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Injectable Peptide Hydrogels Loaded with Murine Embryonic Stem Cells Relieve Ischemia In Vivo after Myocardial Infarction.
Roy, Abhishek; Hao, Lei; Francisco, Jamie; Guan, Jin; Mareedu, Satvik; Zhai, Peiyong; Dodd-O, Joseph; Heffernan, Corey; Del Re, Dominic; Lee, Eun Jung A; Kumar, Vivek A.
Afiliação
  • Roy A; Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, United States.
  • Hao L; Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, United States.
  • Francisco J; Department of Cell Biology and Molecular Medicine, New Jersey Medical School, Newark, New Jersey 07103, United States.
  • Guan J; Department of Cell Biology and Molecular Medicine, New Jersey Medical School, Newark, New Jersey 07103, United States.
  • Mareedu S; Department of Cell Biology and Molecular Medicine, New Jersey Medical School, Newark, New Jersey 07103, United States.
  • Zhai P; Department of Cell Biology and Molecular Medicine, New Jersey Medical School, Newark, New Jersey 07103, United States.
  • Dodd-O J; Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, United States.
  • Heffernan C; Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, United States.
  • Del Re D; Department of Cell Biology and Molecular Medicine, New Jersey Medical School, Newark, New Jersey 07103, United States.
  • Lee EJA; Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, United States.
  • Kumar VA; Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, New Jersey 07102, United States.
Biomacromolecules ; 25(2): 1319-1329, 2024 Feb 12.
Article em En | MEDLINE | ID: mdl-38291600
ABSTRACT
Myocardial infarction (MI) is a major cause of morbidity and mortality worldwide, especially in aging and metabolically unhealthy populations. A major target of regenerative tissue engineering is the restoration of viable cardiomyocytes to preserve cardiac function and circumvent the progression to heart failure post-MI. Amelioration of ischemia is a crucial component of such restorative strategies. Angiogenic ß-sheet peptides can self-assemble into thixotropic nanofibrous hydrogels. These syringe aspiratable cytocompatible gels were loaded with stem cells and showed excellent cytocompatibility and minimal impact on the storage and loss moduli of hydrogels. Gels with and without cells were delivered into the myocardium of a mouse MI model (LAD ligation). Cardiac function and tissue remodeling were evaluated up to 4 weeks in vivo. Injectable peptide hydrogels synergized with loaded murine embryonic stem cells to demonstrate enhanced survival after intracardiac delivery during the acute phase post-MI, especially at 7 days. This approach shows promise for post-MI treatment and potentially functional cardiac tissue regeneration and warrants large-scale animal testing prior to clinical translation.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Hidrogéis / Infarto do Miocárdio Limite: Animals Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Hidrogéis / Infarto do Miocárdio Limite: Animals Idioma: En Ano de publicação: 2024 Tipo de documento: Article