首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Preparation Optimization and Toxicity Evaluation of (SPION-PLGA) ±PEG Nanoparticles Loaded with Gemcitabine as a Multifunctional Nanoparticle for Therapeutic and Diagnostic Applications
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Preparation Optimization and Toxicity Evaluation of (SPION-PLGA) ±PEG Nanoparticles Loaded with Gemcitabine as a Multifunctional Nanoparticle for Therapeutic and Diagnostic Applications

机译:载有吉西他滨作为治疗和诊断用途的多功能纳米颗粒的(SPION-PLGA)±PEG纳米颗粒的制备优化和毒性评估

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摘要

The aim of this study was to develop a novel multifunctional nanoparticle, which encapsulates SPION and Gemcitabine in PLGA ± PEG to form multifunctional drug delivery system. For this aim, super paramagnetic iron oxide nanoparticles (SPIONs) were simultaneously synthesized and encapsulated with Gemcitabine (Gem) in PLGA ± PEG copolymers via W/O/W double emulsification method. Optimum size and encapsulation efficiency for radiosensitization, hyperthermia and diagnostic applications were considered and the preparation parameters systematically were investigated and physicochemical characteristics of optimized nanoparticle were studied. Then SPION-PLGA and PLGA-Gem nanoparticles were prepared with the same optimized parameters and the toxicity of these nanoparticles was compared with Gemcitabine in human breast cancer cell line (MCF-7). The optimum preparation parameters were obtained with Gem/polymer equal to 0.04, SPION/polymer equal to 0.8 and 1% sucrose per 20 mg of polymer. The hydrodynamic diameters of all nanoparticles were under 200 nm. Encapsulation efficiency was adjusted between 13.2% to 16.1% for Gemcitabine and 48.2% to 50.1% for SPION. In-vitro Gemcitabine release kinetics had controlled behavior. Enhancement ratios for PLGA-Gem and SPION-PLGA-Gem at concentration of nanoparticles equal to IC50 of Gemcitabine were 1.53 and 1.89 respectively. The statistical difference was significant (p-value = 0.006 for SPION-PLGA-Gem and p-value = 0.015 for PLGA-Gem compared with Gemcitabine). In conclusion, we have successfully developed a Gemcitabine loaded super paramagnetic PLGA-Iron Oxide multifunctional drag delivery system. Future work includes in-vitro and in-vivo investigation of radiosensitization and other application of these nanoparticles.
机译:这项研究的目的是开发一种新型的多功能纳米粒子,该粒子将SPION和吉西他滨包裹在PLGA±PEG中以形成多功能药物递送系统。为此,通过W / O / W双重乳化法,同时合成了超顺磁性氧化铁纳米粒子(SPIONs),并与吉西他滨(Gem)封装在PLGA±PEG共聚物中。考虑了放射增敏,热疗和诊断应用的最佳尺寸和包封效率,系统地研究了制备参数,并研究了优化后的纳米粒子的理化特性。然后以相同的优化参数制备SPION-PLGA和PLGA-Gem纳米粒子,并将这些纳米粒子与吉西他滨在人乳腺癌细胞系(MCF-7)中的毒性进行比较。每20 mg聚合物中Gem /聚合物等于0.04,SPION /聚合物等于0.8和1%蔗糖可获得最佳制备参数。所有纳米颗粒的流体动力学直径都在200nm以下。吉西他滨的包封效率调整为13.2%至16.1%,SPION的包封效率调整为48.2%至50.1%。体外吉西他滨释放动力学具有受控的行为。在纳米颗粒浓度等于吉西他滨的IC 50时,PLGA-Gem和SPION-PLGA-Gem的增强比分别为1.53和1.89。统计学差异显着(与吉西他滨相比,SPION-PLGA-Gem的p值= 0.006,PLGA-Gem的p值= 0.015)。总之,我们已经成功开发了装载吉西他滨的超顺磁性PLGA-氧化铁多功能药物递送系统。未来的工作包括放射敏化的体外和体内研究以及这些纳米颗粒的其他应用。

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