PO.TB10.05 · 肿瘤生物学
衰老通过MT1G/NF-κB/SPARC信号减弱肺癌脑转移
Aging attenuates brain metastasis in lung cancer through the MT1G/NF-κB/SPARC signaling
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
衰老是癌症的一个主要风险因素,在大多数癌症类型中,发病率和死亡率随年龄显著增加。随着全球60岁以上人口预计到2050年从12%上升至22%,理解衰老与癌症之间的关系至关重要。衰老和癌症共享若干标志——包括累积的遗传损伤、免疫衰老、营养感应改变和慢性低度炎症。这种重叠意味着年龄相关的生物学变化不仅可能与癌症发病率增加相关,还可能影响肿瘤进展和转移。尽管有这一先入为主的观念,基于人群的流行病学研究揭示了衰老与肺癌脑转移发生率之间的负相关,其分子机制尚不明确。在此,基于对SEER基于人群的癌症登记数据的分析,我们表明与较年轻患者或来自其他癌症脑转移的患者相比,衰老肺癌患者的脑转移发生率显著更低。机制上,衰老激活脑内反应性星形胶质细胞中的MT1G/NF-κB信号,导致A1型反应性星形胶质细胞SPARC分泌增加,后者通过抑制肿瘤细胞中的ITGB1信号来抑制肿瘤生长,从而限制脑定植。值得注意的是,使用脂质体包裹的SPARC肽靶向ITGB1可有效抑制脑肿瘤生长和转移,支持其肿瘤抑制作用。这些发现揭示了一种年龄相关的保护机制,并为开发靶向疗法以预防或治疗较年轻肺癌患者的脑转移提供了有力依据。
查看英文原文 English abstract
Aging is a major risk factor for cancer, with incidence and mortality increasing significantly with age across most cancer types. With the global population aged over 60 projected to rise from 12-22 percent by 2050, understanding the relationship between aging and cancer is critically important. Aging and cancer share several hallmarks-including cumulative genetic damage, immune senescence, altered nutrient sensing, and chronic low-grade inflammation. This overlap implies that age-related biological changes may not only correlate with increased cancer incidence but also influence tumor progression and metastasis. Despite this preconceived notion, population-based epidemiological studies have revealed an inverse association between aging and brain metastasis incidence in lung cancer, with unclear molecular mechanism(s). Here, we show a significantly lower incidence of brain metastasis in aged lung cancer patients compared to younger patients or those with brain metastasis from other cancers, based on analysis of the SEER population-based cancer registry. Mechanistically, aging activates MT1G/NFκB signaling in reactive astrocytes within the brain, leading to increased secretion of SPARC from A1 type reactive astrocytes, which suppresses tumor growth by inhibiting ITGB1 signaling in tumor cells, thereby limiting brain colonization. Notably, therapeutic targeting of ITGB1 using liposome-encapsulated SPARC peptide effectively suppresses brain tumor growth and metastasis, supporting its tumor-suppressive role. These findings uncover an age-associated protective mechanism and provide a compelling rationale for developing targeted therapies to prevent or treat brain metastasis in younger lung cancer patients.
利益披露 Disclosure
A. Tyagi, None..
S. Wu, None..
J. W. Kim, None..
K. Wu, None..
R. Deshpande, None.