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Updated: Jan 23, 2026

Mapping Dysfunctional Protein-Protein Interactions in Disease
Published on: October 24, 2025
Suo Quan Wan Protects Mouse From Early Diabetic Bladder Dysfunction by Mediating Motor Protein Myosin Va and
Jing Wang1, Da-Wei Lian1, Xu-Feng Yang1
1Department of Pharmacology of Chinese Medicine, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, China.
Abstract:
Objective: To investigate the effects of Suo Quan Wan (SQW), a traditional Chinese herbal formula, on the overactive bladder (OAB) of type 2 diabetes mellitus (T2DM) mouse models, particularly on its function of mediating the gene and protein expression levels of myosin Va and SLC17A9. Materials and Methods: After 4 weeks high-fat diet (HFD) feeding, C57BL/6J mice were injected with streptozotocin (100 mg/kg) for four times. After 3 weeks, the diabetic mice were treated with SQW for another 3 weeks. Voided stain on paper assay, fasting blood glucose (FBG) test, and oral glucose tolerance test (OGTT) were conducted. Urodynamic test, tension test [α,β-methylene ATP, electrical-field stimulation (EFS), KCl, and carbachol] and histomorphometry were also performed. Western blot analysis and qPCR assays were used to quantify the expression levels of myosin Va and SLC17A9. Results: The diabetic mice exhibited decreased weight but increased water intake, urine production, FBG, and OGTT. No significant changes were observed after 3 weeks SQW treatment. Urodynamic test indicated that the non-voiding contraction (NVC) frequency, maximum bladder capacity (MBC), residual volume (RV), and bladder compliance (BC) were remarkably increased in the diabetic mice, whereas the voided efficiency (VE) was decreased as a feature of overactivity. Compared with the model mice, SQW treatment significantly improved urodynamic urination with decreased NVC, MBC, RV, and BC, and increased VE. Histomorphometry results showed that the bladder wall of the diabetic mice thickened, and SQW effectively attenuated the pathological alterations. The contract responses of bladder strips to all stimulators were higher in the DSM strips of diabetic mice, whereas SQW treatment markedly decreased the contraction response for all stimuli. Moreover, the protein and gene expression levels of myosin Va and SLC17A9 were up-regulated in the bladders of diabetic mice, but SQW treatment restored such alterations. Conclusion: T2DM mice exhibited the early phase of diabetic bladder dysfunction (DBD) characterized by OAB and bladder dysfunction. SQW can improve the bladder storage and micturition of DBD mice by mediating the protein and gene expression levels of myosin Va and SLC17A9 in the bladder, instead of improving the blood glucose level.
Insights
Suo Quan Wan (SQW) improves overactive bladder symptoms in type 2 diabetes mellitus (T2DM) mice by regulating myosin Va and SLC17A9 expression, not by affecting blood glucose levels.
Area of Science:
- Pharmacology
- Urology
- Endocrinology
Background:
- Type 2 diabetes mellitus (T2DM) can lead to diabetic bladder dysfunction (DBD), characterized by overactive bladder (OAB).
- The precise molecular mechanisms underlying OAB in T2DM remain incompletely understood.
- Investigating therapeutic interventions for DBD is crucial for managing diabetes complications.
Purpose of the Study:
- To evaluate the efficacy of Suo Quan Wan (SQW), a traditional Chinese herbal formula, in treating OAB in T2DM mouse models.
- To explore the role of SQW in modulating the gene and protein expression of myosin Va and SLC17A9 in the bladder.
Main Methods:
- T2DM mouse models were established using a high-fat diet and streptozotocin injection.
- Mice were treated with SQW, followed by assessments including urodynamic tests, tension tests, histomorphometry, Western blot, and qPCR.
- Key parameters evaluated included bladder function, contractility, and the expression levels of myosin Va and SLC17A9.
Main Results:
- T2DM mice displayed OAB symptoms, including increased non-voiding contractions and bladder capacity, alongside bladder wall thickening.
- SQW treatment significantly improved bladder function, reduced bladder contractility, and attenuated histopathological changes.
- SQW normalized the elevated gene and protein expression of myosin Va and SLC17A9 in the bladders of T2DM mice.
Conclusions:
- T2DM mice exhibit early-stage DBD with OAB and bladder dysfunction.
- SQW effectively ameliorates bladder storage and micturition in DBD mice.
- SQW exerts its therapeutic effects by modulating myosin Va and SLC17A9 expression in the bladder, independent of glycemic control.
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