Department of Pain Management, Xuanwu Hospital, Capital Medical University, No. 45 Changchun Street, Xicheng, Beijing 100053, China.
Department of Pain Management, Xuanwu Hospital, Capital Medical University, No. 45 Changchun Street, Xicheng, Beijing 100053, China.
J Photochem Photobiol B. 2019 Aug;197:111530. doi: 10.1016/j.jphotobiol.2019.111530. Epub 2019 Jun 6.
A novel nano-formulations of biocompatible, biodegradable and thermo-responsive graphene quantum dots (GQDs) loaded dextran/poly(N-isopropylacrylamide) (Dex/PNIPAM) copolymeric matrix was synthesized and analyzed the materials characterization, sustained drug delivery system, tissue feasibility in the tissue implantation site. This research report was aimed to grafting and functionalizing thermo-responsive (Dex/PNIPAM) copolymeric composite with presence of graphene quantum dots to achieve thermal responsive drug delivery (TrDD) with no harm effect in the implantation site. The synthesized GQD by using ionic liquid were evaluated by spectroscopic (DLS, PL, XRD and Raman spectroscopy) and Transmission electron microscopic analysis (TEM). The ultra-small GQDs loaded Dex/PNIPAM and was appeared to be asymmetric and open uniform porous structure, which can be significantly favorable for cell uptake and greatly influenced to be an effective drug carrier into the cellular compartment with good fluid flow. The PNIPAM polymeric composite were exhibited sustained and enhanced drug release percentages with increasing temperature at above low critical solution temperature (LCST) is 39 °C comparable to the cumulative drug release profile of below LCST (32 °C), which demonstrated that thermo-responsive polymer was played a significant role in the delivery system. The treated group of GQDs-Dex/PNIPAM was observed that no inflammation and shows noteworthy stromal cell infiltration, demonstrating that the synthesized drug carriers did not harm to the nerves and tissues and only was responsible for the pain management.
一种新型的生物相容性、可生物降解和温敏的石墨烯量子点(GQDs)纳米制剂,负载在葡聚糖/聚(N-异丙基丙烯酰胺)(Dex/PNIPAM)共聚物基质上,对材料特性进行了分析,同时评估了该纳米制剂作为缓控释药物输送系统在组织植入部位的组织可行性。本研究旨在通过接枝和功能化温敏(Dex/PNIPAM)共聚物复合材料,将石墨烯量子点引入到热响应药物输送(TrDD)系统中,实现无植入部位伤害的热响应药物输送。通过离子液体合成的 GQD 通过光谱(DLS、PL、XRD 和拉曼光谱)和透射电子显微镜分析(TEM)进行评估。负载有 GQD 的 Dex/PNIPAM 呈不对称和开放的均匀多孔结构,这有利于细胞摄取,并极大地影响其作为有效的药物载体进入细胞区室,同时具有良好的流体流动。PNIPAM 聚合物复合材料表现出随着温度升高而持续和增强的药物释放百分比,高于低临界溶液温度(LCST)39°C,与低于 LCST(32°C)的累积药物释放曲线相当,这表明温敏聚合物在输送系统中发挥了重要作用。GQDs-Dex/PNIPAM 处理组观察到没有炎症,并且表现出明显的基质细胞浸润,表明合成的药物载体不会对神经和组织造成伤害,只会负责疼痛管理。