赌球者-嫩模赌球白富美世界杯

NJUPT Publishes in Science Advances -- Science Advances Publishes the Research Progress of the Team of the State Key Laboratory of Organic Electronics and Information Display in the Field of Ultrasonic-Response Antibacterial Materials

文章來源:材料科學與工程學院發布時間:2023-02-17瀏覽次數:12

  Recently, Nanjing University of Posts and Telecommunications Institute of Information Materials and Nanotechnology, State Key Laboratory of Organic Electronics and Information Display, Professor Wang Lianhui, Associate Professor Yuwen Lihui and Associate Professor Gao Yu developed ultrasonic-response catalytic microbubbles for the treatment of chronic lung infections caused by Pseudomonas aeruginosa. The related achievements were recently published in Science Advances, the top international academic journal, with the title of Ultra-responsive Catalytic Microbubbles Enhance Biofilm Elimination and Immune Activation to Treat Chronic Lung Infections, and were selected as the Featured Image of the current magazine. Associate professors Yuwen Lihui, Gao Yu and Professor Wang Lianhui from the College of Materials Science and Engineering are co-authors, and doctoral student Xiu Weijun is the first author of the paper.

  Paeruginosa prevents drug penetration and immune cell phagocytosis by forming biofilm, and secretes toxic factors to inhibit the immune response of the host, leading to antibiotic tolerance and immune escape. Therefore, chronic pneumonia is difficult to be eliminated by traditional antibiotics. It is of great significance to develop new biofilm therapeutic reagents for Pseudomonas aeruginosa.

  The team constructed ultrasonic response drug-loaded catalytic microbubbles (MB-Pip) composed of Fe3O4 nanoparticles (Fe3O4 NPs) and piperacillin (Pip) for the removal of Pseudomonas aeruginosa biofilm. Under the action of ultrasound, MB-Pip generates inertial cavitation, which disrupts the biofilm structure through mechanical effect. The released Fe3O4 NPs can catalyze the degradation of extracellular matrix, realize the physical/chemical dual-mode biofilm destruction, and effectively enhance the drug penetration and antibacterial performance. In addition, Fe3O4 NPs can activate macrophages to polarize to M1 phenotype, enhance the bactericidal ability of macrophages, and achieve efficient treatment of chronic lung infection caused by Pseudomonas aeruginosa in mice, which provides a new research idea for solving the problem of clinical bacterial biofilm infection.

  This work is supported by the National Basic Science Center Project, Jiangsu Frontier Leading Technology Basic Research Project, Jiangsu Natural Science Foundation and other projects.

Science Advances publishes the research progress of the team of the State Key Laboratory of Organic Electronics and Information Display in the field of ultrasonic-response antibacterial materials

Properties of ultrasound-response catalytic microbubbles (MB-Pip) and its therapeutic effect on chronic lung infections caused by Pseudomonas aeruginosa in mice


(Writer: Yuwen Lihui Preliminary Reviewer: Zhao Yunyu  Editor: Wang Cunhong  Final Reviewer: Zhang Feng)



535娱乐城下载| 澳门百家乐长赢打| 金博士百家乐官网的玩法技巧和规则| 狮威百家乐娱乐网| 百家乐官网连跳规律| 百家乐十赌九诈| 体育| 网上百家乐是假| 平遥县| 天堂鸟百家乐的玩法技巧和规则| 百家乐官网开庄几率| 威尼斯人娱乐场老品牌| 百家乐官网大轮转| 大发888无数| 网上百家乐官网试| 百家乐官网路单下注| 金牌百家乐的玩法技巧和规则 | 永利百家乐现金网| 葡京百家乐官网技巧| 百家乐真人现场| 百家乐投注技巧| 百家乐官网网站源码| 百家乐筹码币套装| 百家乐官网红桌布| 永利高百家乐官网现金网| 青鹏棋牌游戏大厅v3.0| 百家乐现金网平台| 百家乐官网太阳城怎么样| 大发888下载 34| 百家乐路单走势图| 太子百家乐官网的玩法技巧和规则| 勐海县| 威尼斯人娱乐城购物| 百家乐视频软件下载| 百家乐官网博娱乐网提款速度快不| 百家乐官网有技巧么| 大发888蜜月旅行| 视频百家乐平台| 百家乐赢家| 百家乐桩闲落注点| 赌百家乐官网的计划跟策略|