1.Efficacy and Mechanism of Shenling Qushi Prescription in Treatment of Hyperuricaemia Mice
Xuan LIU ; Jialu QUE ; Caixia PANG ; Shuhui TAN ; Luyu CHEN ; Yihuan LI ; Xiaofeng LIN ; Qi LIANG ; Cuiling LIU
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(19):197-206
ObjectiveTo investigate the urate-lowering effect of Shenling Qushi prescription in the mouse model of hyperuricaemia. MethodsSixty-three C57BL/6N mice were randomly assigned to the following groups (n=9): Control, model, low-dose (6 g·kg-1) Shenling Qushi prescription, medium-dose (12 g·kg-1) Shenling Qushi prescription, high-dose (24 g·kg-1) Shenling Qushi prescription, medium-dose Shenling Qushi prescription plus febuxostat (12+0.003 g·kg-1), and febuxostat (3 mg·kg-1). A mouse model of persistent hyperuricaemia was established via intraperitoneal injection of potassium oxazolamide (250 mg·kg-1) combined with oral administration of allopurinol (300 mg·kg-1) over a 28-day period. Concurrently, the prescription was administered orally at the specified doses once daily for 21 consecutive days. Throughout the experiment, mouse body weight, food intake, water consumption, and urine output were measured and recorded. Kidney and liver indices were calculated. Renal histopathological changes were observed by haematoxylin and eosin staining. Serum uric acid (SUA) and urinary uric acid (UUA) levels, along with xanthine oxidase (XOD) and adenosine deaminase (ADA), alanine aminotransferase (ALT) and aspartate aminotransferase (AST) activities, were determined. Real-time PCR was employed to assess the mRNA levels of urate anion transporter 1 (URAT1) and glucose transporter 9 (GLUT9) in the renal tissue, alongside those of XOD and ADA in the liver tissue. The protein levels of URAT1 and GLUT9 in the renal tissue were determined by Western blot. ResultsCompared with the normal group, model mice exhibited reduced food intake and body weight (P<0.01), decreased water consumption yet increased urine output, no significant change in the liver index but increased kidney index (P<0.01). Pathological findings revealed renal tissue damage including glomerular atrophy, epithelial cell detachment, and inflammatory cell infiltration. Furthermore, the model group exhibited elevated UUA and SUA levels (P<0.01), enhanced activities of ALT, AST, XOD, and ADA in the liver tissue (P<0.05, P<0.01), upregulated mRNA and protein levels of URAT1 and GLUT9 in the renal tissue (P<0.05), alongside markedly elevated mRNA levels of XOD and ADA in the liver (P<0.01). Compared with the model group, the Shenling Qushi prescription groups showed no significant changes in body weight or food intake, with water consumption and urine output remaining within normal ranges, alleviated glomerular atrophy, with reduced pathological damage such as inflammatory infiltration, declined UUA and SUA levels (P<0.01), and increased activities of ALT, AST, XOD, and ADA in the serum (P<0.01). Real-time PCR results demonstrated that Shenling Qushi prescription downregulated the mRNA levels of URAT1 and GLUT9 in the renal tissue (P<0.05, P<0.01) and XOD and ADA in the hepatic tissue (P<0.05, P<0.01). Western blot results demonstrated Shenling Qushi prescription reduced the protein levels of URAT1 and GLUT9 (P<0.05, P<0.01). ConclusionShenling Qushi prescription modulates fluid balance and reduces uric acid levels, thereby alleviating renal injury in hyperuricaemic mice. This effect is highly likely mediated through inhibition of uric acid synthesis and reabsorption.
2.Effects of Gravitational Traction on Degenerative Disc of Rabbit
Demin TONG ; Jinfeng DENG ; Bolai CHEN ; Cuiling XUAN ; Ludi FU ; Diqing TAN
Chinese Journal of Rehabilitation Theory and Practice 2013;19(6):513-516
Objective To explore the effect of gravitational traction on height change of degenerative disc of New Zealand white rabbit.Methods In order to create intervertebral disc degeneration models, the right front side of the annulus fibrosus of lumbar vertebrae of rabbits were damaged by 16-gauge needle. After confirming the success of modeling, 20 animal models were randomized into 2 groups, 15 of which received a routine gravitational traction using a model of our own design, 30 min per day, for 8 weeks, while the control group received no treatment at all. Radiographic exam were performed in the 2nd, 4th, 6th and 8th week, after intervention and the disc height index percent (DHI%). Results Compared to the baseline, DHI% increased significantly 2 and 4 weeks after gravitational traction (P<0.05), and there was no further effect as the traction continued. However, compared to the control group, an improvement of DHI% was found on all the time points in the gravitational traction group (P<0.001). Conclusion Gravitational traction may delay and inhibit intervertebral disc degeneration by increasing height of degenerated disc of New Zealand white rabbit.


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