Atrial natriuretic factor does not stimulate prostaglandin synthesis in isolated rat glomeruli. 1986

K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta

The effect of alpha-human atrial natriuretic polypeptide (alpha-hANP) on the synthesis of prostaglandins was studied in isolated rat glomeruli. Glomeruli were isolated by a passive sieving technique according to the method of Misra and were incubated at 37 degrees C for 60 min in the presence (Group II: 10(-6) M, Group III: 10(-5) M) or absence (Group I: control) of alpha-hANP. Furthermore, glomeruli were incubated with arachidonic acid (10(-5), 10(-4), and 10(-3) M) and at the end of the incubation period trypan blue was added to the glomerular suspension. The presence of alpha-hANP (10(-6) and 10(-5) M) caused no significant difference in prostaglandin synthesis as compared with the control. On the other hand, arachidonic acid stimulated prostaglandin synthesis and the glomerular preparation was not stained by trypan blue, indicating that they remained viable. These results suggest that alpha-hANP does not directly affect the prostaglandin synthesis in isolated rat glomeruli.

UI MeSH Term Description Entries
D007678 Kidney Glomerulus A cluster of convoluted capillaries beginning at each nephric tubule in the kidney and held together by connective tissue. Glomerulus, Kidney
D008297 Male Males
D009320 Atrial Natriuretic Factor A potent natriuretic and vasodilatory peptide or mixture of different-sized low molecular weight PEPTIDES derived from a common precursor and secreted mainly by the HEART ATRIUM. All these peptides share a sequence of about 20 AMINO ACIDS. ANF,ANP,Atrial Natriuretic Peptide,Atrial Natriuretic Peptides,Atriopeptins,Auriculin,Natriuretic Peptides, Atrial,ANF (1-126),ANF (1-28),ANF (99-126),ANF Precursors,ANP (1-126),ANP (1-28),ANP Prohormone (99-126),ANP-(99-126),Atrial Natriuretic Factor (1-126),Atrial Natriuretic Factor (1-28),Atrial Natriuretic Factor (99-126),Atrial Natriuretic Factor Precursors,Atrial Natriuretic Factor Prohormone,Atrial Natriuretic Peptide (1-126),Atrial Pronatriodilatin,Atriopeptigen,Atriopeptin (1-28),Atriopeptin (99-126),Atriopeptin 126,Atriopeptin Prohormone (1-126),Cardiodilatin (99-126),Cardiodilatin Precursor,Cardionatrin I,Cardionatrin IV,Prepro-ANP,Prepro-CDD-ANF,Prepro-Cardiodilatin-Atrial Natriuretic Factor,Pro-ANF,ProANF,Proatrial Natriuretic Factor,Pronatriodilatin,alpha ANP,alpha-ANP Dimer,alpha-Atrial Natriuretic Peptide,beta-ANP,beta-Atrial Natriuretic Peptide,gamma ANP (99-126),gamma-Atrial Natriuretic Peptide,Natriuretic Peptide, Atrial,Peptide, Atrial Natriuretic,Peptides, Atrial Natriuretic,Prepro ANP,Prepro CDD ANF,Prepro Cardiodilatin Atrial Natriuretic Factor,Pro ANF,alpha ANP Dimer,alpha Atrial Natriuretic Peptide,beta ANP,beta Atrial Natriuretic Peptide,gamma Atrial Natriuretic Peptide
D011453 Prostaglandins A group of compounds derived from unsaturated 20-carbon fatty acids, primarily arachidonic acid, via the cyclooxygenase pathway. They are extremely potent mediators of a diverse group of physiological processes. Prostaglandin,Prostanoid,Prostanoids
D011458 Prostaglandins E (11 alpha,13E,15S)-11,15-Dihydroxy-9-oxoprost-13-en-1-oic acid (PGE(1)); (5Z,11 alpha,13E,15S)-11,15-dihydroxy-9-oxoprosta-5,13-dien-1-oic acid (PGE(2)); and (5Z,11 alpha,13E,15S,17Z)-11,15-dihydroxy-9-oxoprosta-5,13,17-trien-1-oic acid (PGE(3)). Three of the six naturally occurring prostaglandins. They are considered primary in that no one is derived from another in living organisms. Originally isolated from sheep seminal fluid and vesicles, they are found in many organs and tissues and play a major role in mediating various physiological activities. PGE
D011460 Prostaglandins F (9 alpha,11 alpha,13E,15S)-9,11,15-Trihydroxyprost-13-en-1-oic acid (PGF(1 alpha)); (5Z,9 alpha,11,alpha,13E,15S)-9,11,15-trihydroxyprosta-5,13-dien-1-oic acid (PGF(2 alpha)); (5Z,9 alpha,11 alpha,13E,15S,17Z)-9,11,15-trihydroxyprosta-5,13,17-trien-1-oic acid (PGF(3 alpha)). A family of prostaglandins that includes three of the six naturally occurring prostaglandins. All naturally occurring PGF have an alpha configuration at the 9-carbon position. They stimulate uterine and bronchial smooth muscle and are often used as oxytocics. PGF
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001095 Arachidonic Acids Eicosatetraenoic Acids,Acids, Arachidonic,Acids, Eicosatetraenoic
D013929 Thromboxane B2 A stable, physiologically active compound formed in vivo from the prostaglandin endoperoxides. It is important in the platelet-release reaction (release of ADP and serotonin). B2, Thromboxane
D015121 6-Ketoprostaglandin F1 alpha The physiologically active and stable hydrolysis product of EPOPROSTENOL. Found in nearly all mammalian tissue. 6-Keto-PGF1 alpha,6-Oxo-PGF1 alpha,6-Oxoprostaglandin F1 alpha,6 Ketoprostaglandin F1 alpha,6 Keto PGF1 alpha,6 Oxo PGF1 alpha,6 Oxoprostaglandin F1 alpha,F1 alpha, 6-Ketoprostaglandin,F1 alpha, 6-Oxoprostaglandin,alpha, 6-Keto-PGF1,alpha, 6-Ketoprostaglandin F1,alpha, 6-Oxo-PGF1,alpha, 6-Oxoprostaglandin F1

Related Publications

K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
March 1979, Proceedings of the National Academy of Sciences of the United States of America,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
December 1995, Regulatory peptides,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
October 1979, Molecular and cellular endocrinology,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
January 1979, Prostaglandins,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
July 1984, Biochimica et biophysica acta,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
September 1985, FEBS letters,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
April 1990, Biochemical and biophysical research communications,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
November 1980, The American journal of physiology,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
January 1980, The International journal of biochemistry,
K Hayashi, and Y Matsumura, and H Suzuki, and T Saruta
January 1989, Peptides,
Copied contents to your clipboard!