scholarly journals Effect of tetracycline administration on serum amylase activity in calves

SpringerPlus ◽  
2013 ◽  
Vol 2 (1) ◽  
Author(s):  
Bamdad Zendehbad ◽  
Adeleh Alipour ◽  
Hussein Zendehbad
1970 ◽  
Vol 16 (12) ◽  
pp. 985-989 ◽  
Author(s):  
Wendell R O'Neal ◽  
Nathan Gochman

Abstract An automated adaptation of the Somogyi saccharogenic determination of serum amylase is described in which conventional AutoAnalyzer modules are used. Adequate sensitivity with short incubation is achieved by incorporating glucose oxidase and catalase in the substrate to destroy serum glucose during incubation. Maltose and other dialyzable oligosaccharides are measured with the alkaline copper-neocuproine reaction. A simultaneous blank run is performed to determine reducing substances other than glucose in serum. Precision studies and correlation with a manual saccharogenic method are presented. The normal range was determined from data for 49 healthy blood donors.


1978 ◽  
Vol 24 (5) ◽  
pp. 815-820 ◽  

Abstract This case focuses on the biochemical findings in acute pancreatitis and the role of the laboratory in the diagnosis and management of such patients. It also illustrates a major unappreciated problem in the use of amylase determinations in patients with acute pancreatitis: normal serum amylase activity in the presence of hyperlipemia.


1970 ◽  
Vol 16 (4) ◽  
pp. 300-304 ◽  
Author(s):  
Klaus Lorentz ◽  
Detlef Oltmanns

Abstract To determine serum amylase activity we have quantitatively measured the glucose and maltose hydrolyzed from soluble starch by colorimetrically measuring the reduction of colorless triphenyltetrazolium chloride to a red formazan, which is dissolved in methanol. The method is suitable for use with microsamples of all biological fluids, and is specific for the final products of starch digestion. Values found for sera from 55 apparently healthy blood donors ranged from 0.15 to 1.55 (mean, 0.83; standard deviation, ±0.4) mg of glucose per ml per h, corresponding to 7.5 to 78 Somogyi units.


2006 ◽  
Vol 1 (4) ◽  
pp. 260-267 ◽  
Author(s):  
R. B. Kalahasthi ◽  
Rajmohan Hirehal Raghavendra Rao ◽  
Rajan Bagalur Krishna Murthy ◽  
M. Karuna Kumar

2007 ◽  
Vol 53 (12) ◽  
pp. 2105-2111 ◽  
Author(s):  
David Schmidt ◽  
Stephen O Brennan

Abstract Background: During an investigation of genetic variants of fibrinogen, we observed a novel form of the Bβ chain, with a mass decrease of approximately 128 Da, in one of the controls. The plasma sample originated from an individual who had experienced acute pancreatitis a week earlier but whose serum amylase activity had returned to normal. We investigated the structure of the modified fibrinogen and explored its relationship to pancreatic disease. Method: Fibrinogen was isolated from the plasma of 9 individuals with increased pancreatic amylase activity (114–1826 U/L) and presumed pancreatitis and from 6 control individuals with amylase activities <56 U/L. Fibrinogen (or fibrin) Bβ chains were isolated by reversed-phase HPLC and analyzed directly by electrospray ionization mass spectrometry. Tryptic and CNBr peptide mapping and thrombin treatment pinpointed the location of the 128-Da loss in mass. Results: The acquired fibrinogen Bβ chain modification was attributable to the loss of its C-terminal glutamine residue. Incubating purified fibrinogen with pancreatic carboxypeptidase A (CpA) produced an identical modification. The des-Gln Bβ fibrinogen accounted for >80% of the Bβ chains in 3 of the individuals with increased amylase but only approximately 5% of the Bβ chains in control samples. Conclusion: Pancreatic CpA activity is used as an index of acute pancreatic disease, but given that the circulatory half-lives of fibrinogen and CpA are approximately 4 days and only 2.5 h, respectively, measuring des-Gln Bβ fibrinogen, the in vivo product of CpA activity, could provide clinicians with retrospective evidence of disease.


2008 ◽  
Vol 90 (2) ◽  
pp. 393-400
Author(s):  
Ravi Babu Kalahasthi ◽  
Rajmohan Hirehal Raghavendra Rao ◽  
Rajan Bagalur Krishna Murthy ◽  
M. Karuna Kumar

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