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WY
Verified CAS / Academic Author2 Decoded Studies

Prof. WANG Yixuan

Gansu University of Chinese Medicine

Research Publications & English Decoded Briefs

Showing 2 publications
Acta Biochimica et Biophysica Sinica2026DOI: 10.3724/abbs.2025121

Carfilzomib triggers cardiotoxicity by suppressing SENP1-mediated deSUMOylation of DDX17

Carfilzomib (Cfz) is a second-generation proteasome inhibitor approved for the treatment of relapsed/refractory multiple myeloma (RRMM). Previous studies have shown that Cfz is associated with a higher incidence of severe adverse cardiac effects than bortezomib (Btz); however, the underlying mechanisms remain to be elucidated. The aim of this study is to identify key regulators of cardiotoxicity induced by Cfz and to investigate the mechanisms by which these factors exert their effects. We establish a mouse model of cardiac toxicity induced by Cfz and confirm the phenotype through cardiac functional analysis, morphology assessment, myocardial fibrosis, and apoptosis analysis. We subsequently perform RNA sequencing to identify differentially expressed genes (DEGs) and further validate their functions and mechanisms. We find that Cfz induces myocardial hypertrophy and myocardial injury, along with the suppression of SENP1 expression in mouse heart tissues and in vitro cultured neonatal rat cardiomyocytes. Suppression of SENP1 exacerbates Cfz-induced injury and remodeling in cardiomyocytes by directly binding to and deconjugating the SUMO1-mediated SUMOylation of the RNA helicase DDX17. This process leads to a reduction in K-48 ubiquitin-linked polyubiquitination and degradation of DDX17, resulting in increased expressions of anti-apoptotic genes and maintenance of mitochondrial homeostasis. Therefore, the overexpression of SENP1 using AAV vectors alleviates Cfz-induced cardiotoxicity in mice. In summary, our findings reveal a previously unknown role of the SENP1-DDX17 axis in protecting against cardiotoxicity induced by Cfz, providing a potential foundation for developing therapeutic strategies to mitigate cardiac side effects in the clinical management of MM patients.

Chinese Traditional and Herbal Drugs2026DOI: 10.7501/j.issn.0253-2670.2026.16.20261633

Research Progress on the Role of Gut Microbiota–Intestinal Barrier Interaction in Ulcerative Colitis and Traditional Chinese Medicine Intervention

Ulcerative colitis (UC) is a chronic, non-specific inflammatory bowel disease with a continuously rising global incidence; an estimated 5 million cases were recorded worldwide in 2023, with emerging industrialized nations such as China showing the most pronounced increases. The core pathophysiological driver of UC's recurrent and refractory nature is a self-reinforcing vicious cycle between gut microbiota dysbiosis and intestinal barrier dysfunction. Reduced microbial diversity, depletion of beneficial taxa, and expansion of pathogenic bacteria disrupt short-chain fatty acid (SCFA) and tryptophan metabolism, impair the mucus layer, downregulate tight junction (TJ) proteins, and compromise immune barrier integrity, thereby exacerbating mucosal inflammation. Conventional therapies—aminosalicylates, glucocorticoids, immunosuppressants, and biologics—frequently fail to achieve durable remission and impose substantial economic burden. Traditional Chinese medicine (TCM), guided by the 'turbidity-toxin' theory, intervenes through multi-component, multi-target mechanisms: reshaping gut microbial composition, enhancing beneficial metabolite production, and upregulating TJ protein expression. This review systematically synthesizes the gut microbiota–barrier interaction in UC and the theoretical and modern biological mechanisms of TCM intervention, providing a theoretical reference for optimizing clinical strategies and highlighting the potential of TCM in UC management.