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新型转基因小鼠模型可实现体内全造血或选择性造血干细胞耗竭。

New transgenic mouse models enabling pan-hematopoietic or selective hematopoietic stem cell depletion in vivo.

机构信息

Institute for the Biology of Stem Cells, University of California-Santa Cruz, Santa Cruz, CA, 95064, USA.

Program in Biomedical Sciences and Engineering, Department of Molecular, Cell, and Developmental Biology, University of California-Santa Cruz, Santa Cruz, CA, 95064, USA.

出版信息

Sci Rep. 2022 Feb 24;12(1):3156. doi: 10.1038/s41598-022-07041-6.

Abstract

Hematopoietic stem cell (HSC) multipotency and self-renewal are typically defined through serial transplantation experiments. Host conditioning is necessary for robust HSC engraftment, likely by reducing immune-mediated rejection and by clearing limited HSC niche space. Because irradiation of the recipient mouse is non-specific and broadly damaging, there is a need to develop alternative models to study HSC performance at steady-state and in the absence of radiation-induced stress. We have generated and characterized two new mouse models where either all hematopoietic cells or only HSCs can be specifically induced to die in vivo or in vitro. Hematopoietic-specific Vav1-mediated expression of a loxP-flanked diphtheria-toxin receptor (DTR) renders all hematopoietic cells sensitive to diphtheria toxin (DT) in "Vav-DTR" mice. Crossing these mice to Flk2-Cre mice results in "HSC-DTR" mice which exhibit HSC-selective DT sensitivity. We demonstrate robust, rapid, and highly selective cell ablation in these models. These new mouse models provide a platform to test whether HSCs are required for long-term hematopoiesis in vivo, for understanding the mechanisms regulating HSC engraftment, and interrogating in vivo hematopoietic differentiation pathways and mechanisms regulating hematopoietic homeostasis.

摘要

造血干细胞(HSC)的多能性和自我更新通常通过连续移植实验来定义。宿主的调理对于强壮的 HSC 植入是必要的,可能通过减少免疫介导的排斥和清除有限的 HSC 龛位空间。由于受体小鼠的照射是非特异性的和广泛损伤的,因此需要开发替代模型来研究 HSC 在稳态和没有辐射应激的情况下的性能。我们已经生成并表征了两种新的小鼠模型,其中可以在体内或体外特异性诱导所有造血细胞或仅 HSC 死亡。造血特异性 Vav1 介导的loxP 侧翼白喉毒素受体(DTR)的表达使所有造血细胞对白喉毒素(DT)敏感,在“Vav-DTR”小鼠中。将这些小鼠与 Flk2-Cre 小鼠杂交会导致“HSC-DTR”小鼠,其表现出 HSC 选择性 DT 敏感性。我们证明了这些模型中存在强大、快速和高度选择性的细胞消融。这些新的小鼠模型为测试 HSC 是否需要体内长期造血、理解调节 HSC 植入的机制以及研究体内造血分化途径和调节造血稳态的机制提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54a0/8873235/914228bc2d80/41598_2022_7041_Fig1_HTML.jpg

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