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1.
  • 1.1. Sulphate labelled proteoglycans (PG) synthesized by cultured human arterial smooth muscle cell have been quantified using an improved method based on a combination of specific enzymes and ethanol precipitation.
  • 2.2. The present method gives quantitative data of PGs and subclasses allowing batchwise analysis of a large number of samples.
  • 3.3. Approximately 81 % ± 1.7% (mean ± SD, n = 6) of total PGs synthesized by human arterial smooth muscle cells accumulated in medium.
  • 4.4. In cell layer and medium chondroitin sulphate proteoglycan constituted 65.0% ± 0.3% and 75.8% ± 0.7% (mean ± SD, n = 3), respectively of sulphated PGs.
  • 5.5. Heparan sulphate proteoglycan accounted for 26.8% ± 0.6% in cell layer and 22.6% ± 0.5% (mean ± SD, n = 3) in medium of sulphated PGs.
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2.
  • 1.1. Osmotic measurements were made on the perivisceral coelomic and water vascular fluids of 4 species of northwest Pacific starfish and their stable sea-water media.
  • 2.2. Mean levels of both fluids were hyperosmotic in every species, often at statistically significant levels.
  • 3.3. For all species combined, mean hyperosmolality (mosmol/kg ± SE) of perivisceral coelomic fluid was 1.49 ± 0.17, and water vascular fluid 6.07 ± 0.74.
  • 4.4. The hyperosmotic nature of these fluids contributes to water balance, working in conjunction with madreporitic inflow and other factors.
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3.
  • 1.1. Glucose pool size, space, entry rate, and turnover time were estimated from the specific radioactivity vs time curves of [3H] and [14C]glucose administered as a single injection in the euro (Macropus robustus erubescens) and the sympatric feral goat (Capra hircus).
  • 2.2. Digestible energy intake was greater (P < 0.05 ± SE) in the goat than in the euro (798 ± 64 vs 624 ± 31kJ/kg0.75 × day).
  • 3.3. However, there were no significant differences between the two species in parameters of glucose metabolism.
  • 4.4. The use of an implantable osmotic infusion pump to deliver isotopic glucose showed promise as a means of avoiding the stress involved with the single injection technique.
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4.
  • 1.1. Experiments were carried out to determine the influence of age on salt gland secretion in the domestic goose.
  • 2.2. Oral or i.v. loading of hypertonic NaCl evoked a rapid secretory response in geese 6–14 weeks of age.
  • 3.3. A significantly smaller fraction of the salt load was secreted by older birds (2.2 kg and above) than by younger birds (< 2.2 kg).
  • 4.4. The maximum volume collected and the maximum sodium concentration during an 80 min observation period did not differ over a range of < 1 kg to > 4 kg in body weight.
  • 5.5. The maximum volume and sodium concentration/kg of body weight decreased significantly as the birds aged.
  • 6.6. A greater fraction of the administered water load was secreted by the salt gland at any time period compared to the fraction of the salt load secreted, indicating substantial cloacal excretion of the salt load.
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5.
  • 1.1. The content of atrial natriuretic peptides (ANPs) in the auricles of oysters, Crassostrea virginica, was significantly (P < 0.01) greater than in their ventricles.
  • 2.2. High-performance gel permeation chromatography (HP-GPC) followed by ANF radioimmunoassay revealed two peaks in both oyster and vertebrate (rat) hearts—a major peak where the 12.6–14 kDa ANF prohormone elutes and a smaller peak where the pure human form of ANF elutes.
  • 3.3. HP-GPC evaluation followed by proANF 31–67 radioimmunoassay revealed only an ANF-like prohormone while HP-GPC followed by proANF 1–30 radioimmunoassay revealed the ANF prohormone and a proANF 1–30-like peptide in oyster and rat hearts.
  • 4.4. ANPs concentrations in hemolymph were 940 ± 129, 225 ± 25, and 100 ± 10 pg/ml by the proANF 1–30, proANF 31–67, and ANF radioimmunoassays, respectively.
  • 5.5. Atrial natriuretic-like peptides are present in the oyster heart in molecular species similar to vertebrate species and these peptides are also present in hemolymph.
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6.
  • 1.1. Haemolymph lactate levels rose rapidly from 0.54 ( ± 0.39) mmol to 34.78 ( ± 4.9) mmol during 6 hr of anoxia in a N2 atmosphere.
  • 2.2. A sharp decrease in the pH from 7.478 (± 0.04) to 7.197 ( ± 0.04) and the total carbon dioxide content of the haemolymph from 13.97 (± 2.0) mmol to 6.25 (± 1.2) mmol during anoxia indicates a gross disturbance in the acid-base balance in Potamon warreni.
  • 3.3. The low concentrations of succinate (98 ± 30 μmol) and alanine (5.8 ± 1.0 mmol) in the haemolymph suggest that they do not play a role as an energy source during anoxia.
  • 4.4. Probably only l-( + )-lactate is produced during lactate production when P. warreni is exposed to anoxic conditions.
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7.
  • 1.1. The mechanism of action of glyburide (a sulfonylurea) on muscle has been investigated by measuring glucose uptake and glucose transporter (GLUT4) protein levels after chronic glyburide treatment.
  • 2.2. A dietary induced insulin resistant rat model (4 wk of high-fat, high-sucrose feeding) was given glyburide (2mg/kg/day) for 10 days and glucose uptake was measured in a perfused hindquarter preparation.
  • 3.3. Protein levels of the GLUT4 glucose transporter were determined by Western analysis.
  • 4.4. After 7 days of treatment, rats fed glyburide had lower blood glucose concentrations 2 hr (72 ± 5 vs 103 ± 12 mg/dl) and 24 hr (97 ± 7 vs 123 ± 7 mg/dl) after glyburide administration with no difference in serum insulin levels compared to vehicle treated animals.
  • 5.5. Glucose uptake was approx doubled in basal state (0 insulin) in response to glyburide (2.8 + 0.4 vs 1.7 ± 0.2μ mol/g per hr).
  • 6.6. Maximal insulin (100 nM) stimulated glucose uptake tended to be higher in the glyburide treated group, but did not reach statistical significance (8.0 ± 0.7 vs 7.0 ± 0.6 μmol/g per hr).
  • 7.7. Western analysis revealed no significant effect of glyburide on the GLUT4 protein level in skeletal muscle.
  • 8.8. These results suggest that glyburide alters glucose uptake through some mechanism other than alterations in the level of the GLUT4 glucose transporter protein.
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8.
  • 1.1. The estuarine fish Eugerres plumieri was acclimated to sea-water concentrations ranging from 6 to 85% sea-water.
  • 2.2. Serum and aqueous humor osmolalities were moderately well regulated over the range of concentrations studied.
  • 3.3. Serum osmolality and aqueous humor osmolalities conformed to the following relations: serum osmolality = (319 ± 3) + (0.56 ± 0.03) (% sea-water); aqueous humor osmolality = (314 ± 4) + (0.35 ± 0.04) (% sea-water).
  • 4.4. Aqueous humor osmolality was more strictly regulated than that of serum, indicating that the retina and nervous system of the fish, which are encased in inextensible structures, are well protected from variations in sea-water concentration in order to minimize osmotically induced changes in cell volume.
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9.
  • 1.1. The utility of biochemical genetic methods of bird identification was investigated for some common species which create a hazard for commercial aviation in Ireland.
  • 2.2. Sixteen enzyme loci were assayed in eight species, using starch gel electrophoresis; three larids, three corvids and two columbids.
  • 3.3. Genera were distinguishable using all but two loci.
  • 4.4. Differences within genera were small, but all species except for the gulls Larus argentatus and L. marinus, could be identified using one or more loci.
  • 5.5. Arising from the success of the method using fresh specimens, a protocol for the electrophoretic identification of traumatized remains of strikes is suggested.
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10.
  • 1.1. The procedure used to compare the forced running performance of three rodent species was the number of electrical stimuli required each minute to keep the animals running.
  • 2.2. During running trials, ground squirrels, Spermophilus tridecemlineatus, required fewer stimuli than white rats. Squirrels ran 12.4 ± 6.9 (2 SE) min before requiring stimulation vs 3.1 ± 1.4 min for rats.
  • 3.3. Total oxygen consumption during the running period was significantly higher for ground squirrels than white rats, 4.70 ± 0.36 and 4.18 ± 0.38ml O2/g/hr, respectively.
  • 4.4. Heart weight/body weight ratios were significantly higher for the ground squirrels than the white rats.
  • 5.5. No differences were noted between ground squirrels and chipmunks other than those which could be accounted for by body weight differences.
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11.
  • 1.1. Hematocrit (Hct), plasma sodium ([Na]pl), chloride ([Cl]pl) and osmotic concentration (Osmpl); volume and concentration of 1.0MNaCl induced salt gland secretion (SGS); and weights of osmoregulatory organs: kidneys, adrenal glands, and salt glands and nonosmoregulatory organs (liver and heart) were determined in nestling California gulls, Larus californiens (CG), on Krakatoa Islet, Mono Lake, California.
  • 2.2. The mean Hct was 40.0% + 1.0%, the mean [Na]pl and [Cl]pl were 153.9 ± 0.9 and 110.1 ± 0.5 mM (n = 22); and the mean Osmpl was 323.6 ± 1.3 mOsm/kg (n = 18).
  • 3.3. In CG nestlings with a mean age of 10 days (n = 7), the mean SGS [Na] was 719 ± 19 mM and the birds secreted 81 ± 18% of the injected fluid containing 59 ± 13% of the injected Na. By the mean age of 23 days (n = 7), mean SGS [Na] was slightly higher (790 ± 30 mM than in younger birds (P < 0.05), but the percentage of secreted fluid (54 ± 10%) and Na (42 ± 6%) tended to be less.
  • 4.4. In 18 CG nestlings mean organ weights (% body weight) were: kidneys 1.52 ±0.06%; salt glands, 0.13 ±0.01%, and adrenal glands 0.07 ±0.01%.
  • 5.5. Nestling CG had significantly greater Hct (P < 0.001), [Na]pl and [ci]pl (P < 0.001), Osmpl, (P < 0.005), and adrenal gland weight (P < 0.01), compared to nestling glaucous-winged Gulls (GWG), L. glaucescens (Hughes, 1984), which nest under cooler, moister conditions. CG kidney weight was smaller (P < 0.001); salt gland weight and salt excretion were the same as GWG.
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12.
  • 1.1. Renal responses were compared between desert (black Bedouin) and non-desert (Swiss Saanen) goats fed (a) Lucerne hay ad. lib., (b) Lucerne hay restricted to 65% of the ad. lib. consumption and (c) wheat straw.
  • 2.2. Reduced feeding in both breeds resulted in proportional reduction in glomerular filtration rate (GFR) and the amount of urea excreted with no change in the percentage of urea reabsorbed.
  • 3.3. In both breeds appreciably less urea was filtered at the glomerulus when a low-nitrogen diet was fed compared with a high nitrogen diet and the percentage of filtered urea reabsorbed increased from about 55 to about 90%.
  • 4.4. In both breeds the reduction in GFR is quantitatively more important than the increase in the percentage of filtered urea reabsorbed in regard to renal urea conservation.
  • 5.5. The results indicate no qualitative differences between desert and non-desert breeds of goat. The advantages of the Bedouin over the Saanen goats is related to the lower GFR values in the Bedouin goat and mainly their ability to reduce its GFR much more than the Saanen goats in response to lower nitrogen intake.
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13.
  • 1.1. Kidneys of Lophius were perfused from the renal portal vein with a Ringer's solution.
  • 2.2. Mammalian and piscine neurohypophysial hormones (in doses of 20–500 ng/kg body wt) did not affect the rate of urine production or the urinary concentration of inorganic ions.
  • 3.3. The rate of urine production and the urinary concentration of magnesium and sodium ions varied with the concentration of magnesium in the perfusate.
  • 4.4. The rate of urine production was positively correlated with urine magnesium concentration (r = 0.83 ± 0.04) and negatively correlated with that of sodium (r = −0.40).
  • 5.5. The urinary concentration of sodium ions varied inversely with that of magnesium ions (r = −0.89).
  • 6.6. Ouabain treatment (0.1–0.8 mM/l) reduced the rate of urine production by over 60% and altered, to varying extents, the pattern of electrolyte excretion. A simple model for the mode of formation of urine by the aglomerular kidney, based on the present results and other observations is suggested.
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14.
  • 1.1. Adenylate cyclase activity was assayed in the optic lobe of Octopus vulgaris.
  • 2.2. Both octopamine and dopamine stimulate the octopus adenylate cyclase, apparently by competing with the same receptor site.
  • 3.3. (±)-2-Amino-6,7-dihydroxy-1,2,3,4-tetrahydronaphthalene-HBr (6,7-ADTN) and a number of phenylethanolamine derivatives stimulate the octopus adenylate cyclase activity.
  • 4.4. The dopamine D-1 antagonists R(+)-7-chloro-8-hydroxy-3-methyl-1-phenyl-2,3,4,5-tetrahydro-1H-3-benzazepine-HCl (SCH-23390) and (±)-7-bromo-8-hydroxy-3-methyl-1-phenyl-2,3,4,5-tetrahydro-1H-3-benzazepine-HCl (SKF-83566) are unable to antagonize the effects of dopamine and octopamine, and similarly ineffective is the agonist (±)-1-phenyl-2,3,4,5-tetrahydro-1H-3-benzazepine-7,8-diol-HCl (SKF-38393).
  • 5.5. No detectable binding of labelled SCH-23390 occurs on membrane preparations from octopus optic lobe.
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15.
  • 1.1. Immature Atlantic salmon post-smolts weighting approximately 150 g were transferred abruptly to fresh water (FW) after 5 months in sea water (SW).
  • 2.2. Losses of ions and gain of body water are reversed after 3 days with about 10–12 days taken for complete FW adaptation.
  • 3.3. Immediately on transfer from SW to FW, immature salmon take up sodium at 45 μmol/kg/hr, about one-third the rate observed in maturing salmon on their spawning migration.
  • 4.4. The sodium uptake rate increases to that of maturing salmon after 2 days in freshwater. Differences in the osmoregulatory ability of immature and maturing salmon are discussed.
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16.
  • 1.1. Immunochemical and immunohistochemical distribution of ubiquitin in the anterior byssus retractor muscle (ABRM) of Mytilus edulis was investigated.
  • 2.2. In immunostaining, specific ubiquitin immunoreactivity was observed in the cross-sectioned ABRM, and was uniformly localized in this section.
  • 3.3. The amount of free ubiquitin in the ABRM homogenate was 130 ± 4.6 ng/mg protein by western blot analysis, and ubiquitin conjugates were found at about 25, 29 and 200–230 kDa.
  • 4.4. These findings were similar to those obtained in the skeletal muscle of rat.
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17.
  • 1.1. The purpose of this study was to examine bone blood flow in various intra- and extra-oral sites.
  • 2.2. The radiolabelled microsphere method was utilized to assess osseous blood flow in the following regions of 10 dogs: rib, long bone, and anterior and posterior regions of the maxilla and mandible.
  • 3.3. Samples of cancellous and cortical bone were also obtained from each of these regions with the exception of the maxilla and the anterior mandible.
  • 4.4. Mean blood flow ranged from 3.71 ±0.81 (SE) ml min.−1 100 g−1 in the mandibular posterior cortical bone to 22.7±4.66ml min−1 100 g−1 in the cancellous rib samples.
  • 5.5. Blood flow to the cancellous tissue of the rib was significantly greater (P < 0.05 ) than the other tissues with the exception of maxillary posterior bone and cortical rib.
  • 6.6. Results from this study indicate that blood flow to the maxillary posterior bone is relatively high, but blood flow in other intraoral osseous sites is significantly less than that of cancellous rib bone.
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18.
  • 1.1. Comparative aspects of iodine conservation in mammals were studied on the basis of published data on kidney and thyroid weights and function.
  • 2.2. Very small mammals possessed an efficient reabsorption of iodide to compensate for the high glomerular nitration rate (GFR).
  • 3.3. Humans and mammals of a similar and larger size had “lost” the ability to reabsorb iodide efficiently.
  • 4.4. Very large mammals are protected against renal loss of iodide due to the relatively low GFR.
  • 5.5. Thyroid weights in relation to body weight were highest in humans suggesting that humans and other mammals of a similar size are especially susceptible to iodine deficiency.
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19.
  • 1.1. The entire oxygen dissociation curve (ODC) and the effects of temperature, pH and 2,3-diphosphoglycerate (DPG) on this curve, have been compared in four mammalians: man, dog, horse and cattle.
  • 2.2. If the oxyphoric capacities are similar between these species (around 1.39ml O2/gHb), their P50, measured in standard conditions, i.e. at pH 7.4;.pCO2 40mmHg and T 37°C, varies between 23.8 (± 0.8) mmHg for the horse, 25.0 (± 1.4) mmHg for cattle, 26.6 (± 1.2) for man and 28.8 (± 2.6) mmHg for the dog.
  • 3.3. The higher dispersion of the dog's P50 is due to difference between breeds; in seven breeds investigated, the P50 ranges from 25.8 (spaniel) to 35.8 (hound).
  • 4.4. We noted no sex difference in the four species.
  • 5.5. The DPG level is confirmed to be low in cattle (< 1 μmol/gHb) as compared to man (13.5 ± 2.1 gmmol/gHb), horse (16.9 ± 1.1 gmmol/gHb) and dog (19.4 ± 2.8 μmol/gHb).
  • 6.6. The oxygen exchange fraction defined as the difference in vol% between a pO2 of 80 and 35 mmHg is, respectively, 3.6 (± 0.6) vol% for cattle, 4.0 (0.4) vol% for the horse, 5.5 (± 0.5) vol% for man and 6.6 (± 1.7) vol% for the dog.
  • 7.7. The position and shape of the ODC, as well as T, DPG and pH effects, indicate that the haemoglobin of man and dog seem better adapted to O2 delivery as compared to the horse and cattle.
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20.
  • 1.1. Heliothis zea (Boddie) larvae infected with irridescent virus (IV) showed rapid cell dissolution in the fat bodies.
  • 2.2. Fatty acid accumulation in healthy H. zea was significantly greater (P < 0.001) than in IV-infected larvae.
  • 3.3. Healthy and IV-infected larvae accumulated glycogen at a rate of 3.86 cal and 0.19 cal/day/insect, respectively.
  • 4.4. Total protein of healthy and IV-infected larvae showed no significant difference with time.
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