首页> 外文期刊>International journal of oncology >The combined treatment with chloroquine and the enzymatic oxidation products of spermine overcomes multidrug resistance of melanoma M14 ADR2 cells: A new therapeutic approach
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The combined treatment with chloroquine and the enzymatic oxidation products of spermine overcomes multidrug resistance of melanoma M14 ADR2 cells: A new therapeutic approach

机译:氯喹和精胺酶氧化产物的联合治疗克服了黑素瘤M14 ADR2细胞的多药耐药性:一种新的治疗方法

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It has been confirmed that multidrug resistant (MDR) melanoma cells (M14 ADR2) are more sensitive than their wild-type counterparts (M14 WT) to H2O2 and aldehydes, the products of bovine serum amine oxidase (BSAO)-catalyzed oxidation of spermine. The metabolites formed by BSAO and spermine are more toxic, in M14 cells, than exogenous H2O2 and acrolein, even though their concentration is lower during the initial phase of incubation due to their more gradual release than the exogenous products. Binding of BSAO to the cell membrane and release of the reaction products of spermine into the immediate vicinity of the cells, or directly into the cells, may explain the apparently paradoxical phenomenon. Both WT and MDR cells, after pre-treatment for 24?h, or longer, with the lysosomotropic compound chloroquine (CQ), show to be sensitized to subsequent exposure to BSAO/spermine enzymatic system. Evidence of ultrastructural aberrations and acridine orange release from lysosomes is presented in this study that is in favor of the permeabilization of the lysosomal membrane as the major cause of sensitization by CQ. Pre-treatment with CQ amplifies the ability of the metabolites formed from spermine by oxidative deamination to induce cell death. Melanocytes, differently from melanoma cells, were unaffected by the enzymatic system, even when preceded by CQ treatment. Since it is conceivable that combined treatment with a lysosomotropic compound and BSAO/spermine would be effective against tumour cells, it is of interest to search for such novel compounds, which might be promising for application in a therapeutic setting.
机译:已经证实,多药抗性(MDR)黑色素瘤细胞(M14 ADR2)比其野生型对应物(M14 WT)对H2O2和醛(牛血清胺氧化酶(BSAO)催化精胺氧化的产物)更敏感。在M14细胞中,由BSAO和精胺形成的代谢物比外源H2O2和丙烯醛更具毒性,尽管在孵化初期它们的浓度比外源产物更缓慢,这是因为它们的浓度较低。 BSAO与细胞膜的结合以及精胺的反应产物释放到细胞的附近或直接释放到细胞中,可以解释明显的自相矛盾现象。用溶溶同性化合物氯喹(CQ)预处理24分钟或更长的时间后,WT和MDR细胞均表现出对随后暴露于BSAO /精胺酶系统的敏感性。这项研究提供了超微结构畸变和溶酶体释放出cr啶橙的证据,这表明溶酶体膜的通透性是CQ致敏的主要原因。用CQ预处理可放大由精胺形成的代谢产物通过氧化脱氨作用诱导细胞死亡的能力。与黑素瘤细胞不同,黑素细胞不受酶系统的影响,即使在进行CQ处理之前也是如此。由于可以想到用溶溶同性化合物和BSAO /精胺的联合治疗对肿瘤细胞有效,因此寻找这样的新化合物是令人感兴趣的,其有望在治疗环境中应用。

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