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Effect of sonication power on perfusion decellularization of cadaveric porcine kidney

机译:超声功率对尸猪肾脏灌注脱细胞的影响

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Kidney problems rank 7th among the top 10 causes of mortality among Filipinos. One of the potential future treatment options is the use of bioengineered kidney. The preparation of scaffolds is the first step in kidney bioengineering and perfusion decellularization using chemicals is considered the most preferred preparation method to date. However, the use of chemicals alone requires long treatment time hence, in this study perfusion decellularization is to be enhanced by sonication treatment at varying sonication power. Decellularization was carried out by perfusing the kidney with 1% SDS and was subjected to sonication treatment with a 2h sonication and 2h rest cycle. The cycle is repeated until the kidney is clear and transparent. Washing using 1% Triton X-100 and 1x PBS then follows to remove residual SDS. The extent of cell removal was determined by H&E staining. The results showed that decellularization with sonication using 150W, 200W and 250W required a treatment time of 24h, 16h and 12h respectively compared to the 28h treatment time of decellularization without sonication. The result clearly shows that with higher sonication power, the shorter is the decellularization time needed to prepare a good kidney scaffold.
机译:在菲律宾人的十大死因中,肾脏问题排在第七位。未来潜在的治疗选择之一是使用生物工程肾脏。支架的制备是肾脏生物工程的第一步,使用化学物质的灌注脱细胞被认为是迄今为止最优选的制备方法。但是,仅使用化学药品就需要较长的处理时间,因此,在本研究中,通过在不同的超声处理功率下进行超声处理可以增强灌注脱细胞作用。通过向肾脏灌注1%SDS进行脱细胞,并进行2h超声和2h休息周期的超声处理。重复该循环,直到肾脏清澈透明。然后使用1%Triton X-100和1x PBS洗涤,以除去残留的SDS。细胞去除的程度通过H&E染色确定。结果表明,与不进行超声处理的脱细胞处理的28h处理时间相比,使用150W,200W和250W进行超声处理的脱细胞处理分别需要24h,16h和12h的处理时间。结果清楚地表明,超声强度越高,制备好的肾脏支架所需的脱细胞时间越短。

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