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Biology subjects

Foss, S.

Publications and source records attributed to Foss, S..

2 recordsLinked to original sources

Systematic benchmarking of mass spectrometry-based antibody sequencing reveals methodological biases

The circulating antibody repertoire is crucial for immune protection, holding significant immunological and biotechnological value. While bottom-up mass spectrometry (MS) is the most widely used proteomics technique for profiling the sequence diversity of circulating antibodies (Ab-seq), it has not been thoroughly benchmarked. We quantified the replicability and robustness of Ab-seq using six monoclonal antibodies with known protein sequences in 70 different combinations of concentration and oligoclonality, both with and without polyclonal serum IgG background. Each combination underwent four protease treatments and was analyzed across four experimental and three technical replicates, totaling 3,360 LC-MS/MS runs. We quantified the dependence of MS-based Ab-seq identification on antibody sequence, concentration, protease, background signal diversity, and bioinformatics setups. Integrating the data from experimental replicates, proteases, and bioinformatics tools enhanced antibody identification. De novo peptide sequencing showed similar performance to database-dependent methods for higher antibody concentrations, but de novo antibody reconstruction remains challenging. Our work provides a foundational resource for the field of MS-based antibody profiling.

immunology↗

NNV024, a novel humanized anti-CD37 antibody with enhanced ADCC and prolonged plasma half-life in human FcRn transgenic mice for treatment of NHL

There is an unmet medical need for new therapeutic approaches and targets for patients with non- Hodgkin lymphoma (NHL) who relapse or are refractory to anti-CD20 immunotherapy. Therefore, we developed a humanized IgG1 antibody targeting CD37, which was tailored to be afucosylated for enhanced antibody-dependent cellular cytotoxicity (ADCC) (NNV024). In line with this, NNV024 induced three-fold more potent ADCC activity against patient-derived chronic lymphocytic leukemia (CLL) cells compared with anti-CD20 obinutuzumab. Moreover, NNV024 showed 2-fold higher ADCC activity than anti-CD20 rituximab and a recombinant version of DuoHexaBody-CD37 against both NHL and CLL cells. Survival was significantly longer after NNV024 treatment than with obinutuzumab in a mouse model. In addition, NNV024 showed a favourable plasma half-life in human FcRn transgenic mice of about 9-days, which was 2-fold longer than that of obinutuzumab and DuoHexaBody-CD37. These results warrant the further development of NNV024 as a treatment for NHL.

cancer biology↗