4.3 Article

RXR Negatively Regulates Ex Vivo Expansion of Human Cord Blood Hematopoietic Stem and Progenitor Cells

期刊

STEM CELL REVIEWS AND REPORTS
卷 17, 期 4, 页码 1456-1464

出版社

SPRINGER
DOI: 10.1007/s12015-021-10124-y

关键词

Cord blood; Hematopoietic stem and progenitor cells; Ex vivo expansion; Retinoid X receptor

资金

  1. Major Research Plan of National Natural Science Foundation of China [91957107]
  2. National Key Research and Development Project [2019YFA0111800]
  3. General Program of National Natural Science Foundation of China [81970095]
  4. Shanghai Eastern Scholar Program [TP2018047]
  5. US Public Health Service Grants from the NIH [R35 HL139599, U54 DK106846]
  6. International cooperation in key R&D projects of Shanxi Province [201903D421026]
  7. Innovative Research Team of High Level Local Universities in Shanghai [SSMU-ZDCX20180800]

向作者/读者索取更多资源

The study demonstrates that RXR activity is crucial for ex vivo expansion of human cord blood HSCs, with HX531 promoting expansion and Bexarotene inhibiting it. This suggests that RXR serves as a negative regulator of ex vivo expansion of CB HSCs and HPCs.
Ex vivo expansion of human cord blood (CB) hematopoietic stem cells (HSCs) is one approach to overcome limited numbers of HSCs in single CB units. However, there is still no worldwide acceptable HSC ex vivo expansion system. A main reason is that we still have very limited knowldege regarding mechanisms underlying maintenance and expansion of CB HSCs. Here we report that retinoid X receptor (RXR) activity is of significance for CB HSC ex vivo expansion. RXR antagonist HX531 significantly promoted ex vivo expansion of CB HSCs and progenitor cells (HPCs). RXR agonist Bexarotene notably suppressed ex vivo expansion of CB HSCs. Activation of RXR by Bexarotene significantly blocked expansion of phenotypic HSCs and HPCs and expressed increased functional HPCs as assessed by colony formation induced by UM171 and SR1. In vivo transplantation experiments in immune-deficient mice demonstrated that HX531 expanded CB HSCs possess long-term reconstituting capacities, and Bexarotene treatment inhibited expansion of functional CB HSCs. RNA-seq analysis revealed that RXR regulates expression of FBP1 (a negative regulator of glucose metabolism) and many genes involved in differentation. ECAR analysis showed that HX531 significantly promoted glycolytic activity of CB CD34(+) HSCs and HPCs. Our studies suggest that RXR is a negative regulator of ex vivo expansion of CB HSCs and HPCs.

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