Showing results (91-100 of 112) with videos related to
Sort By:
Pageof 12
Free Radical Research Communications|January 1, 1987
On the interaction of anisyl-3,4-semiquinone with oxygenC J Cooksey, E J Land, P A Riley, et al.Biochemical and Biophysical Research Communications|September 24, 1996
Growth hormone-responsive DT-diaphorase-mediated bioreduction of tetrazolium saltsC J Goodwin, S J Holt, P A Riley, et al.Biochemical Pharmacology|September 1, 1985
Metabolism of 1-naphthol by tyrosinaseD Doherty M, G M Cohen, T W Gant, et al.The Journal of Hospital Infection|December 23, 2023
Impact of removing the healthcare mask mandate on hospital-acquired COVID-19 ratesR Mehra, B J Patterson, P A Riley, et al.Bioorganic & Medicinal Chemistry|October 26, 1999
Melanocyte-directed enzyme prodrug therapy (MDEPT): development of a targeted treatment for malignant melanomaA M Jordan, T H Khan, H M Osborn, et al.Melanoma Research|December 1, 1992
Cytotoxicity of a selected series of substituted phenols towards cultured melanoma cellsN P Smit, K Peters, W Menko, et al.Melanoma Research|November 1, 1991
In vitro assessment of the structure-activity relationship of tyrosinase-dependent cytotoxicity of a series of substituted phenolsS Naish-Byfield, C J Cooksey, A M Latter, et al.Thrombosis and Haemostasis|April 22, 1985
In vitro studies on the fibrinolytic, thrombolytic and fibrinogenolytic properties of a tissue plasminogen activator from guinea pig keratocytesA Electricwala, R J Ling, P M Sutton, et al.Urological Research|January 1, 1985
Comparison of the cytotoxic activities of chemotherapeutic drugs using a human bladder cancer cell lineP J Hepburn, R T Oliver, P A Riley, et al.The Biochemical Journal|July 25, 1998
Tyrosinase kinetics: failure of the auto-activation mechanism of monohydric phenol oxidation by rapid formation of a quinomethane intermediateC J Cooksey, P J Garratt, E J Land, et al.Pageof 12