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1.
PDA J Pharm Sci Technol ; 71(1): 11-19, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28174258

RESUMO

Ethylene oxide (ETO) is commonly used to sterilize plastic containers, but the effects of residual amounts left after sterilization on protein therapeutics are still not well understood. Here we focus primarily on the factors that influence concentrations of ETO migrating from ETO-treated plastic containers into aqueous solution. A study was designed to investigate the kinetics of this process at various temperatures, and the kinetic data could be fit with a model based on a combination of Fickean diffusion and first-order chemical reaction (to account for observed hydrolysis of ETO). The diffusion and reaction rate constants thus obtained obey Arrhenius-like temperature dependence. These results indicate that for analytical methods involving extraction into water, measurements of residual ETO in a container must account for the effects of ETO hydrolysis. Further, the effects of salt concentration and pH of the fluid in the container on accumulated ETO levels were explored. Finally, interactions of ETO with anti-streptavidin (AntiSA) Immunoglobulin G1 (IgG1) and IgG2 antibodies were studied, with ETO adducts found on all methionine residues when incubated in solutions spiked with ETO at concentrations that could be reached (based on the kinetic studies) in ETO-treated plastic vials. Overall, the likelihood of observable ETO-protein modifications upon storage in ETO-sterilized containers will depend on a complex interplay of protein properties, formulation details, storage conditions, and amount of residual ETO initially in the container. LAY ABSTRACT: Ethylene oxide (ETO) is commonly used to sterilize plastic containers, but the effects of residual amounts left after sterilization on protein therapeutics are still not well understood. Here we describe experiments exploring the factors that influence concentrations of ETO migrating from ETO-treated plastic containers into aqueous solution over time. Additionally, interactions of ETO with model antibodies were studied, with ETO adducts found on all methionine residues when incubated in solutions spiked with ETO at concentrations that could potentially be reached in ETO-treated plastic vials. Overall, the likelihood of observable ETO-protein modifications upon storage in ETO-sterilized containers will depend on a complex interplay of protein properties, formulation details, storage conditions, and amount of residual ETO initially in the container.


Assuntos
Anticorpos Monoclonais/química , Equipamentos e Provisões , Óxido de Etileno/química , Modelos Teóricos , Plásticos/química , Esterilização , Interações Medicamentosas , Estabilidade de Medicamentos , Equipamentos e Provisões/normas , Cinética , Preparações Farmacêuticas/química , Temperatura
2.
Anal Biochem ; 428(2): 137-42, 2012 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-22727819

RESUMO

An Fc fusion protein expressed in Escherichia coli contains Met1 and Asp2 residues at the N terminus and an active peptide attached to the C terminus of the Fc region. Due to the unique amino acid sequence of Fc, many commonly used proteolysis methods have severe drawbacks for characterizing degradations of Met1 and Asp2 residues. A novel method has been developed to effectively characterize the degradations by employing a limited endoproteinase Glu-C digestion. The limited digestion generates a dimeric peptide of (Met1-Glu14)2 due to specific cleavage at the residue Glu14 of the N terminus. This peptide together with its degraded products, including Met1 oxidation and Asp2 isomerization, can be identified and quantified by liquid chromatography-tandem mass spectrometry (LC-MS/MS). The optimization of digestion procedure and linearity of quantification are also described. This approach was successfully used in a photostability study to assess the product stability of an Fc fusion peptibody.


Assuntos
Cromatografia Líquida de Alta Pressão/métodos , Peptídeos/metabolismo , Proteólise , Receptores Fc/metabolismo , Proteínas Recombinantes de Fusão/metabolismo , Espectrometria de Massas em Tandem/métodos , Sequência de Aminoácidos , Ácido Aspártico/metabolismo , Escherichia coli , Isomerismo , Metionina/metabolismo , Dados de Sequência Molecular , Oxirredução , Peptídeos/química , Receptores Fc/química , Proteínas Recombinantes de Fusão/química , Serina Endopeptidases , Estresse Fisiológico , Fatores de Tempo
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