解开骨髓迷宫中阿里阿德涅的线索:干细胞/祖细胞相互作用组和分泌组的特写。

4区 医学 Q2 Biochemistry, Genetics and Molecular Biology
Dimitrios Agas, Maria Giovanna Sabbieti
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引用次数: 0

摘要

骨髓(BM)是一个多因素的、高度动态的、尚未完全“定位”的储层。BM迷宫般的景观是关于特化细胞和干细胞/祖细胞在指定微区域内散射的无情辩论的主题。当然,骨髓组织在骨建模和重塑、造血、免疫监视和内分泌反应整合中起着监督作用。诸如组织的地形特征、刚度和孔隙度等级等参数,以及细胞在干细胞/祖细胞外壳、激活和运动性方面的行为特性,都是一个不易解决的棘手问题。鉴于脑脊膜微域的破坏与许多严重的病理疾病有关,在多个层面上理解和保存脑脊膜工作空间已成为必要。确凿的证据表明,BM细胞占用者之间存在着复杂而严格调节的串扰。直接的物理细胞-细胞连接和可溶性介质,包括细胞因子、趋化因子、生长因子、外泌体和微囊泡,协调复合细胞内信号通路。确定的生物因子的时空作用确保了具有生理骨转换的功能性造血器官,并促进了多能基质/造血细胞的作用。近年来,基于生物功能支架和类器官结构构建生物工程生态位模拟模型的研究取得了显著进展。这些人工生物基结合并转化了生物信息学和组织工程的各个方面,以揭示生物基组织的复杂性。本章旨在揭示最近在理解BM在生理和某些情况下在炎症背景下的内部细胞-细胞对话方面的突破。BM迷宫正在逐渐被发现,但还有很长的路要走。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Untangling Ariadne's Thread Within the Bone Marrow Maze: A Close-Up View of Stem/Progenitor Cells' Interactome and Secretome.

The bone marrow (BM) is a multifactorial, highly dynamic, still not fully "mapped," reservoir. The BM labyrinthine landscape is subject to a relentless debate on the specialized and stem/progenitor cells' scattering within designated microareas. Certainly, BM tissue plays a watchdog role in bone modeling and remodeling, hematopoiesis, immune surveillance, and endocrine response integration. Parameters like tissue topographical distinctiveness, stiffness and porosity grade, and cells' behavioral idiosyncrasies in terms of stem/progenitor cell housing, activation, and motility represent a knotty problem not easily solved. Given that the disruption of BM microdomains has been associated with a number of severe pathological disorders, the comprehension and preservation of the BM workspace at multiple levels have become mandatory. Solid evidence has showed the existence of an intricate and tightly regulated cross-talk between the BM cellular occupants. Direct physical cell-cell connections and soluble mediators, including cytokines, chemokines, growth factors, exosomes and microvesicles, orchestrate composite intracellular signaling routes. The spatiotemporal action of definite biofactors ensures a functional blood-producing organ with a physiological bone turnover and prompts the action of multipotent stromal/hematopoietic cells. Recently, significant research efforts have been addressed to build bioengineered niche-mimic models based on biofunctionalized scaffolds and organoid-like constructs. These artificial BM niches combine and transduce various aspects of bioinformatics and tissue engineering to unravel the complexities of BM organization. This chapter aims to unfold the recent breakthroughs in the understanding of a BM intramural cell-cell dialogue in a physiological and, in some cases, within an inflammatory background. BM maze is gradually being discovered, but there is still a long way to go.

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来源期刊
Advances in experimental medicine and biology
Advances in experimental medicine and biology 医学-医学:研究与实验
CiteScore
5.90
自引率
0.00%
发文量
465
审稿时长
2-4 weeks
期刊介绍: Advances in Experimental Medicine and Biology provides a platform for scientific contributions in the main disciplines of the biomedicine and the life sciences. This series publishes thematic volumes on contemporary research in the areas of microbiology, immunology, neurosciences, biochemistry, biomedical engineering, genetics, physiology, and cancer research. Covering emerging topics and techniques in basic and clinical science, it brings together clinicians and researchers from various fields.
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