4.7 Article

Stem cell heterogeneity, plasticity, and regulation

期刊

LIFE SCIENCES
卷 334, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.lfs.2023.122240

关键词

Stem cell; Heterogeneity; Plasticity; Stem cell cellular therapy; Gene therapy; Hematopoietic stem cells

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Stem cell pools are homogeneous cell populations that possess self-renewal and differentiation potential. While they exhibit limited heterogeneity during homeostasis, their plasticity becomes apparent under stress, leading to changes in phenotype, constitution, metabolism, and function. Manipulating these factors offers better control of stem cell behavior and has the potential to revolutionize regenerative medicine.
As a population of homogeneous cells with both self-renewal and differentiation potential, stem cell pools are highly compartmentalized and contain distinct subsets that exhibit stable but limited heterogeneity during homeostasis. However, their striking plasticity is showcased under natural or artificial stress, such as injury, transplantation, cancer, and aging, leading to changes in their phenotype, constitution, metabolism, and function. The complex and diverse network of cell-extrinsic niches and signaling pathways, together with cellintrinsic genetic and epigenetic regulators, tightly regulate both the heterogeneity during homeostasis and the plasticity under perturbation. Manipulating these factors offers better control of stem cell behavior and a potential revolution in the current state of regenerative medicine. However, disruptions of normal regulation by genetic mutation or excessive plasticity acquisition may contribute to the formation of tumors. By harnessing innovative techniques that enhance our understanding of stem cell heterogeneity and employing novel approaches to maximize the utilization of stem cell plasticity, stem cell therapy holds immense promise for revolutionizing the future of medicine.

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