NO. | Beijing Time (UTC+8) | Local Time | Type | Presentation Topic | Speaker | Affiliation / Organization |
---|---|---|---|---|---|---|
1 | 13:30-13:40 | 13:30-13:40 | Symposium |
Exploring the therapeutic potential of promoting neovascularization in the infarcted area of the heart by using tumor cells derived from exocrine tissue |
Haobo Sun | |
2 | 13:40-13:50 | 13:40-13:50 | Symposium |
The evolution and prognostic value of 68Ga-Pentixafor uptake in the myocardium after acute infarction |
Yanni Jia | |
3 | 13:50-14:00 | 13:50-14:00 | Symposium |
miRNA-144 in medullary endothelial cell-derived exocrine secretion during acute cardiac infarction and evaluation of efficacy using PET/CT scan |
Xiaoji Liu | |
4 | 14:00-14:10 | 14:00-14:10 | Symposium |
Study on the regulatory effect and mechanism of human interstitial fibroblast inflammation in the heart |
Rao Lv | |
5 | 14:10-14:20 | 14:10-14:20 | Symposium |
TXNIP promotes activation of NLRP3 inflammatory bodies and enhances TGFB1/Smad3 signaling pathway, leading to cardiac fibrillation and impaired cardiac function after cardiac infarction in mice |
Yan Zhang | |
6 | 14:20-14:30 | 14:20-14:30 | Symposium |
Effect and mechanism of Sirt3-induced positive-ion microbubbles in a large animal model of pathological cardiac hyperplasia |
Chang Liu | |
7 | 14:30-14:40 | 14:30-14:40 | Symposium |
Musk Hoshin-gan promotes angiogenesis through the GDF15-TRPV4 signaling pathway and treats acute cardiac infarction |
Bingyan Wei | shanxiMedical University |
8 | 14:40-14:50 | 14:40-14:50 | Symposium |
Nitrification by caveolin-3: a novel mechanism of insulin resistance in prediabetic heart disease |
Zhijun Meng | Clinical Laboratory, Affiliated People’s Hospital of Shanxi Medical University, Shanxi Provincial People’s Hospital, Taiyuan 030012, Shanxi Province, People’s Republic of China |
9 | 14:50-15:00 | 14:50-15:00 | Symposium |
A study on the protective effect of interstitial fibroblasts in the early stage model |
Miao Xu | |
10 | 15:00-15:10 | 15:00-15:10 | Symposium |
Platelet membrane-encapsulated ribonucleic acid complex based on deep removal of ROS for the treatment of cardiac infarction |
Meng Sun | |
11 | 15:10-15:20 | 15:10-15:20 | Symposium |
Engineered adipose tissue-derived EVs loaded RvD1 promote muscle regeneration by ROS scavenging and immunoregulation |
Qizhi Shuai |