The C-type natriuretic peptide system in the testis: a physiological role of neuroactive factors in Leydig cells

1997 ◽  
Vol 8 (0) ◽  
pp. 111 ◽  
Author(s):  
Ralf Middendorff ◽  
Dieter Müller ◽  
Adolf F. Holstein
2011 ◽  
Vol 152 (26) ◽  
pp. 1025-1034
Author(s):  
Gábor Szabó ◽  
János Rigó jr. ◽  
Bálint Nagy

In the last three decades many members of the natriuretic peptide family was isolated. The function and physiological role of these peptides are pleiotropic. All natriuretic peptides are synthesized from polypeptide precursors. Together with the sympathetic nervous system and other hormones they play key roles, like an endogenous system in the regulation of the body fluid homeostasis and blood pressure. Changes in this balance lead to dysfunction in the endothel and left ventricle, which can cause severe complications. In many cardiovascular diseases natriuretic peptides serve not only as marker for diagnosis and prognosis but they have therapeutic importance. In the last years the potential use of the elevated BNP levels for diagnosis of pre-eclampsia was examined. In our review we discuss the current understanding of molecular biology, biochemistry and clinical relevance of natriuretic peptides. Orv. Hetil., 2011, 152, 1025–1034.


2001 ◽  
Vol 79 (8) ◽  
pp. 665-672 ◽  
Author(s):  
Shigehisa Hirose ◽  
Hiromi Hagiwara ◽  
Yoshio Takei

Analysis of the mammalian natriuretic peptide system has established the presence of three types of receptors with distinct structural and functional features and tissue distributions. To clarify the physiological role of each subtype, we studied the natriuretic peptide system in animals with specialized anatomical and physiological features. In this review, following a brief description of the comparative and evolutionary aspects of the ligands, we will analyze the structure and distribution of natriuretic peptide receptors in lower vertebrates, as well as those of rats with essential and salt-sensitive hypertension, and discuss the evolutionary aspects of the natriuretic peptide systems in mammals and fishes. Emphasis is placed on our series of studies with eel receptors that revealed (i) interesting variations in the pattern of intra- and inter-molecular disulfide bonding; (ii) dense chondrocyte localization of NPR-C, which opened a new field of study for natriuretic peptides and bone metabolism; and (iii) the presence of a new receptor subtype, NPR-D, which is abundant in the brain and a member of the receptor subfamily with a short cytoplasmic C-terminal tail.Key words: chloride cell, evolution, natriuretic peptide, osmoregulation, receptor.


1997 ◽  
Vol 87 (2) ◽  
pp. 275-280 ◽  
Author(s):  
Eelco F. M. Wijdicks ◽  
Wouter I. Schievink ◽  
John C. Burnett

✓ The natriuretic peptide system consists of atrial natriuretic peptide (ANP), brain natriuretic peptide (BNP), and C-type natriuretic peptide (CNP). The system is implicated in the control of body fluid homeostasis, causes natriuresis and diuresis (ANP and BNP), and regulates vascular tone (CNP). A reciprocal relationship between ANP and endothelin (ET) has been suggested, and earlier studies have documented a possible role of ET in cerebral vasospasm after aneurysmal subarachnoid hemorrhage (SAH). The authors studied plasma ANP, BNP, CNP, and ET for 6 consecutive days in 13 patients with SAH by using radioimmunoassay. The median admission values for ANP were 31.5 pg/ml (range 16.8–323 pg/ml [normal 15 ± 7 pg/ml]); for BNP, 45.3 pg/ml (range 2.2–80.2 pg/ml [normal 12 ± 9 pg/ml]); for CNP, 7.7 pg/ml (range < 2–20 pg/ml [normal 5.2 ± 3 pg/ml]); and for ET, 11 pg/ml (range 6.5–25.1 pg/ml [normal 7.2 ± 4 pg/ml]). Additional increases (defined as > 100% increase on two consecutive measurements) were noted in ANP (11 patients), BNP (10 patients), and CNP (three patients), and resulted in a negative fluid balance in 10 of the 13 patients. The CNP increased in three of four patients with cerebral vasospasm and in one of nine patients without cerebral vasospasm (Fisher's exact test, p = 0.2). No major fluctuations in plasma ET were noted. In seven patients, the plasma ET level did not increase beyond 10 pg/ml during the days of measurement. In six patients, only an occasional sample showed an increase to a maximum of 25 pg/ml. Changes in BNP, ANP, and CNP were independent of each other. The authors conclude that both plasma ANP and BNP increase after SAH and often result in a negative fluid balance. Plasma ANP and BNP seem differentially regulated in the presence of SAH but not by the level of the plasma ET. The possible role of CNP as a regulatory response to cerebral vasospasm needs further exploration.


2003 ◽  
Vol 163 (22) ◽  
pp. 2696 ◽  
Author(s):  
Samy I. McFarlane ◽  
Nathaniel Winer ◽  
James R. Sowers

1996 ◽  
Vol 2 (2) ◽  
pp. 119-125 ◽  
Author(s):  
Tracy L. Stevens ◽  
Todd E. Rasmussen ◽  
Chi-Ming Wei ◽  
Masahiko Kinoshita ◽  
Yuzuru Matsuda ◽  
...  

2014 ◽  
Vol 82 (4) ◽  
pp. 222-229 ◽  
Author(s):  
Gabriela A. Vasques ◽  
Ivo J.P. Arnhold ◽  
Alexander A.L. Jorge

Sign in / Sign up

Export Citation Format

Share Document