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蛋白质的喷雾干燥:山梨醇和海藻糖对免疫球蛋白G聚集及傅里叶变换红外光谱酰胺I谱的影响

Spray-drying of proteins: effects of sorbitol and trehalose on aggregation and FT-IR amide I spectrum of an immunoglobulin G.

作者信息

Maury Michael, Murphy Keith, Kumar Sandeep, Mauerer Alexander, Lee Geoffrey

机构信息

Department of Pharmaceutics, Friedrich-Alexander-University, Erlangen, Germany.

出版信息

Eur J Pharm Biopharm. 2005 Feb;59(2):251-61. doi: 10.1016/j.ejpb.2004.07.010.

Abstract

An immunoglobulin G (IgG) was spray-dried on a Buchi 190 laboratory spray-dryer at inlet and outlet air temperatures of 130 and 190 degrees C, respectively. The IgG solution contains initially 115 mg/ml IgG plus 50 mg/ml sorbitol. After dialysis, at least 80% of low molecular weight component was removed. After spray-drying the dialyzed IgG and immediate redissolution of the powder, an increase in aggregates from 1 to 17% occurred. A major shift towards increase beta-sheet structure was detected in the spray-dried solid, which, however, reverted to native structure on redissolution of the powder. A correlation between aggregation determined by size exclusion chromatography and alterations in secondary structure determined by Fourier transformation infra-red spectroscopy could not therefore be established. On spray-drying a non-dialyzed, sorbitol-containing IgG only some 0.7% aggregates were formed. The sorbitol is therefore evidently able to stabilize partially the IgG during the process of spray-drying. Addition of trehalose to the liquid feed produced quantitatively the same stabilizing action on the IgG during spray-drying as did the sorbitol. This finding again points towards a water replacement stabilization mechanism. The IgG spray-dried powder prepared from the dialyzed liquid feed showed continued substantial aggregation on dry storage at 25 degrees C. This was substantially less in the non-dialyzed, sorbitol-containing spray-dried powder. Addition of trehalose to both dialyzed and non-dialyzed system produced substantial improvement in storage stability and reduction in aggregate formation in storage. The quantitative stabilizing effect of the trehalose was only slightly higher than that of the sorbitol. Taken together, these results indicate that both the sorbitol and trehalose stabilize the IgG primarily by a water replacement mechanism rather than by glassy immobilization. The relevance of this work is its questioning of the importance of the usually considered dominance of glassy stabilization of protein in dried systems of high glass transition temperature, such as trehalose. The low glass transition temperature sorbitol produces almost equal process and storage stability in this case.

摘要

将一种免疫球蛋白G(IgG)在Buchi 190实验室喷雾干燥器中进行喷雾干燥,进、出风温度分别为130℃和190℃。IgG溶液最初含有115mg/ml的IgG加50mg/ml的山梨醇。透析后,至少80%的低分子量成分被去除。对透析后的IgG进行喷雾干燥并将粉末立即重新溶解后,聚集体从1%增加到了17%。在喷雾干燥的固体中检测到β-折叠结构有显著增加,然而,在粉末重新溶解后又恢复到天然结构。因此,无法确定尺寸排阻色谱法测定的聚集与傅里叶变换红外光谱法测定的二级结构变化之间的相关性。对未透析的含山梨醇的IgG进行喷雾干燥时,仅形成了约0.7%的聚集体。因此,山梨醇显然能够在喷雾干燥过程中部分稳定IgG。在液体进料中添加海藻糖在喷雾干燥过程中对IgG产生了与山梨醇相同的定量稳定作用。这一发现再次指向水替代稳定机制。由透析后的液体进料制备的IgG喷雾干燥粉末在25℃干燥储存时持续大量聚集。在未透析的含山梨醇的喷雾干燥粉末中这种情况要少得多。在透析和未透析体系中添加海藻糖均显著提高了储存稳定性并减少了储存过程中的聚集体形成。海藻糖的定量稳定作用仅略高于山梨醇。综上所述,这些结果表明山梨醇和海藻糖主要通过水替代机制而非玻璃态固定来稳定IgG。这项工作的意义在于,它对通常认为的在高玻璃化转变温度的干燥体系(如山梨醇)中蛋白质玻璃态稳定占主导地位的重要性提出了质疑。在这种情况下,低玻璃化转变温度的山梨醇产生了几乎相同的加工和储存稳定性。

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