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Theranostic magnetite cluster@silica@albumin double-shell particles as suitable carriers for water-insoluble drugs and enhanced T2 MR imaging contrast agents

机译:Theranostic磁铁矿群@ Silica @白蛋白双壳颗粒作为适合水不溶性药物的载体,增强T2 MR成像造影剂

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Design of new multifunctional nanosystems to integrate diagnostic and therapeutic functions is a major area of interest in the field of nanobiotechnology and nanomedicine. In this study, application of a new magnetic multilayered nanobiohybrid system composed of magnetite nanoparticles, silica, and albumin as a theranostic agent was investigated. Once the clusters of magnetite nanoparticles were coated with a silica shell, bovine serum albumin was conjugated to the surface of activated amine-MS particles (BMS). Afterwards, a curcuminloaded albumin shell was formed on BMS particles (CBBMS). The curcumin loading capacity and efficiency of the nanobiohybrid particles were 93 +/- 6 (mg drug/g particles) and 24 +/- 1.7 (wt%), respectively. A sustained release profile was observed for the curcumin in PBS which followed the first-order kinetic model. Cytotoxicity evaluation of CBBMS showed a striking reduced IC50 value (9.9 mu M) in comparison to that of the free curcumin (16.2 mu M), tested on SH-SY5Y cells using MIT assay. Finally, the in vitro relaxivity experiments indicated a high transverse relaxivity (r(2)) of 369.7 mM(-1) s(-1) for the superparamagnetic nanobiohybrid particles in magnetic resonance imaging (MRI) tests. The obtained results in drug delivery and MRI tests recommend the as-prepared multilayered nanobiohybrid particles as an efficient and suitable system for theranostic applications.
机译:新型多功能纳米系统的设计集成诊断和治疗功能是纳米生物技术领域和纳米医生领域的主要领域。在该研究中,研究了应用由磁铁矿纳米粒子,二氧化硅和白蛋白作为治疗剂组成的新的磁性多层纳米嗜系统。一旦用二氧化硅壳涂覆磁铁矿纳米粒子的簇,就牛血清白蛋白与活性胺-Sms颗粒(BMS)的表面缀合。然后,在BMS颗粒(CBBMS)上形成姜黄油载壳壳。甲霉素负荷颗粒的姜黄素负载能力和效率分别为93 +/- 6(Mg药物/ G颗粒)和24 +/- 1.7(wt%)。在PBS中观察到持续释放曲线,其PBS中的姜黄素,其遵循一阶动力学模型。与使用麻省理工学院测定的SH-SY5Y细胞测试的游离姜黄素(16.2μm)相比,CBBMS对CBBMS的细胞毒性评估表现出醒目的IC50值(9.9μm)。最后,体外的松弛率实验表明,对于磁共振成像(MRI)试验中的超顺磁性纳米胺颗粒的369.7mm(-1)(-1)的高横向松弛率(R(2))。所得药物递送和MRI试验的结果推荐制备的多层纳米嗜型颗粒作为治疗应用的有效和合适的系统。

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