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Kidney International|August 1, 1996
Renal bradykinin and vasopressin receptors: ligand selectivity and classificationJ Howl, N J Yarwood, A R Davies, et al.Neuroendocrinology|December 1, 1995
Intramedullary blood vessels of the spinal cord express V1a vasopressin receptors: visualization by a biotinylated ligandE Sermasi, J Howl, S Pyner, et al.The Biochemical Journal|May 15, 1991
Characterization of the human liver vasopressin receptor. Profound differences between human and rat vasopressin-receptor-mediated responses suggest only a minor role for vasopressin in regulating human hepatic functionJ Howl, T Ismail, A J Strain, et al.Hepatology (Baltimore, Md.)|December 1, 1991
Growth of normal human hepatocytes in primary culture: effect of hormones and growth factors on DNA synthesisT Ismail, J Howl, M Wheatley, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|June 1, 1997
Chimeric strategies for the rational design of bioactive analogs of small peptide hormonesJ Howl, U Langel, S R Hawtin, et al.Peptides|August 24, 1999
Fluorescent and biotinylated probes for B2 bradykinin receptors: agonists and antagonistsJ HowlCell Calcium|October 30, 1998
Biochemical mechanisms of calcium mobilisation induced by mastoparan and chimeric hormone-mastoparan constructsC L Longland, M Mezna, U Langel, et al.Biochemical Pharmacology|April 29, 1994
Pharmacological characterization of linear analogues of vasopressin generated by the systematic substitution of positions 1 and 6 by L-amino acidsJ Howl, A D Filer, R A Parslow, et al.Regulatory Peptides|August 24, 1999
Effects of vasopressin-mastoparan chimeric peptides on insulin release and G-protein activityM Hällbrink, K Saar, C G Ostenson, et al.Endocrinology|May 1, 1995
Rat testicular myoid cells express vasopressin receptors: receptor structure, signal transduction, and developmental regulationJ Howl, S A Rudge, R A Lavis, et al.Pageof 102