DOI: 10.1111/acel.70732 ISSN: 1474-9718

Ghrelin Alleviates Aging‐Related Cognitive Impairment by Regulating Autophagy‐Related Signaling via the SHBG / JNK1 /Beclin1 Axis in Microglia

Lixing Zhou, Ying Cheng, Wanyu Zhao, Xuelian Sun, Fengjuan Hu, Meiling Ge, Yan Zhang, Gongchang Zhang, Birong Dong, Xiaolei Liu

ABSTRACT

Cognitive impairment (CI) associated with aging and immunosenescence is linked to metabolic alterations. Microglial senescence and dysregulated autophagy have been implicated as major contributors to this process, but the underlying metabolic regulators remain unclear. This study aimed to identify key metabolic regulators of CI and elucidate their underlying mechanisms. Human cohort analyses, older and D‐galactose (D‐gal)‐induced mouse models, and microglial cell models were integrated to investigate the metabolic regulation of CI. Clinical analyses identified ghrelin as the factor most strongly associated with CI. Older and D‐gal mice exhibited CI, microglial senescence, enhanced inflammation, and elevated ghrelin. Ghrelin treatment improved cognitive function, attenuated microglial senescence, and suppressed inflammation, whereas high‐dose ghrelin induced growth hormone secretagogue receptor (GHSR) desensitization. Sex hormone‐binding globulin (SHBG) showed mainly cytoplasmic localization, was identified as a potential mediator of ghrelin signaling in microglia, and its expression was downregulated following ghrelin treatment. Transcriptomic profiling revealed significant enrichment of autophagy‐related pathways in ghrelin‐treated microglia. Ghrelin altered autophagy‐related markers, as indicated by increased Beclin1 and LC3 and decreased p62. SHBG overexpression or JNK1 inhibition attenuated the ghrelin‐induced alterations in autophagy‐related markers and anti‐senescent effects, whereas Beclin1 overexpression partially rescued these inhibitory effects caused by SHBG overexpression. In conclusion, ghrelin alleviated aging‐related CI, with mechanistic evidence indicating that the modulation of microglial autophagy‐related mechanisms through the SHBG/JNK1/Beclin1 axis may contribute to its protective effects, thereby providing a potential therapeutic strategy for aging‐related CI.