Related Experiment Video
Updated: Aug 9, 2026

Protocol for the Direct Conversion of Murine Embryonic Fibroblasts into Trophoblast Stem Cells
Published on: July 25, 2016
Differentiation of human trophoblast cells in vitro is inhibited by dimethylsulfoxide
1Department of Cell Biology and Human Anatomy, School of Medicine, University of California, Davis 95616-8643, USA.
Abstract:
Dimethyl sulfoxide (DMSO) exerts a number of biological effects, the most frequently cited being induction of cell differentiation. The compound also increases invasiveness and metastatic potential. In contrast to the many reports of DMSO-induced cell differentiation, we report here that DMSO inhibits the morphological differentiation of human cytotrophoblast cells to syncytiotrophoblast, as revealed by immunofluorescence staining for desmosomal protein and nuclei. Cytotrophoblast cells treated with DMSO under differentiation-inducing conditions remained mononucleated with intense desmosomals staining. The effect was dose dependent, with a maximal effect seen at 1.5% DMSO. Concentrations of < or = 0.5% had no effect and concentrations > 2% were cytotoxic. In addition to these morphological changes, DMSO inhibited secretion of human chorionic gonadotropin in a dose-dependent manner. At a concentration of 1.5%, DMSO inhibited secretion by 70%. If cytotrophoblast cells were cultured in the presence of DMSO and then switched to DMSO-free medium, they proceeded to differentiate normally. While the precise mechanism of action remains unknown, judicious use of DMSO may be a useful tool for studying and manipulating the differentiation of human trophoblast cells in vitro. The findings also indicate that care should be used in interpreting results obtained using DMSO as a carrier in drug and inhibitor studies.

