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Biomedical subjects

J Butler

Publications and source records attributed to J Butler.

At least 127 records · Page 7Linked to original sources

Evaluation of physical health effects due to volcanic hazards: the use of experimental systems to estimate the pulmonary toxicity of volcanic ash.

Shortly after Mount St. Helens erupted in 1980, a number of laboratories began to investigate the effects of volcanic ash in a variety of experimental systems in attempts to predict effects that might occult in the lungs of humans exposed to volcanic ash. The published results are remarkably consistent, despite the use of non-uniform ash samples and variability in the experimental approaches used. The data indicate that volcanic ash, even in high concentrations, causes little toxicity to lung cells in vitro and in vivo, as compared with effects of free crystalline silica, which is known to be highly fibrogenic. Volcanic ash does not appear to be entirely inert, however, possibly because of low concentrations of free crystalline silica in the ash. The published experimental studies suggest that inhaled volcanic ash is not likely to be harmful to the lungs of healthy humans, but the potential effects of volcanic ash in patients with pre-existing lung diseases are more difficult to ascertain from these studies.

Air Pollutants

Unpaired electron migration between aromatic and sulfur peptide units.

Cysteine thiyl radicals (Cys/S.) were found capable of one-electron oxidation of tyrosine. Equilibration occurred, using Cys and Gly-Tyr, with an equilibrium constant of K5 = 20 +/- 4 at pH 9.15: Cys/S. + Tyr in equilibrium Cys + Tyr/O. (5) Hence the reduction potentials of these couples differ at pH 9.15 by E(Cys/S., Cys) - E(Tyr/O., Tyr) = 80 mV. Oxidation of Trp-Gly by Cys/S. was not detectable from pH 7 to 12. The methionyl radical cation (Met/S.N), formed via .OH-attack on Met-Gly, reacts with Trp-Gly to generate the indolyl radical (Trp/N.). New results on intramolecular Trp/N.----Tyr/O. transitions indicate that the reaction requires direct contact between the two redox centers. Various possible pathways for migration of unpaired electrons between peptide units are compiled in a scheme.

Cysteine

Fate of brachial muscles of the chick embryo innervated by inappropriate nerves: structural, functional and histochemical analyses.

The extent of interaction between brachial muscles and foreign (thoracic) nerves of the chick embryo was determined during an extended period of development in ovo from the perspectives of innervation pattern, function (motility analyses), muscle growth (quantitative analyses of muscle volume) and fibre-type expression (myosin-ATPase profiles). Results indicated that according to all parameters analysed, initially a compatible union existed between the foreign nerves and their muscle targets. During subsequent stages of development, deterioration of the once compatible relationship emerged, until eventually denervation of muscles, i.e. an actual loss of intramuscular nerve branches, was observed. The process of denervation, which proceeded at a differential rate among individual muscles, however was restricted to brachial muscles derived from the premuscle masses of the wing bud. In contrast, brachial muscles of myotomal origin were spared the fate of wing-bud-derived muscles and maintained a successful union with the foreign nerves.

Adenosine Triphosphatases

Metabolic and hormonal responses to cooling the fetal sheep in utero.

The metabolic and hormonal effects of cooling 10 fetal sheep in utero (115-142 days of gestation) for 2h were studied. The fetal core temperature fell by 2.81 +/- 0.14 degrees C while the maternal temperature fell 0.86 +/- 0.15 degrees C. This hypothermia caused a significant rise in the fetal and maternal plasma glucose concentrations (P less than 0.001) and a fall in the fetal insulin concentrations (P less than 0.01). The fetal plasma lactate and cortisol concentrations rose rapidly (P less than 0.01) while the growth hormone fell (P less than 0.01) and remained low until cooling ceased when a rapid rebound occurred. There was no significant change in any of the fetal iodothyronines and no elevation of nonesterified free fatty acid concentrations, in contrast to the rapid rise (P less than 0.01) which occurred when newborn lambs were cooled. These observations demonstrate that appropriate glucose, insulin, lactate and cortisol responses to hypothermia have differentiated by 120 days of gestation. However, neither a thyroid hormone response nor an elevation in free fatty acid levels was observed. Thus not all components of the thermogenic response to hypothermia can be demonstrated in the late gestation fetail sheep in utero.

Animals

Hepatic resection for metastases of the colon and rectum.

Hepatic resection is the treatment of choice for a solitary metastatic deposit from a primary carcinoma of the large intestine in the absence of extrahepatic disease. This study was done to evaluate hepatic resection in the treatment of multiple hepatic metastases from carcinoma of the colon and rectum. Sixty-two patients underwent hepatic resection with an over-all operative mortality of 10 per cent, but a recent (1968-1981) mortality of 2 per cent. Three, five and ten year survival rates were 50, 34 and 21 per cent, respectively. No significant differences in survival patterns were noted comparing site (colon versus rectum), time interval from diagnosis of the primary to diagnosis of metastases (synchronous versus metachronous), sex (male versus female), size of the metastatic lesion (less than 5 centimeters versus greater than or equal to 5 centimeters) or number of metastatic lesions (single versus multiple). The pathologic stage of the primary carcinoma of the large intestine significantly (p less than 0.05) influenced survival patterns after hepatic resection with Dukes' B primary tumor having a median survival time of 123 months versus 27 months for patients with Dukes' C primary tumor. Sixty-seven per cent of those with a recurrence did so within the liver. Adjuvant chemotherapy had no demonstrable effect on survival patterns. Further improvement in survival statistics will require more sensitive staging procedures and effective adjuvant therapy, particularly for patients with Dukes' C primary carcinoma of the large intestine.

Adult

Reactions of nitrogen dioxide in aqueous model systems: oxidation of tyrosine units in peptides and proteins.

By application of pulse radiolysis it was demonstrated that nitrogen dioxide (NO2.) oxidizes Gly-Tyr in aqueous solution with a strongly pH-dependent rate constant (k6 = 3.2 X 10(5) M-1 S-1 at pH 7.5 and k6 = 2.0 X 10(7) M-1 S-1 at pH 11.3), primarily generating phenoxyl radicals. The phenoxyl can react further with NO2. (k7 approximately 3 X 10(9) M-1 S-1) to form nitrotyrosine, which is the predominant final product in neutral solution and at low tyrosyl concentrations under gamma-radiolysis conditions. Tyrosine nitration is less efficient in acidic solution, due to the natural disproportionation of NO2., and in alkaline solutions and at high tyrosyl concentrations due to enhanced tyrosyl dimerization. Selective tyrosine nitration by interaction of NO2. with proteins (at pH 7 to 9) was demonstrated in the case of histone, lysozyme, ribonuclease A, and subtilisin Carlsberg. Nitrotyrosine developed slowly also under incubation of Gly-Tyr with nitrite at pH 4 to 5, where NO2. is formed by acid decomposition of HONO. It is recalled in this context that NO2.-induced oxidations, by regenerating NO2-, can propagate NO2./NO2- redox cycling under acidic conditions. Even faster than with tyrosine is the NO2.-induced oxidation of cysteine-thiolate (k9 = 2.4 X 10(8) M-1 S-1 at pH 9.2), involving the transient formation of cystinyl radical anions. The interaction of NO2. with Gly-Trp was comparably slow (k approximately 10(6) M-1 S-1), and no reaction was detectable by pulse radiolysis with Met-Gly and (Cys-Gly)2, or with DNA. Slow reactions of NO2. were observed with arachidonic acid (k approximately 10(6) M-1 S-1 at pH 9.0) and with linoleate (k approximately 2 X 10(5) M-1 S-1 at pH 9.4), indicating that NO2. is capable of initiating lipid peroxidation even in an aqueous environment. NO2.-Induced tyrosine nitration, using 50 microM Gly-Tyr at pH 8.2, was hardly inhibited, however, in the presence of 1 mM linoleate, and was not affected at all in the presence of 5 mM dimethylamine (a nitrosamine precursor). It is concluded that protein modifications, and particularly phenol and thiol oxidation, may be an important mechanism, as well as initiation of lipid peroxidation, of action of NO2. in biological systems.

Chemical Phenomena

Anti-inflammatory drugs in experimental atherosclerosis. Part 6. Combination therapy with steroid and non-steroid agents.

The pathological changes which accompany enhanced cholesterol deposition in atherosclerosis include inflammatory responses mediated by the prostaglandin cyclooxygenase and lipoxygenase-leukotriene metabolite of the arachidonic acid cascade. Cortisone suppresses arachidonic acid release, whereas non-steroid anti-inflammatory drugs inhibit principally the cyclooxygenase enzyme. Groups of New Zealand white rabbits were fed a 1% cholesterol diet for 12 weeks. Diets of selected groups were further supplemented daily with the non-steroid anti-inflammatory drugs phenylbutazone (100 mg), oxyphenylbutazone (240 mg), flufenamic acid (100 mg), either singly or in combination with cortisone acetate (10 mg or 5 mg), or 9-alpha-fluorohydrocortisone (30 micrograms or 200 micrograms). Serum lipid levels were measured at 0, 4, 8 and 12 weeks, and atherosclerotic plaque intensity in thoracic aorta was measured at 12 weeks using a planimetric technique: serum cholesterol levels in control groups increased from 38 +/- 5 to 1190 +/- 139 mg/100 ml. Neither the rate of increase nor the final lipid values attained were significantly changed by the non-steroid drugs. The non-steroid drugs reduced plaque coverage by about one third (phenylbutazone 34 +/- 10%, flufenamic acid 36 +/- 11%) compared to controls. In combination therapy, addition of cortisone acetate resulted in further plaque suppression. Cortisone 10 mg + phenylbutazone gave 100% suppression; cortisone 5 mg + phenylbutazone gave 82 +/- 18%, and cortisone 5 mg + flufenamic acid gave 84 +/- 3%.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Methionyl----tyrosyl radical transitions initiated by Br2-. in peptide model systems and ribonuclease A.

A series of radical transitions, Br2-.----Met(S therefore Br)----Trp(indolyl)----Tyr (phenoxyl), has been demonstrated by pulse radiolysis of N2O-saturated aqueous solutions containing Br-, Met-Gly and Trp-(Gly)2-Tyr at pH 6.7. The intramolecular Met(S therefore Br)----Trp(indolyl) transition in the dipeptide Met-Trp is shown to proceed via the Trp+. radical cation, with a rate constant of k approximately 10(7)s-1, consistent with an electron transfer. Br2-.-attack upon ribonuclease A (RNase) leads to a fast Met(S therefore Br)----Tyr(phenoxyl) process, k = (4.0 +/- 1.0) X 10(5)s-1, probably involving the solvent-exposed Met-29 and the adjacent Tyr-25. Phenoxyl dimerization in the RNase system produces the characteristic o,o'-biphenol fluorescence, but a competing interaction of the Tyr-25(phenoxyl) with the 26-84 disulphide group also appears possible.

Bromine

O6-Methylguanine methyltransferase activity is increased in rat tissues by ionising radiation.

The effect of whole body ionising radiation from a linear accelerator on rat tissue O6-methylguanine (O6-meG) methyltransferase (MT) activity has been assessed using an assay which measures the transfer of 3H-radioactivity from 3H-methylated substrate DNA to protein. The maximal effect occurred 2 days after a 1 krad dose, at which time activity in liver extracts was increased approximately 5-fold in two different rat strains. Activity in lung and kidney was increased approximately 4- and 2-fold, respectively. Similar degrees of enhancement were found in these three tissues using an h.p.l.c. method for measuring MT activity. The increase in activity was reflected in an increased capacity to repair O6-meG produced in liver DNA by administration of [14C]dimethylnitrosamine (DMN): this effect was dose dependent, being detectable after 30 rads and maximal after 600 rads. Incorporation of labelled breakdown products of the DMN into adenine in DNA increased as the dose radiation increased suggesting an inhibition of DNA synthesis. The implications of these results for the mechanism of enhancing O6-meG repair are discussed.

Animals

Predicting tumor response in patients with colorectal hepatic metastases.

Until now, there has been no reliable means of predicting tumor response to chemotherapy in patients with metastatic colorectal cancer. Using arterial nuclide flow scans as a determinant of tumor response, the degree of tumor perfusion was evaluated in a blinded prospective study. Seventy-three patients with colorectal hepatic metastases received continuous hepatic arterial (N = 52) or systemic intravenous (N = 21) chemotherapy using an implantable pump. All patients had pretreatment hepatic arteriography and arterial flow scans using 99mTc macroaggregated albumin (99mTc-MAA). An arteriogram was characterized as positive if it showed tumor hypervascularity; the 99mTc-MAA flow scan was considered positive if it showed increased tumor uptake relative to the liver. Of 47 patients with an evaluable 99mTc-MAA flow scan who were treated with arterial infusion, 31 had a positive scan; in this group 16 responded to chemotherapy. The 99mTc-MAA scan was negative in 16 patients, of whom one responded to chemotherapy (p less than 0.006). The 99mTc-MAA scan had the greatest predictive value in previously untreated patients (sensitivity = 91%; specificity = 77%). The arteriogram was positive in 25 of 46 evaluable patients, but this finding had little predictive value for tumor response (sensitivity = 56%; specificity = 46%). Of 21 patients receiving systemic intravenous infusion, the scan was positive in nine patients, of whom seven responded to chemotherapy. The 99mTc-MAA scan was negative in 12 patients, of whom one responded to chemotherapy (sensitivity = 88%; specificity = 85%). When 99mTc-MAA-positive and -negative groups were compared, there were no differences in mean patient age, per cent liver involvement, tumor size, or plasma liver function tests. Hepatic tumor perfusion as determined by MAA arterial flow scan is a reliable predictor of tumor response in patients with metastases from large bowel cancer. The test provides a valuable criterion for selecting individuals for treatment of metastases from large bowel cancer by infusion chemotherapy.

Adult

Regulation of increase in anastomotic blood flow following pulmonary arterial occlusion.

We have previously shown that there is an acute increase in anastomotic bronchial blood flow (Qbr) after pulmonary arterial obstruction in dogs. We examined the role of arachidonic acid metabolites in mediating this increase. The left lower lobe (LLL) was isolated and perfused (zone 2) with autologous blood in open-chested anesthetized dogs (n = 19). Qbr was measured from the amount of blood that overflowed from the closed vascular circuit of the suspended LLL and changes in its weight. In the control animals, there was a prompt and significant increase in Qbr following pulmonary arterial obstruction. Pretreatment with indomethacin (n = 6) or sodium salicylate (n = 4) almost completely blocked this rise in Qbr. Following pulmonary arterial occlusion, there was a rise in both thromboxane and a prostacyclin metabolite (6-keto-PGF1 alpha) in the blood of the pulmonary circulation of the LLL, although the 6-keto-PGF1 alpha rose relatively more. Pretreatment with indomethacin caused a fall in both thromboxane and prostacyclin levels (n = 3), which no longer rose after pulmonary arterial occlusion. These findings suggested that the balance of the vasodilator (prostacyclin) and vasoconstrictor (thromboxane) prostaglandins may play an important role in mediating the rise in Qbr that follows pulmonary arterial obstruction.

6-Ketoprostaglandin F1 alpha

Transmission of airway pressure to pleural space during lung edema and chest wall restriction.

To investigate the influence of positive end-expiratory pressure (PEEP) on hemodynamic measurements we examined the transmission of airway pressure to the pleural space during varying conditions of lung and chest wall compliance. Eight ventilated anesthetized dogs were studied in the supine position with the chest closed. Increases in pleural pressure were similar for both small and large PEEP increments (5-20 cmH2O), whether measured in the esophagus (Pes) or in the juxtacardiac space by a wafer sensor (Pj). Increments in Pj exceeded the increments in Pes at all levels of PEEP and under each condition of altered lung and chest wall compliance. When chest wall compliance was reduced by thoracic and abdominal binding, the fraction of PEEP sensed in the pleural space increased as theoretically predicted. Acute edematous lung injury produced by oleic acid (OA) did not alter the deflation limb pressure-volume characteristics of the lung, provided that end-inspiratory volume was adequate. With the chest and abdomen restricted OA was associated with less than normal transmission of airway pressure to the pleural space, most likely because the end-inspiratory volume required to restore normal deflation characteristics was not attained. Together these results indicate that the influence of acute edematous lung injury on the transmission of airway pressure to the pleural space depends importantly on the peak volume achieved during inspiration.

Airway Resistance

Extra-alveolar vessel fluid filtration coefficients in excised and in situ canine lobes.

We continuously weighed fully distended excised or in situ canine lobes to estimate the fluid filtration coefficient (Kf) of the arterial and venous extra-alveolar vessels compared with that of the entire pulmonary circulation. Alveolar pressure was held constant at 25 cmH2O after full inflation. In the in situ lobes, the bronchial circulation was interrupted by embolization. Kf was estimated by two methods (Drake and Goldberg). Extra-alveolar vessels were isolated from alveolar vessels by embolizing enough 37- to 74-micron polystyrene beads into the lobar artery or vein to completely stop flow. In excised lobes, Kf's of the entire pulmonary circulation by the Drake and Goldberg methods were 0.122 +/- 0.041 (mean +/- SD) and 0.210 +/- 0.080 ml X min-1 X mmHg-1 X 100 g lung-1, respectively. Embolization was not found to increase the Kf's. The mean Kf's of the arterial extra-alveolar vessels were 0.068 +/- 0.014 (Drake) and 0.069 +/- 0.014 (Goldberg) (24 and 33% of the Kf's for the total pulmonary circulation). The mean Kf's of the venous extra-alveolar vessels were similar [0.046 +/- 0.020 (Drake) and 0.065 +/- 0.036 (Goldberg) or 33 and 35% of the Kf's for the total circulation]. No significant difference was found between the extra-alveolar vessel Kf's of in situ vs. excised lobes. These results suggest that when alveolar pressure, lung volume, and pulmonary vascular pressures are high, approximately one-third of the total fluid filtration comes from each of the three compartments.

Animals

Increases in intrathoracic pressure do not explain the rise in left ventricular end-diastolic pressure that occurs during exercise in patients with chronic obstructive pulmonary disease.

During exercise, patients with chronic obstructive pulmonary disease (COPD) increase their pulmonary arterial wedge (Ppaw) and left ventricular (LV) end-diastolic pressures more than normal control subjects. The increase in pressure is commonly attributed to an increase in intrathoracic pressure (Pit). However, mean esophageal pressure (Pes) does not increase with supine exercise in patients with COPD. Because changes in Pes may not represent changes in Pit when recorded in the supine position, we measured Ppaw and Pes during upright exercise in 8 patients with severe air-flow limitation (mean +/- SD) FEV1, 0.88 +/- 0.27 L secondary to COPD and no history or electrocardiographic abnormalities suggesting a previous myocardial infarct, history of angina, evidence of systemic hypertension, or use of cardiac medications. In addition, all patients completed a progressive exercise test to exhaustion without angina or ST segment changes, and all had normal LV function at rest assessed by equilibrium radionuclide ventriculography. The Ppaw increased a mean of 7.2 +/- 4.3 mmHg, whereas Pes increased a mean of only 1.3 +/- 1.6 mmHg. By multiple linear regression analysis, Ppaw was significantly associated with the work level performed (p less than 0.01), but had no significant association with Pes (p greater than 0.1). The change in Ppaw could not be attributed to changes in Pes. If changes in Pes during upright exercise are representative of changes in Pit or juxtacardiac pressure, a rise in Pit does not explain the exercise-induced increase in Ppaw and LV end-diastolic pressure that occurs in patients with COPD.

Blood Gas Analysis

Nifedipine dilates the pulmonary vasculature without producing symptomatic systemic hypotension in upright resting and exercising patients with pulmonary hypertension secondary to chronic obstructive pulmonary disease.

Vasodilator therapy may lower pulmonary vascular resistance in patients with chronic air-flow limitation. However, the effects of these agents on left ventricular afterload, cardiac output, and bronchial smooth muscle could lower the calculated pulmonary vascular resistance without specifically affecting pulmonary vascular tone. In addition, systemic hypotension in the upright position and worsening ventilation/perfusion heterogeneity could limit their use. We determined the pulmonary driving pressure (pulmonary arterial-pulmonary arterial wedge pressure) to flow relationship, as well as the transmural pulmonary arterial pressure in 9 patients with severe chronic air-flow limitation with pulmonary hypertension while in a clinically stable condition. Measurements were made at rest and during 3 stages of progressively increasing upright exercise on a bicycle before and after a single 20-mg dose of nifedipine. Nifedipine displaced both the driving pressure to flow and the pulmonary arterial transmural pressure to flow relationships towards higher flows in every subject, suggesting an active vasodilation. In the upright position, PaO2 did not change, and the systemic arterial pressure was only mildly reduced. In patients with pulmonary hypertension from chronic air-flow limitation, acute administration of nifedipine to upright patients causes pulmonary, as well as systemic vasodilation without causing symptomatic hypotension or reducing arterial oxygenation.

Adult