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In Vitro and In Vivo Assessment of T, B and Myeloid Cells Suppressive Activity and Humoral Responses from Transplant Recipients
Published on: August 12, 2017
Transplant Tolerance Induction in Newborn Infants: Mechanisms, Advantages, and Potential Strategies
Hua Pan1, Aram Gazarian2, Jean-Michel Dubernard3
1Chair of Transplantation, VetAgro Sup-Campus Vétérinaire de Lyon, Marcy l'Etoile, France; Plastic and Reconstructive Surgery Department, Xijing Hospital, The Fourth Military Medical University, Xi'an, China.
Insights
Developing transplant tolerance induction for infants is crucial due to long-term immunosuppression risks. This review explores neonatal tolerance mechanisms and strategies for pediatric solid organ transplantation.
Area of Science:
- Immunology
- Transplantation Science
- Pediatric Medicine
Background:
- Established tolerance induction protocols exist for adult renal transplantation, but not for infants.
- Pediatric transplant recipients face significant risks from long-term immunosuppression and chronic rejection.
- Infants' immunological immaturity and thymic function present unique opportunities for central tolerance induction.
Purpose of the Study:
- To review mechanisms and strategies for transplant tolerance induction in immunologically immature infant recipients.
- To analyze neonatal tolerance in murine models and its application to human infants.
- To discuss advances in adult tolerance induction and their potential relevance to pediatric transplantation.
Main Methods:
- Review of murine experimental models of neonatal tolerance.
- Analysis of human newborn infant tolerance induction studies.
- Discussion of hematopoietic stem cell transplantation, cell-based therapies, costimulatory blockade, and thymus manipulation.
Main Results:
- Neonatal tolerance mechanisms in mice provide a foundation for understanding infant tolerance.
- In utero hematopoietic stem cell transplantation studies inform hematopoietic mixed chimerism in neonates.
- Recent adult tolerance induction strategies offer potential avenues for pediatric applications.
Conclusions:
- Establishing transplant tolerance induction in infants is a promising area requiring further research.
- Future studies should focus on patient selection, less toxic conditioning, and biomarkers for immunosuppression management.
- Successful infant tolerance induction could significantly reduce long-term risks associated with pediatric solid organ transplantation.
Abstract:
Although several tolerance induction protocols have been successfully implemented in adult renal transplantation, no tolerance induction approach has, as yet, been defined for solid organ transplantations in young infants. Pediatric transplant recipients have a pressing demand for the elaboration of tolerance induction regimens. Indeed, since they display a longer survival time, they are exposed to a higher level of risks linked to long-term immunosuppression (IS) and to chronic rejection. Interestingly, central tolerance induction may be of great interest in newborns, because of their immunological immaturity and the important role of the thymus at this early stage in life. The present review aims to clarify mechanisms and strategies of tolerance induction in these immunologically premature recipients. We first introduce the discovery and mechanisms of neonatal tolerance in murine experimental models and subsequently analyze tolerance induction in human newborn infants. Hematopoietic mixed chimerism in neonates is also discussed based on in utero hematopoietic stem cell (HSC) transplant studies. Then, we review the recent advances in tolerance induction approaches in adults, including the infusion of HSCs associated with less toxic conditioning regimens, regulatory T cells/facilitating cells/mesenchymal stem cells transplantation, costimulatory blockade, and thymus manipulation. Finally, IS withdrawal in pediatric solid organ transplant is discussed. In conclusion, the establishment of transplant tolerance induction in infants is promising and deserves further investigations. Future studies could focus on the selection of patients, on less toxic conditioning regimens, and on biomarkers for IS minimization or withdrawal.
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