Polymer Research Laboratory, Department of Chemistry, Sharif University of Technology, Tehran 11365-9516, Iran.
Polymer Research Laboratory, Department of Chemistry, Sharif University of Technology, Tehran 11365-9516, Iran.
Carbohydr Polym. 2023 Aug 1;313:120667. doi: 10.1016/j.carbpol.2023.120667. Epub 2023 Feb 21.
Injectable stimuli-responsive hydrogels could offer an opportunity for local administration at the tumor site and a sustained drug release. In this paper, a copolymer of azobenzene derivative and N-isopropyl acrylamide (NIPAM) was synthesized, which are performed as light- and thermo-sensitive parts, respectively. The DAS@SCD/NIPAZO hydrogel was prepared upon the establishment of host-guest interactions between the hydrophobic core of CD and azobenzene moiety. The LCST of the synthesized copolymer was modified from 31.3 °C to 36.5 °C by the incorporation of the hydrophilic host moieties of the modified starch into the NIPAM copolymer structure. The LCST-based property of the hydrogel made it syringable in low temperatures and switch to a gel state after local injection. The drug release profile of the hydrogel was explored in four different conditions involving two distinct temperatures combined with two different light wavelengths to examine the light- and thermo-sensitivity of the hydrogel. Moreover, a Paclitaxel-loaded hydrogel was prepared to study the in vitro efficiency of the sample and was investigated by MTT assay against the cancerous fibroblastic cells (A-431), which revealed a sharp decline in cell viability under 365 nm light irradiation; furthermore, to evaluate the in vivo effects of the PTX-loaded hydrogel, histological studies based on staining techniques were carried out.
可注射的响应性水凝胶可为肿瘤部位的局部给药和持续药物释放提供机会。在本文中,合成了一种偶氮苯衍生物和 N-异丙基丙烯酰胺(NIPAM)的共聚物,它们分别作为光和热敏感部分。在疏水核 CD 和偶氮苯部分之间建立主客体相互作用后,制备了 DAS@SCD/NIPAZO 水凝胶。通过将改性淀粉的亲水性主体部分引入 NIPAM 共聚物结构中,合成共聚物的 LCST 从 31.3°C 改性为 36.5°C。水凝胶的基于 LCST 的特性使其在低温下可注射,并在局部注射后转变为凝胶状态。在涉及两种不同温度和两种不同波长光的四种不同条件下,研究了水凝胶的药物释放曲线,以检查水凝胶的光和热敏感性。此外,还制备了负载紫杉醇的水凝胶,以研究样品的体外效率,并通过 MTT 测定法对癌细胞(A-431)进行了研究,结果表明在 365nm 光照射下细胞活力急剧下降;此外,为了评估负载 PTX 的水凝胶的体内效果,进行了基于染色技术的组织学研究。