Antitumor Effects of Lidocaine on Human Breast Cancer Cells: An and Experimental Trial
Overview
Authors
Affiliations
Aim: Retrospective studies have suggested a protective effect of regional anesthesia against recurrence after cancer surgery. But confirmation of the in vivo antitumor effects is lacking. We examined the in vitro antitumor effects of lidocaine on various breast cancer cell lines and then assessed these properties in vivo at clinically relevant concentrations.
Materials And Methods: In vitro experiments: normal breast epithelial cells (NBEC) MCF-10A and three tumor breast epithelial cells (TBEC) lines (MCF-7 luminal A, MDA-MB-231 triple-negative and SKBr3 HER2 positive) were exposed to increasing concentrations of lidocaine. Cell viability, migration and anchorage-independent growth were assessed by MTT, wound healing, and soft-agar growth assays. In vivo experiments: 6-week-old severe combined immunodeficient mice were injected intraperitoneally with MDA-MB-231 cells and were treated with intraperitoneal lidocaine or phosphate-buffered saline. The mice were euthanized when they reached experimental endpoints or sacrificed to determine peritoneal carcinomatosis index and global tumor volumes.
Results: Lidocaine reduced the viability of all the cell lines, inhibited migration of TBEC compared to the NBEC, and compromised the anchorage-independent growth of the triple-negative cells. Intraperitoneal lidocaine improved survival of mice with MDA-MB-231 peritoneal carcinomatosis using doses that are consistent with the current clinical settings for analgesia.
Conclusion: In agreement with the notion that local anesthesia may be beneficial for cancer therapy, lidocaine has a protective effect against breast cancer cells in experimental studies. However, the beneficial impact of local anesthetics on breast cancer needs to be strengthened by additional preclinical and clinical trials.
Neuronal mimicry in tumors: lessons from neuroscience to tackle cancer.
Bloomer H, Dame H, Parker S, Oudin M Cancer Metastasis Rev. 2025; 44(1):31.
PMID: 39934425 PMC: 11813822. DOI: 10.1007/s10555-025-10249-3.
He X, Yang Y, Zheng Y, Xia Q, Yu H, Zhao X PLoS One. 2025; 20(1):e0318031.
PMID: 39888904 PMC: 11785270. DOI: 10.1371/journal.pone.0318031.
Berliere M, Roelants F, Duhoux F, Gerday A, Piette N, Lacroix C Cancers (Basel). 2025; 17(1.
PMID: 39796678 PMC: 11718863. DOI: 10.3390/cancers17010049.
The effect of lidocaine infusion in oncologic surgery: A bibliometric analysis based on CiteSpace.
Lv R, Wang Y, Sun J, Kang Y, Mou C, Chen Y Medicine (Baltimore). 2024; 103(51):e40980.
PMID: 39705410 PMC: 11666215. DOI: 10.1097/MD.0000000000040980.
Hasselgren E, Groes-Kofoed N, Falconer H, Bjorne H, Zach D, Hunde D Br J Anaesth. 2024; 134(3):662-670.
PMID: 39572271 PMC: 11867074. DOI: 10.1016/j.bja.2024.10.015.