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Molecular and histological study on the effects of non-thermal irreversible electroporation on the liver

机译:分子与组织学研究对肝脏非热不可逆电穿孔的影响

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Non-thermal irreversible electroporation (NTIRE) is a biophysical phenomenon in which certain electric fields delivered across the cell membrane in tissue, cause cell death, without affecting the extracellular matrix. "Minimally invasive regenerative surgery" is a new medical modality for treatment of end-stage organ or tissue failure in which exogenous cells are implanted in a decellularized niche in tissue, formed by the delivery of NTIRE electric fields across a targeted volume of tissue. We anticipate that the success of the procedure will depend on the time of implantation relative to the application of NTIRE. This study was performed to elucidate the histological and molecular events that occur within 24 h after NTIRE, in the context of optimal criteria for the time of implantation. To this end, we examined the histology of NTIRE treated rat liver with H&E, Masson trichrome and TUNEL staining. Western blot was used to examine pro and cleaved caspase-3 (marker for apoptosis), pro and cleaved caspase-1 and gasdermin D (markers for pyroptosis), and RIP3 and MLKL (markers for necroptosis). The key findings are that, complete hepatocytes disintegration within an intact extracellular matrix is seen at 6 h and, new hepatocytes are seen in the treated region at 24 h, after NTIRE. There is no evidence of apoptotic cell death from NTIRE, contrary to commonly made claims in the NTIRE literature. However, molecular pathways of pyroptosis and necroptosis, programed necrosis associated with inflammation, are activated at 6 h after NTIRE and are not evident at 24 h after NTIRE. These are fundamental new findings of basic value to the field of NTIRE in all its applications. Taken together the results suggest the hypothesis that an optimal time for implantation is about 24 h after NTIRE. Future studies in which exogenous cells are implanted at different times after NTIRE are required to examine this hypothesis. (C) 2018 Elsevier Inc. All rights reserved.
机译:非热不可逆转电穿孔(NTIRE)是一种生物物理现象,其中某些电场在组织中递送过细胞膜,引起细胞死亡,而不会影响细胞外基质。 “微创再生手术”是一种用于治疗终级器官或组织衰竭的新的医学模态,其中将外源细胞植入组织中的脱细胞内部,由靶向组织体积的NTIRE电场递送形成。我们预计该程序的成功将取决于植入时相对于NTIRE的应用。本研究进行了阐明NTIRE后24小时内发生的组织学和分子事件,在植入时的最佳标准的范围内。为此,我们研究了H&E,Masson Trichrome和Tunel染色的Ntire治疗大鼠肝脏的组织学。 Western印迹用于检查Pro和Cleaved Caspase-3(凋亡标记),Pro和Cleaved Caspase-1和胃蛋白D(用于糊化症的标记),以及RIP3和MLK1(恶性衰竭的标志物)。关键发现是,在6小时内看到完整细胞外基质内的完全肝细胞崩解,并且在NTIR后24小时在处理区域中看到新的肝细胞。没有证据表明NTIRE的凋亡细胞死亡,与NTIRE文献中的常规权利要求相反。然而,胃肠杆菌和炎症的编程坏死的分子途径在奈良郡6小时后被激活,并且在NTIE后24小时并不明显。这些是其所有应用中NTIRE领域的基本价值的基本结果。结合在一起,表明植入植入最佳时间约为24小时的假设。未来的研究,其中在NTIE术后在不同时间植入外源细胞以检查该假设。 (c)2018年Elsevier Inc.保留所有权利。

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