Dr Hassan Morad

Dr Hassan Morad


2022

Artemisinin inhibits neutrophil and macrophage chemotaxis, cytokine production and NET release
Morad, H.O.J., Luqman, S., Pinto, L.G., Cunningham, K.P., Vilar, B., Clayton, G., Shankar-Hari, M. and McNaughton, P.A. 2022. Artemisinin inhibits neutrophil and macrophage chemotaxis, cytokine production and NET release. Scientific Reports. 12 (1), pp. 1-18. https://doi.org/10.1038/s41598-022-15214-6

2020

Rapid conjugation of antibodies to toxins to select candidates for the development of anticancer Antibody-Drug conjugates (ADcs)
Hoffmann, R.M., Mele, S., Cheung, A., Larcombe-Young, D., Bucaite, G., Sachouli, E., Zlatareva, I., Morad, H., Marlow, R., McDonnell, J.M., Figini, M., Lacy, K.E., Tutt, A.J.N., Spicer, J.F., Thurston, D.E., Karagiannis, S.N. and Crescioli, S. 2020. Rapid conjugation of antibodies to toxins to select candidates for the development of anticancer Antibody-Drug conjugates (ADcs). Scientific Reports. 10 (1), pp. 1-11. https://doi.org/10.1038/s41598-020-65860-x

2017

O30 Natural compounds affecting neutrophil migration
Morad, H., Luqman, S. and McNaughton, P. 2017. O30 Natural compounds affecting neutrophil migration. Biochemical Pharmacology. 139 (1), p. 119. https://doi.org/10.1016/j.bcp.2017.06.095

2022

Repurposing the antimalarial compound artemisinin as a novel therapy for inflammatory conditions
Morad, H. 2022. Repurposing the antimalarial compound artemisinin as a novel therapy for inflammatory conditions. Drug Repurposing II. Woburn House, London, UK 10 - 11 May 2022 The Biochemical Society.

2021

TRPM2 ion channels steer neutrophils towards a source of hydrogen peroxide
Hassan Morad, Suaib Luqman, Chun-Hsiang Tan and Peter McNaughton 2021. TRPM2 ion channels steer neutrophils towards a source of hydrogen peroxide. Dynamic Cell IV. 14 - 19 Mar 2021 The Biochemical Society.

2017

O30 Natural compounds affecting neutrophil migration
Hassan Morad, Suaib Luqman and Peter McNaughton 2017. O30 Natural compounds affecting neutrophil migration. ICMAN/ IUPHAR Natural Products. Aberdeen, Scotland 27 - 29 Sep 2017 Biochemical Pharmacology. https://doi.org/10.1016/j.bcp.2017.06.095

2014

Time-course analysis of C3a and C5a quantifies the coupling between the upper and terminal Complement pathways in vitro
Morad, H. 2014. Time-course analysis of C3a and C5a quantifies the coupling between the upper and terminal Complement pathways in vitro. Royal Society of Medicine, Clinical Immunology and Allergy Conference. University of Cambridge Sep - Oct 2014 Royal Society of Medicine.


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