CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Human embryonic stem cell-derived mesenchymal stem cell secretome reverts silica-induced airway epithelial cell injury by regulating Bmi1 signaling.
Human embryonic stem cell-derived mesenchymal stem cell secretome reverts silica-induced airway epithelial cell injury by regulating Bmi1 signaling.
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矽肺是一种由长期吸入和沉积二氧化硅颗粒引起的不可逆慢性肺部疾病,目前无法治愈。气道上皮干细胞的耗竭在矽肺发病中起致病作用。
在本研究中,我们探讨了人胚胎干细胞(hESC)来源的MSC样免疫和基质调节细胞(IMRCs)(hESC-MSC-IMRCs)——一种可用于临床的可制造MSCs——对矽肺小鼠的治疗效果及潜在机制。
我们的结果表明,hESC-MSC-IMRCs移植可减轻小鼠中二氧化硅诱导的矽肺,伴随抑制上皮-间充质转化(EMT)、激活B细胞特异性莫洛尼鼠白血病病毒整合位点1(Bmi1)信号通路以及气道上皮细胞再生。与此一致,hESC-MSC-IMRC的分泌组表现出在SiO 2 诱导的HBECs损伤后恢复原代人支气管上皮细胞(HBECs)增殖和分化的效力与可塑性的能力。在机制上,该分泌组通过激活BMI1信号通路以及恢复气道基底细胞增殖和分化来解决SiO 2 诱导的HBECs损伤。
此外,BMI1的激活显著增强了HBEC在类器官中增殖和分化为多种气道上皮细胞类型的能力。细胞因子阵列显示,DKK1、VEGF、uPAR、IL-8、Serpin E1、MCP-1和Tsp-1是hESC-MSC-IMRC分泌组中的主要因子。这些结果表明,hESC-MSC-IMRCs及其分泌组对矽肺具有潜在治疗作用,其部分机制是通过激活Bmi1信号通路,逆转气道上皮干细胞的耗竭,进而增强肺上皮干细胞的效能和可塑性。
Silicosis is an irreversible chronic pulmonary disease caused by long-term inhalation and deposition of silica particles, which is currently incurable. The exhaustion of airway epithelial stem cells plays a pathogenetic role in silicosis. In present study, we investigated therapeutic effects and potential mechanism of human embryonic stem cell (hESC)-derived MSC-likes immune and matrix regulatory cells (IMRCs) (hESC-MSC-IMRCs), a type of manufacturable MSCs for clinical application in silicosis mice.
Our results showed that the transplantation of hESC-MSC-IMRCs led the alleviation of silica-induced silicosis in mice, accompanied by inhibiting epithelia-mesenchymal transition (EMT), activating B-cell-specific Moloney murine leukemia virus integration site 1 (Bmi1) signaling and airway epithelial cell regeneration. In consistence, the secretome of hESC-MSC-IMRC exhibited abilities to restore the potency and plasticity of primary human bronchial epithelial cells (HBECs) proliferation and differentiation following the SiO 2 -induced HBECs injury.
Mechanistically, the secretome resolved the SiO 2 -induced HBECs injury through the activation of BMI1 signaling and restoration of airway basal cell proliferation and differentiation.
Moreover, the activation of BMI1 significantly enhanced the capacity of HBEC proliferation and differentiation to multiple airway epithelial cell types in organoids. Cytokine array revealed that DKK1, VEGF, uPAR, IL-8, Serpin E1, MCP-1 and Tsp-1 were the main factors in the hESC-MSC-IMRC secretome.
These results demonstrated a potential therapeutic effect of hESC-MSC-IMRCs and their secretome for silicosis, in part through a mechanism by activating Bmi1 signaling to revert the exhaustion of airway epithelial stem cells, subsequentially enhance the potency and plasticity of lung epithelial stem cells.
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