Regulation of Cardiovascular Signaling by Kinins and Products of Similar Converting Enzyme Systems Decreased renal NO excretion and reduced glomerular tuft area in mice lacking the bradykinin B2 receptor

نویسندگان

  • Joost P. Schanstra
  • Johan Duchene
  • Françoise Praddaude
  • Patrick Bruneval
  • Ivan Tack
  • Jacques Chevalier
  • Jean-Pierre Girolami
  • Jean-Loup Bascands
  • Louis Bugnard
چکیده

Joost P. Schanstra,1 Johan Duchene,1 Françoise Praddaude,1 Patrick Bruneval,2 Ivan Tack,1 Jacques Chevalier,2 Jean-Pierre Girolami,1 and Jean-Loup Bascands1 1Institut National de la Santé et de la Recherche Médicale U388, Institut Louis Bugnard, Centre Hospitalier Universitaire Rangueil, 31052 Toulouse; 2Institut National de la Santé et de la Recherche Médicale U430, Hôpital Broussais, 75674 Paris Cedex 14, France

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Decreased renal NO excretion and reduced glomerular tuft area in mice lacking the bradykinin B2 receptor.

Bradykinin B(2) receptor knockout mice (B(2)-/-) have been useful to study the role of bradykinin under pathological conditions. With the use of these mice, it was shown that bradykinin plays an important role in angiogenesis, heart failure, salt-induced hypertension, and kidney fibrosis. Data on the role of the bradykinin B(2) receptor under physiological conditions using these mice are contro...

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Regulation of Cardiovascular Signaling by Kinins and Products of Similar Converting Enzyme Systems Changes in amino-terminal portion of human B2 receptor selectively increase efficacy of synthetic ligand HOE 140 but not of cognate ligand bradykinin

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Regulation of Cardiovascular Signaling by Kinins and Products of Similar Converting Enzyme Systems Kininase I-type carboxypeptidases enhance nitric oxide production in endothelial cells by generating bradykinin B1 receptor agonists

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Enhanced renal function in bradykinin B(2) receptor transgenic mice.

The tissue kallikrein-kinin system has been recognized as a paracrine and/or autocrine hormonal system that regulates arterial pressure, renal hemodynamics, and electrolyte excretion. We have created a transgenic mouse model overexpressing human bradykinin B(2) receptor, and the mice developed lifetime hypotension. With this animal model, we further analyzed the potential role of B(2) receptors...

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تاریخ انتشار 2003