UT BIORAD RAB, CR Casaccia, ENEA, 00123, Rome, Italy,
Amino Acids. 2014 Mar;46(3):487-98. doi: 10.1007/s00726-013-1579-9. Epub 2013 Sep 3.
Destruction of cells by irradiation-induced radical formation is one of the most frequent interventions in cancer therapy. An alternative to irradiation-induced radical formation is in principle drug-induced formation of radicals, and the formation of toxic metabolites by enzyme catalyzed reactions. Thus, combination therapy targeting polyamine metabolism could represent a promising strategy to fight hyper-proliferative disease. The aim of this work is to discuss and evaluate whether the presence of a DNA damage provoked by enzymatic ROS overproduction may act as an additive or adaptive response upon radiation and combination of hyperthermia with lysosomotropic compounds may improve the cytocidal effect of polyamines oxidation metabolites. Low level of X-irradiations delivers challenging dose of damage and an additive or adaptive response with the chronic damage induced by spermine oxidase overexpression depending on the deficiency of the DNA repair mechanisms. Since reactive oxygen species lead to membrane destabilization and cell death, we discuss the effects of BSAO and spermine association in multidrug resistant cells that resulted more sensitive to spermine metabolites than their wild-type counterparts, due to an increased mitochondrial activity. Since mammal spermine oxidase is differentially activated in a tissue specific manner, and cancer cells can differ in term of DNA repair capability, it could be of interest to open a scientific debate to use combinatory treatments to alter spermine metabolism and deliver differential response.
细胞的破坏由辐照诱导的自由基形成是癌症治疗中最常见的干预措施之一。另一种替代辐照诱导自由基形成的方法是原则上药物诱导自由基的形成,以及酶催化反应产生有毒代谢物。因此,针对多胺代谢的联合治疗可能是对抗过度增殖性疾病的一种有前途的策略。本工作旨在讨论和评估酶促 ROS 过产生引起的 DNA 损伤的存在是否可以作为辐射的附加或适应性反应,并且与溶酶体靶向化合物的热疗相结合是否可以提高多胺氧化代谢物的细胞杀伤作用。低水平的 X 射线照射会导致损伤,并且根据 DNA 修复机制的缺陷,与慢性损伤(由精脒氧化酶过表达引起)的联合作用是附加或适应性的。由于活性氧会导致膜不稳定和细胞死亡,因此我们讨论了 BSAO 和精脒结合在多药耐药细胞中的作用,由于线粒体活性增加,这些细胞对精脒代谢物比其野生型对应物更敏感。由于哺乳动物精脒氧化酶以组织特异性方式差异激活,并且癌细胞在 DNA 修复能力方面可能存在差异,因此开展科学辩论以使用联合治疗来改变精脒代谢并产生差异反应可能会很有趣。