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髓系细胞对于尾巴截断后再生允许环境的出现是必需的。

The myeloid lineage is required for the emergence of a regeneration-permissive environment following tail amputation.

机构信息

Wellcome Trust/Cancer Research UK Gurdon Institute, University of Cambridge, Cambridge, CB1 2QN, UK

Department of Zoology, University of Cambridge, Cambridge, CB2 3EJ, UK.

出版信息

Development. 2020 Feb 5;147(3):dev185496. doi: 10.1242/dev.185496.

Abstract

Regeneration-competent vertebrates are considered to suppress inflammation faster than non-regenerating ones. Hence, understanding the cellular mechanisms affected by immune cells and inflammation can help develop strategies to promote tissue repair and regeneration. Here, we took advantage of naturally occurring tail regeneration-competent and -incompetent developmental stages of tadpoles. We first establish the essential role of the myeloid lineage for tail regeneration in the regeneration-competent tadpoles. We then reveal that upon tail amputation there is a myeloid lineage-dependent change in amputation-induced apoptosis levels, which in turn promotes tissue remodelling, and ultimately leads to the relocalization of the regeneration-organizing cells responsible for progenitor proliferation. These cellular mechanisms failed to be executed in regeneration-incompetent tadpoles. We demonstrate that regeneration incompetency is characterized by inflammatory myeloid cells whereas regeneration competency is associated with reparative myeloid cells. Moreover, treatment of regeneration-incompetent tadpoles with immune-suppressing drugs restores myeloid lineage-controlled cellular mechanisms. Collectively, our work reveals the effects of differential activation of the myeloid lineage on the creation of a regeneration-permissive environment and could be further exploited to devise strategies for regenerative medicine purposes.

摘要

再生能力强的脊椎动物被认为比非再生脊椎动物更快地抑制炎症。因此,了解受免疫细胞和炎症影响的细胞机制有助于开发促进组织修复和再生的策略。在这里,我们利用自然发生的尾巴再生能力强和弱的蝌蚪发育阶段。我们首先确定了髓系细胞在再生能力强的蝌蚪尾巴再生中的基本作用。然后我们揭示,在尾巴截断后,截断诱导的细胞凋亡水平发生了髓系细胞依赖性变化,这反过来又促进了组织重塑,最终导致负责祖细胞增殖的再生组织细胞的重新定位。这些细胞机制在再生能力弱的蝌蚪中无法执行。我们证明,再生能力弱的特征是炎症性髓系细胞,而再生能力强的则与修复性髓系细胞有关。此外,用免疫抑制药物治疗再生能力弱的蝌蚪可恢复髓系细胞控制的细胞机制。总之,我们的工作揭示了髓系细胞的不同激活对创造一个再生许可环境的影响,并可进一步用于设计再生医学目的的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71e3/7033733/7104830b400e/develop-147-185496-g1.jpg

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