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Human endothelial colony-forming cells provide trophic support for pluripotent stem cell-derived cardiomyocytes via distinctively high expression of neuregulin-1.
Hong, Xuechong; Oh, Nicholas; Wang, Kai; Neumeyer, Joseph; Lee, Chin Nien; Lin, Ruei-Zeng; Piekarski, Breanna; Emani, Sitaram; Greene, Arin K; Friehs, Ingeborg; Del Nido, Pedro J; Melero-Martin, Juan M.
Afiliación
  • Hong X; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
  • Oh N; Department of Surgery, Harvard Medical School, Boston, MA, 02115, USA.
  • Wang K; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
  • Neumeyer J; Department of Surgery, Harvard Medical School, Boston, MA, 02115, USA.
  • Lee CN; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
  • Lin RZ; Department of Surgery, Harvard Medical School, Boston, MA, 02115, USA.
  • Piekarski B; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
  • Emani S; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
  • Greene AK; Department of Surgery, Harvard Medical School, Boston, MA, 02115, USA.
  • Friehs I; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
  • Del Nido PJ; Department of Surgery, Harvard Medical School, Boston, MA, 02115, USA.
  • Melero-Martin JM; Department of Cardiac Surgery, Boston Children's Hospital, 300 Longwood Ave., Enders 349, Boston, MA, 02115, USA.
Angiogenesis ; 24(2): 327-344, 2021 05.
Article en En | MEDLINE | ID: mdl-33454888
ABSTRACT
The search for a source of endothelial cells (ECs) with translational therapeutic potential remains crucial in regenerative medicine. Human blood-derived endothelial colony-forming cells (ECFCs) represent a promising source of autologous ECs due to their robust capacity to form vascular networks in vivo and their easy accessibility from peripheral blood. However, whether ECFCs have distinct characteristics with translational value compared to other ECs remains unclear. Here, we show that vascular networks generated with human ECFCs exhibited robust paracrine support for human pluripotent stem cell-derived cardiomyocytes (iCMs), significantly improving protection against drug-induced cardiac injury and enhancing engraftment at ectopic (subcutaneous) and orthotopic (cardiac) sites. In contrast, iCM support was notably absent in grafts with vessels lined by mature-ECs. This differential trophic ability was due to a unique high constitutive expression of the cardioprotective growth factor neuregulin-1 (NRG1). ECFCs, but not mature-ECs, were capable of actively releasing NRG1, which, in turn, reduced apoptosis and increased the proliferation of iCMs via the PI3K/Akt signaling pathway. Transcriptional silencing of NRG1 abrogated these cardioprotective effects. Our study suggests that ECFCs are uniquely suited to support human iCMs, making these progenitor cells ideal for cardiovascular regenerative medicine.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Diferenciación Celular / Regulación de la Expresión Génica / Neurregulina-1 / Miocitos Cardíacos / Células Madre Pluripotentes / Células Progenitoras Endoteliales Límite: Humans Idioma: En Revista: Angiogenesis Asunto de la revista: HEMATOLOGIA Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Diferenciación Celular / Regulación de la Expresión Génica / Neurregulina-1 / Miocitos Cardíacos / Células Madre Pluripotentes / Células Progenitoras Endoteliales Límite: Humans Idioma: En Revista: Angiogenesis Asunto de la revista: HEMATOLOGIA Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos