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生物还原烷化剂卟吩姆对缺氧的EMT6乳腺肿瘤细胞的选择性杀伤作用。

Preferential kill of hypoxic EMT6 mammary tumor cells by the bioreductive alkylating agent porfiromycin.

作者信息

Sartorelli A C, Belcourt M F, Hodnick W F, Keyes S R, Pritsos C A, Rockwell S

机构信息

Department of Pharmacology, Yale Cancer Center, Yale, University School of Medicine, New Haven, CT 06520, USA.

出版信息

Adv Enzyme Regul. 1995;35:117-30. doi: 10.1016/0065-2571(94)00015-u.

Abstract

Hypoxic cells in solid tumors represent a therapeutically resistant population that limits the curability of many solid tumors by irradiation and by most chemotherapeutic agents. The oxygen deficit, however, creates an environment conducive to reductive processes; this results in a major exploitable difference between normal and neoplastic tissues. The mitomycin antibiotics can be reductively activated by a number of oxidoreductases, in a process required for the production of their therapeutic effects. Preferential activation of these drugs under hypoxia and greater toxicity to oxygen-deficient cells than to their oxygenated counterparts are obtained in most instances. The demonstration that mitomycin C and porfiromycin, used to kill the hypoxic fraction, in combination with irradiation, to eradicate the oxygenated portion of the tumor, produced enhanced cytodestructive effects on solid tumors in animals has led to the clinical evaluation of the mitomycins in combination with radiation therapy in patients with head and neck cancer. The findings from these clinical trials have demonstrated the value of directing a concerted therapeutic attack on the hypoxic fraction of solid tumors as an approach toward enhancing the curability of localized neoplasms by irradiation.

摘要

实体瘤中的缺氧细胞是一群具有治疗抗性的细胞,它们限制了许多实体瘤通过放疗和大多数化疗药物实现治愈的可能性。然而,缺氧环境营造了有利于还原过程的条件;这导致了正常组织与肿瘤组织之间存在一个主要的可利用差异。丝裂霉素类抗生素可被多种氧化还原酶进行还原激活,这是产生其治疗效果所需的过程。在大多数情况下,这些药物在缺氧条件下优先被激活,并且对缺氧细胞的毒性大于对富氧细胞的毒性。有证据表明,用于杀死缺氧部分的丝裂霉素C和卟吩姆钠,与放疗联合使用以根除肿瘤的富氧部分,可对动物实体瘤产生增强的细胞破坏作用,这促使人们对丝裂霉素类药物与放疗联合用于头颈癌患者进行临床评估。这些临床试验的结果表明,针对实体瘤的缺氧部分进行协同治疗攻击,作为一种通过放疗提高局部肿瘤治愈率的方法是有价值的。

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