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利用热疗治疗癌症:高温疗法作为增强细胞凋亡的一种有前景的策略。

Treating cancer with heat: hyperthermia as promising strategy to enhance apoptosis.

作者信息

Ahmed Kanwal, Zaidi Syed Faisal

机构信息

Department of Biological and Biomedical Sciences, Aga Khan University, Karachi, Pakistan.

出版信息

J Pak Med Assoc. 2013 Apr;63(4):504-8.

Abstract

The fundamental idea and the effects of heat on cancer cells are well known. However, the results obtained in therapy by hyperthermia (HT) alone have been only partially satisfactory. Treatment at temperatures between .40 and 44 degrees C is cytotoxic for cells in an environment with a low oxygen partial pressure and low pH, conditions that are found specifically within tumour tissue, due to insufficient blood perfusion. Under such conditions radiotherapy is less effective, and systemically applied cytotoxic agents will reach such areas in lower concentrations than in well-perfused areas. Therefore, clinically, it is preferred to use hyperthermia in combination with radiation therapy and chemotherapy. Hyperthermia can be applied by several methods: local hyperthermia by external or internal energy sources; regional hyperthermia by perfusion of organs or limbs, or by irrigation of body cavities; and whole-body hyperthermia. Number of studies have reported the combination of thermo-radiotherapy. Consequently, much attention has been focussed on identifying agents among the conventional chemotherapeutic substances that can sensitise tumour cells to hyperthermia-induced damage with minimal effects on normal cells. In this review, we overviewed important mechanisms of hyperthermia-induced apoptosis and the substances which can act as heat sensitisers in cancer therapy.

摘要

热对癌细胞的基本作用原理和影响已广为人知。然而,单纯通过热疗(HT)进行治疗所取得的效果仅部分令人满意。在氧分压低和pH值低的环境中,40至44摄氏度之间的温度处理对细胞具有细胞毒性,由于血液灌注不足,这种情况在肿瘤组织中尤为常见。在这种情况下,放射治疗效果较差,全身应用的细胞毒性药物到达这些区域的浓度将低于血液灌注良好的区域。因此,临床上更倾向于将热疗与放射治疗和化疗联合使用。热疗可通过多种方法进行:通过外部或内部能量源进行局部热疗;通过器官或肢体灌注、或体腔冲洗进行区域热疗;以及全身热疗。多项研究报道了热放疗联合治疗。因此,人们将大量注意力集中在从传统化疗物质中寻找能够使肿瘤细胞对热疗诱导的损伤敏感,同时对正常细胞影响最小的药物。在本综述中,我们概述了热疗诱导细胞凋亡的重要机制以及在癌症治疗中可作为热增敏剂的物质。

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