bet365官网-bet365平台怎么样_7位百家乐扑克桌_全讯网新2代理 (中国)·官方网站

Southeast University Achieved Important Progress in Research of Enhanced Mild-Temperature Photothermal Therapy

Publisher:吳嬋Release time:2020-03-06Number of Views:373


[Southeast University News Network, March 3] (Correspondents: Li Dongmei, Liang Gaolin) On Feb. 26, the internationally renowned academic periodical “Advanced Functional Materials” published the collaborative research results achieved by Professor Liang Gaolin’s team and Professor Wu Fugen’s team from the School of Biological Science and Medical Engineering of Southeast University. With the title of “Enzyme-Mediated Tumor Starvation and Phototherapy Enhance Mild-Temperature Photothermal Therapy”, this paper proposed an enzyme-mediated strategy for tumor starvation and phototherapy, representing a significant progress in enhancing the efficiency of mild-temperature photothermal treatment of tumors (Adv. Funct. Mater., 2020, 1909391).

Photothermotherapy (PTT) uses the high heat (above 45℃) generated by laser radiation to destroy cancer cells and has gradually become an important approach for cancer treatment. However, the high heat may result in damages of healthy tissue, tumor metastasis and recurrence, etc.; therefore, the use of mild PTT (below 45 ℃) can treat tumor without side effects, but the strategies to maximize the efficiency of mild PTT while avoiding any side effect in solid tumors have not yet been reported.

Professor Liang Gaolin's team and Professor Wu Fugen’s team have designed a multifunctional temperature-sensitive liposome in a rational manner, and prepared a temperature-sensitive phase-change liposome through the lipid molecules DPPC and DSPE-PEG2000 to encapsulate glucose oxidase (GOx), indocyanine green (ICG) and gambogic acid (GA). The drug-loaded temperature-sensitive liposomes GOIGLs have realized the thermal response delivery and the mid hypothermia of these drugs at tumor sites (see the figure below).

Both the cell and the animal experiments indicated that this tumor starvation and phototherapy strategy has significantly improved the efficiency of mild PTT in treating tumors; in addition, this strategy has provided a feasible and reliable method to solve the contradiction between mild-temperature photothermal efficiency and dosage. More importantly, this smart strategy by using the enzyme-mediated tumor starvation and phototherapy to enhance the efficiency of mild-temperature photothermal therapy is expected to accelerate the clinical transformation of photothermal therapy.

Schematic diagram of coordinated functions of tumor starvation therapy, enzyme-enhanced phototherapy and hypothermia.

Schematic diagram of multifunctional temperature-sensitive liposomes for synergistic starvation therapy, enzyme-enhanced phototherapy and mild hypothermia in tumor area.

Schematic diagram of multifunctional temperature-sensitive liposomes for synergistic starvation therapy, enzyme-enhanced phototherapy and mild hypothermia in tumor area.

The first author of the paper is Gao Ge, a doctoral student from the School of Biological Science and Medical Engineering of Southeast University. Professor Liang Gaolin and Professor Wu Fugen are co-corresponding authors.

This project has gained fund from the National Natural Science Foundation of China and National Key Research & Development Program.

The paper link: https://doi.org/10.1002/adfm.201909391

Submitted by: the School of Biological Science and Medical Engineering

(Editor-in-charge: Zhai Mengjie, reviewed by: Li Xiaonan)


义乌市| 百家乐官网国际娱乐平台| 太阳城百家乐优惠| 克拉克娱乐城| 足球百家乐投注网出租| 百家乐官网视频二人麻将| 百家乐官网赌博技巧网| 全讯网新2网址| 关于阳宅风水24山知识| 抚远县| 百家乐官网开户代理| 大发888亚洲游戏在线| 百家乐技巧论坛| 百家乐官网牌桌订做| 真人百家乐官网打法| 大发888平台啥时候最赢钱| 新朝代百家乐开户网站| 回力百家乐官网的玩法技巧和规则 | 大丰收百家乐的玩法技巧和规则| 百家乐官网游戏辅助| 百家乐官网赌博走势图| 百家乐官网赌法博彩正网| 栖霞市| 百家乐官网在线娱乐平台| 百家乐官网足球投注网哪个平台网址测速最好 | 百家乐mediacorp| 澳门百家乐门路| 百家乐官网百家乐官网技巧| 百家乐官网鸿泰棋牌| tt娱乐城官方网站| 逍遥坊百家乐的玩法技巧和规则| 永利博百家乐游戏| 实战百家乐官网十大取胜原因百分百战胜百家乐官网不买币不吹牛只你能做到按我说的.百家乐官网基本规则 | 七胜百家乐娱乐网| 百家乐与21点| 百家乐java| 百家乐怎么才能| 德州扑克的技巧| 百家乐英皇娱乐场开户注册| 百家乐官网娱乐送白菜| 百家乐官网破解版|