Hypoimmune induced pluripotent stem cells survive long term in fully immunocompetent, allogeneic rhesus macaques

Гипоиммунные индуцированные плюрипотентные стволовые клетки длительно выживают у полностью иммунокомпетентных аллогенных макак-резусов
Nathaniel J. Hogrebe, Jeffrey R. Millman, Lewis L. Lanier, Mark M. Davis, Trevor J. McGill, Paul Kievit, Andrew J. Connolly, T. Deuse, Xiaomeng Hu, Sonja Schrepfer, William E. Dowdle, Antonia A. Dominguez, Kathy White, Ari G. Olroyd, Rowena DeJesus, Annabelle M. Friera, Chi Young, Frank Wells, Elaine Y. Chu, Cade Ellis Ito, Harini Krishnapura, Surbhi Jain, Ramya Ankala, August Lin, Kyla Egenberger, Allison Gagnon, J. Michael Rukstalis, Corie Gattis, Ron Basco
2023-05-08

CD47 overexpressionHLA class I and II depletionallogeneic transplantationhypoimmune pluripotent stem cellsrhesus macaques
Abstract Genetic engineering of allogeneic cell therapeutics that fully prevents rejection by a recipient’s immune system would abolish the requirement for immunosuppressive drugs or encapsulation and support large-scale manufacturing of off-the-shelf cell products. Previously, we generated mouse and human hypoimmune pluripotent (HIP) stem cells by depleting HLA class I and II molecules and overexpressing CD47 ( B2M −/− CIITA −/− CD47 + ). To determine whether this strategy is successful in non-human primates, we engineered rhesus macaque HIP cells and transplanted them intramuscularly into four allogeneic rhesus macaques. The HIP cells survived unrestricted for 16 weeks in fully immunocompetent allogeneic recipients and differentiated into several lineages, whereas allogeneic wild-type cells were vigorously rejected. We also differentiated human HIP cells into endocrinologically active pancreatic islet cells and showed that they survived in immunocompetent, allogeneic diabetic humanized mice for 4 weeks and ameliorated diabetes. HIP-edited primary rhesus macaque islets survived for 40 weeks in an allogeneic rhesus macaque recipient without immunosuppression, whereas unedited islets were quickly rejected.
1
Human hypoimmune stem-cell-derived pancreatic islets survived four weeks in immunocompetent allogeneic diabetic humanized mice and ameliorated diabetes.
2
Hypoimmune macaque cells differentiated into several lineages and persisted in fully immunocompetent allogeneic recipients, unlike vigorously rejected wild-type cells.
3
Hypoimmune-edited primary rhesus macaque islets survived 40 weeks in an allogeneic recipient without immunosuppression, whereas unedited islets were rapidly rejected.
4
Rhesus macaque hypoimmune pluripotent stem cells engineered with B2M and CIITA deletion plus CD47 overexpression survived 16 weeks after allogeneic transplantation.
5
The findings support hypoimmune genetic engineering as a potential strategy for immunosuppression-free, off-the-shelf allogeneic cell therapies.

Genetically engineered hypoimmune pluripotent stem cells and pancreatic islet cells transplanted into fully immunocompetent allogeneic rhesus macaques

Long-term graft survival, multilineage differentiation, immune-evasion capacity, and therapeutic efficacy without immunosuppression compared with allogeneic wild-type or unedited cells

Publication Details
Publication Date
2023-05-08
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Authors
Nathaniel J. Hogrebe
Jeffrey R. Millman
Lewis L. Lanier
Mark M. Davis
Trevor J. McGill
Paul Kievit
Andrew J. Connolly
T. Deuse
Xiaomeng Hu
Sonja Schrepfer
William E. Dowdle
Antonia A. Dominguez
Kathy White
Ari G. Olroyd
Rowena DeJesus
Annabelle M. Friera
Chi Young
Frank Wells
Elaine Y. Chu
Cade Ellis Ito
Harini Krishnapura
Surbhi Jain
Ramya Ankala
August Lin
Kyla Egenberger
Allison Gagnon
J. Michael Rukstalis
Corie Gattis
Ron Basco
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