首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Large Scale Production of Vesicles by Hollow Fiber Extrusion: A Novel Method for Generating Polymersome Encapsulated Hemoglobin Dispersions
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Large Scale Production of Vesicles by Hollow Fiber Extrusion: A Novel Method for Generating Polymersome Encapsulated Hemoglobin Dispersions

机译:中空纤维挤出大规模生产的囊泡:一种生成聚合物囊泡的血红蛋白分散体的新方法。

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Vesicles, which include both liposomes and polymersomes (polymer vesicles), are being developed as therapeutic drug carriers. In this study, we present a fully scalable low pressure extrusion methodology for preparing vesicles. Vesicles were generated by continuous extrusion through a 200 nm pore diameter hollow fiber (HF) membrane. The first half of this study describes a method for generating empty polymersomes composed of different molecular weight amphiphilic poly(butadiene-b-ethylene oxide) (PBD-b-PEO) diblock copolymers on a large scale (50-100 mL) using a HF membrane. Monodisperse empty polymersomes were formed with particle diameters slightly less than 200 nm, which were close to the rated 200 rim pore size of the HF membrane. The second half of this study describes the successful encapsulation of hemoglobin (lib) inside the aqueous core of polymersomes using the HF extrusion methodology. We demonstrate that polymersome encapsulated hemoglobin (PEH) particles formed by this technique had similar oxygen affinity, cooperativity coefficient, and methemoglobin (metHb) level compared to PEH particles formed by the I mL Volume small scale manual extrusion method. Most notably, Hb encapsulation inside the polymer vesicles formed by the HF extrusion method increased 2-fold compared to the manual extrusion method. This work is important, since it will enable facile scale-up of homogeneous vesicle dispersions that are typically required for preclinical and clinical studies as well as industrial use.
机译:囊泡,包括脂质体和聚合物囊泡(聚合物囊泡),都被开发为治疗药物载体。在这项研究中,我们提出了一种完全可扩展的低压挤出方法来制备囊泡。通过连续挤出通过200nm孔径的中空纤维(HF)膜来产生囊泡。这项研究的前半部分介绍了使用HF大规模(50-100 mL)生成由不同分子量的两亲性聚(丁二烯-b-环氧乙烷)(PBD-b-PEO)二嵌段共聚物组成的空聚合物囊泡的方法膜。形成的单分散的空聚合物囊泡的粒径略小于200 nm,接近HF膜的额定200边缘孔径。这项研究的后半部分描述了使用HF挤出方法将血红蛋白(lib)成功包裹在聚合物囊泡的水核内部。我们证明,与通过1毫升小规模手动挤压法形成的PEH颗粒相比,通过该技术形成的聚合物包裹的血红蛋白(PEH)颗粒具有相似的氧亲和力,协同系数和高铁血红蛋白(metHb)水平。最值得注意的是,与手动挤出法相比,通过HF挤出法形成的聚合物囊泡中的Hb封装增加了2倍。这项工作很重要,因为它可以方便地扩大临床前和临床研究以及工业用途通常所需的均相囊泡分散液。

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