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Laboratory Scale Production and Purification of a Therapeutic Antibody
Published on: January 24, 2017
Enrichment and Liquid Chromatography-Mass Spectrometry Analysis of Trastuzumab and Pertuzumab Using Affimer Reagents
Oladapo Olaleye1, Baubek Spanov1, Robert Ford2
1Department of Analytical Biochemistry, Groningen Research Institute of Pharmacy, University of Groningen, A. Deusinglaan 1, 9713 AV Groningen, The Netherlands.
Abstract:
Trastuzumab and pertuzumab are monoclonal antibodies used in the treatment of human epidermal growth factor receptor-2 (HER2)-positive breast cancer. Therapeutic proteins may undergo chemical modifications that may affect the results of bioanalytical assays, as well as their therapeutic efficacy. Modifications may arise during production and storage, as well as after administration to patients. Studying in vivo biotransformation of monoclonal, therapeutic antibodies requires their enrichment from plasma to discriminate them from endogenous antibodies, as well as from other plasma proteins. To this end, we screened Affimer reagents for selectivity toward trastuzumab or pertuzumab. Affimer reagents are alternative binding proteins possessing two variable binding loops that are based on the human protease inhibitor stefin A or phytocystatin protein scaffolds. Affimer reagents were selected from an extensive library by phage display. The four best-performing binders for each therapeutic antibody were prioritized using a microtiter plate-based approach combined with liquid chromatography-mass spectrometry (LC-MS) in the selected reaction monitoring (SRM) mode. These Affimer reagents were immobilized via engineered 6-His or Cys tags to Ni2+- or maleimide beads, respectively. Recovery values of 70% and higher were obtained for both trastuzumab and pertuzumab when spiked at 100, 150, and 200 μg/mL concentrations in human plasma followed by trypsin digestion in the presence of 0.5% sodium deoxycholate and 10 mM dithiothreitol (DTT). Notably, the maleimide beads showed undetectable unspecific binding to endogenous immunoglobulin G (IgGs) or other plasma proteins when analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). The enrichment method was applied to samples from stress tests of the antibodies at 37 °C to mimic in vivo conditions.
Insights
Researchers developed novel Affimer reagents for selective enrichment of therapeutic antibodies like trastuzumab and pertuzumab from human plasma. This method aids in studying antibody biotransformation and ensures accurate bioanalytical assay results for HER2-positive breast cancer treatment.
Area of Science:
- Biochemistry
- Analytical Chemistry
- Immunology
Background:
- Trastuzumab and pertuzumab are critical monoclonal antibodies for HER2-positive breast cancer.
- Therapeutic protein modifications during production, storage, or in vivo can impact efficacy and assay accuracy.
- Enrichment of therapeutic antibodies from plasma is essential for studying in vivo biotransformation.
Purpose of the Study:
- To screen and select Affimer reagents with high selectivity for trastuzumab and pertuzumab.
- To develop an efficient method for enriching these therapeutic antibodies from human plasma.
- To validate the enrichment method for subsequent bioanalytical studies, including biotransformation.
Main Methods:
- Affimer reagents were selected using phage display against trastuzumab and pertuzumab.
- High-performing Affimers were identified using microtiter plate assays and LC-MS/SRM.
- Affimers were immobilized on Ni2+- or maleimide beads for antibody capture from spiked human plasma.
Main Results:
- Affimer reagents demonstrated high selectivity for trastuzumab and pertuzumab.
- Recovery rates exceeding 70% were achieved for both antibodies from human plasma.
- Maleimide-bead immobilization showed negligible non-specific binding to endogenous immunoglobulins and plasma proteins.
Conclusions:
- Novel Affimer reagents enable efficient and selective enrichment of trastuzumab and pertuzumab from plasma.
- The developed method is suitable for studying therapeutic antibody biotransformation under simulated in vivo conditions.
- This enrichment strategy supports accurate bioanalysis of therapeutic monoclonal antibodies.
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