» Articles » PMID: 31726654

Salvianolic Acid B Slows the Progression of Breast Cancer Cell Growth Via Enhancement of Apoptosis and Reduction of Oxidative Stress, Inflammation, and Angiogenesis

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2019 Nov 16
PMID 31726654
Citations 35
Authors
Affiliations
Soon will be listed here.
Abstract

Breast cancer is the current leading cause of cancer death in females worldwide. Although current chemotherapeutic drugs effectively reduce the progression of breast cancer, most of these drugs have many unwanted side effects. Salvianolic acid B (Sal-B) is a bioactive compound isolated from the root of Danshen Radix with potent antioxidant and anti-inflammatory properties. Since free radicals play a key role in the initiation and progression of tumor cells growth and enhance their metastatic potential, the current study was designed to investigate the antitumor activity of Sal-B and compare it with the antitumor activity of the traditional anticancer drug, cisplatin. In vitro, Sal-B decreased the human breast cancer adenocarcinoma (MCF-7) cells proliferation in a concentration and time dependent manner. In vivo and similar to cisplatin treatment, Sal-B significantly reduced tumor volume and increased the median survival when compared to tumor positive control mice group injected with Ehrlich solid carcinoma cell line (ESC). Sal-B decreased plasma level of malondialdehyde as a marker of oxidative stress and increased plasma level of reduced glutathione (GSH) as a marker of antioxidant defense when compared to control ESC injected mice. Either Sal-B or cisplatin treatment decreased tumor tissue levels of tumor necrosis factor (TNF-α), matrix metalloproteinase-8 (MMP-8), and Cyclin D1 in ESC treated mice. Contrary to cisplatin treatment, Sal-B did not decrease tumor tissue Ki-67 protein in ESC injected mice. Immunohistochemical analysis revealed that Sal-B or cisplatin treatment increased the expression of the apoptotic markers caspase-3 and P53. Although Sal-B or cisplatin significantly reduced the expression of the angiogenic factor vascular endothelial growth factor (VEGF) in ESC injected mice, only Sal-B reduced expression level of COX-2 in ESC injected mice. Our data suggest that Sal-B exhibits antitumor features against breast cancer cells possibly via enhancing apoptosis and reducing oxidative stress, inflammation, and angiogenesis.

Citing Articles

Cancer-associated fibroblasts affect breast cancer cell sensitivity to chemotherapeutic agents by regulating NRBP2.

Jin X, Chen Y, Wang G Toxicol Res (Camb). 2024; 13(6):tfae204.

PMID: 39664500 PMC: 11631068. DOI: 10.1093/toxres/tfae204.


Salvianolic acid B inhibits the growth and metastasis of A549 lung cancer cells through the NDRG2/PTEN pathway by inducing oxidative stress.

Yang Y, Huang L, Gao J, Qian B Med Oncol. 2024; 41(7):170.

PMID: 38847902 DOI: 10.1007/s12032-024-02413-6.


Oxidative Stress in Breast Cancer: A Biochemical Map of Reactive Oxygen Species Production.

Belskaya L, Dyachenko E Curr Issues Mol Biol. 2024; 46(5):4646-4687.

PMID: 38785550 PMC: 11120394. DOI: 10.3390/cimb46050282.


Salvianolic Acid B Reduces Oxidative Stress to Promote Hair-Growth in Mice, Human Hair Follicles and Dermal Papilla Cells.

Thianthanyakij T, Zhou Y, Wu M, Zhang Y, Lin J, Huang Y Clin Cosmet Investig Dermatol. 2024; 17:791-804.

PMID: 38616888 PMC: 11011644. DOI: 10.2147/CCID.S454844.


Salvianolic Acid B Significantly Suppresses the Migration of Melanoma Cells via Direct Interaction with β-Actin.

Zhang Y, Zhai W, Fan M, Wu J, Wang C Molecules. 2024; 29(4).

PMID: 38398656 PMC: 10892080. DOI: 10.3390/molecules29040906.


References
1.
Shu T, Pang M, Rong L, Liu C, Wang J, Zhou W . Protective Effects and Mechanisms of Salvianolic Acid B Against H₂O₂-Induced Injury in Induced Pluripotent Stem Cell-Derived Neural Stem Cells. Neurochem Res. 2015; 40(6):1133-43. DOI: 10.1007/s11064-015-1573-6. View

2.
Zhao Y, Guo Y, Gu X . Salvianolic Acid B, a potential chemopreventive agent, for head and neck squamous cell cancer. J Oncol. 2011; 2011:534548. PMC: 3010684. DOI: 10.1155/2011/534548. View

3.
Dhamija I, Kumar N, Manjula S, Parihar V, Setty M, Pai K . Preliminary evaluation of in vitro cytotoxicity and in vivo antitumor activity of Premna herbacea Roxb. in Ehrlich ascites carcinoma model and Dalton's lymphoma ascites model. Exp Toxicol Pathol. 2011; 65(3):235-42. DOI: 10.1016/j.etp.2011.08.009. View

4.
Yang Y, Ge P, Jiang L, Li F, Zhu Q . Modulation of growth and angiogenic potential of oral squamous carcinoma cells in vitro using salvianolic acid B. BMC Complement Altern Med. 2011; 11:54. PMC: 3158556. DOI: 10.1186/1472-6882-11-54. View

5.
Carmeliet P . VEGF as a key mediator of angiogenesis in cancer. Oncology. 2005; 69 Suppl 3:4-10. DOI: 10.1159/000088478. View