给他们血管和免疫细胞:如何填补类器官的空白。

IF 2.9 4区 生物学 Q1 ANATOMY & MORPHOLOGY
Cells Tissues Organs Pub Date : 2023-01-01 Epub Date: 2023-01-30 DOI:10.1159/000529431
Sophronia Yip, Nan Wang, Ryohichi Sugimura
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引用次数: 0

摘要

有效和相关的模型对于具有生物学相关性的研究或在正确的道路上进行至关重要。由于成熟的二维细胞培养缺乏壁龛和线索,啮齿类动物模型因物种而异,三维类器官成为研究的强大平台。从干细胞体外培养,类器官在细胞中是异质的,并且与体内环境非常相似。类器官也概括了独特的人类特征,如果从人类来源培养,并进行基因改造。然而,一类类器官只拥有有限的细胞选择。特别是,血管和免疫细胞的缺失限制了类器官从营养、线索或关键的相互作用中获得,破坏了类器官作为生理或病理模型的有效性。为了填补目前的空白,迫切需要提供具有血管系统和免疫细胞的类器官。本文综述了生理和病理类器官模型的制备方法,并对血管化或免疫的方法进行了综述。我们继续讨论每种方法的优缺点,以及当前问题的一些新解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Give Them Vasculature and Immune Cells: How to Fill the Gap of Organoids.

Valid and relevant models are critical for research to have biological relevance or to proceed in the right path. As well-established two-dimensional cell cultures lack niches and cues and rodent models differ in species, three-dimensional organoids emerged as a powerful platform for research. Cultured in vitro from stem cells, organoids are heterogeneous in cells and closely resemble the in vivo settings. Organoids also recapitulate the unique human features if cultured from a human source and are subjected to genetic modification. However, one type of organoid possesses only a limited selection of cells. In particular, the absence of vasculature and immune cells restricts the organoids from nutrition, cues, or critical interactions, undermining the validity of organoids as physiological or pathological models. To fill the current gap, there is an urgent need to provide organoids with vasculature and immune cells. In this paper, we review the methods to generate physiological and pathological organoid models and summarize ways to vascularize or immunize them. Our discussion continues with some advantages and disadvantages of each method and some emerging solutions to current problems.

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来源期刊
Cells Tissues Organs
Cells Tissues Organs 生物-发育生物学
CiteScore
4.90
自引率
3.70%
发文量
45
审稿时长
6-12 weeks
期刊介绍: ''Cells Tissues Organs'' aims at bridging the gap between cell biology and developmental biology and the emerging fields of regenerative medicine (stem cell biology, tissue engineering, artificial organs, in vitro systems and transplantation biology). CTO offers a rapid and fair peer-review and exquisite reproduction quality. Special topic issues, entire issues of the journal devoted to a single research topic within the range of interests of the journal, are published at irregular intervals.
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