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Preparation and characterization of multifunctional chitosan microparticles for lung delivery.

机译:用于肺部递送的多功能壳聚糖微粒的制备和表征。

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摘要

The aim of this project was to develop a multifunctional approach with an aim of utilizing both chemotherapeutic agent as well as radio frequency (RF) heating for targeted lung cancer therapy. The system designed for achieving this was a chitosan microparticulate system containing iron oxide nanoparticles and gemcitabine as the chemotherapeutic agent. Iron oxide nanoparticles were prepared by chemical co-precipitation.;The iron oxide nanoparticles were made water dispersible by adding an oleic acid-poloxamer coat to the surface of the iron oxide particles. These nanoparticles were incorporated into chitosan microparticles along with gemcitabine by spray drying using a Buchi Mini Spray dryer B-290.;The particle size of iron oxide nanoparticles determined by laser light scattering was 123.15 +/- 12.98nm (n=3). However, the TEM results revealed a particle size of 17.47 nm+/- 2.15nm. The larger particle size by laser light scattering which measures the hydrodynamic diameter, could be due to oleic acid and poloxamer associated with nanoparticles and its hydration when dispersed in water. The chitosan microparticles prepared had a d0.5 of 1.59 +/- 0.35mum (n=3) and a surface charge of 25.16 +/- 0.18mV. The entrapment efficiency of gemcitabine in the chitosan microparticles was found to be 92.30 +/- 5.7%. The loading of iron oxide nanoparticles into chitosan matrix was found to be 11.83 +/- 3.4%, respectively. DSC studies suggest that the drug is present in non- crystalline state in the chitosan matrix. The TGA studies revealed that the percent weight loss from the spray dried particles at 120?C was around 10%. Aerosol testing of the prepared microparticles on the NGI suggested that the microparticles have a polydisperse population with a fine particle fraction of 47.5%. The application of RF exposure for 500 seconds shows a linear increase in temperature with increase in exposure time. The in vitro release studies showed a significant release (up to 70%) of Gemcitabine over a period of 72 hours and also indicated that release of Iron oxide from the system was negligible. The magnetometer readings indicated that the magnetic properties of nanoparticles are well retained in the chitosan microparticles. The cellular uptake studies display similar cellular uptake behavior for drug solutions treatments and gemcitabine iron oxide microparticle treatments. However the cellular cytotoxicity observed was higher in the gemcitabine iron oxide microparticle treatments compared to drug solutions treatments. The radiofrequency heating experiments conducted on cell suspensions shows a significant heating due to magnetic hyperthermia causing cellular death.;Thus it can be concluded that a combination of radiofrequency and chemotherapy with a single system can be achieved and result in particles that are functional in both aspects.
机译:该项目的目的是开发一种多功能方法,旨在利用化学治疗药和射频(RF)加热进行靶向肺癌治疗。为此目的设计的系统是一种壳聚糖微粒系统,其中包含氧化铁纳米颗粒和吉西他滨作为化学治疗剂。通过化学共沉淀法制备氧化铁纳米颗粒。通过向氧化铁颗粒表面添加油酸-泊洛沙姆涂层使氧化铁纳米颗粒水分散。通过使用Buchi Mini Spray干燥器B-290进行喷雾干燥,将这些纳米颗粒与吉西他滨一起掺入壳聚糖微粒中。通过激光散射测定的氧化铁纳米颗粒的粒径为123.15 +/- 12.98nm(n = 3)。然而,TEM结果显示出17.47nm +/- 2.15nm的粒径。通过激光散射来测量流体力学直径的较大颗粒尺寸,可能是由于油酸和泊洛沙姆与纳米颗粒相关联,并且分散在水中时会发生水合作用。制备的壳聚糖微粒的d0.5为1.59 +/- 0.35mum(n = 3),表面电荷为25.16 +/- 0.18mV。发现吉西他滨在壳聚糖微粒中的包封率为92.30 +/- 5.7%。发现氧化铁纳米粒子在壳聚糖基质中的负载分别为11.83 +/- 3.4%。 DSC研究表明,该药物以非结晶状态存在于壳聚糖基质中。 TGA研究表明,在120°C下,喷雾干燥颗粒的重量损失百分比约为10%。在NGI上对制备的微粒进行气溶胶测试表明,该微粒具有多分散种群,其细颗粒分数为47.5%。射频暴露500秒显示出温度随暴露时间的增加呈线性增加。体外释放研究表明,吉西他滨在72小时内显着释放(高达70%),并且还表明氧化铁从系统中的释放可以忽略不计。磁力计读数表明,壳聚糖微粒中纳米颗粒的磁性良好。细胞吸收研究显示,对于药物溶液处理和吉西他滨氧化铁微粒处理,细胞吸收行为相似。然而,与药物溶液处理相比,吉西他滨氧化铁微粒治疗中观察到的细胞毒性更高。在细胞悬液上进行的射频加热实验表明,由于磁热疗法会导致细胞死亡,从而导致显着加热;因此可以得出结论,可以实现将射频和化学疗法与单个系统结合使用,并产生在两个方面都起作用的颗粒。

著录项

  • 作者

    Pandey, Swasti.;

  • 作者单位

    Creighton University.;

  • 授予单位 Creighton University.;
  • 学科 Pharmaceutical sciences.;Oncology.;Biomedical engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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