Abstract

According to "The Proteome Code" concept introduced by J. Biro and our early development of affinity peptide calculation method it was studied the possibility of high affinity peptide chromatographic gels development for IgG1-4 separation from the donor plasma. Given the next step of virus inactivation of IgG directly in the chromatographic column, the affinity gel had bind IgG at several spatially spaced points in order to limit the degree of freedom of the protein for retention IgG at high buffer flow rate or elevated buffer temperatures without denaturation. In addition, the possibility of creating highly specific affinity sense-antisense peptides against Rubella virus in order to increase the titer of aRIgG in plasma or even its isolation in highly purified form was studied. Based on previous experiments, an affinity multi-peptide chromatographic gel with the following properties was developed: the DBC with enough residence time 10 min was around 50-54 mg × mL-1 of total 98.0% purity of IgG with natural proportion of the 1-4 subclasses, any other immunoglobulins were not found. The virus inactivation/elimination on this gel directly in chromatographic column shown a highly effective virus elimination (log10>9) for both nonenveloped and lipid enveloped viruses. Using RV sequence from UniProt_KB and dates from more than 20 literature sources on the virus proteins interaction, affinity peptides were calculated against virus proteins C and E1,2. Then these peptides were modified to reach more affinity enhancement and affinity-peptide chromatographic gel was synthetized. By this gel from total mass IgG1-4 contained 6644 IU anti-Rubella IgG with specificity 6.64 IU × mg-1 were isolated 5382 IU aRIgG (> 80%) with a specificity of 791 IU × mg-1.

Highlights

  • We have shown that the development of chromatographic adsorbents with high Dynamic Binding Capacity (DBC) gave us the opportunity to transform the method of virus-inactivation of proteins in solution into the method of inactivation and elimination of viruses directly in the chromatographic process at an elevated temperature of 30-45°C [1,2]

  • A picky and careful analysis of the literature sources shown that there are several aa sequences in the IgG molecule that are available for interaction with other proteins (SpA, Streptococcal Protein G (SpG), Peptostreptococcal Protein L (PpL)), various cellular receptors (Fc Rs and TRIM21), Rheumatoid Factor (RF), C1q complement

  • The most interesting information in the context of this investigation is summarized in the table 1. This table includes possible interaction sites located in other parts of the IgG molecule, which were important in the light of the study objectives

Read more

Summary

Introduction

We have shown that the development of chromatographic adsorbents with high Dynamic Binding Capacity (DBC) gave us the opportunity to transform the method of virus-inactivation of proteins in solution into the method of inactivation and elimination of viruses directly in the chromatographic process at an elevated temperature of 30-45°C [1,2]. In the case of multipoint adsorption of the target protein, it is "crucified" on the adsorbent; its degrees of freedom and rotations/hesitation of individual parts of the molecule tend to zero. A high DBC allows keeping the protein in a "crucified" state at elevated temperatures. Any denaturation or loss of protein activity was avoided, and the FVIII yield in the complete process of its isolation from donor blood plasma was significantly increased

Objectives
Methods
Results
Conclusion
Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.