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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >The hydrogel template method for fabrication of homogeneous nano/microparticles
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The hydrogel template method for fabrication of homogeneous nano/microparticles

机译:用于制备均相纳米/微粒的水凝胶模板方法

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摘要

Nano/microparticles have been used widely in drug delivery applications. The majority of the particles are prepared by the conventional emulsion methods, which tend to result in particles with heterogeneous size distribution with sub-optimal drug loading and release properties. Recently, microfabrication methods have been used to make nano/microparticles with a monodisperse size distribution. The existing methods utilize solid templates for making particles, and the collection of individual particles after preparation has not been easy. The new hydrogel template approach was developed to make the particle preparation process simple and fast. The hydrogel template approach is based on the unique properties of physical gels that can undergo sol–gel phase transition upon changes in environmental conditions. The phase reversible hydrogels, however, are in general mechanically too weak to be treated as a solid material. It was unexpectedly found that gelatin hydrogels could be made to possess various properties necessary for microfabrication of nano/microparticles in large quantities. The size of the particles can be adjusted from 200 nm to >50 μm, providing flexibility in controlling the size in drug delivery formulations. The simplicity in processing makes the hydrogel template method useful for scale-up manufacturing of particles. The drug loading capacity is 50% or higher, and yet the initial burst release is minimal. The hydrogel template approach presents a new strategy of preparing nano/ microparticles of predefined size and shape with homogeneous size distribution for drug delivery applications.
机译:纳米/微粒已广泛用于药物递送应用中。大多数颗粒是通过常规乳液方法制备的,这倾向于导致颗粒的粒度分布不均一,且药物的装载和释放性能不佳。最近,微细加工方法已被用于制造具有单分散尺寸分布的纳米/微粒。现有方法利用固体模板来制备颗粒,并且制备后收集单个颗粒并不容易。开发了新的水凝胶模板方法,以使颗粒制备过程简单,快速。水凝胶模板方法基于物理凝胶的独特特性,这些物理凝胶会在环境条件变化时发生溶胶-凝胶相变。然而,相可逆水凝胶通常在机械上太弱而不能被视为固体材料。出乎意料地发现,可以使明胶水凝胶具有大量制造纳米/微粒所需的各种特性。可以将颗粒的大小从200 nm调整到> 50μm,从而在控制药物输送制剂的大小方面提供了灵活性。工艺的简单性使水凝胶模板方法可用于按比例放大生产颗粒。载药量为50%或更高,但是最初的突释释放是最小的。水凝胶模板方法提出了一种新的策略,该策略可制备具有预定大小和形状且具有均匀大小分布的纳米/微粒,以用于药物输送应用。

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