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Integrated Analysis of Metabolomics and Lipidomics in Plasma of T2DM Patients with Diabetic Retinopathy

Chun Ding, Nan Wang, Zicong Wang, Wenyun Yue, Bingyan Li, Jun Zeng, Shigeo Yoshida, Yan Yang, Yedi Zhou

2022Pharmaceutics23 citationsDOIOpen Access PDF

Abstract

Diabetic retinopathy (DR) is a major cause of blindness worldwide and may be non-proliferative (NPDR) or proliferative (PDR). To investigate the metabolomic and lipidomic characteristics of plasma in DR patients, plasma samples were collected from patients with type 2 diabetes mellitus (DR group) with PDR (n = 27), NPDR (n = 18), or no retinopathy (controls, n = 21). Levels of 54 and 41 metabolites were significantly altered in the plasma of DR patients under positive and negative ion modes, respectively. By subgroup analysis, 74 and 29 significantly changed plasma metabolites were detected in PDR patients compared with NPDR patients under positive and negative ion modes, respectively. KEGG analysis indicated that pathways such as biosynthesis of amino acids and neuroactive ligand-receptor interaction were among the most enriched pathways in altered metabolites in the DR group and PDR subgroup. Moreover, a total of 26 and 41 lipids were significantly changed in the DR group and the PDR subgroup, respectively. The panel using the 29-item index could discriminate effectively between diabetic patients with and without retinopathy, and the panel of 22 items showed effective discrimination between PDR and NPDR. These results provide a basis for further research into the therapeutic targets associated with these metabolite and lipid alterations.

Topics & Concepts

Diabetic retinopathyLipidomicsMetabolomicsKEGGType 2 diabetesMetaboliteDiabetes mellitusMedicineType 2 Diabetes MellitusInternal medicineSubgroup analysisRetinopathyBlindnessPharmacologyEndocrinologyChemistryBioinformaticsBiologyBiochemistryConfidence intervalGeneTranscriptomeGene expressionOptometryRetinal Diseases and TreatmentsRetinoids in leukemia and cellular processesRetinal Imaging and Analysis
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