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细胞移植中规避全身免疫抑制的新兴局部免疫调节策略。

Emerging local immunomodulatory strategies to circumvent systemic immunosuppression in cell transplantation.

机构信息

Department of Nanomedicine, Houston Methodist Research Institute, Houston, TX, USA.

School of Medicine and Health Sciences, Tecnologico de Monterrey, Monterrey, Mexico.

出版信息

Expert Opin Drug Deliv. 2022 May;19(5):595-610. doi: 10.1080/17425247.2022.2076834. Epub 2022 May 29.

Abstract

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.

摘要

简介

细胞移植是一种有前途的治疗策略,通过这种策略可以恢复受损器官的功能,而无需进行全器官移植。同种异体移植的一个关键挑战是需要终身进行全身免疫抑制以防止排斥,这会导致严重的不良反应,如机会性感染风险增加和肿瘤的发展。这一挑战突显了迫切需要新的策略来防止移植物排斥,同时消除与毒性相关的不良事件。

涵盖领域

我们回顾了最近在局部免疫调节的免疫工程策略方面的进展,这些策略旨在以安全有效的方式支持移植物功能并提供免疫耐受。

专家意见

免疫工程策略是实现移植微环境免疫调节的定制方法。生物材料可用于局部和控制免疫调节剂的释放,从而降低有效剂量阈值和给药频率。移植排斥管理的未来在于从全身免疫调节向局部免疫调节转变,抑制效应细胞并激活调节性 T 细胞,以促进免疫耐受。

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