Caffeine Ameliorates Age-Related Hearing Loss by Downregulating the Inflammatory Pathway in Mice

Author:

Zhang Xiaolin1,Cao Ruijuan1,Li Changye1,Zhao Hongchun1,Zhang Ruyi1,Che Juan1,Xie Jinwen2,Tang Na2,Wang Yanfei1,Liu Xiuzhen3,Zheng Qingyin4

Affiliation:

1. Department of Otolaryngology/Head and Neck Surgery, Institute of Otolaryngology, Binzhou Medical University Hospital, Binzhou, China

2. Shandong Binzhou Animal science and veterinary Medicine Academy, Binzhou, China

3. Department of Clinical Laboratory, Binzhou Medical University Hospital, Binzhou, China

4. Department of Otolaryngology-HNS, Case Western Reserve University, Cleveland, Ohio

Abstract

Objective Age-related hearing loss (ARHL), also known as presbycusis, is a debilitating sensory impairment that affects the elderly population. There is currently no ideal treatment for ARHL. Long-term caffeine intake was reported to have anti-aging effects in many diseases. This study is to identify whether caffeine could ameliorate ARHL in mice and analyze its mechanism. Methods Caffeine was administered in drinking water to C57BL/6J mice from the age of 3 months to 12 months. The body weight, food intake and water intake of the mice were monitored during the experiment. The metabolic indicators of serum were detected by ELISA. The function of the hearing system was evaluated by ABR and hematoxylin and eosin staining of the cochlea. Genes' expression were detected by Q-PCR, immunofluorescencee and Western blot. Results The results showed that the ARHL mice exhibited impaired hearing and cochlear tissue compared with the young mice. However, the caffeine-treated ARHL mice showed improved hearing and cochlear tissue morphology. The expression of inflammation-related genes, such as TLR4, Myd88, NF-κB, and IL-1β, was significantly increased in the cochleae of ARHL mice compared with young mice but was down-regulated in the caffeine-treated cochleae. Conclusions Inflammation is involved in ARHL of mice, and long-term caffeine supplementation could ameliorate ARHL through the down-regulation of the TLR4/NF-κB inflammation pathway. Our findings provide a new idea for preventing ARHL and suggest new drug targets for ARHL treatment.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Reference60 articles.

1. The effects of age-related hearing loss on the brain and cognitive function;Trends Neurosci,2020

2. Chronic inflammation—Inflammaging—in the ageing cochlea: a novel target for future presbycusis therapy;Agng research reviews,2017

3. Chronic inflammation (inflammaging) and its potential contribution to age-associated diseases;Journals of Gerontology,2014

4. Shared principles in NF-kappaB signaling;Cell,2008

5. Toll-like receptor signaling pathways;Front Immunol,2014

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