AG百家乐大转轮-AG百家乐导航_怎么看百家乐走势_全讯网官网 (中国)·官方网站

Research News

Professor Tao Jun’s team from the First Affiliated Hospital of Sun Yat-sen University visualizes nano-gene transfection of stem cells to repair vascular endothelial damage

Share
  • Updated: Dec 29, 2020
  • Written:
  • Edited:
Source: The First Affiliated Hospital
Edited by: Tan Rongyu, Wang Dongmei

Recently, a research paper by Professor Tao Jun’s team from the Department of Hypertension and Vascular Disease of the First Affiliated Hospital at Sun Yat-sen University, which is entitled “Bimodal Imaging-visible Nanomedicine Integrating CXCR4 and VEGFa Genes Directs Synergistic Reendothelialization of Endothelial Progenitor Cells”, has been published in the internationally renowned academic journal Advanced Science.

Cardiovascular diseases have become the number one killer of the health in China. Vascular endothelial injury is the initial link and the basis of comorbidities. Therefore, maintaining vascular homeostasis is a key measure for the prevention and treatment of cardiovascular diseases. Stem cell-based therapy has been a continuous hot issue all over the world. However, traditional stem cell transplantation has many defects such as weak homing ability, proliferation and differentiation incapacity, and lack of evidence of in vivo repair after transplantation, which seriously impedes its treatment strategy formation and clinical application.

 
Bimodal Imaging-visible Nanomedicine Integrating CXCR4 and VEGFa Genes Directs Synergistic Reendothelialization of Endothelial Progenitor Cells
 
In order to solve the two major challenges in stem cell regenerative therapy for repairing vascular damage, Professor Tao Jun’s team has developed a multifunctional nanocarrier, which can safely and efficiently deliver the homing genes (CXCR4) and proliferation and differentiation genes (VEGF) to improve the ability of homing and differentiation of endothelial progenitor cells (EPCs) after transplantation. To integrate the advantages of magnetic resonance imaging and optical imaging, they further construct a multifunctional imaging probe, encapsulating magnetic resonance imaging agent and living fluorescent dye to realize dynamic monitoring of the entire biological process of vascular damage repair after EPCs transplantation. This research is the first to explore unique cell therapy and new strategies for maintaining vascular homeostasis, providing innovative technology and application basis for the treatment of cardiovascular diseases with stem cell regeneration therapy.

The corresponding authors of the paper are Associate Professor Xia Wenhao, Professor Tao Jun, and Professor Shuai Xintao. The research was funded by the National Natural Science Foundation of China. The team of Professor Shen Jun from Sun Yat-sen Memorial Hospital provided powerful support in the research of vascular molecular imaging.

Link to the paper: https://onlinelibrary.wiley.com/doi/10.1002/advs.202001657
TOP
基础百家乐的玩法技巧和规则 | 大发888娱乐城安装| 盈丰会| 网络百家乐官网电脑| 百家乐玩法规| 赌场风云演员表| 百家乐官网押注最多是多少| 吉利百家乐的玩法技巧和规则| 佛教| 皇室百家乐娱乐城| 大发8888娱乐场下载| 百家乐官网全程打庄| 百家乐官网真人游戏赌场娱乐网规则 | 谁会玩百家乐官网的玩法技巧和规则| 巴西百家乐的玩法技巧和规则| 百家乐官网网上公式| 百家乐赌法| 赌博机器| 百家乐官网在线赌场娱乐网规则 | 网上百家乐官网作弊法| 网上百家乐试| 百家乐官网大眼仔用法| 百家乐视频游戏网址| 娱网棋牌大厅下载| 互联网百家乐官网的玩法技巧和规则| 全讯网hg9388.com| 百家乐官网技真人荷官| 小孟百家乐的玩法技巧和规则 | 网上百家乐看牌器| 皇城娱乐| 火箭百家乐官网的玩法技巧和规则| 大发888体育竞技| 百家乐官网桌布| 网络百家乐电脑| 大家旺百家乐官网娱乐城| 百家乐网上真钱娱乐平台| 麻阳| 百家乐博彩金| 安新县| 百家乐看大路| 百家乐官网白菜价|