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Harnessing the power of electrophoresis and chromatography: Offline coupling of reverse phase liquid chromatography‐capillary zone electrophoresis‐tandem mass spectrometry for analysis of host cell proteins in monoclonal antibody producing CHO cell line
Author(s) -
Kumar Ramesh,
Shah Rohan L.,
Ahmad Shadab,
Rathore Anurag S.
Publication year - 2021
Publication title -
electrophoresis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.666
H-Index - 158
eISSN - 1522-2683
pISSN - 0173-0835
DOI - 10.1002/elps.202000252
Subject(s) - chinese hamster ovary cell , chromatography , tandem mass spectrometry , chemistry , capillary electrophoresis , mass spectrometry , monoclonal antibody , liquid chromatography–mass spectrometry , proteome , antibody , biochemistry , biology , receptor , immunology
Host cell proteins (HCPs) are widely regarded as a critical quality attribute for a biotherapeutic product. Bottom up MS is the present gold standard for HCP analysis but suffers from incomplete protein identification due to complex nature of the HCP mixture and limited separation efficiency of the preceding LC‐based systems. In this paper, we present for the first time an application involving use of LC‐CE‐MS/MS platform for analysis of HCPs. It has been demonstrated that the proposed platform has been able to successfully identify 397 HCPs from the supernatants of recombinant Chinese hamster ovary cells, twice and thrice the number of proteins identified by the state‐of‐the‐art LC‐MS/MS (189 HCPs) and CE‐MS/MS (128 HCPs) analyses, respectively. Of these, 225 HCPs were unique to the LC‐CE‐MS/MS approach and were not identified by either LC‐MS/MS or CE‐MS/MS. It is observed that the LC‐CE‐MS/MS platform combines the benefits of LC‐MS/MS and CE‐MS/MS techniques and identifies peptides in a wider range of size, p I , and hydrophobicity. Additionally, LC‐CE‐MS/MS also identified more HCPs associated with cellular components, molecular functions, biological processes, peptidases, and secretory proteins. The proposed approach would thus be a useful addition in HCP analysis and secretome studies of mAb‐producing Chinese hamster ovary cells.