McBride Amber A, Price Dominique N, Muttil Pavan
Sandia National Laboratories, Albuquerque, NM, USA.
Department of Pharmaceutical Sciences, College of Pharmacy, University of New Mexico, Suite 208, 2705 Frontier Ave NE, Albuquerque, NM, 87106, USA.
Methods Mol Biol. 2017;1530:99-108. doi: 10.1007/978-1-4939-6646-2_5.
The purpose of this chapter is to detail the formulation and characterization of a magnetically-targeted drug delivery vehicle, termed nano-in-microparticles (NIMs), for pulmonary drug delivery. Currently, chemotherapeutics and antibiotics are delivered systemically and result in whole body side-effects. NIMs are formulated with superparamagnetic iron oxide nanoparticles, termed SPIONs, making these particles targetable to specific lung regions using a strong external magnet. Additionally, these particles can be formulated to contain any drug or therapeutic agent, such that a therapeutic dose can be delivered to a specific tissue location using the SPIONs-magnet interaction. Finally, these particles are in the appropriate size range for pulmonary delivery, making NIMs therapeutics feasibly inhalable.To generate these particles a solution containing lactose, SPIONs, and a microsphere dye (used as a drug surrogate) is spray-dried using a laboratory-scale spray dryer. The resulting dry powder microparticles (NIMs) can be characterized for their size and morphological properties by various techniques that are presented in this chapter.The utility of NIMs as a magnetic field-dependent targeting delivery platform in an in vivo mouse model has been demonstrated, and a protocol detailing the intratracheal delivery of NIMs dry powder is included as a separate chapter in this book.
本章的目的是详细介绍一种用于肺部药物递送的磁性靶向药物递送载体,即纳米微粒包载纳米粒(NIMs)的制备方法及其特性。目前,化疗药物和抗生素通过全身给药,会产生全身副作用。NIMs由超顺磁性氧化铁纳米颗粒(SPIONs)制成,利用强外部磁场可使这些颗粒靶向特定的肺区域。此外,这些颗粒可被制成含有任何药物或治疗剂的形式,这样就可以利用SPIONs与磁体的相互作用将治疗剂量递送至特定的组织部位。最后,这些颗粒的大小适合肺部递送,使得NIMs疗法可通过吸入实现。为了制备这些颗粒,将含有乳糖、SPIONs和一种微球染料(用作药物替代物)的溶液用实验室规模的喷雾干燥器进行喷雾干燥。所得的干粉微粒(NIMs)可通过本章介绍的各种技术对其大小和形态特性进行表征。NIMs作为一种在体内小鼠模型中依赖磁场的靶向递送平台的实用性已得到证实,本书单独的一章中包含了详细介绍NIMs干粉气管内递送的方案。