百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

MSE Seminar – Dr. Di Jin (28 March 2025)
28 Mar 2025 (Fri) | 11:00 AM - 12:00 PM

250328_MSE Seminar_Dr. Di Jin

MSE Seminar – Dr. Di Jin (28 March 2025)

Title: Understanding Fundamental Molecular Mechanisms of Lipid Membranes and Developing Design Principles for Biomimetic Membranes
Speaker: Dr. Di Jin
Department of Molecular Chemistry and Materials Science
Weizmann Institute of Science, Israel
Date: 28 March 2025 (Friday)
Time: 11:00am
Venue: Hong Kong Institute for Clean Energy, 6/F, Mong Man Wai Building
Abstract:

Direct angstrom-level, nano-Newton force measurements with the surface force balance (SFB) have revealed that phospholipids, in the form of single-component lipid bilayers, are remarkably effective biolubricants, with friction coefficients comparable to those of synovial joints such as hips and knees. However, synovial joints contain over a hundred lipid species. This proliferation of lipids raises a central question: is it natural redundancy, or does it contribute synergistically to optimize lubrication at cartilage surfaces? Existing SFB experiments on a limited number of mixed-lipid membranes have demonstrated that certain combinations can exhibit superior lubrication properties, yet the underlying physical principles remain unclear. To address this, we investigate the roles in the mixed-lipid membranes of the most common synovial lipids, and relate their presence to the synergistic behavior observed at the holistic level, particularly in dynamic membrane processes such as hydration lubrication and hemifusion. This research integrates molecular dynamics simulations, artificial intelligence, and AI-guided AFM experiments, enabling high-throughput exploration of the vast parameter space of mixed-lipid membranes. We also use the SFB—with its unique sensitivity and resolution in measuring membrane interactions —to validate and refine our conclusions. As our understanding of these biophysical processes deepens, we can better interpret the design principles shaped by evolution and assess the extent of possible redundancy. Ultimately, these bio-inspired insights will guide the development of artificial, biocompatible lipid membranes with a spectrum of properties depending on their composition. These range from better lubrication treatments at one end, as for widespread joint-related diseases such as osteoarthritis, to better drug-delivery by lipid-based nanocarrier vesicles (liposomes or lipid nanoparticles) at the other, through more facile vesicle-membrane/cell fusion processes.

Enquiries: mse@cityu.edu.hk
百家乐凯时娱乐场| 百家乐试玩平台| 百家乐偷吗| 澳门百家乐网40125| 现金百家乐官网| 百家乐官网街机| 百家乐平7s88| 布拖县| 百家乐视频游戏冲值| 一二博网| 百家乐顶| 皇马百家乐的玩法技巧和规则 | 百家乐百家乐视频| 百家乐官网投注网中国| 华泰百家乐的玩法技巧和规则 | 好运来百家乐的玩法技巧和规则| 筹码百家乐的玩法技巧和规则 | 百家乐游戏怎么刷钱| 百家乐官网盈利分析路单| 大发888娱乐城casino| 网上百家乐公式| 大发888真钱娱乐平台| 免费百家乐官网预测| 欧洲三大博彩公司| 巴厘岛百家乐娱乐城| 斗首24山择日天机择日| 百家乐官网是否违法| 大发888娱乐城ipad| 澳门百家乐破解| 百家乐官网发牌盒子| 饶平县| 破解百家乐官网游戏机| 大发888客户端| 网上百家乐赢钱公式| 网上百家乐官网赌博犯法吗| 大发888存款方式| 百家乐博彩优惠论坛| 视频棋牌游戏大厅| 百家乐决战推筒子| 大集汇百家乐官网的玩法技巧和规则 | 百家乐官网网上娱乐城|