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Mechanistic Basis and Therapeutic Potential of a Novel TXNIP Inhibitor in Diabetes Treatment
Zhikuan Luo1,2, Jun Han1, Tao Zhong3
1State Key Laboratory of Natural Product Chemistry, School of Basic Medical Sciences and Department of Chemistry, Lanzhou University, Lanzhou730000, P.R.china.
Abstract:
Recently, inhibiting thioredoxin-interacting protein (TXNIP), a protein that plays critical roles in glucose metabolism, has emerged as a promising therapeutic strategy for diabetes. Through screening a compound library using a TXNIP reporter system, we identified an orally bioavailable small molecule (SKL-1223) that exhibits an excellent safety profile and potent glucose-lowering effects in streptozotocin-induced and db/db murine models. Notably, SKL-1223 promotes beta-cell formation and loss of alpha-cells in these disease models. Mechanistic studies indicate that SKL-1223 ameliorates hyperglycemia by directly modulating TXNIP transcription through attenuation of transcription factor binding. Compared with current therapies, SKL-1223 demonstrates improved efficacy in suppressing glucagon-mediated hepatic gluconeogenesis in diabetes treatment. Together, our findings not only identify a novel TXNIP inhibitor for controlling glucose production but also position SKL-1223 as a first-in-class therapeutic candidate addressing an unmet need in diabetes management.
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