
葉紅,女,博士,病理生理學(xué)系教授、博士生導(dǎo)師。1993年畢業(yè)于湖南醫(yī)科大學(xué)(現(xiàn)中南大學(xué)湘雅醫(yī)學(xué)院)預(yù)防醫(yī)學(xué)系;1999年畢業(yè)于同濟醫(yī)科大學(xué)(現(xiàn)華中科技大學(xué)同濟醫(yī)學(xué)院)病理生理學(xué)系,獲碩士學(xué)位后留校任教;2004年獲病理生理學(xué)博士學(xué)位,導(dǎo)師-劉聲遠教授和王迪潯教授;2006年任副教授;2015年晉升為教授。期間2010/01-2011/08在美國Medical College of Georgia (現(xiàn)名Augusta University)的Vascular Biology Center從事博士后研究。主要從事呼吸系統(tǒng)基質(zhì)代謝紊亂相關(guān)疾病的發(fā)病機制研究(肺纖維化、胸膜纖維化和支氣管哮喘);已獲得國家自然科學(xué)基金面上項目資助6項;以通訊或第一作者發(fā)表SCI收錄論文23篇。
E-mail:yehmwl@hust.edu.cn
研究方向:
肺纖維化:自身免疫性疾病引起間質(zhì)性肺損傷的機制;空氣污染加重肺纖維化的機制;肺纖維化的靶向治療研究。
胸膜纖維化:結(jié)核性胸膜炎導(dǎo)致胸膜纖維化的的機制。
支氣管哮喘:氣道平滑肌重建在哮喘發(fā)病機制中的作用,空氣污染加重哮喘的機制。
主要學(xué)術(shù)貢獻:
1.在肺纖維化研究領(lǐng)域:發(fā)現(xiàn)MCP-1激活劑Midkine介導(dǎo)PM2.5加重實驗性肺纖維化;CD8+組織駐留記憶T細胞在博來霉素誘導(dǎo)的肺纖維化中是必需的;DEC1參與了晝夜節(jié)律紊亂加重的肺纖維化;SH2超親體通過阻斷磷酸酪氨酸途徑可作為肺纖維化治療的新的靶點;miR-18a-5p表達下調(diào)靶向作用于TGF-βRII而介導(dǎo)胸膜下肺纖維化。
2.在胸膜纖維化研究領(lǐng)域:IL-10介導(dǎo)系統(tǒng)性紅斑狼瘡胸膜重塑;剪接因子SRSF6介導(dǎo)胸膜纖維化;miR-4739靶向作用于BMP-7而介導(dǎo)胸膜纖維化的發(fā)生;Lgl1通過調(diào)節(jié)胸膜間皮細胞的極性而介導(dǎo)胸膜纖維化的發(fā)生。
3.在支氣管哮喘研究領(lǐng)域:PM2.5暴露誘導(dǎo)的氣道平滑肌細胞衰老相關(guān)分泌表型有助于氣道重塑;BMAL1/p53介導(dǎo)的支氣管上皮細胞自噬參與了PM2.5加重的哮喘;支氣管平滑肌細胞中Ryanodine受體中FK506結(jié)合蛋白12.6 kD的解離介導(dǎo)哮喘氣道高反應(yīng)性;IL-4通過促進支氣管上皮細胞包含caveolin-1的脂筏聚集而促進MUC5AC合成,在支氣管哮喘的發(fā)生中起作用。
教學(xué)和人才培養(yǎng):
承擔課程:
本科生(五年制、八年制):病理生理學(xué)全英語和雙語教學(xué)。
病理生理學(xué)慕課
博士生:臨床病理生理學(xué)選修課
碩士生:高級病理生理學(xué)選修課
人才培養(yǎng):
碩士畢業(yè)生:9人
博士畢業(yè)生:5人
博士后(在站):1人
主持的科研項目:
1.國家自然科學(xué)基金面上項目、編號82470100、細胞基質(zhì)蛋白在胸膜纖維化發(fā)病中的作用及機制研究、2025/01-2028/12、48.5萬元、在研、主持。
2.國家自然科學(xué)基金面上項目、編號82270075、肺內(nèi)記憶T細胞生成增多和功能異常在類風(fēng)濕關(guān)節(jié)炎并發(fā)間質(zhì)性肺疾病(RA-ILD)中的作用及機制研究、2023/01-2026/12、52萬元、在研、主持。
3.國家自然科學(xué)基金面上項目、編號82070066、Midkine/MCP-1信號在可吸入顆粒物加重胸膜下區(qū)肺纖維化中的作用及其機制研究、2021/01-2024/12、55萬元、已結(jié)題、主持。
4.國家自然科學(xué)基金面上項目、編號81873401、腺苷酸環(huán)化酶在支氣管哮喘氣道平滑肌重建中的作用及其機制研究、2019/01-2022/12、57萬元、已結(jié)題、主持。
5.國家自然科學(xué)基金面上項目、編號81570087、胸膜間皮細胞頂-底極性丟失在胸膜纖維化發(fā)生中的作用、2016/01-2019/12、55萬元、已結(jié)題、主持。
6.國家自然科學(xué)基金面上項目、編號30770943、哮喘氣道平滑肌細胞肌漿網(wǎng)膜上FKBP12.6與RyR2結(jié)合活性的變化及其在氣道高反應(yīng)性發(fā)生機制中的作用、2008/01-2010/12、30萬元、已結(jié)題、主持。
代表性科研論文:
(按時間倒序,#第一作者,*通訊作者,IF為2024年公布的影響因子):
1. Pei-Pei Cheng# , Xin-Liang He#, Zi-Heng Jia, Shi-He Hu, Xiao Feng, Ye-Han Jiang , Qian Li , Li-Qin Zhao, Xiao-Lin Cui, Shu-Yi Ye, Li-Mei Liang, Lin-Jie Song, Meng Wang, Fan Yu, Liang Xiong, Fei Xiang, Xiaorong Wang, Wan-Li Ma*,Hong Ye*.Midkine, a novel MCP-1 activator mediated PM2.5-aggravated experimental pulmonary fibrosis. Environment International. 2025;197:109354.[IF:10.3]
2.Qian Niu#, Li-Mei Liang#, Shu-Yi Ye, Chen-Yue Lian, Qian Li, Xiao Feng, Shuai-Jun Chen, Meng Wang, Yuan-Yi Zheng, Xiao-Lin Cui, Li-Qin Zhao, Zi-Heng Jia, Shi-He Hu, Pei-Pei Cheng, Peng-Cheng Cai,Hong Ye*,Wan-Li Ma*. IL-10 mediates pleural remodeling in systemic lupus erythematosus. Cell Communication and Signaling. 2024; 22:554.[IF:8.2]
3.Feng X#, Yu F#, He XL, Cheng PP, Niu Q, Zhao LQ, Li Q, Cui XL, Jia ZH, Ye SY, Liang LM, Song LJ, Xiong L, Xiang F, Wang XR,Ma WL*,Ye H*. CD8+tissue-resident memory T cells are essential in bleomycin-induced pulmonary fibrosis. Am J Physiol Cell Physiol.2024 Nov 1; 327(5): C1178-C1191[IF:5.0]
4. Chen SJ#, Yu F#, Feng X, Li Q, Jiang YH, Zhao LQ, Cheng PP, Wang M, Song LJ, Liang LM, He XL, Xiong L, Xiang F, Wang X,Ye H*,Ma WL*. DEC1 is involved in circadian rhythm disruption-exacerbated pulmonary fibrosis. Cell Commun Signal. 2024 Apr 26;22(1):245. doi: 10.1186/s12964-024-01614-w. PMID: 38671456.[IF:8.2]
5. Cheng PP#, Yu F#, Chen SJ, Feng X, Jia ZH, Hu SH, Cui XL, Zhou YY, Niu Q, Liang LM, Wang M, Song LJ, He XL, Xiong L, Xiang F,Wang X, Ma WL,Ye H*. PM2.5 exposure-induced senescence-associated secretory phenotype in airway smooth muscle cells contributes to airway remodeling. Environ Pollut.2024 Apr 15:347:123674.doi: 10.1016/j.envpol.2024.123674.[IF:7.6]
6. Chen SJ#, Huang Y#, Yu F, Feng X, Zheng YY, Li Q, Niu Q, Jiang YH, Zhao LQ, Wang M, Cheng PP, Song LJ, Liang LM, He XL, Xiong L, Xiang F, Wang X,Ma WL*,Ye H*. BMAL1/p53 mediating bronchial epithelial cell autophagy contributes to PM2.5-aggravated asthma. Cell Commun Signal. 2023 Feb 20;21(1):39.[IF:8.2]
7. Wang M#, Liu AD#, Niu Q, Feng X, Zheng YY, Chen SJ, Xu H, Li Q, Hou GQ, Bi XY, Lu YZ, Cheng PP, Liang LM, Jiang YH, Zhao LQ, Liu F, Song LJ, Zhou LL, Xiao LY, Chen F, Li SS,Ma WL*, Cao X*,Ye H*. Blockade of phosphotyrosine pathways suggesting SH2 superbinder as a novel therapy for pulmonary fibrosis. Theranostics. 2022 May 26;12(10):4513-4535.[IF:12.4]
8. Zhou LL#, Cheng PP#, He XL, Liang LM, Wang M, Lu YZ, Song LJ, Xiong L, Xiang F, Yu F, Wang X, Xin JB, Greer PA, Su Y,Ma WL*,Ye H*. Pleural mesothelial cell migration into lung parenchyma by calpain contributes to idiopathic pulmonary fibrosis. J Cell Physiol. 2022 Jan;237(1):566-579.[IF:4.5]
9. Liang LM#, Xiong L#, Cheng PP, Chen SJ, Feng X, Zhou YY, Niu Q, Wang M, Chen Q, Song LJ, Yu F, He XL, Xiang F, Wang X,Ye H*,Ma WL*. Splicing factor SRSF6 mediates pleural fibrosis. JCI Insight. 2021 May;6(10):e146197.[IF:6.3]
10.Liu F#, Yu F, Lu YZ, Cheng PP, Liang LM, Wang M, Chen SJ, Huang Y, Song LJ, He XL, Xiong L, Xin JB,Ma WL*,Ye H*. Crosstalk between pleural mesothelial cell and lung fibroblast contributes to pulmonary fibrosis. Biochim Biophys Acta Mol Cell Res. 2020 Nov; 1867(11):118806.[IF: 4.6]
11.Wang M#, Xiong L#, Jiang LJ, Lu YZ, Liu F, Song LJ, Xiang F, He XL, Yu F, Shuai SY, Ma WL*,Ye H*.miR-4739 mediates pleuralfibrosis by targeting bone morphogenetic protein 7. EBioMedicine.2019; 41:670-682. [IF: 9.7]
12. Song LJ#, Zhou LL, Wang M, Liu F, Xiong L, Xiang F, Yu F, He XL, Xu JJ, Shi HZ, Xin JB,Ye H*, Ma WL*. Lethal (2) giant larvae regulates pleural mesothelial cell polarity in pleural fibrosis. Biochim Biophys Acta Mol Cell Res. 2018; 1865(9): 1201-1210. [IF: 4.6]
13. Rao SS#, Mu Q#, Zeng Y, Cai PC, Liu F, Yang J, Xia Y, Zhang Q, Song LJ, Zhou LL,Li FZ, Lin YX, Fang J, Greer PA, Shi HZ, Ma WL, Su Y*,Ye H*. Calpain-activated mTORC2/Akt pathway mediates airway smooth muscle remodelling in asthma. Clin Exp Allergy. 2017;47(2):176-189.[IF:6.3]
14. Zhang Q#,Ye H#, Xiang F, Song LJ, Zhou LL, Cai PC, Zhang JC, Yu F, Shi HZ, Su Y, Xin JB*, Ma WL*. miR-18a-5p Inhibits Sub-pleural Pulmonary Fibrosis by Targeting TGF-β Receptor II. Mol Ther. 2017; 25(3):728-738. [IF: 12.1]
15. Xia Y#, Cai PC#, Yu F, Xiong L, He XL, Rao SS, Chen F, Yang XP, Ma WL,Ye H*. IL-4-induced caveolin-1-containing lipid rafts aggregation contributes to MUC5AC synthesis in bronchial epithelial cells. Respir Res. 2017;18(1):174.[IF:4.7]
16. Li FZ#, Cai PC#, Song LJ, Zhou LL, Zhang Q, Rao SS, Xia Y, Xiang F, Xin JB,Greer PA, Shi HZ, Su Y, Ma WL,Ye H*. Crosstalk between calpain activation and TGF-β1 augments collagen-I synthesis in pulmonary fibrosis. Biochim Biophys Acta.2015; 1852(9):1796-804. [IF: 4.2]
17. Du Y#, Zhao J#, Li X#, Jin S, Ma WL, Mu Q, Xu S, Yang J, Rao S, Zhu L, Xin J, Cai PC, Su Y,Ye H*. Dissociation of FK506-binding protein 12.6 kD from ryanodine receptor in bronchial smooth muscle cells in airway hyperresponsiveness in asthma. Am J Respir Cell Mol Biol. 2014;50(2):398-408.[IF:5.9]