4.7 Article Proceedings Paper

Elimination of the free sulfhydryl group in the human serum albumin (HSA) moiety of human interferon-alpha 2b and HSA fusion protein increases its stability against mechanical and thermal stresses

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.ejpb.2009.01.008

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Human serum albumin fusion protein; Protein aggregation; Protein engineering

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Interferon-alpha 2b (IFN-alpha 2b) and human serum albumin (HSA) fusion protein (IFN-alpha 2b-HSA) is a promising long acting formulation of IFN-alpha 2b for the treatment of hepatitis C. However, accelerated mechanical and thermal stress tests revealed that IFN-alpha 2b-HSA was prone to disulfide-linked aggregation. The formation of aggregates was associated with an increase in immunogenicity in mice. The addition of non-ionic surfactant Tween 80 increased the stability of IFN-alpha 2b-HSA against agitation, but its thermal stability was not improved. Moreover, Tween 80 prompted the aggregation of IFN-alpha 2b-HSA during quiescent storage. To increase the stability of IFN-alpha 2b-HSA, the unpaired cysteine residue in this fusion protein was substituted with serine by site-directed mutagenesis. The resultant fusion protein was designated as IFN-alpha 2b-HSA(C34S). IFN-alpha 2b-HSA(C34S) had significant higher stability over IFN-alpha 2b-HSA, which was evidenced by the facts that after agitation for 72 h or incubation at 60 degrees C for 2 h, more than 90% of IFN-alpha 2b-HSA(C34S) remained monomeric. Consistent with its improved stability, the immunogenicity of IFN-alpha 2b-HSA(C34S) increased less significantly after agitation. Pharmacokinetics studies in rats revealed that both fusion proteins had similar pharmacokinetic behavior, both with a half-life of about 50 h. (C0 2009 Published by Elsevier B.V.

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