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Effect of Atmospheric-Pressure Plasmas on Drug Resistant Melanoma: The Challenges of Translating In vitro Outcomes into Animal Models

机译:大气压等离子体对耐药黑素瘤的影响:将体外结果转化为动物模型的挑战

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Atmospheric-pressure plasmas (APs) have been identified as a promising cancer therapy that is able to preferentially kill neoplastic cells through apoptosis. In vitro studies suggest that AP-generated reactive oxygen species (ROS) are the principal triggers of apoptosis-related signaling cascades via oxidative stress and direct interference with DNA, proteins, and other cellular components. The results of this study corroborate an ROS-mediated mechanism of cancer cell death, with apoptosis in AP-treated Mel-007 melanoma cells inhibited by pretreatment of cells with the ROS scavenger N-acetylcysteine or the caspase inhibitor zVAD-fink. In an effort to compare apoptosis mechanisms and evaluate the in vitro-in vivo correlation for AP-induced apoptosis, Mel-007 cells were injected subcutaneously into mice to form solid tumors and were treated with AP. Histological assessment of tumors from control and AP-treated animals showed no significant difference in tumor volume, mitotic rate, or percentage of necrosis or multinucleate cells. These results vary from those of other studies of AP treatment of xenograft tumors in murine models, in which a decrease in tumor size and tumor volume were observed. These findings focus our attention on challenges associated with translating the in vitro results to corresponding in vivo outcomes, and highlight concerns about the applicability of mechanisms established in vitro to an intrinsically dynamic in vivo environment.
机译:大气压等离子体(APs)被认为是一种很有前途的癌症治疗方法,能够通过凋亡优先杀死肿瘤细胞。体外研究表明,AP生成的活性氧(ROS)是通过氧化应激和直接干扰DNA、蛋白质和其他细胞成分而引发凋亡相关信号级联的主要触发因素。本研究结果证实了活性氧介导的癌细胞死亡机制,用活性氧清除剂N-乙酰半胱氨酸或半胱天冬酶抑制剂zVAD-fink预处理细胞,可抑制AP处理的Mel-007黑色素瘤细胞的凋亡。为了比较凋亡机制并评估AP诱导凋亡的体内外相关性,将Mel-007细胞皮下注射到小鼠体内形成实体瘤,并用AP治疗。对照组和AP治疗组动物的肿瘤组织学评估显示,肿瘤体积、有丝分裂率、坏死或多核细胞百分比没有显著差异。这些结果不同于AP治疗小鼠异种移植肿瘤的其他研究,在这些研究中,观察到肿瘤大小和肿瘤体积减小。这些发现将我们的注意力集中在与将体外结果转化为相应的体内结果相关的挑战上,并强调了对体外建立的机制适用于内在动态体内环境的担忧。

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