The mechanistic modes of Targeting immunometabolism in cancer: An innovative strategy: A narrative review

Kulvinder Kochar Kaur, Gautam Nand Allahbadia
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Abstract

Previously we had detailed different gynaecological cancers, inclusive of high grade serous ovarian cancers(HGSOC),breast cancer(BC), Hepatocellular carcinoma(HCC), non small lung cancer (NSCLC),bile acids in cancer,colorectal cancer with etiopathogenesis, treatment yet 5 year survival is substantially poor. Additionally, considering a considerable association of obesity with escalating incidence of cancers recently the concept of immunometabolism for targeting cancers has emerged. Furthermore,we had detailed alterations in metabolism in depth including macrophage polarization, SIRT signaling pathway,in T2DM, targeting PI3K/ PTEN/ AKT signaling pathwaysin germ cell tumors and oocyte generation, MAPK/ERK andHippo/MST signaling for cancers, PD1/ PDL1 (programmed death1)/ (programmed death ligand1 pathways in ovarian cancers /&tecemotide therapy for NSCLC, PI3K/ AKT/mTOR signaling in T2DM treatment and autophagy role . With advancements of immunometabolic scientific research advantages of using innovative strategies is got for immune controlling . Propagative metabolic adaptation of tumor cells aids in generation of a fluorishing tumor microenvironment(TME),where immune cells get their capability of earlier killing totally eliminated all the time persists an unresolved conundrum despite the generation of immune checkpoints treatments. In current decade numerous studies on tumor immunometabolism have been displayed. Generating immunometabolism might promote formation of antitumor immunotherapies from the continuos crosstalk amongst metabolism and immunity. Here our concentration is over the crucial targets of every key signaling pathways,ii) the molecule existent in upstream as well as downstream signaling along with cell demise modulated by them and immunometabolic checkpoints that have been displayed to possess significant controlling part are further described.Thus the idea of this is provision of necessary knowledge regarding molecular signaling in immunometabolism context and targeting approaches in oncology research and emphasizes the manner this area guides advancements in treatment of tumors.
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癌症免疫代谢的机制模式:创新战略:综述
在此之前,我们已经详细介绍了各种妇科癌症,包括高分化浆液性卵巢癌(HGSOC)、乳腺癌(BC)、肝细胞癌(HCC)、非小细胞肺癌(NSCLC)、胆汁酸癌、结直肠癌的发病机制和治疗方法,但这些癌症的 5 年生存率却很低。此外,考虑到肥胖与癌症发病率的上升有很大关系,最近出现了针对癌症的免疫代谢概念。此外,我们还深入研究了新陈代谢的改变,包括 T2DM 中巨噬细胞的极化、SIRT 信号通路、生殖细胞肿瘤和卵母细胞生成中针对 PI3K/ PTEN/ AKT 信号通路的研究、MAPK/ERK和Hippo/MST信号通路在癌症中的作用,PD1/ PDL1(程序性死亡1)/(程序性死亡配体1)通路在卵巢癌中的作用,以及替塞莫泰疗法在NSCLC中的作用,PI3K/ AKT/mTOR信号通路在T2DM治疗中的作用和自噬作用。随着免疫代谢科学研究的发展,利用创新策略进行免疫控制具有优势。肿瘤细胞的繁殖代谢适应性有助于产生一个氟化的肿瘤微环境(TME),在这种环境中,免疫细胞的早期杀伤能力会被完全消除,尽管已经产生了免疫检查点治疗方法,但这一直是一个悬而未决的难题。近十年来,关于肿瘤免疫代谢的研究层出不穷。免疫代谢的产生可能会促进抗肿瘤免疫疗法的形成,而这种抗肿瘤免疫疗法来自于新陈代谢和免疫之间的持续串扰。在这里,我们的研究重点是每种关键信号通路的关键靶点,ii)存在于上游和下游信号传导中的分子以及受其调控的细胞消亡,并进一步描述了已被证明具有重要控制作用的免疫代谢检查点。因此,这本书的理念是提供有关免疫代谢背景下分子信号传导的必要知识以及肿瘤学研究中的靶向方法,并强调这一领域指导肿瘤治疗进步的方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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