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缺氧对肾脏器官培养过程中分支特征和细胞亚群的影响。

Effect of Hypoxia on Branching Characteristics and Cell Subpopulations during Kidney Organ Culture.

作者信息

Hamon Morgan, Cheng Hsiao-Min, Johnson Ming, Yanagawa Norimoto, Hauser Peter V

机构信息

Medical and Research Services, Greater Los Angeles Veterans Affairs Healthcare System at Sepulveda, North Hills, CA 91344, USA.

Department of Medicine, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA 90095, USA.

出版信息

Bioengineering (Basel). 2022 Dec 14;9(12):801. doi: 10.3390/bioengineering9120801.

Abstract

During early developmental stages, embryonic kidneys are not fully vascularized and are potentially exposed to hypoxic conditions, which is known to influence cell proliferation and survival, ureteric bud branching, and vascularization of the developing kidney. To optimize the culture conditions of in vitro cultured kidneys and gain further insight into the effect of hypoxia on kidney development, we exposed mouse embryonic kidneys isolated at E11.5, E12.5, and E13.5 to hypoxic and normal culture conditions and compared ureteric bud branching patterns, the growth of the progenitor subpopulation hoxb7+, and the expression patterns of progenitor and differentiation markers. Branching patterns were quantified using whole organ confocal imaging and gradient-vector-based analysis. In our model, hypoxia causes an earlier expression of UB tip cell markers, and a delay in stalk cell marker gene expression. The metanephric mesenchyme (MM) exhibited a later expression of differentiation marker FGF8, marking a delay in nephron formation. Hypoxia further delayed the expression of stroma cell progenitor markers, a delay in cortical differentiation markers, as well as an earlier expression of medullary and ureteral differentiation markers. We conclude that standard conditions do not apply universally and that tissue engineering strategies need to optimize suitable culture conditions for each application. We also conclude that adapting culture conditions to specific aspects of organ development in tissue engineering can help to improve individual stages of tissue generation.

摘要

在早期发育阶段,胚胎肾脏的血管化并不完全,可能会暴露于缺氧环境中,而缺氧已知会影响细胞增殖与存活、输尿管芽分支以及发育中肾脏的血管化。为了优化体外培养肾脏的培养条件,并进一步深入了解缺氧对肾脏发育的影响,我们将在胚胎第11.5天、12.5天和13.5天分离的小鼠胚胎肾脏置于缺氧和正常培养条件下,比较输尿管芽分支模式、祖细胞亚群hoxb7+的生长情况以及祖细胞和分化标志物的表达模式。使用全器官共聚焦成像和基于梯度向量的分析对分支模式进行量化。在我们的模型中,缺氧导致输尿管芽顶端细胞标志物的表达提前,而柄细胞标志物基因的表达延迟。后肾间充质(MM)表现出分化标志物FGF8的表达延迟,这标志着肾单位形成延迟。缺氧进一步延迟了基质细胞祖细胞标志物的表达、皮质分化标志物的延迟以及髓质和输尿管分化标志物的提前表达。我们得出结论,标准条件并非普遍适用,组织工程策略需要为每种应用优化合适的培养条件。我们还得出结论,在组织工程中使培养条件适应器官发育的特定方面有助于改善组织生成的各个阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b1d/9774677/e3ace8828089/bioengineering-09-00801-g001.jpg

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