自愈水凝胶
体内
生物相容性材料
药物输送
阿霉素
体外
生物医学工程
化学
右旋糖酐
共聚物
控制释放
材料科学
生物物理学
纳米技术
外科
高分子化学
色谱法
生物化学
医学
有机化学
化疗
生物技术
生物
聚合物
作者
Chueh‐Hung Wu,Mingkuan Sun,Yi Kung,Yu‐Chi Wang,Sen-Lu Chen,Hsin-Hsin Shen,Wen‐Shiang Chen,Tai‐Horng Young
标识
DOI:10.1016/j.ultsonch.2019.104875
摘要
Episodic release of bioactive compounds is often necessary for appropriate biological effects under specific physiological conditions. Here, we aimed to develop an injectable, biocompatible, and thermosensitive hydrogel system for ultrasound (US)-triggered drug release. An mPEG-PLGA-BOX block copolymer hydrogel was synthesized. The viscosity of 15 wt% hydrogel is 0.03 Pa*s at 25 °C (liquid form) and 34.37 Pa*s at 37 °C (gel form). Baseline and US-responsive in vitro release profile of a small molecule (doxorubicin) and that of a large molecule (FITC-dextran), from the hydrogel, was tested. A constant baseline release was observed in vitro for 7 d. When triggered by US (1 MHz, continuous, 0.4 W/cm2), the release rate increased by approximately 70 times. Without US, the release rate returned to baseline. Baseline and US-responsive in vivo release profile of doxorubicin was tested by subcutaneous injection in the back of mice and rats. Following injection into the subcutaneous layer, in vivo results also suggested that the hydrogels remained in situ and provided a steady release for at least 7 d; in the presence of the US-trigger, in vivo release from the hydrogel increased by approximately 10 times. Therefore, the mPEG-PLGA-BOX block copolymer hydrogel may serve as an injectable, biocompatible, and thermosensitive hydrogel system that is applicable for US-triggered drug release.
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