Xenotransplantation: Current Challenges and Emerging Solutions.

IF 3.2 4区 医学 Q3 CELL & TISSUE ENGINEERING Cell Transplantation Pub Date : 2023-01-01 DOI:10.1177/09636897221148771
Tarek Ziad Arabi, Belal Nedal Sabbah, Amir Lerman, Xiang-Yang Zhu, Lilach O Lerman
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引用次数: 3

Abstract

To address the ongoing shortage of organs available for replacement, xenotransplantation of hearts, corneas, skin, and kidneys has been attempted. However, a major obstacle facing xenotransplants is rejection due to a cycle of immune reactions to the graft. Both adaptive and innate immune systems contribute to this cycle, in which natural killer cells, macrophages, and T-cells play a significant role. While advancements in the field of genetic editing can circumvent some of these obstacles, biomarkers to identify and predict xenograft rejection remain to be standardized. Several T-cell markers, such as CD3, CD4, and CD8, are useful in both the diagnosis and prediction of xenograft rejection. Furthermore, an increase in the levels of various circulating DNA markers and microRNAs is also predictive of xenograft rejection. In this review, we summarize recent findings on the advancements in xenotransplantation, with a focus on pig-to-human, the role of immunity in xenograft rejection, and its biomarkers.

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异种移植:当前的挑战和新兴的解决方案。
为了解决可用于替代的器官持续短缺的问题,已经尝试了心脏、角膜、皮肤和肾脏的异种移植。然而,异种移植面临的一个主要障碍是由于移植物的免疫反应周期引起的排斥反应。适应性免疫系统和先天免疫系统都参与了这一循环,其中自然杀伤细胞、巨噬细胞和t细胞发挥了重要作用。虽然基因编辑领域的进步可以规避这些障碍,但识别和预测异种移植排斥反应的生物标志物仍有待标准化。几种t细胞标志物,如CD3、CD4和CD8,在异种移植排斥反应的诊断和预测中都是有用的。此外,各种循环DNA标记物和microrna水平的增加也可预测异种移植排斥反应。在这篇综述中,我们总结了异种移植的最新进展,重点是猪对人的移植,免疫在异种移植排斥反应中的作用及其生物标志物。
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来源期刊
Cell Transplantation
Cell Transplantation 生物-细胞与组织工程
CiteScore
6.00
自引率
3.00%
发文量
97
审稿时长
6 months
期刊介绍: Cell Transplantation, The Regenerative Medicine Journal is an open access, peer reviewed journal that is published 12 times annually. Cell Transplantation is a multi-disciplinary forum for publication of articles on cell transplantation and its applications to human diseases. Articles focus on a myriad of topics including the physiological, medical, pre-clinical, tissue engineering, stem cell, and device-oriented aspects of the nervous, endocrine, cardiovascular, and endothelial systems, as well as genetically engineered cells. Cell Transplantation also reports on relevant technological advances, clinical studies, and regulatory considerations related to the implantation of cells into the body in order to provide complete coverage of the field.
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