Department of Medicinal Chemistry, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran.
Department of Pharmaceutical Biotechnology, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Science, Isfahan, Iran.
Pharm Dev Technol. 2021 Oct;26(8):899-909. doi: 10.1080/10837450.2021.1955927. Epub 2021 Jul 27.
Nanotechnology has revolutionized drug delivery in cancer treatment. In this study, novel efficient pH-responsive boron phenylalanine (BPA) targeted nanoparticles (NPs) based on ionic liquid modified chitosan have been introduced for selective mitoxantrone (MTO) delivery to the U87MG glioma cells. Urocanic acid (UA) and imidazolium (Im) based ionic liquids were used for structural modification simultaneously. The NPs were prepared by ionic gelation and fully characterized; the pH-responding and swelling index of NPs were studied carefully. The drug release was studied at a pH of 5.5 in comparison to the neutral state. Also, the cytotoxicity of loaded NPs was evaluated on U87MG glial cells, and cellular uptake was studied. The NPs were smaller than 250 nm, with a spherical pattern and acceptable uniformity with a zeta potential around +20 mV. The loading efficacy was about 85%, and most of the loaded MTO released at a pH of 5.5 after 48 h with a swelling-controlled mechanism. The NPs showed a relatively lower IC than the free MTO, and the BPA-targeted NPs have lower IC and better cellular uptake than non-targeted NPs in U87MG cells. More studies on this promising formula are on the way, and the results will be published soon.
纳米技术在癌症治疗中的药物输送方面带来了革命性的变化。在这项研究中,引入了基于离子液体修饰壳聚糖的新型高效 pH 响应硼苯丙氨酸(BPA)靶向纳米粒子(NPs),用于选择性递送到 U87MG 神经胶质瘤细胞的米托蒽醌(MTO)。同时使用尿刊酸(UA)和咪唑鎓(Im)基离子液体进行结构修饰。通过离子凝胶化制备 NPs 并进行全面表征;仔细研究了 NPs 的 pH 响应性和溶胀指数。在 pH 5.5 下与中性状态下进行了药物释放研究。此外,还评估了负载 NPs 对 U87MG 神经胶质细胞的细胞毒性,并研究了细胞摄取。NPs 的粒径小于 250nm,呈球形且具有可接受的均匀性,zeta 电位约为+20mV。载药效率约为 85%,大部分负载的 MTO 在 48 小时后以 pH5.5 时以溶胀控制机制释放。与游离 MTO 相比,NPs 的 IC 较低,BPA 靶向 NPs 在 U87MG 细胞中的 IC 较低,细胞摄取更好。正在对此有前途的配方进行更多研究,结果将很快公布。