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Based on gene knockout animal models and human clinical samples, we have been engaged in the molecular pathological basis of vascular diseases for a long time. We have discovered the important regulatory mechanism of hypertension in patients with polycystic kidney disease and revealed the important molecular basis of the occurrence and development of transplanted arteriosclerosis. The research results were published in Nature Communications (IF5: 13.691), P.N.A.S (IF5: 10.359) and Circulation Research (IF5: 13.313). Currently, our research is focosing on exploring the regulatory mechanism of Inflammasomes and revealing their role in atherosclerosis.
Based on gene knockout animal models and human clinical samples, we have been engaged in the molecular pathological basis of vascular diseases for a long time. We have discovered the important regulatory mechanism of hypertension in patients with polycystic kidney disease and revealed the important molecular basis of the occurrence and development of transplanted arteriosclerosis. The research results were published in Nature Communications (IF5: 13.691), P.N.A.S (IF5: 10.359) and Circulation Research (IF5: 13.313). Currently, our research is focosing on exploring the regulatory mechanism of Inflammasomes and revealing their role in atherosclerosis.
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Chen Qiu,Yuan Sun,Jinying Li,Jiayi Zhou,Yuchen Xu,Cong Qiu,Kang Yu,Jia Liu,Yuanqing Jiang,Wenyu Cui, Guanghao Wang,He Liu,
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Xiaolong Zhu,Cong Qiu,Yiran Wang,Yuanqing Jiang,Yefeng Chen,Linge Fan,Ruizhe Ren, Yunyun Wang,Yu Chen, Yanzhi Feng,Xiaofei Zhou,Yunhui Zhu,
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