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Human archetypal pluripotent stem cells differentiate into trophoblast stem cells via endogenous BMP5/7 induction without transitioning through naive state.
Tietze, Ethan; Barbosa, Andre Rocha; Araujo, Bruno; Euclydes, Veronica; Spiegelberg, Bailey; Cho, Hyeon Jin; Lee, Yong Kyu; Wang, Yanhong; McCord, Alejandra; Lorenzetti, Alan; Feltrin, Arthur; van de Leemput, Joyce; Di Carlo, Pasquale; Ursini, Gianluca; Benjamin, Kynon J; Brentani, Helena; Kleinman, Joel E; Hyde, Thomas M; Weinberger, Daniel R; McKay, Ronald; Shin, Joo Heon; Sawada, Tomoyo; Paquola, Apua C M; Erwin, Jennifer A.
Afiliación
  • Tietze E; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Barbosa AR; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Araujo B; Department of Neurology, Johns Hopkins School of Medicine, Baltimore, MD, USA.
  • Euclydes V; Inter-Institutional Graduate Program on Bioinformatics, University of São Paulo, São Paulo, SP, Brazil.
  • Spiegelberg B; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Cho HJ; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Lee YK; Department of Neurology, Johns Hopkins School of Medicine, Baltimore, MD, USA.
  • Wang Y; Department of Psychiatry, University of Sao Paulo, Medical School, São Paulo, Brazil.
  • McCord A; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Lorenzetti A; Department of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD, USA.
  • Feltrin A; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • van de Leemput J; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Di Carlo P; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Ursini G; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Benjamin KJ; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Brentani H; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Kleinman JE; Center for Mathematics, Computation and Cognition, Federal University of ABC, Santo André, SP, Brazil.
  • Hyde TM; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Weinberger DR; Center for Precision Disease Modeling and Division of Endocrinology, Diabetes and Nutrition, Department of Medicine, University of Maryland School of Medicine, Baltimore, MD, 21201, USA.
  • McKay R; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Shin JH; Department of Basic Medical Science, Neuroscience, and Sense Organs, University of Bari Aldo Moro, Bari, Italy.
  • Sawada T; Lieber Institute for Brain Development, Baltimore, MD, USA.
  • Paquola ACM; Department of Neuroscience, Johns Hopkins School of Medicine, Baltimore, MD, USA.
  • Erwin JA; Lieber Institute for Brain Development, Baltimore, MD, USA.
Sci Rep ; 14(1): 3291, 2024 02 08.
Article en En | MEDLINE | ID: mdl-38332235
ABSTRACT
Primary human trophoblast stem cells (TSCs) and TSCs derived from human pluripotent stem cells (hPSCs) can potentially model placental processes in vitro. Yet, the pluripotent states and factors involved in the differentiation of hPSCs to TSCs remain poorly understood. In this study, we demonstrate that the primed pluripotent state can generate TSCs by activating pathways such as Epidermal Growth Factor (EGF) and Wingless-related integration site (WNT), and by suppressing tumor growth factor beta (TGFß), histone deacetylases (HDAC), and Rho-associated protein kinase (ROCK) signaling pathways, all without the addition of exogenous Bone morphogenetic protein 4 (BMP4)-a condition we refer to as the TS condition. We characterized this process using temporal single-cell RNA sequencing to compare TS conditions with differentiation protocols involving BMP4 activation alone or BMP4 activation in conjunction with WNT inhibition. The TS condition consistently produced a stable, proliferative cell type that closely mimics first-trimester placental cytotrophoblasts, marked by the activation of endogenous retroviral genes and the absence of amnion expression. This was observed across multiple cell lines, including various primed induced pluripotent stem cell (iPSC) and embryonic stem cell (ESC) lines. Primed-derived TSCs can proliferate for over 30 passages and further specify into multinucleated syncytiotrophoblasts and extravillous trophoblast cells. Our research establishes that the differentiation of primed hPSCs to TSC under TS conditions triggers the induction of TMSB4X, BMP5/7, GATA3, and TFAP2A without progressing through a naive state. These findings propose that the primed hPSC state is part of a continuum of potency with the capacity to differentiate into TSCs through multiple routes.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Células Madre Pluripotentes / Células Madre Pluripotentes Inducidas Tipo de estudio: Prognostic_studies Límite: Female / Humans / Pregnancy Idioma: En Revista: Sci Rep Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Células Madre Pluripotentes / Células Madre Pluripotentes Inducidas Tipo de estudio: Prognostic_studies Límite: Female / Humans / Pregnancy Idioma: En Revista: Sci Rep Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos