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用于生物技术应用的聚合物囊泡:纳米级囊泡的大规模生产。

Polymersomes for biotechnological applications: Large-scale production of nano-scale vesicles.

作者信息

Poschenrieder Sarah Theresa, Schiebel Sina Katharina, Castiglione Kathrin

机构信息

Lehrstuhl für Bioverfahrenstechnik Technische Universität München Garching Germany.

出版信息

Eng Life Sci. 2016 Nov 15;17(1):58-70. doi: 10.1002/elsc.201600100. eCollection 2017 Jan.

Abstract

Polymersomes have some fundamental advantages compared to their liposomal counterparts. Due to the increased stability of the polymeric membrane, polymersomes are intended to be reasonably applicable as carrier-systems and universal reaction compartments for diverse medical and biotechnological applications. Regardless of the application area, suitable methods to produce large vesicle quantities in a controlled and cost-effective manner have to be developed to put polymersome technology into action at the industrial scale. In this work, the amphiphilic triblock copolymer poly(2-methyloxazoline)-poly(dimethylsiloxane)-poly(2-methyloxazoline) was formed into uniform polymersomes. A recently established production process, based on the use of miniaturized stirred-tank reactors at the milliliter-scale (12 mL), was successfully scaled-up to the liter-scale (1.5 L) based on solid process engineering parameters. Dynamic light scattering measurements show that using standard propeller stirrers with a dimensionless diameter ≥0.65 in an unbaffled stirred-tank reactor led to a narrow particle size distribution when providing a Froude number of = 6.52 at the same time. Polymersomes with a mean diameter of 180 nm and a low polydispersity index (PDI<0.2) were generated within about 1 h in one single production step. Thus, this work provides the fundamental basis for further scale-up purposes, regarding polymersome production in stirred-tank reactors at the industrial scale.

摘要

与脂质体相比,聚合物囊泡具有一些基本优势。由于聚合物膜稳定性的提高,聚合物囊泡有望作为载体系统和通用反应隔室合理应用于各种医学和生物技术应用。无论应用领域如何,都必须开发出以可控且经济高效的方式大量生产囊泡的合适方法,以便在工业规模上应用聚合物囊泡技术。在这项工作中,两亲性三嵌段共聚物聚(2-甲基恶唑啉)-聚(二甲基硅氧烷)-聚(2-甲基恶唑啉)被制成均匀的聚合物囊泡。基于在毫升规模(12毫升)使用小型搅拌釜反应器最近建立的生产工艺,基于坚实的工艺工程参数成功扩大到升规模(1.5升)。动态光散射测量表明,在无挡板搅拌釜反应器中使用无量纲直径≥0.65的标准螺旋桨搅拌器,同时提供弗劳德数=6.52时,会导致粒径分布狭窄。在一个单一生产步骤中,约1小时内可生成平均直径为180纳米且多分散指数低(PDI<0.2)的聚合物囊泡。因此,这项工作为在工业规模的搅拌釜反应器中进一步扩大聚合物囊泡生产规模提供了基础依据。

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