Hematopoietic stem and progenitor cells (HSPCs) are multipotent stem cells that have been harnessed as a curative therapy for patients with hematological malignancies. Notably, the discovery that HSPCs are endowed with immunoregulatory properties suggests that HSPC-based therapeutic approaches may be used to treat autoimmune diseases. Indeed, infusion with HSPCs has shown promising results in the treatment of type 1 diabetes (T1D) and remains the only “experimental therapy” that has achieved a satisfactory rate of remission (nearly 60%) in T1D. Patients with newly diagnosed T1D have been successfully reverted to normoglycemia by administration of autologous HSPCs in association with a non-myeloablative immunosuppressive regimen. However, this approach is hampered by a high incidence of adverse effects linked to immunosuppression. Herein, we report that while the use of autologous HSPCs is capable of improving C-peptide production in patients with T1D, ex vivo modulation of HSPCs with prostaglandins (PGs) increases their immunoregulatory properties by upregulating expression of the immune checkpoint-signaling molecule PD-L1. Surprisingly, CXCR4 was upregulated as well, which could enhance HSPC trafficking toward the inflamed pancreatic zone. When tested in murine and human in vitro autoimmune assays, PG-modulated HSPCs were shown to abrogate the autoreactive T cell response. The use of PG-modulated HSPCs may thus provide an attractive and novel treatment of autoimmune diabetes.

Prostaglandin e2 stimulates the expansion of regulatory hematopoietic stem and Progenitor cells in Type 1 Diabetes / M Ben, Nasr; F, D’Addio; A, M Malvandi; S, Faravelli; E, Castillo-Leon; V, Usuelli; F, Rocchio; T, Letizia; A, B El Essawy; Emma, Assi; C, Mameli; E, Giani; M, Macedoni; A, Maestroni; A, Dassano; C, Loretelli; M, Paroni; G, Cannalire; Biasucci, G; Marco, Sala; Alessandra, Biffi; Gian, V Zuccotti; P, Fiorina. - In: FRONTIERS IN IMMUNOLOGY. - ISSN 1664-3224. - 9:(2018). [10.3389/fimmu.2018.01387]

Prostaglandin e2 stimulates the expansion of regulatory hematopoietic stem and Progenitor cells in Type 1 Diabetes

Biasucci G;
2018-01-01

Abstract

Hematopoietic stem and progenitor cells (HSPCs) are multipotent stem cells that have been harnessed as a curative therapy for patients with hematological malignancies. Notably, the discovery that HSPCs are endowed with immunoregulatory properties suggests that HSPC-based therapeutic approaches may be used to treat autoimmune diseases. Indeed, infusion with HSPCs has shown promising results in the treatment of type 1 diabetes (T1D) and remains the only “experimental therapy” that has achieved a satisfactory rate of remission (nearly 60%) in T1D. Patients with newly diagnosed T1D have been successfully reverted to normoglycemia by administration of autologous HSPCs in association with a non-myeloablative immunosuppressive regimen. However, this approach is hampered by a high incidence of adverse effects linked to immunosuppression. Herein, we report that while the use of autologous HSPCs is capable of improving C-peptide production in patients with T1D, ex vivo modulation of HSPCs with prostaglandins (PGs) increases their immunoregulatory properties by upregulating expression of the immune checkpoint-signaling molecule PD-L1. Surprisingly, CXCR4 was upregulated as well, which could enhance HSPC trafficking toward the inflamed pancreatic zone. When tested in murine and human in vitro autoimmune assays, PG-modulated HSPCs were shown to abrogate the autoreactive T cell response. The use of PG-modulated HSPCs may thus provide an attractive and novel treatment of autoimmune diabetes.
2018
Prostaglandin e2 stimulates the expansion of regulatory hematopoietic stem and Progenitor cells in Type 1 Diabetes / M Ben, Nasr; F, D’Addio; A, M Malvandi; S, Faravelli; E, Castillo-Leon; V, Usuelli; F, Rocchio; T, Letizia; A, B El Essawy; Emma, Assi; C, Mameli; E, Giani; M, Macedoni; A, Maestroni; A, Dassano; C, Loretelli; M, Paroni; G, Cannalire; Biasucci, G; Marco, Sala; Alessandra, Biffi; Gian, V Zuccotti; P, Fiorina. - In: FRONTIERS IN IMMUNOLOGY. - ISSN 1664-3224. - 9:(2018). [10.3389/fimmu.2018.01387]
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2930962
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 15
  • ???jsp.display-item.citation.isi??? 14
social impact