Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.4.24.3 (collagenase)
18,340 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The quality of pancreatic islets prepared by an intraductal pancreas collagenase perfusion technique was tested using three independent methods: 31P NMR spectroscopy, an insulin secretion test, and a staining method. The viability of pancreatic islet tissue was evaluated using the ratio of phosphate diester to phosphate monoester (PDE/PME) as a new criterion obtained by 31P NMR spectroscopy. According to this criterion, three types of tissue fragments could be characterized: vital (PDE/PME 0.5-0.9), damaged (PDE/PME less than 0.2), and necrotic (no PDE, no PME). The findings in the three different groups could be correlated to three trends of insulin secretion of the preparations following glucose challenge: good response to the glucose challenge, continuous decrease of insulin production, and no insulin secretion. We feel that 31P NMR spectroscopy offers a rapid and suitable method for classifying the viability of isolated pancreatic islets.
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PMID:31P NMR spectroscopy for in vitro viability testing of porcine pancreatic islets. 170 70

Capillaries isolated by collagenase digestion of hamster epididymal fat pads were used to examine the properties of endothelial adenylate cyclase and cyclic nucleotide phosphodiesterase. Adenylate cyclase activity in capillary homogenates was increased by 10 microM GTP or 100 microM isoproterenol. Lower concentrations of the catecholamine and 5.7 microM prostaglandin E1 did not stimulate endothelial adenylate cyclase activity unless GTP was included in the assay system. The effects of isoproterenol on capillary adenylate cyclase activity were blocked by propranolol, but were not affected by phentolamine. Phosphodiesterase activity in endothelial homogenates showed anomalous kinetic behavior with either cyclic AMP or cyclic GMP as the enzyme substrate. At substrate concentrations below 1 microM, capillary phosphodiesterase activity hydrolyzed cyclic GMP 2-6 times faster than cyclic AMP. However, at high substrate levels, e.g., 100 microM, cyclic AMP and cyclic GMP were degraded at similar rates. Hydrolysis of 1 microM cyclic AMP by capillary homogenates was stimulated by 0.1 and 1 microM cyclic GMP. Caffeine, 1-methyl-3-isobutylxanthine, papaverine and dipyridamole SQ 20009 were effective inhibitors of capillary phosphodiesterase activity. In contrast, imidazole enhanced the activity of the enzyme. The presence of adenylate cyclase and phosphodiesterase activities in hamster isolated capillaries is consistent with a role for cyclic AMP in the regulation of endothelial function. Moreover, the experiments described here indicate that hamster isolated capillaries are useful model systems for studying the metabolism of vascular endothelium.
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PMID:Properties of adenylate cyclase and cyclic nucleotide phosphodiesterase in hamster isolated capillary preparations. 624 1

The viability of porcine collagenase-prepared islet preparations (n = 16) was classified by 31P-NMR spectroscopy, staining by neutral red and trypan blue, and in vitro insulin secretion following glucose challenge. Vital islets exhibited a phosphate diester/phosphate monoester (PDE/PME) ratio of 0.5-0.9, a staining score of 18-30 and an insulin secretion responding well to glucose challenge. Damaged islets performed at a PDE/PME of 0.2-0.49 and a staining score of 9-17 and necrotic islets had 0.0-0.49 and a staining score of 9-17 and necrotic islets had 0.0-0.19 and 0-8, respectively. The islets of the latter two groups did not adequately respond to glucose. The in vivo function following autotransplantation of these islets into the spleen was investigated in five recipients of more than 3000/kg vital islets of which 4 expressed daily normoglycemia (< 200 mg%), normalized intravenous glucose tolerance (K = -2.21), and a prolonged survival (mean +/- SD) of 167 +/- 12 days compared to five recipients of > 3000/kg damaged islets (K = -0.814) (P = 0.0017) and a survival of 86 +/- 21 days (P = 0.0096). It is suggested that 31P-NMR spectroscopy is a valuable and practical method to predict islet graft viability prior to transplantation in order to assure good graft function in the recipient.
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PMID:In vitro and in vivo viability assessment of unpurified pancreatic islet tissue. 796 93