Related Experiment Video
Updated: Jun 27, 2025

A Semi-Automated and Reproducible Biological-Based Method to Quantify Calcium Deposition In Vitro
Published on: June 2, 2022
Inhibition of vascular calcification by Compound Danshen Dripping Pill through multiple mechanisms
Yanfang Yang1, Liying Yuan1, Hui Xiong2
1College of Life Sciences, State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Bioactive Materials of Ministry of Education, Nankai University, Tianjin, 300071, China.
Insights
Compound Danshen Dripping Pill (CDDP) effectively reduces vascular calcification in mice and cells by inhibiting the Wnt/β-catenin pathway and activating Sirt1. This traditional Chinese medicine demonstrates a novel therapeutic role in ameliorating cardiovascular disease risk factors.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Cell Biology
Background:
- Vascular calcification, an overlooked cardiovascular disease risk factor, lacks specific treatments.
- Compound Danshen Dripping Pill (CDDP) is used for cardiovascular diseases, but its effect on vascular calcification is unstudied.
Purpose of the Study:
- To investigate CDDP's effects on vascular calcification in ApoE-/- mice and in vitro.
- To elucidate the underlying mechanism of CDDP's action on vascular calcification.
Main Methods:
- Network pharmacology analysis to predict CDDP's potential.
- In vivo study: ApoE-/- mice fed a high-fat diet with CDDP supplementation.
- In vitro study: Human aortic smooth muscle cells (HASMCs) and endothelial cells (HUVECs, HAECs) exposed to CDDP.
Main Results:
- CDDP reduced intimal calcification in atherosclerotic lesions and cultured cells.
- Mechanisms involved inhibiting the Wnt/β-catenin pathway via DKK1/LRP6 upregulation and reducing osteoblastic markers.
- CDDP reversed vascular aging and senescence by activating Sirt1 and reducing pro-inflammatory cytokines.
Conclusions:
- CDDP ameliorates vascular calcification by regulating the DKK1/LRP6/β-catenin pathway and EC-SMC crosstalk.
- CDDP reduces vascular cell senescence through Sirt1 activation, highlighting its therapeutic potential.
Background:
Vascular calcification refers to the abnormal accumulation of calcium in the walls of blood vessels and is a risk factor often overlooked in cardiovascular disease. However, there is currently no specific drug for treating vascular calcification. Compound Danshen Dripping Pill (CDDP) is widely used to treat cardiovascular diseases, but its effect on vascular calcification has not been reported.
Purpose:
We investigated the effects of CDDP on vascular calcification in ApoE-/- mice and in vitro and elucidated its mechanism of action.
Study Design:
Firstly, we found that CDDP has the potential to improve calcification based on network pharmacology analysis. Then, we performed the following experiments: in vivo, ApoE-/- mice were fed a high-fat diet randomly supplemented with CDDP for 16 weeks. Atherosclerosis and vascular calcification were determined. In vitro, human aortic smooth muscle cells (HASMCs), human umbilical vein endothelial cells (HUVECs), and human aortic endothelial cells (HAECs) were used to determine the mechanisms for CDDP-inhibited vascular calcification.
Results:
In this study, we observed that CDDP reduced intimal calcification in atherosclerotic lesions of ApoE-deficient mice fed a high-fat diet, as well as the calcification in cultured SMCs and ECs. Mechanistically, CDDP inhibited the Wnt/β-catenin pathway by up-regulating the expression of DKK1 and LRP6, which are upstream inhibitors of Wnt, leading to a reduction in the expression of osteoblastic transition markers (ALP, OPN, BMP2, and RUNX2). Furthermore, CDDP enhanced the secretion of DKK1, which plays a role in mediating EC-SMC crosstalk in calcification. Additionally, VC contributes to vascular aging by inhibiting Sirt1 and increasing senescence parameters (SA-β-gal, p21, and p16). However, CDDP reversed these changes by activating Sirt1. CDDP also reduced the levels of pro-inflammatory cytokines and the senescence-associated secretory phenotype in vivo and in vitro.
Conclusions:
Our study suggests that CDDP reduces vascular calcification by regulating the DKK1/LRP6/β-catenin signaling pathway in ECs/SMCs and interactions with the crosstalk of ECs and SMCs. It also reduces the senescence of ECs/SMCs, contributing to the Sirt1 activation, indicating CDDP's novel role in ameliorating vascular calcification.
Related Concept Videos
Antihypertensive Drugs: Action of Calcium Channel Blockers
Antihypertensive Drugs: Vasodilators

