通过重新思考 HLA 相容性提高肾脏异体移植的长期存活率:从分子匹配到非 HLA 基因。

IF 2.8 3区 生物学 Q2 GENETICS & HEREDITY
Frontiers in Genetics Pub Date : 2024-10-02 eCollection Date: 2024-01-01 DOI:10.3389/fgene.2024.1442018
Aprajita Mattoo, Ian S Jaffe, Brendan Keating, Robert A Montgomery, Massimo Mangiola
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引用次数: 0

摘要

优化器官移植中的免疫相容性已超越了人类白细胞抗原(HLA)抗原配对的传统方法,因为这种方法有很大的局限性。要提高移植器官的长期存活率,就必须更广泛地了解经典和非经典 HLA 基因在移植中的作用。高分辨率分子 HLA 基因分型尽管存在固有的挑战,但已成为精确评估患者与供体相容性的基石。利用对外显子生物学和间接免疫激活的了解,外显子错配计算器和 PIRCHE-II 算法在预测异体移植排斥反应方面超越了传统方法。了解次要组织相容性抗原也为个性化配型过程提供了机会。虽然分子配型在已故捐献者器官分配中的应用存在技术、后勤和概念上的多重障碍,使其在主流应用中为时尚早,但在捐献者-受者配型和移植后管理的其他几个领域,分子配型已准备就绪。在对潜在器官提供者进行评估时,向医生提供分子不匹配评分可能会扩大长期结果。在活体器官捐献和肾脏配对交换计划中实施分子配型也同样可行。本文将探讨目前对移植中免疫学配型的理解,以及表位和非表位分子生物学和遗传学在临床移植中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving long-term kidney allograft survival by rethinking HLA compatibility: from molecular matching to non-HLA genes.

Optimizing immunologic compatibility in organ transplantation extends beyond the conventional approach of Human Leukocyte Antigen (HLA) antigen matching, which exhibits significant limitations. A broader comprehension of the roles of classical and non-classical HLA genes in transplantation is imperative for enhancing long-term graft survival. High-resolution molecular HLA genotyping, despite its inherent challenges, has emerged as the cornerstone for precise patient-donor compatibility assessment. Leveraging understanding of eplet biology and indirect immune activation, eplet mismatch calculators and the PIRCHE-II algorithm surpass traditional methods in predicting allograft rejection. Understanding minor histocompatibility antigens may also present an opportunity to personalize the compatibility process. While the application of molecular matching in deceased donor organ allocation presents multiple technical, logistical, and conceptual barriers, rendering it premature for mainstream use, several other areas of donor-recipient matching and post-transplant management are ready to incorporate molecular matching. Provision of molecular mismatch scores to physicians during potential organ offer evaluations could potentially amplify long-term outcomes. The implementation of molecular matching in living organ donation and kidney paired exchange programs is similarly viable. This article will explore the current understanding of immunologic matching in transplantation and the potential applications of epitope and non-epitope molecular biology and genetics in clinical transplantation.

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来源期刊
Frontiers in Genetics
Frontiers in Genetics Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
5.50
自引率
8.10%
发文量
3491
审稿时长
14 weeks
期刊介绍: Frontiers in Genetics publishes rigorously peer-reviewed research on genes and genomes relating to all the domains of life, from humans to plants to livestock and other model organisms. Led by an outstanding Editorial Board of the world’s leading experts, this multidisciplinary, open-access journal is at the forefront of communicating cutting-edge research to researchers, academics, clinicians, policy makers and the public. The study of inheritance and the impact of the genome on various biological processes is well documented. However, the majority of discoveries are still to come. A new era is seeing major developments in the function and variability of the genome, the use of genetic and genomic tools and the analysis of the genetic basis of various biological phenomena.
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