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精胺氧化产物对多药耐药黑色素瘤M14 ADR2细胞的细胞毒性:溶酶体亲和性化合物MDL 72527的致敏作用

Cytotoxicity of spermine oxidation products to multidrug resistant melanoma M14 ADR2 cells: sensitization by the MDL 72527 lysosomotropic compound.

作者信息

Agostinelli Enzo, Condello Maria, Molinari Agnese, Tempera Giampiero, Viceconte Nikenza, Arancia Giuseppe

机构信息

Department of Biochemical Sciences A. Rossi Fanelli, Sapienza University of Rome, Piazzale Aldo Moro 5, Rome, Italy.

出版信息

Int J Oncol. 2009 Sep;35(3):485-98. doi: 10.3892/ijo_00000360.

Abstract

It has been confirmed that multidrug resistant (MDR) human melanoma cells are more sensitive than their wild-type counterparts 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 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. Both wild-type and MDR cells, after pre-treatment with MDL 72527, an inactivator of polyamine oxidase and a lysosomotropic compound, show to be sensitized to subsequent exposure to BSAO/spermine. Evidence of ultrastructural aberrations and acridine orange release from lysosomes is presented in this work that is in favor of the permeabilization of the lysosomal membrane as the major cause of sensitization by MDL 72527. Owing to its lysosomotropic effect, pre-treatment with MDL 72527 amplifies the ability of the metabolites formed from spermine by oxidative deamination to induce cell death. Since it is conceivable that combined treatment with a lysosomotropic compound and BSAO/spermine would be effective against tumor cells, it is of interest to search for such novel compounds, which might be promising for application in a therapeutic setting.

摘要

已经证实,多药耐药(MDR)人黑色素瘤细胞比其野生型对应细胞对过氧化氢和醛更敏感,过氧化氢和醛是牛血清胺氧化酶(BSAO)催化精胺氧化的产物。尽管由于其释放比外源性产物更缓慢,在孵育初始阶段其浓度较低,但BSAO和精胺形成的代谢产物比外源性过氧化氢和丙烯醛毒性更大。在用多胺氧化酶失活剂和溶酶体亲和化合物MDL 72527预处理后,野生型和MDR细胞均显示对随后暴露于BSAO/精胺敏感。这项工作提供了超微结构畸变和溶酶体吖啶橙释放的证据,支持溶酶体膜通透性增加是MDL 72527致敏的主要原因。由于其溶酶体亲和作用,用MDL 72527预处理可增强精胺经氧化脱氨形成的代谢产物诱导细胞死亡的能力。鉴于可以想象用溶酶体亲和化合物与BSAO/精胺联合治疗对肿瘤细胞有效,寻找这类可能在治疗环境中有应用前景的新型化合物是有意义的。

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