Angiotensin I converting enzyme activity in uranyl nitrate induced acute renal failure in rats. 1995

J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
Departamento de Biologia, Facultad de Química, UNAM, México, DF, México.

Angiotensin I converting enzyme (ACE) was measured in urine, serum, and tissues from rats with acute renal failure (ARF) induced by a single subcutaneous injection (15 mg/kg BW) of uranyl nitrate (UN). Urine was collected daily until day 5, when rats were sacrificed by decapitation for the obtention of blood serum and tissues. Other groups of rats were sacrificed on days 1 and 2. These rats showed proteinuria and polyuria. The damage to the kidney proximal tubule was shown by (a) histological analysis at light and electron microscopy levels on days 1, 2, and 5, (b) the increase in urinary excretion of dipeptidyl aminopeptidase IV and N-acetyl-beta-D-glucosaminidase on days 1-5, and (c) the low molecular weight proteinuria pattern on day 1. In addition, the histological analysis at the ultrastructural level showed normal glomeruli appearance on days 1 and 2, but structural alterations on day 5. These data suggest that the increased urinary excretion of enzymes and proteins is a consequence of the tubular injury on days 1 and 2, and of tubular and glomerular injury on day 5. ACE activity increased in urine on days 1-5 and in serum on day 5. Tissue ACE activity increased in lung, small intestine, and adrenal glands; and remained unchanged in testis, aorta, brain, kidney, heart, and liver. Our data suggest that: (a) the increase in serum ACE may be secondary to the changes in tissue ACE activity, and (b) the urine ACE increase may be due to the kidney proximal tubule damage. This work supports the contention that an increase in urine ACE may be an indicator of injury to the proximal tubule.

UI MeSH Term Description Entries
D007672 Kidney Cortex The outer zone of the KIDNEY, beneath the capsule, consisting of KIDNEY GLOMERULUS; KIDNEY TUBULES, DISTAL; and KIDNEY TUBULES, PROXIMAL. Cortex, Kidney
D007678 Kidney Glomerulus A cluster of convoluted capillaries beginning at each nephric tubule in the kidney and held together by connective tissue. Glomerulus, Kidney
D007687 Kidney Tubules, Proximal The renal tubule portion that extends from the BOWMAN CAPSULE in the KIDNEY CORTEX into the KIDNEY MEDULLA. The proximal tubule consists of a convoluted proximal segment in the cortex, and a distal straight segment descending into the medulla where it forms the U-shaped LOOP OF HENLE. Proximal Kidney Tubule,Proximal Renal Tubule,Kidney Tubule, Proximal,Proximal Kidney Tubules,Proximal Renal Tubules,Renal Tubule, Proximal,Renal Tubules, Proximal,Tubule, Proximal Kidney,Tubule, Proximal Renal,Tubules, Proximal Kidney,Tubules, Proximal Renal
D007703 Peptidyl-Dipeptidase A A peptidyl-dipeptidase that catalyzes the release of a C-terminal dipeptide, oligopeptide-|-Xaa-Yaa, when Xaa is not Pro, and Yaa is neither Asp nor Glu. Thus, conversion of ANGIOTENSIN I to ANGIOTENSIN II, with increase in vasoconstrictor activity, but no action on angiotensin II. It is also able to inactivate BRADYKININ, a potent vasodilator; and has a glycosidase activity which releases GPI-anchored proteins from the membrane by cleaving the mannose linkage in the GPI moiety. (From https://www.uniprot.org April 15, 2020). ACE1 Angiotensin-Converting Enzyme 1,ACE1 Protein,Angiotensin Converting Enzyme,Angiotensin Converting Enzyme 1,Antigens, CD143,CD143 Antigens,Dipeptidyl Carboxypeptidase I,Kininase II,Peptidase P,Angiotensin I-Converting Enzyme,Carboxycathepsin,Dipeptidyl Peptidase A,Kininase A,ACE1 Angiotensin Converting Enzyme 1,Angiotensin I Converting Enzyme,Carboxypeptidase I, Dipeptidyl,Peptidyl Dipeptidase A
D008297 Male Males
D008854 Microscopy, Electron Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen. Electron Microscopy
D000118 Acetylglucosaminidase A beta-N-Acetylhexosaminidase that catalyzes the hydrolysis of terminal, non-reducing 2-acetamido-2-deoxy-beta-glucose residues in chitobiose and higher analogs as well as in glycoproteins. Has been used widely in structural studies on bacterial cell walls and in the study of diseases such as MUCOLIPIDOSIS and various inflammatory disorders of muscle and connective tissue. N-Acetyl-beta-D-glucosaminidase,Chitobiase,N,N-Diacetylchitobiase,N-Ac-beta-Glucosaminidase,NAGase,beta-D-Acetamido-2-Deoxyglucosidase,beta-D-N-acetylglucosaminidase,beta-N-Acetylglucosaminidase,N Ac beta Glucosaminidase,N Acetyl beta D glucosaminidase,N,N Diacetylchitobiase,beta D Acetamido 2 Deoxyglucosidase,beta D N acetylglucosaminidase,beta N Acetylglucosaminidase
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
D013997 Time Factors Elements of limited time intervals, contributing to particular results or situations. Time Series,Factor, Time,Time Factor
D014502 Uranyl Nitrate Bis(nitrato-O)dioxouranium. A compound used in photography and the porcelain industry. It causes severe renal insufficiency and renal tubular necrosis in mammals and is an effective lymphocyte mitogen. Uranium Nitrate,Nitrate, Uranium,Nitrate, Uranyl

Related Publications

J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
April 2006, Zhonghua er ke za zhi = Chinese journal of pediatrics,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
September 1988, Kidney international,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
January 1980, The Journal of clinical investigation,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
February 1983, Nihon Hinyokika Gakkai zasshi. The japanese journal of urology,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
September 1994, Clinical nephrology,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
January 1979, Acta physiologica Academiae Scientiarum Hungaricae,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
April 1980, Kidney international,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
September 2004, Biopharmaceutics & drug disposition,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
August 1984, Journal of pharmacobio-dynamics,
J Pedraza-Chaverrí, and C Cruz, and M del Socorro Blancas, and R Hernández-Pando, and M E Ibarra-Rubio, and J Larriva-Sahd, and E Tapia
December 1993, Toxicology,
Copied contents to your clipboard!