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DOE OSTI · 1629987

The ELISA Detectability and Potency of Pegfilgrastim Decrease in Physiological Conditions: Key Roles for Aggregation and Individual Variability

Abstract

PEGylated recombinant human granulocyte colony stimulating factor (pegflgrastim) is used clinically to accelerate immune reconstitution following chemotherapy and is being pursued for biosimilar development. One challenge to overcome in pegflgrastim biosimilar development is establishing pharmacokinetic (PK) similarity, which is partly due to the degree of PK variability. We herein report that commercially available G-CSF and PEG ELISA detection kits have different capacities to detect pegflgrastim aggregates that rapidly form in vitro in physiological conditions. These aggregates can be observed using SDS-PAGE, size-exclusion chromatography, dynamic light scattering, and real-time NMR analysis and are associated with decreased bioactivity as reflected by reduced drug-induced cellular proliferation and STAT3 phosphorylation. Furthermore, individual variability in the stability and detectability of pegflgrastim in human sera is also observed. Pegflgrastim levels display marked subject variability in sera from healthy donors incubated at 37°C. The stability patterns of pegflgrastim closely match the stability patterns of flgrastim, consistent with a key role for pegflgrastim’s G-CSF moiety in driving formation of inactive aggregates. Taken together, our results indicate that individual variability and ELISA specificity for inactive aggregates are key factors to consider when designing and interpreting studies involving the measurement of serum pegflgrastim concentrations.

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BibTeXRIS

Xie, Tao, Fang, Hui, Ouyang, Weiming, Angart, Phillip, Chiang, Meng-Jung, Bhirde, Ashwinkumar A., Sheikh, Faruk, Lynch, Patrick, Shah, Ankit B., Patil, Sharadrao M., Chen, Kang, Shen, Meiyu, Agarabi, Cyrus, Donnelly, Raymond P., Brorson, Kurt, Schrieber, Sarah J., Howard, Kristina E., Rogstad, Sarah M., Frucht, David M.. 2020-02-12. The ELISA Detectability and Potency of Pegfilgrastim Decrease in Physiological Conditions: Key Roles for Aggregation and Individual Variability. https://doi.org/10.1038/s41598-020-59346-z

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