Kayla F Goliwas, Jessy S Deshane, Craig A Elmets, Mohammad Athar
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(Riera-Domingo C, Audige A, Granja S, Cheng WC, Ho PC, Baltazar F, Stockmann C, Mazzone, M. <i>Physiol Rev</i> 100: 1-102, 2020) describe the immune landscape within the TME and highlight the significance of metabolic and hypoxic signatures that impact immune function and response to immunotherapy strategies. Current literature in this field confirms that targeting tumor metabolism and the acidic microenvironment commonly associated with tumors may present viable strategies to modulate the host immune system in favor of response to immune targeted therapies. However, development of better tools to understand tumor-immune interactions and identify mechanisms driving nonresponders, more innovative clinical trial design, and new therapies will need to be identified to move the field forward. 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引用次数: 34
摘要
宿主免疫系统决定了肿瘤发展的命运。因此,操纵患者的免疫系统来激活针对癌症发病机制的宿主免疫反应是开发有效的转移性和耐药癌症治疗干预措施的一种有希望的策略。了解肿瘤微环境(TME)中导致异质性和代谢可塑性的动态机制对于提高患者对免疫靶向治疗的反应性至关重要。Riera-Domingo等人(Riera-Domingo C, Audige A, Granja S, Cheng WC, Ho PC, Baltazar F, Stockmann C, Mazzone, M.生理杂志,2020)描述了TME内的免疫景观,并强调了影响免疫功能和免疫治疗策略反应的代谢和缺氧特征的重要性。目前该领域的文献证实,靶向肿瘤代谢和通常与肿瘤相关的酸性微环境可能是调节宿主免疫系统的可行策略,有利于免疫靶向治疗的反应。然而,需要开发更好的工具来了解肿瘤免疫相互作用并确定驱动无反应的机制,需要更多创新的临床试验设计和新的治疗方法来推动该领域的发展。结合基于代谢和微生物组的基因特征来影响治疗反应的个性化免疫疗法和产生免疫“热”肿瘤的新方法是目前免疫治疗的前沿。这些方法与临床批准的免疫疗法的结合将是有价值的。
The host immune system shapes the fate of tumor progression. Hence, manipulating patients' immune system to activate host immune responses against cancer pathogenesis is a promising strategy to develop effective therapeutic interventions for metastatic and drug-resistant cancers. Understanding the dynamic mechanisms within the tumor microenvironment (TME) that contribute to heterogeneity and metabolic plasticity is essential to enhance the patients' responsiveness to immune targeted therapies. Riera-Domingo et al. (Riera-Domingo C, Audige A, Granja S, Cheng WC, Ho PC, Baltazar F, Stockmann C, Mazzone, M. Physiol Rev 100: 1-102, 2020) describe the immune landscape within the TME and highlight the significance of metabolic and hypoxic signatures that impact immune function and response to immunotherapy strategies. Current literature in this field confirms that targeting tumor metabolism and the acidic microenvironment commonly associated with tumors may present viable strategies to modulate the host immune system in favor of response to immune targeted therapies. However, development of better tools to understand tumor-immune interactions and identify mechanisms driving nonresponders, more innovative clinical trial design, and new therapies will need to be identified to move the field forward. Personalized immune therapies incorporating metabolic and microbiome-based gene signatures to influence the therapeutic response and novel methods to generate immunologically "hot" tumors are at the forefront of immunotherapy currently. The combination of these approaches with clinically approved immunotherapies will be valuable moving forward.
期刊介绍:
Physiological Reviews is a highly regarded journal that covers timely issues in physiological and biomedical sciences. It is targeted towards physiologists, neuroscientists, cell biologists, biophysicists, and clinicians with a special interest in pathophysiology. The journal has an ISSN of 0031-9333 for print and 1522-1210 for online versions. It has a unique publishing frequency where articles are published individually, but regular quarterly issues are also released in January, April, July, and October. The articles in this journal provide state-of-the-art and comprehensive coverage of various topics. They are valuable for teaching and research purposes as they offer interesting and clearly written updates on important new developments. Physiological Reviews holds a prominent position in the scientific community and consistently ranks as the most impactful journal in the field of physiology.