Circulating Small Extracellular Vesicles Involved in Systemic Regulation Respond to RGC Degeneration in Glaucoma

Author:

Li Tong1,Zhang Wen‐Meng1,Wang Jie1,Liu Bai‐Jing1,Gao Qiao1,Zhang Jing1,Qian Hai‐Dong1,Pan Jun‐Yi1,Liu Ming1,Huang Qing1,Fang Ai‐Wu2,Zhang Qi2,Gong Xian‐Hui2,Cui Ren‐Zhe3,Liang Yuan‐Bo12,Lu Qin‐Kang4,Wu Wen‐Can12,Chi Zai‐Long12ORCID

Affiliation:

1. State Key Laboratory of Ophthalmology Optometry and Visual Science Eye Hospital of Wenzhou Medical University Wenzhou 325027 China

2. National Clinical Research Center for Ocular Diseases Eye Hospital of Wenzhou Medical University Wenzhou 325027 China

3. Department of Ophthalmology Affiliated Hospital of Yanbian University Yanji 136200 China

4. Department of Ophthalmology Yinzhou People's Hospital Medical School of Ningbo University Ningbo 315040 China

Abstract

AbstractGlaucoma is a leading cause of irreversible blindness worldwide and is characterized by progressive retinal ganglion cell (RGC) degeneration and vision loss. Since irreversible neurodegeneration occurs before diagnosable, early diagnosis and effective neuroprotection are critical for glaucoma management. Small extracellular vesicles (sEVs) are demonstrated to be potential novel biomarkers and therapeutics for a variety of diseases. In this study, it is found that intravitreal injection of circulating plasma‐derived sEVs (PDEV) from glaucoma patients ameliorated retinal degeneration in chronic ocular hypertension (COH) mice. Moreover, it is found that PDEV‐miR‐29s are significantly upregulated in glaucoma patients and are associated with visual field defects in progressed glaucoma. Subsequently, in vivo and in vitro experiments are conducted to investigate the possible function of miR‐29s in RGC pathophysiology. It is showed that the overexpression of miR‐29b‐3p effectively prevents RGC degeneration in COH mice and promotes the neuronal differentiation of human induced pluripotent stem cells (hiPSCs). Interestingly, engineered sEVs with sufficient miR‐29b‐3p delivery exhibit more effective RGC protection and neuronal differentiation efficiency. Thus, elevated PDEV‐miR‐29s may imply systemic regulation to prevent RGC degeneration in glaucoma patients. This study provides new insights into PDEV‐based glaucoma diagnosis and therapeutic strategies for neurodegenerative diseases.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

National Key Research and Development Program of China

Science and Technology Innovation 2025 Major Project of Ningbo

Publisher

Wiley

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