Automated Mass Photometry of Adeno-Associated Virus Vectors from Crude Cell Extracts

Author:

Wagner Christina1,Fuchsberger Felix F.1,Innthaler Bernd1,Pachlinger Robert1,Schrenk Irene1,Lemmerer Martin1,Birner-Gruenberger Ruth2ORCID

Affiliation:

1. Pharmaceutical Sciences, Baxalta Innovations (Part of Takeda), 1220 Vienna, Austria

2. Institute of Chemical Technologies and Analytics, Technical University of Vienna, 1040 Vienna, Austria

Abstract

Mass photometry (MP) is a fast and simple analysis method for the determination of the proportions of subpopulations in an AAV sample. It is label-free and requires minimal sample volumes between 5–10 µL, which makes it a promising candidate over orthogonal techniques such as analytical ultracentrifugation (AUC), cryo-transmission electron microscopy (Cryo-TEM) or charge-detection mass spectrometry (CDMS). However, these methods are limited in their application to purified samples only. Here we developed a purification step based on single-domain monospecific antibody fragments immobilised on either a poly(styrene-divinylbenzene) resin or on magnetic beads prior to MP analysis that allows the quantification of empty, partially filled, full and overfull AAV vectors in crude cell extracts. This is aimed at identifying potentially promising harvest conditions that yield large numbers of filled AAV vectors during the early stages of the viral vector development platform, e.g., the type of transfection reagent used. Furthermore, we provide a direct comparison of the automated and manual handling of the mass photometer with respect to the quantities of AAV subspecies, molar mass of the capsid and payload, and highlight the differences between the “buffer-free” sample measurement and the “buffer-dilution” mode. In addition, we provide information on which candidates to use for calibration and demonstrate the limitations of the mass photometer with respect to the estimation of the capsid titer.

Funder

Baxalta Innovations GmbH

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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5. Anion-exchange HPLC assay for separation and quantification of empty and full capsids in multiple adeno-associated virus serotypes;Khatwani;Mol. Ther.-Methods Clin. Dev.,2021

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