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Annals of Oncology : Official Journal of the European Society for Medical Oncology|September 23, 2021
Hesitancy around low-dose CT screening for lung cancerJ L Dickson, C Horst, A Nair, et al.The Journal of Biological Chemistry|April 25, 1992
Tyrosine codon corresponds to topa quinone at the active site of copper amine oxidasesD Mu, S M Janes, A J Smith, et al.The Journal of Biological Chemistry|March 5, 1991
The organic functional group in copper-containing amine oxidases. Resonance Raman spectra are consistent with the presence of topa quinone (6-hydroxydopa quinone) in the active siteD E Brown, M A McGuirl, D M Dooley, et al.QJM : Monthly Journal of the Association of Physicians|November 22, 2013
Impact of EBUS-TBNA on modalities for tissue acquisition in patients with lung cancerR J José, P Shaw, M Taylor, et al.Paediatric Respiratory Reviews|April 6, 2012
Imaging the paediatric lung: what does nanotechnology have to offer?K L Ordidge, B A Duffy, J A Wells, et al.Clinical Radiology|June 9, 2024
Predicting histopathological features of aggressiveness in lung cancer using CT radiomics: a systematic reviewD O Cheng, C R Khaw, J McCabe, et al.Science (New York, N.Y.)|May 25, 1990
A new redox cofactor in eukaryotic enzymes: 6-hydroxydopa at the active site of bovine serum amine oxidaseS M Janes, D Mu, D Wemmer, et al.Biochemistry|December 8, 1992
Identification of topaquinone and its consensus sequence in copper amine oxidasesS M Janes, M M Palcic, C H Scaman, et al.British Journal of Cancer|January 26, 2008
Squamous cell cancers contain a side population of stem-like cells that are made chemosensitive by ABC transporter blockadeM R Loebinger, A Giangreco, K R Groot, et al.Cancer Gene Therapy|December 20, 2014
Antitumor effects of TRAIL-expressing mesenchymal stromal cells in a mouse xenograft model of human mesotheliomaM J Lathrop, E K Sage, S L Macura, et al.Pageof 3