WP1: The goal of this WP was to develop a novel cellular assay protocol for untargeted metabolomics MALDI-TOF MS. I started with A549 cells to optimize and find best sample preparation conditions for assay. Using these cells, I tested different matrices, additives, extraction procedures, and derivatization strategies to see which combination worked best. I ended up exploring various data analysis, bioinformatics tools, and machine learning strategies for data analysis because the data was complex. Then, I moved towards a more relevant model, using human nasal epithelial cells in air-liquid-interface, and small airway epithelial cells. With aide from machine learning strategies, I was able to grasp important metabolic features of cells in order to track this in a high-throughput manner.
Outcome: I presented this work (oral talks) at SLAS 2022 (virtually), ACS 2022 (virtually), and ASMS 2022 (in-person). Internally at Newcastle University, I presented this work twice in departmental seminars.
Publication: Marín-Rubio, J.L. Heap, R.E. Dueñas, M.E. Heunis, T., Inns, J., Scott, J., Simpson, A.J. Blair, H., Heidenreich, O., Allan, J.M. Saxty, B. and Trost, M.*, A MALDI-TOF assay identifies nilotinib as an inhibitor of inflammation in acute myeloid leukaemia and multiple myeloma, (2021) biorxiv
WP2:
Once I had the model system validated, I worked on identifying potential fibrotic mediators in primary culture model in a high-throughput manner. I conducted a screening with known inhibitors first to see if that assay was working, followed by library screen using the OpnMe compounds from Boehringer Ingelheim.
WP3:
Unfortunately, we are not in the stage of finding and confirming ‘hit’ compounds using MALDI-MSI. Therefore, we decided to move towards proteomics to understand the system and get some insight of how proteins are affected using our cell model and treatment. During this time, I developed my expertise in proteomics and conducted quantitative proteomics on these samples.
Outcome:
Pulbication: Hatton, C.F.# Botting, R.A.# Dueñas, M.E.# et. al, Delayed induction of type I and III interferons and nasal epithelial cell permissiveness to SARS-CoV-2, (2021) Nature Communications Dec 7;12(1):7092.
#These authors contributed equally
Two additional manuscripts are underway, one focused on proteomics and another on the MALDI-TOF MS assay.
WP4:
Because of the pandemic and due to travel-restrictions, I was not able to perform my industrial secondment at Boehringer-Ingelheim but will hope to do this in the near future. I did take this opportunity to write a review with my industrial collaborators from GSK and Boehringer-Ingelheim.
Outcome:
Publication: Dueñas, M.E Peltier-Heap, R.E. Leveridge, M., Annan, R.S. Büttner, F.H. Trost, M. Review: Advances in high-throughput mass spectrometry in drug discovery. Submitted to EMBO Molecular Medicine