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Scaled-Up Production and Tableting of Grindable Electrospun Fibers Containing a Protein-Type Drug

机译:包含蛋白质类药物的可磨细电纺纤维的大规模生产和压片

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摘要

The aims of this work were to develop a processable, electrospun formulation of a model biopharmaceutical drug, β-galactosidase, and to demonstrate that higher production rates of biopharmaceutical-containing fibers can be achieved by using high-speed electrospinning compared to traditional electrospinning techniques. An aqueous solution of 7.6 w/w% polyvinyl alcohol, 0.6 w/w% polyethylene oxide, 9.9 w/w% mannitol, and 5.4 w/w% β-galactosidase was successfully electrospun with a 30 mL/h feeding rate, which is about 30 times higher than the feeding rate usually attained with single-needle electrospinning. According to X-ray diffraction measurements, polyvinyl alcohol, polyethylene oxide, and β-galactosidase were in an amorphous state in the fibers, whereas mannitol was crystalline (δ-polymorph). The presence of crystalline mannitol and the low water content enabled appropriate grinding of the fibrous sample without secondary drying. The ground powder was mixed with excipients commonly used during the preparation of pharmaceutical tablets and was successfully compressed into tablets. β-galactosidase remained stable during each of the processing steps (electrospinning, grinding, and tableting) and after one year of storage at room temperature in the tablets. The obtained results demonstrate that high-speed electrospinning is a viable alternative to traditional biopharmaceutical drying methods, especially for heat sensitive molecules, and tablet formulation is achievable from the electrospun material prepared this way.
机译:这项工作的目的是开发一种可加工的静电纺丝的生物制药模型β-半乳糖苷酶制剂,并证明与传统的静电纺丝技术相比,使用高速静电纺丝可以实现更高的含生物制药纤维的生产率。 7.6 w / w%聚乙烯醇,0.6 w / w%聚环氧乙烷,9.9 w / w%甘露醇和5.4 w / w%β-半乳糖苷酶的水溶液已成功以30 mL / h的进料速度进行电纺丝,比单针电纺通常可达到的进料速度高约30倍。根据X射线衍射测量,聚乙烯醇,聚环氧乙烷和β-半乳糖苷酶在纤维中处于非晶态,而甘露醇为结晶(δ-多晶型)。结晶甘露醇的存在和低水含量使得能够对纤维样品进行适当的研磨而无需二次干燥。将磨碎的粉末与制备药物片剂时常用的赋形剂混合,然后成功压制成片剂。 β-半乳糖苷酶在每个加工步骤(静电纺丝,研磨和压片)以及在室温下于片剂中保存一年后均保持稳定。获得的结果表明,高速静电纺丝是传统生物制药干燥方法的一种可行替代方法,特别是对于热敏分子,并且可以通过这种方法制备的静电纺丝材料获得片剂配方。

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