自愈水凝胶
材料科学
癌症治疗
多巴胺
透明质酸
聚合
结合
注射器
苯硼酸
聚合物
癌症
生物医学工程
高分子化学
化学
有机化学
催化作用
医学
复合材料
数学
解剖
精神科
数学分析
内分泌学
内科学
作者
Song Yi Lee,Ming‐Yu Yang,Ji‐Hye Seo,Da In Jeong,ChaeRim Hwang,Han‐Jun Kim,Junmin Lee,KangJu Lee,Jihye Park,Hyun‐Jong Cho
标识
DOI:10.1021/acsami.0c16199
摘要
Elaborately and serially pH-modulated hydrogels possessing optimized viscoelastic natures for short gelation time and single syringe injection were designed for peritumoral injection of an anticancer agent. Boronate ester bonds between phenylboronic acid (PBA) (installed in HA-PBA (HP)) and dopamine (included in HA-dopamine (HD)) along with self-polymerization of dopamine (via interactions between HD conjugates) were introduced as the main cross-linking strategies of a hyaluronic acid (HA) hydrogel. Considering pKa values (8.0–9.5) of PBA and dopamine, the pH of each polymer dispersion was controlled elaborately for injection through a single syringe, and the final pH was tuned nearby the physiological pH (pH 7.8). The shear-thinning behavior, self-healing property, and single syringe injectability of a designed hydrogel cross-linked nearby physiological pH may provide its convenient application to peritumoral injection and prolonged retention in local cancer therapy. Erlotinib (ERT) was encapsulated in a microsphere (MS), and it was further embedded in an HP/HD-based hydrogel for sustained and locoregional delivery. A rheologically tuned hydrogel containing an ERT MS exhibited superior tumor-suppressive efficiencies compared to the other groups in A549 tumor-bearing mice. A designed injectable hydrogel through a single syringe system may be efficiently applied to local cancer therapy with lower toxicities to healthy organs.
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