Fiore Daniela, Judson Robert N, Low Marcela, Lee Sunny, Zhang Erica, Hopkins Claudia, Xu Peter, Lenzi Andrea, Rossi Fabio M V, Lemos Dario R
The Biomedical Research Centre, University of British Columbia, 2222 Health Sciences Mall, Vancouver, BC, V6T 1Z3, Canada; Department of Experimental Medicine, Section of Medical Pathophysiology, Food Science and Endocrinology, Sapienza University of Rome, Viale Regina Elena, 324, Rome 00161, Italy.
The Biomedical Research Centre, University of British Columbia, 2222 Health Sciences Mall, Vancouver, BC, V6T 1Z3, Canada; Faculty of Medicine, The University of British Columbia, 317-2194 Health Sciences Mall, Vancouver, BC, V6T 1Z3, Canada.
Stem Cell Res. 2016 Jul;17(1):161-9. doi: 10.1016/j.scr.2016.06.007. Epub 2016 Jun 26.
Acute skeletal muscle injury triggers an expansion of fibro/adipogenic progenitors (FAPs) and a transient stage of fibrogenesis characterized by extracellular matrix deposition. While the perpetuation of such phase can lead to permanent tissue scarring, the consequences of its suppression remain to be studied. Using a model of acute muscle damage we were able to determine that pharmacological inhibition of FAP expansion by Nilotinib, a tyrosine kinase inhibitor with potent antifibrotic activity, exerts a detrimental effect on myogenesis during regeneration. We found that Nilotinib inhibits the damage-induced expansion of satellite cells in vivo, but it does not affect in vitro proliferation, suggesting a non cell-autonomous effect. Nilotinib impairs regenerative fibrogenesis by preventing the injury-triggered expansion and differentiation of resident CD45(-):CD31(-):α7integrin(-):Sca1(+) mesenchymal FAPs. Our data support the notion that the expansion of FAPs and transient fibrogenesis observed during regeneration play an important trophic role toward tissue-specific stem cells.
急性骨骼肌损伤会引发成纤维/脂肪生成祖细胞(FAPs)的扩增以及以细胞外基质沉积为特征的短暂纤维化阶段。虽然该阶段的持续存在会导致永久性组织瘢痕形成,但其抑制的后果仍有待研究。利用急性肌肉损伤模型,我们能够确定,用具有强大抗纤维化活性的酪氨酸激酶抑制剂尼洛替尼对FAP扩增进行药理学抑制,会对再生过程中的肌生成产生有害影响。我们发现,尼洛替尼在体内抑制损伤诱导的卫星细胞扩增,但不影响其体外增殖,提示存在非细胞自主效应。尼洛替尼通过阻止驻留的CD45(-):CD31(-):α7整合素(-):Sca1(+)间充质FAPs因损伤引发的扩增和分化,损害再生性纤维化。我们的数据支持这样一种观点,即在再生过程中观察到的FAP扩增和短暂纤维化对组织特异性干细胞起着重要的营养作用。