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1.
  • 1.1. The resistance of sub-tropical horses, and desert-dwelling horses to 72 hr dehydration/24 hr rehydration was investigated via changes in red cell parameters and plasma protein concentration.
  • 2.2. Red cell count, haemoglobin and haematocrit increased up to 48 hr dehydration. Between 48 and 72 hr dehydration these parameters decreased, implying a fluid shift onto the intravascular space from the interstitium/hindgut. Most parameters had regained baseline values by 24 hr rehydration.
  • 3.3. Mean cell volume, mean cell haemoglobin, mean cell haemoglobin concentration and total plasma protein were not significantly different between breeds at, or between most stages of hydration.
  • 4.4. Protection of plasma volume during dehydration/rehydration was aided by maintaining intravascular protein (especially albumin) levels. Red cells were transiently dehydrated and overhydrated but resisted osmolysis.
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2.
  • 1.1. Glucose entry rate was measured in two camels (Camelus dromedarius) and two sheep (Ovis wies) in the fed state and also after 72 hr of fasting.
  • 2.2. Plasma glucose concentration in the fed camels (129 mg/100 ml) was considerably higher than that of the fed sheep (63 mg/100 ml).
  • 3.3. The mean glucose entry rate in the fed camels (1.67mg/min per kg body wt) was very similar to the sheep (1.79 mg/min per kg body wt).
  • 4.4. When the results were expressed as a function of the metabolic body size, the entry rates in the camel were 1.5 times greater than that of the sheep.
  • 5.5. The relationship between glucose entry rate and plasma glucose concentration in different mammalian species is discussed.
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3.
  • 1.1. Starving Notothenia coriiceps nn/lecta at 1°C for 20 days resulted in a loss of 4.22 gcal/kcal per day.
  • 2.2. During starvation energy was obtained from lipid and carbohydrate stores of the liver and red muscle.
  • 3.3. Feeding N. coriiceps neglecta low lipid, high protein shrimp meat at 18.9 gcal/kcal per day at 1°C for 20 days resulted in a gain of 8.5 gcal/kcal per day.
  • 4.4. The level of carbohydrate in the liver and red muscle increased five times.
  • 5.5. Gross growth efficiency (K1) equalled 0.52.
  • 6.6. Net growth efficiency (K2) equalled 0.67.
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4.
  • 1.1. The feeding of 0.5% (3,5,5-trimethylhexanoyl)ferrocene (TMH-ferrocene) in rats resulted in a severe and progressive liver siderosis (total liver iron, 30 mg/g liver wet weight, after 30 weeks).
  • 2.2. High concentrations of an iron-rich ferritin (up to 250 mg/l) were detected in serum of heavily iron-loaded rats forming a large fraction of non-transferrin-bound-iron (5000 μg/dl in maximum).
  • 3.3. Ferritin and not haemosiderin was the major iron storage protein in the liver.
  • 4.4. The total liver iron concentration (from 0.4 to > 30 mg Fe/g wet wt) but not the cytosolic low-molecular-weight-iron fraction (from 0.5 to 2.5 μM) was extremely increased during iron-loading.
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5.
  • 1.1. Glucose utilization was measured in human, pig, cow, rabbit, mouse and rat red blood cells. Mean values are variable from species to species and range from 0.27 μmol/hr/ml RBC for pig erythrocytes to 2.85 μmol/hr/ml RBC in mouse red cells.
  • 2.2. The amount of glucose metabolized through the pentose phosphate pathway ranges from 2.1 to 7.0% of the total glucose utilized.
  • 3.3. Variable recycling values have been obtained for the red blood cells of the species studied but with the exception of mouse (14 nmol/hr/ml RBC) all the other values do not show great differences.
  • 4.4. The hexokinase levels of the erythrocytes studied when correlated with the glucose utilization and the pentose phosphate pathway show that this enzyme could play a central role in the regulation of glucose metabolism.
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6.
  • 1.1. Polyethyleneglycol-modified bovine adenosine deaminase was administered (10–20 U/kg/week) intramuscularly to two opossums for 15 weeks and changes in red cell adenine ribo- and deoxyribonucleotides quantitated by HPLC.
  • 2.2. Only a moderate decline of erythrocyte dAXP was observed at the end of the study when compared to results of enzyme replacement seen in human adenosine deaminase deficient patients.
  • 3.3. Opossum red cells salvage substantial amounts of deoxyadenosine provided in physiologic (50 nM) concentration from plasma having either low or high adenosine deaminase activity.
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7.
  • 1.1. The concentrations of echinochrome-A in coelomic fluid from healthy specimens of the sea urchin Echinus esculentus (L.) ranged from 3 to 60 μg/ml, with a geometric mean of 14 μg/ml.
  • 2.2. Echinochrome-A (50 μg/ml) dissolved in sea water, with the aid of mammalian proteins as dispersants, was bactericidal or bacteriostatic towards six out of seven strains of marine gram-negative and gram-positive bacteria.
  • 3.3. Echinochrome-A is suggested as a major factor in the bactericidal activity of coelomic fluid from E. esculentus.
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8.
  • 1.1. The mean concentration of total hemolymph iron was 3060μg/100 ml in Patella peronii and 2950μg/100 ml in Patelloida alticostata.
  • 2.2. Ferritin was found to act as a major iron-binding protein in the hemolymph of both P. peronii and P. alticostata.
  • 3.3. P. alticostata ferritin has a molecular weight of approximately 505,000, while that of P. peronii has a mol wt. of approximately 520,000.
  • 4.4. The lateral radula teeth of both species are mineralized by deposits of silica (SiO2) and iron in the form of goethite (α-FeOOH).
  • 5.5. Hemolymph ferritin is suggested to act as a high capacity transport system to supply iron to the mineralizing front of the radula.
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9.
  • 1.1. Haemoglobin was labelled in vivo in normal mice and in mice with iron deficiency anaemia due to the X-linked gene mutation, sla.
  • 2.2. Two main red cell populations are found in normal mice, one subject to accelerated destruction and the second with a longer finite life span.
  • 3.3. In iron deficient sla / Y mice, haem and globin labelling indicate random haemolysis and shortened red cell survival.
  • 4.4. Specific activity curves of faecal urobilinogen show complex “early” labelling patterns. They confirm mean red cell survival in both normal and anaemic mice. and indicate increased ineffective erythropoiesis in the sla/Y animals with iron deficiency.
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10.
  • 1.1. A variety of haematological parameters were determined in adult Dasyurus viverrinus.
  • 2.2. Haemoglobin and red cell counts were high with a very low mean cell volume.
  • 3.3. Basophils are absent but the eosinophils contain small numbers of basophilic granules which may indicate a dual role for this cell.
  • 4.4. “Ring Form” leucocytes are present.
  • 5.5. Three types of red cell picture could be identified, some animals showing large numbers of spherocytes, spicule cells, and inclusion bodies.
  • 6.6. These cells resemble those found in some inherited human haemolytic anaemias but there was no evidence of haemolysis in the animals.
  • 7.7. An alkali resistant haemoglobin component is present.
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11.
  • 1.1. Freshwater nonanadromous rainbow trout, Salmo gairdneri, were injected three times a week with either saline, 10μg cortisol/g, 1.0μg thyroxine/g or 10μg cortisol/g + 1.0μg thyroxine/g during a period of 28 days (12 injections). A separate group was derived as a subgroup from the thyroxine group on day 14 and received Cortisol + thyroxine from day 14 until day 28 (six injections).
  • 2.2. Gill chloride cell number and Na+/K+-ATPase activity increased by cortisol treatment, the changes being significant on days 7 and 14, respectively.
  • 3.3. Thyroxine treatment did not affect gill Na+/K+-ATPase activity or chloride cell number directly. Neither did it modify the stimulatory effect of cortisol on these parameters.
  • 4.4. Muscle water decreased in cortisol-treated fish and increased in thyroxine-treated fish, while no changes were observed in the combined hormone groups.
  • 5.5. No changes were observed in plasma chloride in any group during the experiment.
  • 6.6. The results demonstrate a putative role of cortisol in stimulating hypo-osmoregulatory mechanisms and suggest that thyroxine is without a direct or a supportive effect for cortisol action.
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12.
  • 1.1. A novel glycogen phosphorylase inhibitor was partially purified from crayfish hepatopancreas.
  • 2.2. The inhibitor was found only in two species of crayfish examined, and not in lobster, fresh and salt water clams, mussels or cockroaches.
  • 3.3. The inhibitor is a small protein (Mr = 23,000) which did not show proteolytic activity.
  • 4.4. Preliminary kinetic analysis of the inhibitory mechanism indicated that it bound to both glycogen and the glycogen phosphorylase protein.
  • 5.5. Inhibitor binding to glycogen resulted in a competitive inhibition pattern with respect to glycogen phosphorylase (inhibition constant of ca 10 μg/ml).
  • 6.6. The inhibitor also bound glycogen phosphorylase directly with a binding coefficient of 100 μg/ml resulting in a partially non-competitive inhibition pattern with respect to phosphate.
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13.
  • 1.1. The taurine content of erythrocytes from 15 avian species contained levels of taurine in the range of 20–70 mmol/kg of hemoglobin, about 100-fold that of mammalian red blood cells.
  • 2.2. This high taurine content did not appear to be related to the nucleation of these cells as nucleated amphibian erythrocytes and human reticulocytes contained low levels.
  • 3.3. The erythrocytes lacked cysteine sulfinic acid decarboxylase, a key enzyme in the synthesis of taurine from cysteine, indicating a probable lack of synthetic capabilities.
  • 4.4. The cells were able to accumulate labeled taurine against a concentration gradient. This uptake was inhibited by β-alanine and was Na+-dependent.
  • 5.5. When incubated in hypotonic medium, the cell volume of pigeon erythrocytes rapidly increased and was followed by a much slower return to normal size. The cell volume reduction was accompanied by a slow efflux of taurine into the medium.
  • 6.6. These data suggest that taurine plays a role in cell volume maintenance and osmotic regulation in avian erythrocytes.
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14.
  • 1.1. Aerobic glucose disposal in starved oysters exposed to 1 mM external glucose was 2.29 μg C/g wet wt/min.
  • 2.2. It was hypothesized that the maximum disposal rate is limited by the maximum rate of transepithelial glucose transport.
  • 3.3. The major recipients of glucose-carbon were glycogen and amino acids. 4. The rate of glucose-carbon disposal to these two pools was 0.80 and 0.42 μg C/g/min, respectively.
  • 4.5. The internal energy state determines the pathways of glucose disposal.
  • 5.6. Disposal of glucose-carbon in “glucose-primed” oysters is primarily into glycogen.
  • 6.7. In fasted bivalves the disposal is primarily into amino acids and carboxylic acids.
  • 7.8. The uptake of dissolved glucose has the potential of contributing significantly to growth under conditions where the external glucose concentration is kept artificially high.
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15.
  • 1.1. Total body water volume (TBWV) and daily water turnover rates (WTR) were measured in nestling and adult zebra finches using tritiated water (TOH).
  • 2.2. TBWV and daily WTR increased with age up to 13 days post hatching.
  • 3.3. TBWV and WTR approached adult levels after 13 days of age. WTR varied among ages and nest mates. All nestlings turned over at least 50% of their body water pool per day.
  • 4.4. The WTR data for adult birds are consistent with natural history data suggesting zebra finches are dependent on water for breeding and survival.
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16.
  • 1.1. Renal function in migrating adult Atlantic salmon was studied in sea-water (SW) and following abrupt transfer to fresh water (FW).
  • 2.2. Urine flow rate of SW-adapted fish, 0.72 ml/kg/hr, increased 6.3-fold to 4.55 ml/kg/hr after 2–3 days in FW, later decreasing to around 1 ml/kg/hr.
  • 3.3. Changes in glomerular filtration rate and ion filtration rates largely paralleled changes in urine flow. In SW-adapted salmon about 4% of excreted magnesium is filtered. Tubular magnesium secretion declined within 1 day of FW transfer.
  • 4.4. During the period of maximum diuresis, urinary sodium loss is 77% of the branchial sodium uptake rate. This falls to less than 20% in FW-adapted fish.
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17.
  • 1.1. Water efflux and urine production rates were measured in blue crabs acclimated to several salinities.
  • 2.2. In 100% seawater the mean rate of water efflux (31.3 ml/100g hr−1) was significantly greater than that in 50% seawater (18.9 ml/100 g hr−1.
  • 3.3. Water efflux was directly related to body weight.
  • 4.4. The mean urine production rate was significantly greater in crabs acclimated to 50% and 30% seawater (0.17 and 0.18 ml/100g hr−1) than in animals conditioned to 100% seawater (0.09 ml/100 g hr−1).
  • 5.5. The difference between theoretical net water fluxes for crabs exposed to 100% seawater and 50% seawater was similar to the difference in urine output in the same salinities, demonstrating the importance of the antennal gland in volume regulation.
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18.
  • 1.1. In pigs (Sus scrofa) exposed to hyperthermic conditions, when the rectal temperature rose from 38.9–42.3°C. plasma antidiuretic hormone (ADH) increased from 0.8 μU/ml to 11.4 μU/ml; arterial pressure, blood oxygen saturation and haematocrit increased and Pco, fell.
  • 2.2. On three occasions out of six attempts, a large infusion of saline or dextran into the superior vena Cava during the rise of body temperature suppressed the expected rise of plasma ADH.
  • 3.3. Forced ventilation of anaesthetized normothermic pigs elicited a similar rise in circulating ADH.
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19.
  • 1.1. Post-feeding hypoglycemia, an unknown phenomenon in wild raptors, was studied in a central nervous system (CNS) damaged American kestrel, Falco sparverius Linnaeus.
  • 2.2. Beef chunk ingestion (200 g/kg BW) produced symptomatic hypoglycemia (45–60 min) which was accompanied by prolonged decreases (240 min) in plasma glucose and increased plasma levels (60 min) of an immunoreactive component (IC) believed to be insulin.
  • 3.3. Beef chunk-induced hypoglycemia and increases in plasma IC levels were blocked by atropine (0.02 mg/kg) pre-treatment.
  • 4.4. Oral glucose loading (1 g/kg) also produced symptomatic hypoglycemia (30–40 min), but of shorter duration (90 min), with corresponding changes in plasma glucose and 1C levels but these responses were not blocked by atropine.
  • 5.5. Data suggest that insulin secretion was stimulated via indirect (vagal) and direct (blood glucose) routes and that post-feeding hypoglycemia resulted primarily from deranged CNS-associated mechanisms (hypothalamic, possibly pituitary) which control catabolic hormone release, endogenous glucose production and consequently, plasma glucose levels.
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20.
  • 1.1. The level of carbonic anhydrase activity in the red cells was measured in sheep fetuses at different times after conception: 39, 56, 77, 90 and 140 days, the last being close to full term. Measurements were also made on blood from four of the mothers.
  • 2.2. There was a low level of the enzyme present in the 39 day fetuses (0.037 enzyme units (E.U.)/100 μg Hb) and its increase up to 90 days of gestation (0.19 E.U./100 μg Hb) had a form approximating exponential.
  • 3.3. The earliest levels were only 11% of the full term levels and only 4% of the adult levels previously reported.
  • 4.4. Even the earliest samples were of blood that was fetal rather than embryonic but these results are the earliest carbonic anhydrase activities reported in this mammal.
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