免疫衰老
生物
免疫系统
返老还童
免疫学
免疫抑制
重编程
炎症
病态的
自身免疫
生物信息学
免疫
干细胞
神经科学
再生医学
医学
淋巴细胞亚群
衰老
移植
表型
自噬
作者
Yaoli Hou,Zhiying Zeng,Sheng He,Lili He,Kun Liu,Wen Tang,Deming Wang,Jing Gui,Y Wang,Liu W,Ren Jing
标识
DOI:10.1093/gerona/glag108
摘要
Immunosenescence-the age-related decline of immune function-drives a state of chronic, sterile inflammation termed inflammaging. Far from passive deterioration, this process is actively orchestrated by distinct but interconnected hallmarks: erosion of lymphoid organs, myeloid-biased hematopoiesis, accumulation of immune-evasive senescent cells, and metabolic-epigenetic reprogramming that locks cells into dysfunctional states. These core nodes form a self-perpetuating cycle that propagates pathology across multiple organ systems, fueling neurodegeneration, cancer, musculoskeletal decline, and gut dysbiosis. Critically, the field has transitioned from descriptive phenomenology to mechanism-based intervention. This review synthesizes emerging therapeutic strategies targeting specific nodes of the immunosenescence network. We examine senotherapeutics that sensitize senescent cells for immune clearance, HSC and thymic rejuvenation to restore lymphocyte production, and metabolic-epigenetic interventions to correct intracellular deficits. By integrating these insights, we propose a precision medicine framework that moves beyond broad immunosuppression toward rational combinatorial regimens. This roadmap aims to decouple protective immunity from pathological drivers, extending healthspan and redefining the paradigm of geriatric care.
科研通智能强力驱动
Strongly Powered by AbleSci AI