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Open Access research which pushes advances in bionanotechnology

Strathprints makes available scholarly Open Access content by researchers in the Strathclyde Institute of Pharmacy & Biomedical Sciences (SIPBS) , based within the Faculty of Science.

SIPBS is a major research centre in Scotland focusing on 'new medicines', 'better medicines' and 'better use of medicines'. This includes the exploration of nanoparticles and nanomedicines within the wider research agenda of bionanotechnology, in which the tools of nanotechnology are applied to solve biological problems. At SIPBS multidisciplinary approaches are also pursued to improve bioscience understanding of novel therapeutic targets with the aim of developing therapeutic interventions and the investigation, development and manufacture of drug substances and products.

Explore the Open Access research of SIPBS. Or explore all of Strathclyde's Open Access research...

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Group by: Publication Date | Item type | No Grouping
Jump to: 2018 | 2016 | 2013
Number of items: 5.

2018

Nwadike, Chinwendu and Williamson, Leon E. and Gallagher, Laura E. and Guan, Jun-Lin and Chan, Edmond Y.W. (2018) AMPK inhibits ULK1-dependent autophagosome formation and lysosomal acidification via distinct mechanisms. Molecular and Cellular Biology, 38 (10). ISSN 0270-7306

2016

Gallagher, Laura E. and Williamson, Leon E. and Chan, Edmond Y. W. (2016) Advances in autophagy regulatory mechanisms. Cells, 5 (2). ISSN 2073-4409

2013

Watson, David G and Tonelli, Francesca and Al Osaimi, Manal and Williamson, Leon and Chan, Edmond and Gorshkova, Irina and Berdyshev, Evgeny and Bittman, Robert and Pyne, Nigel J and Pyne, Susan (2013) The roles of sphingosine kinases 1 and 2 in regulating the Warburg effect in prostate cancer cells. Cellular Signalling, 25 (4). pp. 1011-1017. ISSN 1873-3913

Tonelli, F. and Alossaimi, M. and Williamson, L. and Tate, R.J. and Watson, D.G. and Chan, E. and Bittman, R. and Pyne, N.J. and Pyne, S. (2013) The sphingosine kinase inhibitor 2-(p-hyroxyanilino)-4-(p-chlorophenyl)thiazole reduces androgen receptor expression via an oxidative stress-dependent mechanism. British Journal of Pharmacology, 168 (6). pp. 1497-1505. ISSN 1476-5381

McAlpine, Fiona and Williamson, Leon E and Tooze, Sharon A and Chan, Edmond Y W (2013) Regulation of nutrient-sensitive autophagy by uncoordinated 51-like kinases 1 and 2. Autophagy, 9 (3). 361 - 373.

This list was generated on Fri Jul 19 02:47:55 2019 BST.