4.1 Article

GSK-3α/β and MEK inhibitors assist the microenvironment of tumor initiation

Journal

CYTOTECHNOLOGY
Volume -, Issue -, Pages -

Publisher

SPRINGER
DOI: 10.1007/s10616-023-00575-1

Keywords

Cancer stem cells; Human iPSCs; Signal pathway inhibitors; Tumor initiation

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Researchers have successfully converted human induced pluripotent stem cells into cancer stem cells by culturing them in a medium mimicking the microenvironment of tumor initiation. The converted cells exhibited characteristics of cancer stem cells and could be used to establish personalized cancer models for studying tumor initiation and screening personalized therapies.
Induced pluripotent stem cells (iPSCs) are useful tools for modeling diseases and developing personalized medicine. We have been developing cancer stem cells (CSCs) from iPSCs with conditioned medium (CM) of cancer-derived cells as the mimicry of the microenvironment of tumor initiation. However, the conversion of human iPSCs has not always been efficient with only CM. In this study, human iPSCs reprogrammed from monocytes of healthy volunteers were cultured in a media containing 50% of the CM from human pancreatic cancer derived BxPC3 cells supplemented with a MEK inhibitor (AZD6244) and a GSK-3 alpha/beta inhibitor (CHIR99021). The survived cells were assessed for the characteristics of CSCs in vitro and in vivo. As a result, they exhibited CSC phenotypes of self-renewal, differentiation, and malignant tumorigenicity. Primary culture of the malignant tumors of the converted cells exhibited the elevated expression of CSC related genes CD44, CD24 and EPCAM maintaining the expression of stemness genes. In conclusion, the inhibition of GSK-3 alpha/beta and MEK and the microenvironment of tumor initiation mimicked by the CM can convert human normal stem cells into CSCs. This study could provide insights into establishing potentially novel personalized cancer models which could help investigate the tumor initiation and screening of personalized therapies on CSCs.

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