Chemical stability of insulin. 5. Isolation, characterization and identification of insulin transformation products.

Acta pharmaceutica Nordica Pub Date : 1992-01-01
J Brange, O Hallund, E Sørensen
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Abstract

During storage of insulin formulated for therapy, minor amounts of various degradation and covalent di- and polymerization products are formed [1-3]. The main chemical transformation products were isolated from aged preparations and characterized chemically and biologically. The most prominent products formed in neutral medium were identified as a mixture of deamidation products hydrolyzed at residue B3, namely isoAsp B3 and Asp B3 derivatives. A hydrolysis product formed only in crystals of insulin zinc suspensions containing a surplus of zinc ions in the supernatant was identified as an A8-A9 cleavage product. The small amounts of covalent insulin dimers (CID) formed in all formulations were shown to be a heterogenous mixture of 5-6 different CIDs with a composition dependent on the pharmaceutical formulation. The chemical characteristics of the CIDs indicate that they are formed through a transamidation reaction mainly between the B-chain N-terminal and one of the four amide side-chains of the A chain. GlnA15, AsnA18 and, in particular, AsnA21 participate in the formation of such isopeptide links between two insulin molecules. The covalent insulin-protamine products (CIPP) formed during storage of NPH preparations presumably originate from a similar reaction between the protamine N-terminal with an amide in insulin. Covalent polymerization products, mainly formed during storage of amorphously suspended insulin at higher temperature, were shown to be due to disulfide interactions. Biological in vivo potencies relative to native insulin were less than 2% for the split-(A8-A9)-product and for the covalent disulfide exchange polymers, 4% for the CIPP, approximately 15% for the CIDs, whereas the B3 derivatives exhibited full potency. Rabbit immunization experiments revealed that none of the insulin transformation products had significantly increased immunogenicity in rabbits.

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胰岛素的化学稳定性。5. 胰岛素转化产物的分离、表征和鉴定。
在用于治疗的胰岛素储存过程中,会形成少量的各种降解和共价二价产物和聚合产物[1-3]。从陈化制剂中分离出主要的化学转化产物,并对其进行了化学和生物学表征。在中性介质中形成的最突出的产物被鉴定为在残基B3水解的脱酰胺产物的混合物,即isoAsp B3和Asp B3衍生物。在上清液中含有多余锌离子的胰岛素锌悬浮液晶体中形成的水解产物被确定为A8-A9裂解产物。在所有制剂中形成的少量共价胰岛素二聚体(CID)显示为5-6种不同CID的异质混合物,其组成取决于药物制剂。CIDs的化学性质表明,它们主要是由b链n端与a链四个酰胺侧链中的一个侧链之间的酰胺化反应形成的。GlnA15, AsnA18,特别是AsnA21参与了两个胰岛素分子之间这种异肽连接的形成。在NPH制剂储存过程中形成的共价胰岛素-鱼精蛋白产物(CIPP)可能源于鱼精蛋白n端与胰岛素中的酰胺之间的类似反应。共价聚合产物主要是在非晶悬浮胰岛素在较高温度下储存时形成的,是由于二硫相互作用造成的。与天然胰岛素相比,分裂-(A8-A9)产物和共价二硫交换聚合物的生物体内效价低于2%,CIPP为4%,CIDs约为15%,而B3衍生物则表现出充分的效价。家兔免疫实验显示,胰岛素转化产物均未显著提高家兔免疫原性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Model systems in iontophoresis--transport efficacy. Furan and thiophene analogues of omeprazole. Chemical stability of insulin. 4. Mechanisms and kinetics of chemical transformations in pharmaceutical formulation. Chemical stability of insulin. 5. Isolation, characterization and identification of insulin transformation products. Relative bioavailability in man of noscapine administered in lozenges and mixture.
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