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朱青 教授 简介

【来源: | 发布日期:2025-03-17 】



朱青,理学博士、教授、博士/硕士研究生导师现任广东药科大学广东省代谢病中西医结合研究中心中医药研究所副主任直属党支部书记,曾任美国弗吉尼亚联邦大学医学院助理教授。

从事高血压及相关肾脏疾病的病理生理机制研究、糖脂代谢性疾病中西医结合防治研究。主持国家自然科学基金面上项目、广东省基础与应用基础重点项目等科研课题8项,参与国家重点研发计划中医药现代化研究重大专项、广东省基础与应用基础重大项目、美国NIH重大研究课题等项目4申请国家发明专利5。在HypertensionKidney International等心血管疾病权威期刊发表SCI论文30篇,成果获国际知名学者专栏评述、高度评价。担任Frontiers in Cardiovascular Medicine学术编委和Cell Death & DiseaseJournal of HypertensionPytomedicine等期刊审稿专家2019年获世界中联中医药国际贡献奖-科技进步奖一等奖任中国民族医药学会方药量效研究分会常务理事、广东省中西医结合学会代谢病专委会常务委员兼青年委员会副主任委员广东省病理生理学会心血管专业委员会常务委员广东省青年科学家协会常务理事、中国生理学会肾脏药理专委会委员


研究方向

高血压及相关肾脏疾病的病理生理机制研究、糖脂代谢性疾病中西医结合防治研究


通讯地址

广东广州番禺大学城外环东路280号广东药科大学科技楼


邮编

510006  


电话

020-39352001


邮箱

zhuqing2018@gdpu.edu.cnzyq973@hotmail.com


【获奖情况】

1. 2019年,世界中联中医药国际贡献奖-科技进步奖一等奖(排名第三)

2. 2014年,美国弗吉尼亚联邦大学“杰出博士后研究奖”(排名第一)。


科研项目

先后主持国家自然科学基金面上项目、广东省基础与应用基础研究重点项目等课题8项,参与国家重点研发计划、广东省基础与应用基础重大项目、美国NIH重大项目等课题4

1. 2025/01-2027/12 广东药科大学-佛山市三水区人民医院联合基金,SY2024B07,溶血凝脂酶LYPLA1调控夜间高血压的作用与机制研究,20万元,在研,课题负责人

2. 2024/01-2025/12 广东省中医药局科研项目,20244043白术多糖调控肾脏小管细胞炎症改善代谢性高血压的作用及分子机制在研课题负责人

3. 2023/10-2026/12 企业横向项目,HTDJ2023-106,保护血管健康中草药产品研发,30万元在研课题负责人

4. 2018/09-2023/12 广东药科大学高层次人才启动项目,代谢性高血压的病理生理机制及中医药防治研究,100万元,结题,课题负责人

5. 2018/01-2021/12 国家自然科学基金面上项目81770707S1PR1抑制肾脏集合管上皮钠通道改善盐敏感高血压的分子机制62.4万元,结题,课题负责人

6. 2019/01-2021/12 广东省基础与应用基础研究重点项目2018KZDXM042Elabela抑制TGF-β改善UUO小鼠肾脏纤维化的作用和机制研究15万元,结题,课题负责人

7. 2019/12-2024/12 广东省基础与应用基础研究重大项目,2019B030302005,糖脂代谢性疾病中医湿热证的生物学基础和有效方药干预疗效机制研究4378万元,在研,项目总协调/骨干

8. 2018/12-2021/12 国家重点研发计划2018YFC1704200湿热证在2型糖尿病中的临床演变规律及其核心病机和辨证标准的系统研究761万元,结题,项目总协调/骨干

9. 2016/01-2018/12 教育部中央高校基本科研业务费,5000-31610052PHD2/HIF-1α通路在高灌注压致肾损伤中的作用和机制研究15万元,结题,课题负责人

10. 2015/10-2017/03 美国弗吉尼亚联邦大学CCTR项目,UL1TR000058Role of HIF-1α in elevated renal perfusion pressure-induced renal injuries5万美元,结题,课题负责人

11. 2011/01-2014/11 美国国立卫生研究院(NIHRO1重大项目,R01HL106042,肾髓质干细胞与盐敏感性高血压150万美元,已结题,项目骨干

12. 2007/08-2017/06 美国国立卫生研究院(NIHRO1重大项目,R01HL089563,肾髓质HIF脯氨酰羟化酶与盐敏感性高血压340万美元,已结题,项目骨干


学术论文

已发表SCI论文36篇,第一/通讯作者23篇,2Hypertension(高血压领域重要期刊),2篇论文获国际同行专栏述评、高度评价。论文如下(下划线为本人):

1通讯作者8

1. Wang L, Tao YF, Wang XS, Gan YH, Zeng YT, Li SS, Zhu Q (朱青)*. Aqueous extract of Phellinus igniarius ameliorates hyperuricemia and renal injury in adenine/potassium oxonate-treated mice[J]. Biomed Pharmacother, 2024, 177: 116859. [中科院2, IF: 6.9]

2. Chen Z, Yang B, Wang Z, Rong XL, Zhu Q* (朱青), Guo J*. Modulation of the gut microbiota by Fufang-Zhenzhu-Tiaozhi capsule attenuates hypertension induced by a high-fructose and high-salt diet[J]. Front Cell Infect Microbiol, 2022, 12: 854849. [中科院2, IF: 4.6]

3. Chen ZD, Wu CY, Liu YT, Li HN, Zhu YY, Huang CL, Lin HB, Qiao Q, Huang MM, Zhu Q*(朱青), Wang L*. ELABELA attenuates deoxycorticosterone acetate/salt-induced hypertension and renal injury by inhibition of NADPH oxidase/ROS/NLRP3 inflammasome pathway[J]. Cell Death Dis, 2020, 11(8): 698. [中科院1, IF: 8.1]

4. Zhang LL, Deng MK, Lu AF, Chen YT, Chen Y, Wu CY, Tan Z, Yang TX, Zhu Q* (朱青), Wang L*. Sodium butyrate attenuates angiotensin II-induced cardiac hypertrophy by inhibiting COX2/PGE2 pathway via a HDAC5/HDAC6-dependent mechanism[J]. J Cell Mol Med, 2019, 23(12): 8139-8150. [中科院2, IF: 4.3]

5. 全虹翰, 张琼艺, 高海英, 刘璇, 王雪松, 王敏, 朱青*. 基于数字化目诊技术探讨高脂血症的目络特征及与证候要素的相关性[J]. 中华中医药杂志, 2024, 39(10): 5157-5161.

6. 刘璇, 张琼艺, 全虹翰, 王雪松, 高海英, 詹会霞, 巩静, 朱青*,郭姣. 基于数字化目诊技术解析高血压的目络特征及与证候要素的相关性[J]. 中国中医基础医学杂志, 2024, 30(03): 413-417.

7. 杨彬, 陈哲, 全虹翰, 高海英, 朱青*. 橙皮苷对DOCA/Salt高血压大鼠心肾组织损害的保护作用[J]. 中国药理学通报, 2023, 39(09): 1705-1710.

8. 王臻, 王敏, 邓琪琪, 朱青*, 郭姣. 保肾方调控ERK/p38 MAPK信号通路减轻UUO小鼠肾脏纤维化的作用及机制[J]. 中国实验方剂学杂志, 2023, 29(21): 69-78.

(2)第一/共同第一作者15

9. Zhu Q# (朱青), Zhu YY#, Liu YT#, Tao YF, Lin YK, Lai SJ, Liang ZX, Chen YT, Chen Y, Wang L*. Moderation of gut microbiota and bile acid metabolism by chlorogenic acid improves high-fructose-induced salt-sensitive hypertension in mice[J]. Food Funct, 2022, 13(13): 6987-6999. [中科院1, IF: 6.317]

10. Liu YT#, Zhu Q# (朱青), Tao YF, Zeng YT, Li SS, Zeng LY, Zhang C, Chen Y*, Wang L*. Renal lysophospholipase A1 contributes to Enterococcus faecalis-induced hypertension by enhancing sodium reabsorption[J]. iScience, 2022, 25(12): 105403. [中科院2, IF: 4.6]

11. Zhu Q (朱青), Hu JP, Wang L, Wang WL, Wang ZC, Li PL, Li NJ. Overexpression of microRNA-429 transgene into the renal medulla attenuated salt-sensitive hypertension in Dahl S rats[J]. Am J Hypertens, 2021, 34(10): 1071-1077. [中科院3, IF: 3.2]

12. Zhu Q (朱青), Yang TX. Physio-pathological functions and enzymatic sources of soluble (pro)renin receptor[J]. Curr Opin Nephrol Hypertens, 2018, 27(2): 77-82. [中科院3, IF: 2.3]

13. Zhu Q (朱青), Hu JP, Wang L, Wang WL, Wang ZC, Li PL, Boini KM, Li NJ. Inhibition of microRNA-429 in the renal medulla increased salt sensitivity of arterial blood pressure in Sprague Dawley rats[J]. J Hypertens, 2017, 35(9): 1872-1880. [中科院2, IF: 3.3]

14. Wang L, Zhu Q (朱青共同第一), Lu AF, Liu XF, Zhang LL, Xu CM, Liu XY, Li HB, Yang TX. Sodium butyrate suppresses angiotensin II-induced hypertension by inhibition of renal (pro)renin receptor and intrarenal renin-angiotensin system[J]. J Hypertens, 2017, 35(9): 1899-1908. [中科院2, IF: 3.3]

15. Zhu Q (朱青), Li XX, Wang WL, Hu JP, Li PL, Conley S, Li NJ. Mesenchymal stem cell transplantation inhibited high salt-induced activation of the NLRP3 inflammasome in the renal medulla in Dahl S rats[J]. Am J Physiol-Renal, 2016, 310(7): F621-F627. [中科院2, IF: 3.7]

16. Zhu Q (朱青), Hu JP, Han WQ, Zhang F, Li PL, Wang ZC, Li NJ. Silencing of HIF prolyl-hydroxylase 2 gene in the renal medulla attenuated salt-sensitive hypertension in Dahl S Rats[J]. Am J Hypertension, 2014, 27(1): 107-113. [中科院3, IF: 3.2]

17. Wang ZC, Zhu Q (共同第一), Li PL, Dhaduk R, Zhang F, Gerl TW, Li NJ. Silencing of hypoxia inducible factor-1{alpha} gene attenuated chronic ischemic renal injury in two-kidney one-clip rats[J]. Am J Physiol-Renal, 2014, 306(10): F1236-F1242. [中科院2, IF: 3.7]

18. Zhu Q (朱青), Wang ZC, Xia M, Zhang F, Li PL, Li NJ. Overexpression of HIF-1{alpha} transgene in the renal medulla attenuated salt sensitive hypertension in Dahl S rats[J]. BBA-MOL BASIS DIS, 2012, 1822(6): 936-941.

19. Zhu Q (朱青), Liu M, Han WQ, Li PL, Wang ZC, Li NJ. Overexpression of HIF prolyl-hydoxylase-2 transgene in the renal medulla induced a salt-sensitive hypertension[J]. J Cell Mol Med, 2012, 16(11): 2701-2707. [中科院2, IF: 4.3]

20. Zhu Q (朱青), Xia M, Wang ZC, Li PL, Li NJ. A novel lipid natriuretic factor in the renal medulla: sphingosine-1-phosphate[J]. Am J Physiol-Renal, 2011, 301(1): F35-F41.专栏评论 [中科院2, IF: 3.7]

21. Zhu Q (朱青), Wang ZC, Xia M, Li PL, Van Tassell BW, Abbate A, Dhaduk R, Li NJ. Silencing of hypoxia-inducible factor-1{alpha} gene attenuated angiotensin II-induced renal injury in Sprague-Dawley rats[J]. Hypertension, 2011, 58(4): 657-664. [中科院1, IF: 7.2]

22. Wang ZC#, Zhu Q# (朱青), Xia M, Li PL, Hinton SJ, Li NJ. Hypoxia-inducible factor prolyl-hydroxylase 2 senses high-salt intake to increase hypoxia inducible factor 1α levels in the renal medulla[J]. Hypertension, 2010, 55(5): 1129-1136. [中科院1, IF: 7.2]

23. Zhu Q (朱青), Song BT, Zhang C, Ou YB, Xie CH, Liu J. Construction and functional characteristics of tuber-specific and cold-inducible chimeric promoters in potato[J]. Plant Cell Rep, 2008, 27(1): 47-55. [中科院2, IF: 5.3]

3参与作者13

24. Zhu YY, Tao YF, Wu CY, Zeng YT, Du HT, Xiang QK, Chen Y, Zhu Q (朱青), Wang L. Renal Farnesoid X Receptor improves high fructose-induced salt-sensitive hypertension in mice by inhibiting DNM3 to promote nitro oxide production[J]. J Hypertens, 2022, 40(8): 1577-1588.

25. Hu GZ, Zhu Q (朱青), Wang WL, Xie DP, Chen CL, Li PL, Ritter JK, Li NJ. Collecting duct-specific knockout of sphingosine-1-phosphate receptor 1 aggravates DOCA-salt hypertension in mice[J]. J Hypertens, 2021, 39(8): 1559-1566.

26. Kong YL, Zhao XD, Qiu MJ, Lin Y, Feng PN, Li SC, Liang BE, Zhu Q (朱青), Huang H, Li CL, Wang WD. Tubular Mas receptor mediates lipid-induced kidney injury[J]. Cell Death Dis, 2021, 12(1): 110.

27. Wu CY, Chen ZD, Zhang LL, Zhu YY, Deng MK, Huang CL, Liu YT, Zhu Q (朱青), Wang L. Sodium butyrate ameliorates deoxycorticosterone acetate/salt-induced hypertension and renal damage by inhibiting the MR/SGK1 pathway[J]. Hypertens Res, 2021, 44(2): 168-178.

28. Zhu YY, Liu YT, Wu CY, Li HN, Du HT, Yu HJ, Huang CL, Chen YT, Wang WD, Zhu Q (朱青), Wang L. Enterococcus faecalis contributes to hypertension and renal injury in Sprague-Dawley rats by disturbing lipid metabolism[J]. J Hypertens, 2021, 39(6): 1112-1124

29. Chen Y, Zhu YY, Wu CY, Lu AF, Deng MK, Yu HJ, Huang CL, Wang WD, Li CL, Zhu Q(朱青), Wang L*. Gut dysbiosis contributes to high fructose-induced salt-sensitive hypertension in Sprague-Dawley rats[J]. Nutrition, 2020, 75-76: 110766.

30. Wang ZC, Zhu Q (朱青), Wang WL, Hu JP, Li PL, Yi F, Li NJ. Downregulation of microRNA-429 contributes to angiotensin II-induced profibrotic effect in rat kidney[J]. Am J Physiol Renal Physiol, 2018, 315(6): F1536-F1541.

31. Wang ZC, Zhu Q (朱青), Wang WL, Yi F, Li PL, Boini KM, Li NJ. Infusion of valproic acid into the renal medulla activates stem cell population and attenuates salt-sensitive hypertension in Dahl S rats[J]. Cell Physiol Biochem, 2017, 42(3): 1264-1273.

32. Hu JP, Zhu Q (朱青), Li PL, Wang WL, Yi F, Li NJ. Stem cell conditioned culture media attenuated albumin-induced epithelial-mesenchymal transition in renal tubular cells[J]. Cell Physiol Biochem, 2015, 35(5): 1719-1728.

33. Hu JP, Zhu Q (朱青), Xia M, Guo TL, Wang ZC, Li PL, Han WQ, Yi F, Li NJ. Transplantation of mesenchymal stem cells into the renal medulla attenuated salt-sensitive hypertension in Dahl S rat[J]. J Mol Med, 2014, 92(11): 1139-1145. 专栏评论

34. Han WQ, Zhu Q (朱青), Hu JP, Li PL, Zhang F, Li NJ. Hypoxia-inducible factor prolyl-hydroxylase-2 mediates transforming growth factor beta 1-induced epithelial-mesenchymal transition in renal tubular cells[J]. BBA-Mol Cell Res, 2013, 1833(6): 1454-1462.

35. Wang ZC, Tang L, Zhu Q (朱青), Yi F, Zhang F, Li PL, Li NJ. Hypoxia-inducible factor-1{alpha} contributes to the profibrotic action of angiotensin II in renal medullary interstitial cells[J]. Kidney Int, 2011, 79(3): 300-310. 专栏评论

36. Zhang C, Yi F, Xia M, Boini KM, Zhu Q (朱青), Laperle LA, Abais JM, Brimson CA, Li PL. NMDA receptor-mediated activation of NADPH oxidase and glomerulosclerosis in hyperhomocysteinemic rats[J]. Antioxid Redox Signal, 2010, 13(7): 975-986.