聚乙二醇
部分
共轭体系
胶束
聚合物
亚甲蓝
PEG比率
两亲性
光化学
辐照
材料科学
化学
水溶液
共聚物
有机化学
物理
催化作用
经济
核物理学
光催化
财务
作者
Huy M. Dao,Amit Raviraj Pillai,Rishi Thakkar,Sanjiv Parajuli,Esteban E. Ureña-Benavides,Seongbong Jo
摘要
Abstract Light‐sensitive drug delivery systems are considered ideal for applications in the biomedical fields for their ability to release the payload in an on‐demand spatiotemporal controlled manner through the manipulation of the light source. Among the broad radiation spectrum, near infrared (NIR) light is considered advantageous compared to UV and visible light, due to its inherently lower photodamage to normal tissues and deeper penetration to lesion areas. In this study, we report a successful synthesis of a polymer capable of undergoing partial degradation upon irradiation with NIR light by conjugating 10‐ N ‐carbamoyl linkage methylene blue (MB) moiety, a NIR photocleavable ligand, with polyethylene glycol (PEG). Through effective coupling of MB, a hydrophobic moiety, to the hydrophilic PEG molecule, an amphiphilic polymer was synthesized, as demonstrated by a lowered surface tension (55 mN/m at 0.1% wt/vol). Subsequently, photo‐induced reversal of surface activity associated with self‐assembled structure disruption, was displayed by surface tension measurements, size distribution analysis, and burst release profile of paclitaxel (PTX) from polymeric micelles upon the exposure to NIR irradiation.
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