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针对参与花生四烯酸代谢的酶,以改善放射治疗。

Targeting the enzymes involved in arachidonic acid metabolism to improve radiotherapy.

机构信息

Department of Biology Education, Korea National University of Education, Cheongju-si, Chungbuk, 28173, Republic of Korea.

Department of Integrated Biological Science, Pusan National University, Busan, 46241, Republic of Korea.

出版信息

Cancer Metastasis Rev. 2018 Sep;37(2-3):213-225. doi: 10.1007/s10555-018-9742-0.

Abstract

During radiotherapy, an inflammatory response might be induced by activating various enzymes involved in membrane lipid metabolism. The eicosanoid pathway associated with cytosolic phospholipase A2 (cPLA), cyclooxygenases (COXs), and lipoxygenases (LOXs) can be induced by radiation, and many lipid metabolites might contribute to cancer-associated inflammation, cell proliferation, and cell survival in cancer. The lipid metabolites are also involved in the establishment of the tumor-associated microenvironment through promotion of angiogenesis and formation of vascular network. These biological activities of lipid metabolites are responsible for malignant progression with the acquisition of radioresistance, leading to unsatisfactory outcome of cancer radiotherapy. Many efforts have been made to identify the mechanisms associated with bioactive lipid metabolites and radiation signaling that lead to radioresistance and to develop potent radiosensitizers to improve therapeutic efficacy. Beneficial outcomes would be achieved by targeting the enzymes, such as cPLA, COXs, and LOXs, responsible for arachidonic acid metabolism and cancer-associated inflammation during cancer radiotherapy. The current study demonstrated a brief review for the radioresistant effects of bioactive lipid metabolites and their enzymes in cancer and the radiosensitizing effects of inhibitors for the enzymes on cancer therapy.

摘要

在放射治疗过程中,通过激活参与膜脂代谢的各种酶,可能会引发炎症反应。与细胞质磷脂酶 A2(cPLA)、环氧化酶(COXs)和脂氧合酶(LOXs)相关的类二十烷酸途径可被辐射诱导,许多脂质代谢物可能导致癌症相关炎症、细胞增殖和癌细胞存活。脂质代谢物还通过促进血管生成和血管网络形成参与肿瘤相关微环境的建立。这些脂质代谢物的生物学活性导致恶性进展并获得放射抗性,导致癌症放射治疗的结果不理想。人们已经做出了许多努力来确定与生物活性脂质代谢物和辐射信号相关的机制,这些机制导致放射抗性,并开发有效的放射增敏剂以提高治疗效果。通过靶向负责花生四烯酸代谢和癌症放射治疗期间癌症相关炎症的酶,如 cPLA、COXs 和 LOXs,可能会取得有益的结果。本研究简要综述了生物活性脂质代谢物及其在癌症中的酶以及酶抑制剂对癌症治疗的放射增敏作用。

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