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癌症治疗诱导衰老细胞的营养生态位

Nutritional Niches of Cancer Therapy-Induced Senescent Cells.

机构信息

Girona Biomedical Research Institute, 17190 Girona, Spain.

Metabolism and Cancer Group, Program Against Cancer Therapeutic Resistance (ProCURE), Catalan Institute of Oncology, 17005 Girona, Spain.

出版信息

Nutrients. 2022 Sep 2;14(17):3636. doi: 10.3390/nu14173636.

Abstract

Therapy-induced senescence (TIS) is a state of stable proliferative arrest of both normal and neoplastic cells that is triggered by exposure to anticancer treatments. TIS cells acquire a senescence-associated secretory phenotype (SASP), which is pro-inflammatory and actively promotes tumor relapse and adverse side-effects in patients. Here, we hypothesized that TIS cells adapt their scavenging and catabolic ability to overcome the nutritional constraints in their microenvironmental niches. We used a panel of mechanistically-diverse TIS triggers (i.e., bleomycin, doxorubicin, alisertib, and palbociclib) and Biolog Phenotype MicroArrays to identify (among 190 different carbon and nitrogen sources) candidate metabolites that support the survival of TIS cells in limiting nutrient conditions. We provide evidence of distinguishable TIS-associated nutrient consumption profiles involving a core set of shared (e.g., glutamine) and unique (e.g., glucose-1-phosphate, inosine, and uridine) nutritional sources after diverse senescence-inducing interventions. We also observed a trend for an inverse correlation between the intensity of the pro-inflammatory SASP provoked by different TIS agents and diversity of compensatory nutritional niches utilizable by senescent cells. These findings support the detailed exploration of the nutritional niche as a new metabolic dimension to understand and target TIS in cancer.

摘要

治疗诱导的衰老(TIS)是一种正常和肿瘤细胞的稳定增殖停滞状态,由暴露于抗癌治疗引发。TIS 细胞获得衰老相关分泌表型(SASP),具有促炎作用,并积极促进肿瘤复发和患者的不良反应。在这里,我们假设 TIS 细胞适应其清除和分解能力,以克服其微环境小生境中的营养限制。我们使用了一组机制不同的 TIS 触发剂(即博来霉素、多柔比星、alisertib 和 palbociclib)和 Biolog 表型微阵列,以确定(在 190 种不同的碳和氮源中)候选代谢物,这些代谢物可在有限的营养条件下支持 TIS 细胞的存活。我们提供了有区别的 TIS 相关营养消耗谱的证据,涉及一组共享的核心(例如谷氨酰胺)和独特的(例如葡萄糖-1-磷酸、肌苷和尿苷)营养来源,这些来源涉及多种衰老诱导干预后。我们还观察到,不同 TIS 剂引发的促炎 SASP 的强度与衰老细胞可利用的补偿性营养小生境的多样性之间存在反向相关性的趋势。这些发现支持将营养小生境作为一个新的代谢维度来详细探索,以理解和靶向癌症中的 TIS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26bd/9460569/db18847a3c6d/nutrients-14-03636-g001.jpg

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