaffolds into the diseased host liver. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 103A: 1498-1508, 2015.
机译:通过两种不同的方法报告全肝脱细胞化的结果。将Ratting大鼠和绵羊脱细胞脱叶肝脏基质(DLM)的结果呈现为正常大鼠肝脏,并比较DLM的Homo /异种移植物中的天然细胞播种方法。比较与大鼠新生绿色荧光蛋白(GFP)阳性肝细胞的体外整个肝脏渗透结果的结果与体内流速过程的结果进行比较。通过肝静脉切除8只大鼠和4只羊的整个肝脏,并用十二烷基硫酸钠(SDS)或Triton + SDS灌注。进行了几次考试以比较这两种脱细胞化程序的功效。在绵羊和大鼠DLMS的体内透入术后,在四个大鼠的子神经区域的多个支架移植后进行。为了比较不同支架在自体细胞播种中的疗效,术后8周评估了同种植物和异种移植物的活组织检查。通过用脉动生物反应器灌注大鼠胎儿GFP阳性肝细胞,还通过灌注大鼠的胎儿GFP阳性肝细胞来重新调整4只大鼠的整个DLM。在体内和体外流透的样品中进行组织学评估和酶测定。本研究的结果表明,Triton方法是一种希望保留肝脏三维结构的有前途的脱细胞化方法。与体内流透的肝脏相比,体外透腔的DLMS更类似于天然的DLM。然而,与异种移植物相比,同性以来的特征具有更有机化的结构。用自体细胞的肝脏支架的体外透闭症代表了一种有吸引力的肝脏再生作为最复合器官之一的前景。在与异叶癌的结果相比,相同物种的体内细胞播种可能具有更令人满意的结果。本研究理论上可以通过植入同源DLM或体外流速的支架进入患病宿主肝脏的原位肝再生来铺平道路。 (c)2014 Wiley期刊,Inc.J生物保解员A部分:103A:1498-1508,2015。

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