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Diminished Immune Cell Adhesion in Hypoimmune ICAM-1 Knockout Pluripotent Stem Cells.
Saha, Sayandeep; Haynes, W John; Del Rio, Natalia M; Young, Elizabeth E; Zhang, Jue; Seo, Jiwon; Huang, Liupei; Holm, Alexis M; Blashka, Wesley; Murphy, Lydia; Scholz, Merrick J; Henrichs, Abigale; Suresh Babu, Jayalaxmi; Steill, John; Stewart, Ron; Kamp, Timothy J; Brown, Matthew E.
Afiliação
  • Saha S; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Haynes WJ; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Del Rio NM; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Young EE; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Zhang J; Morgridge Institute for Research, Madison, WI.
  • Seo J; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Huang L; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Holm AM; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Blashka W; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Murphy L; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Scholz MJ; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Henrichs A; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
  • Suresh Babu J; Johns Hopkins Bloomberg School of Public Health, Baltimore, MD.
  • Steill J; Morgridge Institute for Research, Madison, WI.
  • Stewart R; Morgridge Institute for Research, Madison, WI.
  • Kamp TJ; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Medicine, Madison, WI.
  • Brown ME; University of Wisconsin-Madison, School of Medicine and Public Health, Department of Surgery, Madison, WI.
bioRxiv ; 2024 Jun 09.
Article em En | MEDLINE | ID: mdl-38895244
ABSTRACT
Hypoimmune gene edited human pluripotent stem cells (hPSCs) are a promising platform for developing reparative cellular therapies that evade immune rejection. Existing first-generation hypoimmune strategies have used CRISPR/Cas9 editing to modulate genes associated with adaptive (e.g., T cell) immune responses, but have largely not addressed the innate immune cells (e.g., monocytes, neutrophils) that mediate inflammation and rejection processes occurring early after graft transplantation. We identified the adhesion molecule ICAM-1 as a novel hypoimmune target that plays multiple critical roles in both adaptive and innate immune responses post-transplantation. In a series of studies, we found that ICAM-1 blocking or knock-out (KO) in hPSC-derived cardiovascular therapies imparted significantly diminished binding of multiple immune cell types. ICAM-1 KO resulted in diminished T cell proliferation responses in vitro and in longer in vivo retention/protection of KO grafts following immune cell encounter in NeoThy humanized mice. The ICAM-1 KO edit was also introduced into existing first-generation hypoimmune hPSCs and prevented immune cell binding, thereby enhancing the overall hypoimmune capacity of the cells. This novel hypoimmune editing strategy has the potential to improve the long-term efficacy and safety profiles of regenerative therapies for cardiovascular pathologies and a number of other diseases.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: BioRxiv Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: BioRxiv Ano de publicação: 2024 Tipo de documento: Article