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免疫肿瘤学中的甲羟戊酸代谢

Mevalonate Metabolism in Immuno-Oncology.

作者信息

Gruenbacher Georg, Thurnher Martin

机构信息

Immunotherapy Unit, Department of Urology, Medical University of Innsbruck, Innsbruck, Austria.

出版信息

Front Immunol. 2017 Dec 1;8:1714. doi: 10.3389/fimmu.2017.01714. eCollection 2017.

Abstract

Immuno-oncology not only refers to the multifaceted relationship between our immune system and a developing cancer but also includes therapeutic approaches that harness the body's immune system to fight cancer. The recognition that metabolic reprogramming governs immunity was a key finding with important implications for immuno-oncology. In this review, we want to explore how activation and differentiation-induced metabolic reprogramming affects the mevalonate pathway for cholesterol biosynthesis in immune and cancer cells. Glycolysis-fueled mevalonate metabolism is a critical pathway in immune effector cells, which may, however, be shared by cancer stem cells, complicating the development of therapeutic strategies. Additional engagement of fatty acidy oxidation, as it occurs in regulatory immune cells as well as in certain tumor types, may influence mevalonate pathway activity. Transcellular mevalonate metabolism may play an as yet unanticipated role in the crosstalk between the various cell types and may add another level of complexity. In humans, a subset of γδ T cells is specifically adapted to perform surveillance of mevalonate pathway dysregulation. While the mevalonate pathway remains an important target in immuno-oncology, in terms of personalized medicine, it may be the type or stage of a malignant disease that determines whether mevalonate metabolism requires training or attenuation.

摘要

免疫肿瘤学不仅指我们的免疫系统与正在发展的癌症之间的多方面关系,还包括利用人体免疫系统对抗癌症的治疗方法。代谢重编程调控免疫这一认识是一项关键发现,对免疫肿瘤学具有重要意义。在本综述中,我们想要探讨激活和分化诱导的代谢重编程如何影响免疫细胞和癌细胞中胆固醇生物合成的甲羟戊酸途径。糖酵解驱动的甲羟戊酸代谢是免疫效应细胞中的一条关键途径,然而,癌症干细胞可能也会利用该途径,这使得治疗策略的开发变得复杂。脂肪酸氧化的额外参与,如在调节性免疫细胞以及某些肿瘤类型中发生的那样,可能会影响甲羟戊酸途径的活性。跨细胞甲羟戊酸代谢可能在各种细胞类型之间的串扰中发挥尚未预料到的作用,并且可能增加另一层面的复杂性。在人类中,一部分γδT细胞特别适合对甲羟戊酸途径失调进行监测。虽然甲羟戊酸途径仍然是免疫肿瘤学中的一个重要靶点,但就个性化医疗而言,可能是恶性疾病的类型或阶段决定了甲羟戊酸代谢需要增强还是减弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e699/5717006/9748bbb855b4/fimmu-08-01714-g001.jpg

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