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在空气喷射雾化过程中稳定蛋白质配方。

Stabilizing protein formulations during air-jet nebulization.

机构信息

Department of Pharmaceutics, School of Pharmacy, University of London, 29-39 Brunswick Square, London WC1N 1AX, UK.

出版信息

Int J Pharm. 2010 Dec 15;402(1-2):140-5. doi: 10.1016/j.ijpharm.2010.09.042. Epub 2010 Oct 7.

Abstract

Whilst some proteins can be effectively administered to the lungs using a nebulizer, others, such as lactate dehydrogenase (LDH) are degraded during air-jet nebulization. In order to deliver LDH by nebulization a protective delivery system or carrier may therefore be appropriate. The aim of this study was to produce and characterize a formulation of LDH, which retains enzyme activity during nebulization. Chitosan, a biocompatible, biodegradable and bioadhesive polysaccharide polymer, was included in the formulations studied as a potential protective agent. Complexes of LDH with chitosan of different molecular weights and concentrations were assessed for size, zeta potential, aerosol droplet size and delivery from a jet nebulizer. The highest molecular weight chitosan had the greatest complex size and a net positive charge of +29.7mV. Jet nebulization resulted in aerosol droplets with median size in the range 2.36-3.52μm. Nebulization of LDH solution resulted in enzyme denaturation and reduced activity. The stability of LDH was greatly improved in formulations with chitosan; with greater than 50% total LDH available in a nebulizer delivered to the lower stage of a two-stage impinger, with up to 62% retained enzyme activity. The nonionic surfactant Tween 80 also improved the stability of LDH to nebulization and had an additive protective effect when included, with chitosan, in formulations. These findings suggest chitosan may be a useful excipient in the preparation of stable protein formulations for jet nebulization.

摘要

虽然有些蛋白质可以通过雾化器有效地输送到肺部,但其他蛋白质,如乳酸脱氢酶(LDH),在空气射流雾化时会降解。因此,为了通过雾化输送 LDH,可以使用保护输送系统或载体。本研究的目的是制备和表征一种 LDH 制剂,使其在雾化过程中保持酶活性。壳聚糖是一种生物相容、可生物降解和生物粘附的多糖聚合物,被包含在研究的制剂中作为一种潜在的保护剂。研究了不同分子量和浓度的壳聚糖与 LDH 的复合物的大小、zeta 电位、气溶胶液滴大小以及从射流雾化器的输送情况。高分子量壳聚糖具有最大的复合物大小和 29.7mV 的净正电荷。射流雾化导致中值粒径在 2.36-3.52μm 范围内的气溶胶液滴。LDH 溶液的雾化导致酶变性和活性降低。在含有壳聚糖的制剂中,LDH 的稳定性大大提高;在输送到两级冲击式分级器下部阶段的雾化器中,有超过 50%的总 LDH 可用,保留了高达 62%的酶活性。非离子表面活性剂吐温 80 也提高了 LDH 对雾化的稳定性,当与壳聚糖一起包含在制剂中时,具有附加的保护作用。这些发现表明壳聚糖可能是用于制备稳定的蛋白质制剂用于射流雾化的有用赋形剂。

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