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Biomedical subjects

M Farstad

Publications and source records attributed to M Farstad.

At least 37 records · Page 2Linked to original sources

Clinical applicability of creatine kinase MB mass and the electrocardiogram versus conventional cardiac enzymes in the diagnosis of acute myocardial infarction.

We compared creatine kinase MB (CK-MB) mass and total creatine kinase (CK) sampled three times daily with conventional cardiac enzymes. The influence of the electrocardiogram (ECG) on admission, frequency of blood sampling, thrombolytic therapy, different upper reference limits of the biochemical markers and duration of symptoms were assessed in 100 consecutive patients with suspected AMI of whom 63 were confirmed according to WHO criteria. Early sensitivity but not specificity of CK-MB mass, with and without ECG, for cut points <8 microg/l was significantly better than total CK sampled frequently. The sensitivity of ECG on admission (52%) was significantly improved by CK-MB analysis (79%) but not by total CK. Duration of symptoms (range of means 3.5-9 h) or thrombolytic treatment had no influence on the sensitivity and specificity of CK-MB mass. In AMI with inconclusive ECG, CK-MB mass performed best of the markers with a sensitivity of 70% versus 17% of total CK (P<0.001) on admission. CK-MB mass was also elevated in 8 patients classified conventionally as unstable angina. We conclude that CK-MB mass is a more useful marker of AMI during the first 16 h of chest pain than frequently sampled total CK, ECG and conventional cardiac enzymes.

Adult↗

Proton nuclear magnetic resonance spectroscopy of serum from patients with colorectal neoplasia.

Proton nuclear magnetic resonance (NMR) spectra of serum have been recorded from patients with colorectal neoplastic polyps, before and after treatment of colorectal cancer, in patients with advanced lung cancer, and also from healthy controls. Digitally defined NMR profiles of the methyl and methylene peaks were used as input for supervised principal component modelling. An unknown sample was classified according to its residual, i.e. the difference between the spectral pattern of the unknown and control group. There was a statistically significant difference between the mean residual in the untreated colorectal cancer group and in controls (P = 0.003). The sensitivity of detecting untreated colorectal cancer was only 20%. There were no stage-dependent differences between the residuals within the untreated colorectal cancer group. After curative surgery, four patients had recurrence of malignant disease without an increase in residual prior to recurrence. Patients with advanced malignant disease (lung cancer WHO stage IIIB and IV) had a highly significant difference in mean residual from that of controls, with a sensitivity of detecting cancer of 87.5%. This increase in residual could not be explained by increase in the level of serum triglyceride. NMR spectroscopy was not a useful diagnostic tool in patients with colorectal neoplastic polyps and cancer.

Adult↗

Serum concentrations of prostate-specific antigen after diagnostic procedures and transurethral microwave thermotherapy of benign prostatic hyperplasia.

The objective was to study the effects of diagnostic and therapeutic procedures on serum prostate-specific antigen (PSA) concentration. Urethrocystoscopy in combination with digital rectal examination was followed by a moderate increase of serum PSA for 7-10 days. At 1 day after transurethral microwave thermotherapy (TUMT), an acute and pronounced effect on PSA was observed, which returned to baseline level after 4 weeks. The initial rise in serum PSA corresponded to a PSA density of 1.11, compared to 0.07 at baseline. The present data should be taken into consideration in conjunction with endoscopic evaluation of the lower urinary tract. Additionally, the acute effect on PSA after TUMT strongly suggests the ability of thermotherapy to induce cellular injury and death. One-year follow-up, however, was associated with increased PSA levels, indicating that only a minor part of the PSA-producing compartment was lost in the acute phase.

Aged↗

The activities of acyl-CoA hydrolase in lysate and subcellular fractions of human blood platelets in relation to activities of acyl-CoA:1-acyl-lysophospholipid acyltransferase.

The activities of acyl-CoA hydrolase (EC 3.1.2.2.) and acyl-CoA:1-acyl- lysophospholipid acyltransferase (EC 2.3.1.23) have been studied in subcellular fractions of human platelets. The acyl-CoA:1-acyl-lysophospholipid acyltransferase activity was higher in the 'dense-tubular-system-enriched' fraction than in the 'light-mitochondrial' fraction, using endogenously acyl-CoAs formed from labelled fatty acids, ATP, CoA and various lysophospholipids. No activity was found in the 'particle-free' fraction. No difference in specificities was observed between the incorporation of various fatty acids into different lysoPLs in the subcellular fractions compared with the platelet lysates. Generally, arachidonic, linoleic and eicosapentaenoic acids were better substrates for the acyl-CoA:1-acyl-lysophospholipid acyltransferases than oleic, docosahexaenoic and palmitic acids. The opposite was observed with the acyl-CoA hydrolase activity, palmitoyl-CoA was the substrate giving the highest activity, and eicosapentaenoyl-CoA and arachidonoyl-CoA the lowest. About 85% of the hydrolase activity was detected in the 'particle-free' fraction, with each of the six acyl-CoA derivatives tested.

1-Acylglycerophosphocholine O-Acyltransferase↗

Normothermic liver ischemia in rats: xanthine oxidase is not the main source of oxygen free radicals.

We studied the effect of allopurinol (ALL) on the activity of xanthine dehydrogenase (XDH), xanthine oxidase (XOX), superoxide dismutase (SOD), and catalase (CAT) in rat liver during ischemia followed by 60 min of reperfusion. We induced 60-min ischemia in the median and left lobes by clamping the hepatic artery and portal branches. The percentage XOX relative to total oxidase activity increased significantly in the control group, from 10% during the stabilization period to 18% after 60 min of reperfusion. The XDH activity decreased during reperfusion. Activity of both XDH and XOX was almost completely blocked by ALL. The activity of SOD and CAT did not differ significantly between the ALL group and controls after 60 min of reperfusion. ALL treatment did not affect liver injury parameters, as concentrations of lactate dehydrogenase (LDH) and alanine transferase (ALT) increased in plasma after ischemia, both in controls and in the ALL-treated group. We concluded that ischemia promotes conversion of XDH to XOX during reperfusion. XOX may not be the main source of free radical production, since intracellular scavengers (SOD and CAT) did not differ significantly between controls and the ALL-treated group, despite the fact that ALL blocked XOX activity completely.

Allopurinol↗

The activities of acyl-CoA:1-acyl-lysophospholipid acyltransferase(s) in human platelets.

The activities of acyl-CoA:1-acyl-lysophospholipid acyltransferases (EC 2.3.1.23) have been studied in human platelet lysates by using endogenously formed [14C]acyl-CoA from [14C]fatty acid, ATP and CoA in the presence of 1-acyl-lysophosphatidyl-choline (lysoPC), -ethanolamine (lysoPE), -serine (lysoPS) or -inositol (lysoPI). Linoleic acid as fatty acid substrate had the highest affinity to acyl-CoA:1-acyl-lysophospholipid acyltransferase with lysoPC as variable substrate, followed by eicosapentaenoic acid (EPA) and arachidonic acid (AA). The activity at optimal conditions was 7.4, 7.3 and 7.2 nmol/min per 10(9) platelets with lysoPC as substrate, with linoleic acid, AA and EPA respectively. EPA and AA were incorporated into all lyso-forms. Linoleic acid was also incorporated into lysoPE at a high rate, but less into lysoPS and lysoPI. DHA was incorporated into lysoPC and lysoPE, but only slightly into lysoPI and lysoPS. Whereas incorporation of all fatty acids tested was maximal for lysoPC and lysoPI at 200 and 80 microM respectively, maximal incorporation needed over 500 microM for lysoPE and lysoPS. The optimal concentration for [14C]fatty acid substrates was in the range 15-150 microM for all lysophospholipids. Competition experiments with equimolar concentrations of either lysoPC and lysoPI or lysoPE resulted in formation of [14C]PC almost as if lysoPI or lysoPE were not added to the assay medium.

1-Acylglycerophosphocholine O-Acyltransferase↗

The activity and subcellular distribution of the peroxisomal enzyme acyl-CoA oxidase in human blood platelets.

The peroxisomal enzyme acyl-CoA oxidase is localized in the 'dense-tubular-system-enriched fraction', probably identical with the endoplasmic reticulum, in human blood platelets. This localization is strongly different from the localization of catalase which seems to be a cytosolic enzyme, in agreement with Marcus, Zucker-Franklin, Safir & Ullman [(1966) J. Clin. Invest. 45, 14-28]. A localization of acyl-CoA oxidase in the endoplasmic reticulum seems to be in good accordance with the important role of peroxisomes in the metabolism of prostaglandins, as recently demonstrated by Diczfalusy, Kase, Alexson & Bjørkhem [(1991) J. Clin. Invest. 88, 978-984].

Acyl-CoA Oxidase↗

Sixty minutes normothermic ischemia in rat liver: the declining tissue concentration of hypoxanthine during reperfusion is not a washout phenomenon.

A rat liver normothermic ischemia-reperfusion model was used to investigate whether hypoxanthine (HXA) that accumulated during ischemia was washed out in hepatic veins during reperfusion. Ischemia was induced in median and left lobes by clamping of the proper hepatic artery and portal branches. The effect of allopurinol (ALL) on metabolism of ATP and HXA was studied before, during and after a 60-min normothermic ischemic insult. Liver cell concentration of HXA in the group treated with ALL increased during ischemia and decreased rapidly during the first 10-min reperfusion. Recovery of ATP increased gradually during the 10-min reperfusion period and was significantly higher in the group treated by ALL compared to that of controls. Liver venous blood concentration of HXA in the ALL-treated group was 10-to 40-fold lower than that in liver tissue. The rapidly decreasing concentration of HXA in liver tissue during reperfusion and a minimal washout may indicate that HXA was used for resynthesis of ATP during reperfusion.

Adenosine Triphosphate↗

Identity between palmitoyl-CoA synthetase and arachidonoyl-CoA synthetase in human platelet?

Apparent Km values have been determined for the substrates ATP, CoA and fatty acids for the long-chain acyl-CoA synthetase (EC 6.2.1.3) reaction in lysates of human blood platelets. The apparent Km for ATP was higher for saturated fatty acids (C12:0 to C18:0) than for unsaturated acids (C18:1 to C22:6). Other apparent Km values were very similar for all long-chain fatty acids tested. Palmitic acid inhibited the formation of [14C]arachidonoyl-CoA, and arachidonic acid inhibited the formation of [14C]palmitoyl-CoA, with [14C]arachidonate or [14C]palmitate respectively as substrate. After chromatography of Triton X-100-extracted platelet protein in several systems (hydroxyapatite, DEAE-Sepharose, Sephacryl S-200 HR, CoA-Sepharose, Sephadex G-100 and AcA 34), both arachidonoyl-CoA synthetase and palmitoyl-CoA synthetase activities were eluted together in the various protein peaks, and with approximately the same ratio of activities in all peaks. After some purification steps (DEAE-Sepharose and Sephacryl S-200 HR), the acyl-CoA synthetase activity was up to 37 nmol/min per mg of protein with [14C]palmitate as substrate, and up to 116 nmol/min per mg of protein with [14C]arachidonate as substrate. The purification was respectively about 8- and 10-fold. The results indicate that palmitoyl-CoA (or unspecific) synthetase and arachidonoyl-CoA (or specific) synthetase are in fact the same enzyme, in agreement with previously reported results from this laboratory.

Blood Platelets↗

Fatty acids in human platelets and plasma. Fish oils decrease sensitivity toward N2 microbubbles.

Platelet aggregation induced by N2 microbubbles (simulating microbubbles developed during deep diving) was measured in seven volunteers before and after intake of ethyl-eicosapentaenoate (-EPA, 3.5 g/day) and ethyl-docosahexaenoate (-DHA, 2.5 g/day) for 2 wk. The relative content of arachidonic acid (AA) decreased in platelets from all individuals, whereas the content of EPA and DHA increased. The decrease of AA was almost identical with the increase of EPA plus DHA. In plasma the AA content was unchanged, while EPA and DHA increased. The N2 microbubble-induced aggregation showed a significant negative correlation with the DHA content both in platelets and in plasma. Less aggregation was also observed with high EPA content in platelets or plasma. A significant correlation between AA content in platelets and aggregation was seen. Intake of marine oils may be beneficial to divers under deep diving and to patients during extracorporeal circulation, because this may reduce the microbubble-induced aggregation.

Adult↗

Sixty-minute normothermic liver ischemia in rats. Evidence that allopurinol improves liver cell energy metabolism during reperfusion but that timing of drug administration is important.

Allopurinol (ALL) improves energy metabolism in organs subjected to ischemia-reperfusion injury. The importance of different administration schedules of ALL has been studied in a rat liver model exposed to 60 min of normothermic ischemia followed by reperfusion. ALL (100 mg/kg) that administered in two doses, one prior to ischemia and one prior to reperfusion, improved production of adenosine triphosphate in the liver as well as bile flow during reperfusion. ALL administered in a single dose, either prior to ischemia or prior to reperfusion, was less effective. The concentration of hypoxanthine during ischemia increased in the groups given ALL prior to induction of ischemia. Based on the present findings, we argue that the beneficial effect of ALL administration can be potentiated by different drug-administration schedules. Our data also suggest that the prime mechanism of action for ALL is not only related to inhibition of free-oxygen-radicals production but that preservation of hypoxanthine, which can be used for ATP resynthesis and the scavenging properties of ALL itself, may be equally important.

Adenosine Triphosphate↗

[Prostate-specific antigen. A new biological serum marker for prostatic adenocarcinoma].

Prostate-specific antigen (PSA) was measured by polyclonal radioimmunoassay in 45 untreated patients with prostatic cancer and 14 patients with benign prostatic hyperplasia. Prostatic acid phosphatase (PAP) was determined in 35 patients with prostatic cancer and 14 patients with benign hyperplasia. Serum PSA was raised in 42 patients with cancer of the prostate, but only 14 of 35 patients showed increased serum levels of PAP. Half the patients with benign prostate hyperplasia had PSA greater than 4 micrograms/l and one third had PSA greater than 10 micrograms/l. PAP was slightly elevated in two patients with benign prostatic hyperplasia. Serum PSA increased with the clinical stage of prostatic cancer. However, preoperative levels of PSA were not sufficiently reliable to predict the final pathological stage for each individual patient. After radical prostatectomy for cancer confined to the prostate, serum PSA fell to an undetectable level.

Acid Phosphatase↗

Detection of malignant tumours by multivariate analysis of proton magnetic resonance spectra of serum.

Proton magnetic resonance spectra of blood serum have been subjected to multivariate data analysis to discriminate between samples from cancer patients and from controls. The main feature was the use of digitally defined resonance profiles. The methyl and methylene lipoprotein signals centred at 1.3 and 0.9 parts per million are non-lorentzian composite peaks that cannot be described properly by the line width at half-height. Instead 71 and 76 data points were used to describe the methylene and methyl peak profiles, respectively. These data points were used as input to a principal component analysis to distinguish between malignant (n = 29) and control samples (n = 55). At a probability level of 0.01 (F-test) modelling classified all patients except 2 correctly, while 1 control was slightly above the predictive level for malignancy.

Female↗

60 min normothermic liver ischemia in rats: allopurinol improves energy status and bile flow during reperfusion.

The effect of allopurinol was studied in a normothermic liver ischemia rat model. Functional (bile flow) and biochemical parameters (high-energy phosphates, ATP, ADP, AMP), energy charge, hypoxanthine and xanthine were determined prior to and during 60 min of ischemia followed by 120 min of reperfusion. Allopurinol given in the preischemic period (50%) and as a bolus (50%) prior to reperfusion improved liver function significantly, whereas allopurinol given in the preischemic period (50%) and after start of reperfusion (50%) had no effect. The data indicates that allopurinol given prior to reperfusion saved hypoxanthine which was used for ATP resynthesis during reperfusion.

Adenosine Triphosphate↗

Thrombin-induced serotonin release as an in vitro indicator of the functional integrity of stored platelets.

Measurements of endogenous serotonin and the thrombin-induced serotonin release reaction in platelet concentrates were compared with other methods of quality control: particle counting and pH and gas analyses. A discrepancy between the serotonin release reaction and the other data was observed after seven days of storage. The decline in the release reaction was not predictable from pH measurements or the number of platelets or leukocytes in the concentrate. There was a significant positive correlation between endogenous serotonin content and the thrombin-induced serotonin secretion after seven days of storage. We conclude that the current methods for routine control of platelet concentrates may not ensure the quality of the product after it has been stored for seven days. The thrombin-induced serotonin release may provide a valuable addition to the battery of tests available.

Blood Gas Analysis↗

Identical subcellular distribution of palmitoyl-CoA and arachidonoyl-CoA synthetase activities in human blood platelets.

Fractionation of human blood platelets showed that palmitoyl-CoA synthetase and arachidonoyl-CoA synthetase activities had an identical distribution among subcellular fractions. The activity was highest with arachidonic acid as substrate in all fractions, with an enzyme activity of 50 nmol/min per mg of protein, in a 'dense-tubular-system'-enriched fraction. The ratio activities with arachidonate and palmitate as substrates was about 1.5 in all fractions. Heat inactivation did not distinguish between arachidonoyl-CoA synthetase and a palmitoyl-CoA synthetase. On the other hand, heat inactivation indicated two pools of long-chain acyl-CoA synthetases: one in a mitochondria- and one in the dense-tubular-system-enriched fraction.

Blood Platelets↗