Advances in understanding the formation and fate of B-cell memory in response to immunization or infection.

Liam Kealy, Kim L Good-Jacobson
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引用次数: 3

Abstract

Immunological memory has the potential to provide lifelong protection against recurrent infections. As such, it has been crucial to the success of vaccines. Yet, the recent pandemic has illuminated key gaps in our knowledge related to the factors influencing effective memory formation and the inability to predict the longevity of immune protection. In recent decades, researchers have acquired a number of novel and powerful tools with which to study the factors underpinning humoral memory. These tools have been used to study the B-cell fate decisions that occur within the germinal centre (GC), a site where responding B cells undergo affinity maturation and are one of the major routes for memory B cell and high-affinity long-lived plasma cell formation. The advent of single-cell sequencing technology has provided an enhanced resolution for studying fate decisions within the GC and cutting-edge techniques have enabled researchers to model this reaction with more accuracy both in vitro and in silico. Moreover, modern approaches to studying memory B cells have allowed us to gain a better appreciation for the heterogeneity and adaptability of this vital class of B cells. Together, these studies have facilitated important breakthroughs in our understanding of how these systems operate to ensure a successful immune response. In this review, we describe recent advances in the field of GC and memory B-cell biology in order to provide insight into how humoral memory is formed, as well as the potential for generating lasting immunity to novel pathogens such as severe acute respiratory syndrome coronavirus 2.

Abstract Image

Abstract Image

免疫或感染反应中b细胞记忆的形成和命运的研究进展。
免疫记忆有可能提供终身保护,防止复发性感染。因此,它对疫苗的成功至关重要。然而,最近的大流行揭示了我们在影响有效记忆形成的因素方面的知识差距,以及无法预测免疫保护的寿命。近几十年来,研究人员已经获得了许多新颖而强大的工具来研究支撑体液记忆的因素。这些工具已被用于研究发生在生发中心(GC)内的B细胞命运决定,生发中心是响应B细胞经历亲和成熟的位置,是记忆B细胞和高亲和长寿浆细胞形成的主要途径之一。单细胞测序技术的出现为研究GC内的命运决定提供了更高的分辨率,尖端技术使研究人员能够在体外和计算机中更准确地模拟这种反应。此外,研究记忆B细胞的现代方法使我们能够更好地了解这类重要B细胞的异质性和适应性。总之,这些研究促进了我们对这些系统如何运作以确保成功免疫反应的理解的重要突破。在这篇综述中,我们描述了GC和记忆b细胞生物学领域的最新进展,以深入了解体液记忆是如何形成的,以及对新型病原体(如严重急性呼吸综合征冠状病毒2)产生持久免疫的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.20
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审稿时长
9 weeks
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