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Reprogramming Primary Amniotic Fluid and Membrane Cells to Pluripotency in Xeno-free Conditions.
Slamecka, Jaroslav; Laurini, Javier; Shirley, Troy; Hoerstrup, Simon Philipp; Weber, Benedikt; Owen, Laurie; McClellan, Steven.
Afiliação
  • Slamecka J; Mitchell Cancer Institute, University of South Alabama; jslamecka@health.southalabama.edu.
  • Laurini J; College of Medicine, University of South Alabama.
  • Shirley T; Mitchell Cancer Institute, University of South Alabama.
  • Hoerstrup SP; Institute for Regenerative Medicine, University of Zurich.
  • Weber B; Institute for Regenerative Medicine, University of Zurich; Department of Dermatology, University Hospital Zurich; Center for Applied Biotechnology and Molecular Medicine (CABMM), University of Zurich - Irchel Campus.
  • Owen L; Mitchell Cancer Institute, University of South Alabama.
  • McClellan S; Mitchell Cancer Institute, University of South Alabama.
J Vis Exp ; (129)2017 11 27.
Article em En | MEDLINE | ID: mdl-29286443
ABSTRACT
Autologous cell-based therapies got a step closer to reality with the introduction of induced pluripotent stem cells. Fetal stem cells, such as amniotic fluid and membrane mesenchymal stem cells, represent a unique type of undifferentiated cells with promise in tissue engineering and for reprogramming into iPSC for future pediatric interventions and stem cell banking. The protocol presented here describes an optimized procedure for extracting and culturing primary amniotic fluid and membrane mesenchymal stem cells and generating episomal induced pluripotent stem cells from these cells in fully chemically defined culture conditions utilizing human recombinant vitronectin and the E8 medium. Characterization of the new lines by applying stringent methods - flow cytometry, confocal imaging, teratoma formation and transcriptional profiling - is also described. The newly generated lines express markers of embryonic stem cells - Oct3/4A, Nanog, Sox2, TRA-1-60, TRA-1-81, SSEA-4 - while being negative for the SSEA-1 marker. The stem cell lines form teratomas in scid-beige mice in 6-8 weeks and the teratomas contain tissues representative of all three germ layers. Transcriptional profiling of the lines by submitting global expression microarray data to a bioinformatic pluripotency assessment algorithm deemed all lines pluripotent and therefore, this approach is an attractive alternative to animal testing. The new iPSC lines can readily be used in downstream experiments involving the optimization of differentiation and tissue engineering.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Células-Tronco Pluripotentes Induzidas / Técnicas de Reprogramação Celular / Líquido Amniótico Tipo de estudo: Guideline Limite: Animals / Humans Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Células-Tronco Pluripotentes Induzidas / Técnicas de Reprogramação Celular / Líquido Amniótico Tipo de estudo: Guideline Limite: Animals / Humans Idioma: En Ano de publicação: 2017 Tipo de documento: Article