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G S Harper

Showing results (21-30 of 64) with videos related to

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Biochimica Et Biophysica Acta|June 25, 1999
Enhanced channelling of sulphate through a rapidly exchangeable sulphate pool in response to stimulated glycosaminoglycan synthesis in pancreatic epithelial cellsW G Hill, G S Harper, T Rozaklis, et al.
Biochemical Medicine and Metabolic Biology|June 1, 1992
Sulfate transport in normal and cystic fibrosis fibroblastsB M King, T Rozaklis, J J Hopwood, et al.
The Journal of Biological Chemistry|April 25, 1987
Proteoglycan synthesis in normal and Lowe syndrome fibroblastsG S Harper, V C Hascall, M Yanagishita, et al.
The Biochemical Journal|May 1, 1987
Cystine storage in cultured myotubes from patients with nephropathic cystinosisG S Harper, I Bernardini, O Hurko, et al.
Journal of Thrombosis and Haemostasis : JTH|December 15, 2010
Monitoring the intracellular store Ca2+ concentration in agonist-stimulated, intact human platelets by using Fluo-5NS O Sage, N Pugh, M J Mason, et al.
Physiological Reports|December 5, 2013
Pericellular Ca(2+) recycling potentiates thrombin-evoked Ca(2+) signals in human plateletsStewart O Sage, Nicholas Pugh, Richard W Farndale, et al.
Biochemistry International|May 1, 1984
Effect of oxygen-derived reactive species on cartilage proteoglycan-hyaluronate aggregatesE J Bates, G S Harper, D A Lowther, et al.
Diabetologia|April 2, 2016
Islet-intrinsic effects of CFTR mutationFiona N Manderson Koivula, Neville H McClenaghan, Alan G S Harper, et al.
Cell Calcium|January 7, 2004
A role for hTRPC1 and lipid raft domains in store-mediated calcium entry in human plateletsSharon L Brownlow, Alan G S Harper, Matthew T Harper, et al.
Diabetologia|October 25, 2017
Correction to: Islet-intrinsic effects of CFTR mutationFiona N Manderson Koivula, Neville H McClenaghan, Alan G S Harper, et al.
Pageof 7

Showing results (21-30 of 64) with videos related to

Sort By:
Pageof 7
Biochimica Et Biophysica Acta|June 25, 1999
Enhanced channelling of sulphate through a rapidly exchangeable sulphate pool in response to stimulated glycosaminoglycan synthesis in pancreatic epithelial cellsW G Hill, G S Harper, T Rozaklis, et al.
Biochemical Medicine and Metabolic Biology|June 1, 1992
Sulfate transport in normal and cystic fibrosis fibroblastsB M King, T Rozaklis, J J Hopwood, et al.
The Journal of Biological Chemistry|April 25, 1987
Proteoglycan synthesis in normal and Lowe syndrome fibroblastsG S Harper, V C Hascall, M Yanagishita, et al.
The Biochemical Journal|May 1, 1987
Cystine storage in cultured myotubes from patients with nephropathic cystinosisG S Harper, I Bernardini, O Hurko, et al.
Journal of Thrombosis and Haemostasis : JTH|December 15, 2010
Monitoring the intracellular store Ca2+ concentration in agonist-stimulated, intact human platelets by using Fluo-5NS O Sage, N Pugh, M J Mason, et al.
Physiological Reports|December 5, 2013
Pericellular Ca(2+) recycling potentiates thrombin-evoked Ca(2+) signals in human plateletsStewart O Sage, Nicholas Pugh, Richard W Farndale, et al.
Biochemistry International|May 1, 1984
Effect of oxygen-derived reactive species on cartilage proteoglycan-hyaluronate aggregatesE J Bates, G S Harper, D A Lowther, et al.
Diabetologia|April 2, 2016
Islet-intrinsic effects of CFTR mutationFiona N Manderson Koivula, Neville H McClenaghan, Alan G S Harper, et al.
Cell Calcium|January 7, 2004
A role for hTRPC1 and lipid raft domains in store-mediated calcium entry in human plateletsSharon L Brownlow, Alan G S Harper, Matthew T Harper, et al.
Diabetologia|October 25, 2017
Correction to: Islet-intrinsic effects of CFTR mutationFiona N Manderson Koivula, Neville H McClenaghan, Alan G S Harper, et al.
Pageof 7