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Notch信号通路活性,加重肥胖小鼠胰岛素分泌缺陷 。 减轻哮喘小鼠气道炎症并调节气道重塑[J]. 细胞与分子
本研究单独使用Notch激活剂Jagged1干预哮喘小鼠,发 免疫学杂志,2021,37(5):385-390.
现激活Notch通路可使哮喘小鼠肺组织病理损伤和纤维 PENG G R,ZHANG Y,WANG S P. Allicin inhibits TGF-
化进一步恶化,肺功能、Th17/Treg免疫失衡及炎症反应 β1/SMAD2 pathway to reduce airway inflammation and
进一步加重,证实了 Notch 信号通路活性增强可加重哮 regulate airway remodeling in asthmatic mice[J]. Chin J
Cell Mol Immunol,2021,37(5):385-390.
喘模型小鼠病情进展。本研究将牡荆素和Notch激活剂
[ 8 ] 张泽鹏,徐兴军,刘佳人,等 . 牡荆素对 1 型糖尿病小鼠
联合使用干预哮喘小鼠,结果发现,Notch激活剂可逆转
体内抗氧化酶活性及相关基因表达的影响[J]. 天然产物
牡荆素对哮喘小鼠的上述药理功效。这提示牡荆素可
研究与开发,2022,34(4):623-629.
通过抑制 Notch 信号而减轻哮喘小鼠 Th17/Treg 免疫失
ZHANG Z P,XU X J,LIU J R,et al. Effects of vitexin on
衡,进而改善肺功能障碍及炎症。
antioxidant enzyme activity and related gene expression in
综上所述,牡荆素可通过抑制Notch信号通路,改善
type 1 diabetic mice[J]. Nat Prod Res Dev,2022,34(4):
哮喘小鼠肺功能、Th17/Treg免疫失衡及炎症反应,减轻 623-629.
肺组织病理损伤及纤维化。 [ 9 ] 吴琳琳,梁东阁,何倩倩,等.黄芩苷通过Notch通路纠正
参考文献 细支气管炎模型小鼠 Th17/Treg 失衡[J]. 中国病理生理
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· 1854 · China Pharmacy 2024 Vol. 35 No. 15 中国药房 2024年第35卷第15期