红细胞去核机制的新见解:从基础知识到临床应用。

EJHaem Pub Date : 2024-11-13 DOI:10.1002/jha2.1051
Qianli Zhuo, Zhaojun Zhang, Xiangdong Fang
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引用次数: 0

摘要

背景:红细胞去核是红细胞生成过程中至关重要的一步。通过去除细胞核,红细胞获得更大的灵活性,使它们能够轻松地穿过狭窄的毛细血管,从而提高氧气和二氧化碳运输的效率。这种转变强调了维持体内平衡所必需的细胞结构和功能之间的复杂平衡。主题:本综述深入探讨了红细胞去核的多方面过程,概述了其复杂的步骤,包括蛋白质分选、囊泡运输、细胞骨架重塑和凋亡调节,同时也探讨了体外提高红细胞去核率的潜力。我们强调这一过程的复杂调节,这是由多种因素精心策划的。这包括通过基因表达的调节精心引导蛋白质合成和分类的转录因子,以及在红细胞去核的各个阶段在转录后调控中起关键作用的非编码rna。此外,巨噬细胞通过吞噬和清除挤压的细胞核参与去核过程,进一步保证红细胞的正常发育。虽然许多研究深入探讨了去核的分子机制,但凋亡和抗凋亡过程在红细胞去核中的作用仍不完全清楚。在这篇综述中,我们旨在全面总结红细胞去核过程,并探讨体外红细胞生成的进展。在未来,对去核过程的更深入了解可以为患有贫血和其他相关疾病的患者提供重大益处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New insights into the mechanisms of red blood cell enucleation: From basics to clinical applications

New insights into the mechanisms of red blood cell enucleation: From basics to clinical applications

Background

Red blood cell (RBC) enucleation is a crucial step in the process of erythropoiesis. By removing the nucleus, RBCs gain greater flexibility, enabling them to traverse narrow capillaries with ease, thereby enhancing the efficiency of oxygen and carbon dioxide transport. This transformation underscores the intricate balance between cellular structure and function essential for maintaining homeostasis.

Topic

This review delves into the multifaceted enucleation process, outlining its complex steps that encompass protein sorting, vesicle trafficking, cytoskeletal remodeling, and apoptosis regulation, while also exploring the potential of enhancing the enucleation rate of RBCs in vitro. We emphasize the intricate regulation of this process, which is orchestrated by multiple factors. This includes transcription factors that meticulously guide protein synthesis and sorting through the modulation of gene expression, as well as non-coding RNAs that play a pivotal role in post-transcriptional regulation during various stages of RBC enucleation. Additionally, macrophages participate in the enucleation process by engulfing and clearing the extruded nuclei, further ensuring the proper development of RBCs. Although many studies have deeply explored the molecular mechanisms of enucleation, the roles of apoptosis and anti-apoptotic processes in RBC enucleation remain incompletely understood.

Implication

In this review, we aim to comprehensively summarize the RBC enucleation process and explore the progress made in ex vivo RBC generation. In the future, a deeper understanding of the enucleation process could provide significant benefits to patients suffering from anemia and other related conditions.

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