Welcome to Chinese Journal of Clinical Pharmacology and Therapeutics,Today is Chinese

Chinese Journal of Clinical Pharmacology and Therapeutics ›› 2026, Vol. 31 ›› Issue (8): 1016-1026.doi: 10.12092/j.issn.1009-2501.2026.08.002

Previous Articles    

Experimental study on the inhibition of cholesterol gallstone formation by HDCA, the active component of Pulvis Fellis Suis, through regulation of intestinal bile acid metabolism

Yingyang SU1,2(), Yan DENG1, Xingyu LIU2, Yuzhen DU2, Min NING2, Shan WU2, Kaiyue WU2,*(), Shuang SHEN2,3,*()   

  1. 1. College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China
    2. Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai 201306, China
    3. Shanghai University of Medicine & Health Sciences Affiliated Sixth People,s Hospital, Shanghai 201306, China
  • Received:2025-08-26 Revised:2025-10-24 Online:2026-08-26 Published:2026-09-09
  • Contact: Kaiyue WU,Shuang SHEN E-mail:17332515661@163.com;fuyou_1995@163.com;shuangshen.no.1@163.com

Abstract:

AIM: To explore how hyodeoxycholic acid (HDCA) regulates intestinal bile acid metabolism and thereby modulates the activity of farnesoid X receptor (FXR) to inhibit the formation of cholesterol gallstones. METHODS: The C57BL/6J mice were randomly divided into a control group, a cholesterol gallstone model group, and a Pulvis fellis suis (PFS) (7%, 10%) administration intervention group (6 mice in each group). The C57BL/6J mice were also randomly divided into a control group, a cholesterol gallstone model group, and HDCA (0.1%, 0.5%, 1%) administration intervention groups (6 mice in each group). The mice in each group were weighed, photographed, and tissue samples were collected for gallstone grade assessment. The total cholesterol (T-CHO) content in the samples was detected using a total cholesterol detection kit and a microplate reader. In the in vitro cell experiments, the direct regulatory effect of HDCA on FXR in intestinal cells was analyzed by quantitative polymerase chain reaction (qPCR). The differences in fecal microbiota among the groups were detected using 16S ribosomal RNA (16S rRNA) sequencing technology. The changes in the bile acid pool in the ileum tissue were determined by liquid chromatography-mass spectrometry (LC-MS/MS). RESULTS: Compared with the model group, both the 10% PFS and 1% HDCA intervention groups significantly reduced the grade of cholesterol gallstones in the gallbladder and the serum cholesterol content of mice (P<0.01), and the 1% HDCA group significantly decreased the ratio of liver weight to body weight and the cholesterol content in the liver of mice (P<0.01); in the in vitro experiments, HDCA significantly reduced the relative expression level of FXR in intestinal cells Caco-2 (P<0.05, P<0.01); HDCA significantly reduced the content of the Verrucomicrobiota (which was significantly positively correlated with activated FXR-type bile acids) (P<0.05) and significantly increased the content of the Bacteroidota (which was significantly negatively correlated with activated FXR-type bile acids) (P<0.01). Moreover, HDCA significantly changed the composition of intestinal bile acids, reducing the proportion of activated FXR-type bile acids and increasing the proportion of inhibitory FXR-type bile acids (P<0.05). CONCLUSION: HDCA may increase the inhibition of FXR-type bile acids by regulating the intestinal flora, thereby indirectly exerting the effect of inhibiting intestinal FXR, promoting bile acid synthesis and reducing cholesterol saturation, and achieving the goal of inhibiting the formation of cholesterol gallstones.

Key words: hyodeoxycholic acid, Pulvis Fellis Suis, farnesoid X receptor, bile acids, cholesterol gallstones

CLC Number: