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Analytical Biochemistry|January 1, 1985
Flow-injection analysis of catecholamine secretion from bovine adrenal medulla cells on microbeadsM Herrera, L S Kao, D J Curran, et al.The Biochemical Journal|November 1, 1988
Second-messenger control of catecholamine release from PC12 cells. Role of muscarinic receptors and nerve-growth-factor-induced cell differentiationJ Meldolesi, G Gatti, A Ambrosini, et al.Neuroscience Letters|January 9, 1995
ATP stimulated catecholamine secretion: response in perfused adrenal glands and a subpopulation of cultured chromaffin cellsL F Lin, M C Bott, L S Kao, et al.Journal of Neurochemistry|May 1, 1988
Adenosine receptors activate adenylate cyclase and enhance secretion from bovine adrenal chromaffin cells in the presence of forskolinY J Chern, K T Kim, L L Slakey, et al.Proceedings of the National Academy of Sciences of the United States of America|January 1, 1972
Kinetics of the reduction of metalloproteins by chromous ion (laccase-cytochrome c-plastocyanins-temperature-rate constants)J W Dawson, H B Gray, R A Holwerda, et al.Biochimica Et Biophysica Acta|March 20, 1978
Aggregation and dispersity of isolated chromaffin granules studied by intensity fluctuation spectroscopyD J Green, E W Westhead, K H Langley, et al.Biophysical Journal|May 1, 1978
The effects of calcium2+ and magnesium2+ on the electrophoretic mobility of chromaffin granules measured by electrophoretic light scatteringD P Siegel, B R Ware, D J Green, et al.Journal of Neurochemistry|October 1, 1992
The adenosine analogue N6-L-phenylisopropyladenosine inhibits catecholamine secretion from bovine adrenal medulla cells by inhibiting calcium influxY J Chern, M Bott, P J Chu, et al.Pageof 3