Literature DB >> 33513021

Tracking the Behavior of Monoclonal Antibody Product Quality Attributes Using a Multi-Attribute Method Workflow.

Craig Jakes1,2, Silvia Millán-Martín1, Sara Carillo1, Kai Scheffler3, Izabela Zaborowska1, Jonathan Bones1,2.   

Abstract

The multi-attribute method (MAM) is a liquid chromatography-mass spectrometry based method that is used to directly characterize and monitor many product quality attributes and impurities on biotherapeutics, most commonly at the peptide level. It utilizes high-resolution accurate mass spectral data which are analyzed in an automated fashion. MAM is a promising approach that is intended to replace or supplement several conventional assays with a single LC-MS analysis and can be implemented in a Current Good Manufacturing Practice environment. MAM provides accurate site-specific quantitation information on targeted attributes and the nontargeted new peak detection function allows to detect new peaks as impurities, modifications, or sequence variants when comparing to a reference sample. The high resolution MAM workflow was applied here for three independent case studies. First, to monitor the behavior of monoclonal antibody product quality attributes over the course of a 12-day cell culture experiment providing an insight into the behavior and dynamics of product attributes throughout the process. Second, the workflow was applied to test the purity and identity of a product through analysis of samples spiked with host cell proteins. Third, through the comparison of a drug product and a biosimilar with known sequence variants. The three case studies presented here, clearly demonstrate the robustness and accuracy of the MAM workflow that implies suitability for deployment in the regulated environment.

Entities:  

Keywords:  HRAM; high-resolution accurate mass; host cell proteins (HCPs); liquid chromatography mass spectrometry; mass spectrometry; monoclonal antibody; multi-attribute method (MAM); peptide mapping; product quality attributes; sequence variants

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Year:  2021        PMID: 33513021     DOI: 10.1021/jasms.0c00432

Source DB:  PubMed          Journal:  J Am Soc Mass Spectrom        ISSN: 1044-0305            Impact factor:   3.109


  2 in total

1.  Multi attribute method implementation using a High Resolution Mass Spectrometry platform: From sample preparation to batch analysis.

Authors:  Sofia B Carvalho; Ricardo A Gomes; Anja Pfenninger; Martina Fischer; Michaela Strotbek; Inês A Isidro; Nihal Tugçu; Patrícia Gomes-Alves
Journal:  PLoS One       Date:  2022-01-27       Impact factor: 3.240

2.  Attribute Analytics Performance Metrics from the MAM Consortium Interlaboratory Study.

Authors:  Trina Mouchahoir; John E Schiel; Rich Rogers; Alan Heckert; Benjamin J Place; Aaron Ammerman; Xiaoxiao Li; Tom Robinson; Brian Schmidt; Chris M Chumsae; Xinbi Li; Anton V Manuilov; Bo Yan; Gregory O Staples; Da Ren; Alexander J Veach; Dongdong Wang; Wael Yared; Zoran Sosic; Yan Wang; Li Zang; Anthony M Leone; Peiran Liu; Richard Ludwig; Li Tao; Wei Wu; Ahmet Cansizoglu; Andrew Hanneman; Greg W Adams; Irina Perdivara; Hunter Walker; Margo Wilson; Arnd Brandenburg; Nick DeGraan-Weber; Stefano Gotta; Joe Shambaugh; Melissa Alvarez; X Christopher Yu; Li Cao; Chun Shao; Andrew Mahan; Hirsh Nanda; Kristen Nields; Nancy Nightlinger; Ben Niu; Jihong Wang; Wei Xu; Gabriella Leo; Nunzio Sepe; Yan-Hui Liu; Bhumit A Patel; Douglas Richardson; Yi Wang; Daniela Tizabi; Oleg V Borisov; Yali Lu; Ernest L Maynard; Albrecht Gruhler; Kim F Haselmann; Thomas N Krogh; Carsten P Sönksen; Simon Letarte; Sean Shen; Kristin Boggio; Keith Johnson; Wenqin Ni; Himakshi Patel; David Ripley; Jason C Rouse; Ying Zhang; Carly Daniels; Andrew Dawdy; Olga Friese; Thomas W Powers; Justin B Sperry; Josh Woods; Eric Carlson; K Ilker Sen; St John Skilton; Michelle Busch; Anders Lund; Martha Stapels; Xu Guo; Sibylle Heidelberger; Harini Kaluarachchi; Sean McCarthy; John Kim; Jing Zhen; Ying Zhou; Sarah Rogstad; Xiaoshi Wang; Jing Fang; Weibin Chen; Ying Qing Yu; John G Hoogerheide; Rebecca Scott; Hua Yuan
Journal:  J Am Soc Mass Spectrom       Date:  2022-08-26       Impact factor: 3.262

  2 in total

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