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Murine Full-thickness Skin Transplantation
Published on: January 2, 2017
Emerging local immunomodulatory strategies to circumvent systemic immunosuppression in cell transplantation
Jocelyn Nikita Campa-Carranza1,2, Jesus Paez-Mayorga1,2, Corrine Ying Xuan Chua1
1Department of Nanomedicine, Houston Methodist Research Institute, Houston, TX, USA.
Introduction:
Cell transplantation is a promising curative therapeutic strategy whereby impaired organ function can be restored without the need for whole-organ transplantation. A key challenge in allotransplantation is the requirement for life-long systemic immunosuppression to prevent rejection, which is associated with serious adverse effects such as increased risk of opportunistic infections and the development of neoplasms. This challenge underscores the urgent need for novel strategies to prevent graft rejection while abrogating toxicity-associated adverse events.
Areas Covered:
We review recent advances in immunoengineering strategies for localized immunomodulation that aim to support allograft function and provide immune tolerance in a safe and effective manner.
Expert Opinion:
Immunoengineering strategies are tailored approaches for achieving immunomodulation of the transplant microenvironment. Biomaterials can be adapted for localized and controlled release of immunomodulatory agents, decreasing the effective dose threshold and frequency of administration. The future of transplant rejection management lies in the shift from systemic to local immunomodulation with suppression of effector and activation of regulatory T cells, to promote immune tolerance.
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