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Updated: May 13, 2025

Inducement and Evaluation of a Murine Model of Experimental Myopia
Published on: January 22, 2019
The causal impact of gut microbiota and metabolites on myopia and pathological myopia: a mediation Mendelian
Jingwen Hui1,2,3, Kexin Tang1,2,3, Yuejun Zhou1,2,4
1Tianjin Eye Hospital, No.4 Gansu Road, Heping District, Tianjin, 300020, China.
Abstract:
Myopia, a major cause of irreversible visual impairment globally, is projected to affect about 25% of the world's population by 2025. Myopia progresses through childhood and adolescence, necessitating frequent prescription updates. While genetic and environmental factors are well-established contributors to myopia, emerging evidence suggests a significant role of the gut microbiota (GM) in its development, mainly through metabolic interactions. This study utilized a Mendelian Randomization (MR) approach to investigate the causal relationships between GM, metabolites, and myopia and pathological myopia (PM) progression. Using genetic variants as instrumental variables, we analyzed data from extensive genome-wide association studies (GWAS) to assess the impacts of 473 GM taxa and 233 metabolites on myopia risks. Our MR analysis identified specific GM taxa and metabolites with significant causal relationship to myopia and PM. Notably, lipid metabolites were found to mediate the effects of GM on myopia, suggesting a biochemical pathway that could influence ocular development and myopia progression. We also observed significant mediation effects, indicating that specific metabolites might serve as therapeutic targets to modulate myopia progression. The findings highlight the potential of GM and metabolites as novel targets for preventing or managing myopia. This study underscores the importance of further research into the gut-metabolite-eye axis to develop targeted interventions for myopia based on modifying the GM through diet, probiotics, or other means. Future studies should aim to elucidate the specific metabolites involved and their roles in ocular health, potentially offering new avenues for treatment.
Insights
Gut microbes and their metabolites play a causal role in myopia development. Lipid metabolites mediate this gut-eye axis, offering potential therapeutic targets for myopia progression.
Area of Science:
- Ophthalmology
- Microbiology
- Genetics
Background:
- Myopia is a leading cause of visual impairment, affecting a significant portion of the global population.
- While genetics and environment are known factors, the gut microbiota's role in myopia is an emerging area of research.
- Gut microbiota influences host physiology through metabolic interactions, potentially impacting ocular health.
Purpose of the Study:
- To investigate the causal relationships between gut microbiota, metabolites, and the risk of myopia and pathological myopia (PM) using a Mendelian Randomization (MR) approach.
- To identify specific gut microbial taxa and metabolites causally linked to myopia.
- To explore the mediating role of metabolites in the gut microbiota-myopia association.
Main Methods:
- Utilized a Mendelian Randomization (MR) approach with genetic variants as instrumental variables.
- Analyzed data from large-scale genome-wide association studies (GWAS) for 473 gut microbial taxa and 233 metabolites.
- Assessed causal impacts on myopia and pathological myopia (PM) risks.
Main Results:
- Identified specific gut microbial taxa and metabolites with a significant causal relationship to myopia and PM.
- Found that lipid metabolites mediate the effects of gut microbiota on myopia development.
- Observed significant mediation effects, suggesting metabolites as potential therapeutic targets.
Conclusions:
- Gut microbiota and specific metabolites are causally linked to myopia and pathological myopia (PM).
- Lipid metabolites mediate the gut microbiota's influence on myopia, highlighting the gut-metabolite-eye axis.
- Findings suggest novel therapeutic strategies for myopia prevention and management by targeting the gut microbiota.
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