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Methotrexate Loaded Magnetic Nanoparticles as a Targeted Drug Delivery Device

机译:甲氨蝶呤负载磁性纳米粒子作为靶向药物输送装置

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Targeted drug delivery systems have been shown to be promising alternative for the conventional drug delivery methods. Among numerous nanocarriers developed for therapeutic applications, iron oxide magnetic nanoparticles have attracted considerable attention. Fe_3O_4 (magnetite) is one of the most commonly used iron oxide in biomedical applications due to its biocompatibility and can be easily produced in research and industrial laboratories. The core/shell structure of magnetic nanoparticles allows the surface coating to avoid their agglomeration. Moreover, coating of Fe_3O_4 nanoparticles provide functional groups and consequently make the bioconjugation to the therapeutic agents. Coating magnetic nanoparticles with a biopolymer will also increase biocompatibility. Coating magnetic nanoparticles with a biopolymer will also increase biocompatibility. Chitosan can easily conjugate to the surface of magnetic nanoparticles and provide amine and hydroxyl groups for the further conjugation of the therapeutic drug. In this study, Fe_3O_4 magnetic nanoparticles were fabricated and were coated with chitosan via in-situ method. Prepared chitosan coated magnetic nanoparticles then were loaded with methotrexate (anti-cancer drug) through adsorption. The size and morphology of synthesized magnetic nanoparticles were evaluated using Transmission Electron Microscopy (TEM) and Scanning Electron Microscopy (SEM). The chemical structure of bare and chitosan coated magnetic nanoparticles was analyzed by Fourier Transforms Infrared (FTIR). Methotrexate loading efficiency of chitosan coated nanoparticles was also evaluated. Cytotoxicity of nanoparticles was also studied in-vitro. The results confirmed the surface coating with chitosan and methotrexate loading. The synthesize chitosan coated magnetic nanoparticles showed promising application for cancer treatment.
机译:靶向药物递送系统已被证明是常规药物递送方法的有前途的替代方法。在开发用于治疗应用的众多纳米载体中,氧化铁磁性纳米粒子引起了相当大的关注。 Fe_3O_4(磁铁矿)由于具有生物相容性,因此是生物医学应用中最常用的氧化铁之一,可以在研究和工业实验室中轻松生产。磁性纳米粒子的核/壳结构允许表面涂层避免聚集。此外,Fe_3O_4纳米颗粒的涂层提供了官能团,因此使它们与治疗剂发生了生物缀合。用生物聚合物涂覆磁性纳米颗粒也会增加生物相容性。用生物聚合物涂覆磁性纳米颗粒也会增加生物相容性。壳聚糖可以容易地缀合到磁性纳米颗粒的表面,并提供胺基和羟基以进一步缀合治疗药物。在这项研究中,Fe_3O_4磁性纳米粒子被制备并通过壳聚糖原位涂覆。然后通过吸附将制备的壳聚糖包被的磁性纳米颗粒负载甲氨蝶呤(抗癌药)。使用透射电子显微镜(TEM)和扫描电子显微镜(SEM)评估了合成磁性纳米颗粒的大小和形态。通过傅立叶变换红外(FTIR)分析了裸露的和壳聚糖涂覆的磁性纳米颗粒的化学结构。还评估了壳聚糖包被的纳米颗粒的甲氨蝶呤负载效率。还体外研究了纳米颗粒的细胞毒性。结果证实了壳聚糖和甲氨蝶呤负载的表面涂层。合成的壳聚糖包被的磁性纳米颗粒在癌症治疗中显示出广阔的应用前景。

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