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May 14, 2026mSphere0 citationsOpen Access

Association between ocular surface microbiota species and type 2 diabetes mellitus with or without retinopathy and related clinical parameters

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YWYì WángNZNa ZhangJLJ Li

Key Points

  • This research aims to explore the relationship between ocular surface microbiota species and type 2 diabetes, with and without retinopathy, as well as their clinical implications.
  • Analyzed ocular surface microbiota species profiles in relation to diabetes and retinopathy.
  • Investigated correlations with clinical parameters like glycosylated hemoglobin A1c.
  • Explored potential for using microbiota as noninvasive diagnostic biomarkers.
  • Altered ocular surface microbiota profiles were significantly linked to diabetes and retinopathy.
  • Strong correlation with glycosylated hemoglobin A1c levels (p-value stated).
  • Identification of microbial species that may aid in noninvasive diagnostic methods for diabetes-related complications.

Abstract

being the most positively correlated with glycosylated hemoglobin A1c. Our current study revealed substantially altered OSM species profiles associated with DM/DR, suggesting a potential role for OSM species and providing new insights into the clinical correlation and diagnostic value of OSM. IMPORTANCE: . These microbial changes are linked to glycemic control, kidney function, and systemic inflammation, connecting local ocular microbiota to systemic microvascular damage. The study also highlights OSM species with strong diagnostic potential for DM and DR, indicating that noninvasive, microbiota-based biomarkers could supplement existing imaging-based screening. Overall, these findings deepen the understanding of host-microbiota interactions in diabetes and retinopathy and support future research into mechanisms, longitudinal effects, and microbiota-targeted therapies to prevent or reduce vision-threatening diabetic complications.

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Cite This Study

Wáng et al. (2026) studied this question.

synapsesocial.com/papers/6a0567bca550a87e60a1ff31https://doi.org/10.1128/msphere.00003-26
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