Effects of Castanopsis echinocarpa on Sensorineural Hearing Loss via Neuronal Gene Regulation

Author:

Rodriguez Isabel1ORCID,Nam Youn Hee2,Shin Sung Woo1,Seo Gyeong Jin1ORCID,Kim Na Woo2,Nuankaew Wanlapa1ORCID,Kim Do Hoon1ORCID,Park Yu Hwa1ORCID,Lee Hwa Yeon1,Peng Xi Hui3,Hong Bin Na2,Kang Tong Ho1ORCID

Affiliation:

1. Department of Oriental Medicine Biotechnology, Graduate School of Biotechnology, Kyung Hee University, Global Campus, Yongin 17104, Republic of Korea

2. Invivotec Co., Ltd., Seongnam 13449, Republic of Korea

3. Department of Garden, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun 666303, China

Abstract

Sensorineural hearing loss (SNHL), characterized by damage to the inner ear or auditory nerve, is a prevalent auditory disorder. This study explores the potential of Castanopsis echinocarpa (CAE) as a therapeutic agent for SNHL. In vivo experiments were conducted using zebrafish and mouse models. Zebrafish with neomycin-induced ototoxicity were treated with CAE, resulting in otic hair cell protection with an EC50 of 0.49 µg/mL and a therapeutic index of 1020. CAE treatment improved auditory function and protected cochlear sensory cells in a mouse model after noise-induced hearing loss (NIHL). RNA sequencing of NIHL mouse cochleae revealed that CAE up-regulates genes involved in neurotransmitter synthesis, secretion, transport, and neuronal survival. Real-time qPCR validation showed that NIHL decreased the mRNA expression of genes related to neuronal function, such as Gabra1, Gad1, Slc32a1, CaMK2b, CaMKIV, and Slc17a7, while the CAE treatment significantly elevated these levels. In conclusion, our findings provide strong evidence that CAE protects against hearing loss by promoting sensory cell protection and enhancing the expression of genes critical for neuronal function and survival.

Funder

Ministry of SMEs and Startups

Publisher

MDPI AG

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