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Biomedical subjects

K Olsson

Publications and source records attributed to K Olsson.

At least 91 records · Page 5Linked to original sources

Effects of intraruminal loads of saline or water followed by voluntary drinking in the dehydrated lactating goat.

In five goats water deprivation for 26 h increased plasma osmolality, total plasma protein concentration, and plasma vasopressin (AVP) concentration to higher levels during lactation compared to nonlactation. At the end of the dehydration period intraruminal loads of saline or water (corresponding to 50% of the body weight loss) were given to lactating goats. The saline load decreased the plasma protein concentration below control levels, while plasma osmolality, Na concentration and AVP did not change. After the water load the plasma protein concentration stayed elevated. Plasma osmolality, Na concentration and AVP fell, but remained significantly above control levels. Both plasma renin activity (PRA) and aldosterone (PA) concentration increased after water, but decreased after saline administration. Three hours after the fluid loads the goats were offered water to drink. AVP decreased at the sight of water. After drinking, plasma osmolality, Na and AVP continued to decrease in water loaded animals, and fell also in saline loaded goats. PRA remained elevated, and PA increased in water loaded goats, while these hormones still were depressed in saline loaded goats. Mean renal 'free water clearance' became positive after drinking in both groups. It is concluded that the water losses with the milk cause lactating goats to become dehydrated more rapidly than non-lactating goats during water deprivation. Lowering of the plasma osmolality and Na concentration are more important than restoration of the plasma volume in suppressing the high plasma AVP concentration in the dehydrated lactating goat. The water diuresis, which occurred after voluntary drinking, indicates that the goats had not been able to anticipate their water deficit accurately.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Effects of acute haemorrhagic hypotension during pregnancy and lactation in conscious goats.

Effects of acute, short-lasting haemorrhage have been studied in six goats. The experiments were made 55 +/- 3 days (mid-pregnancy = MP), and 24 +/- 2 days (late pregnancy = LP) before parturition, in lactation weeks 3-8, and in the non-pregnant, non-lactating (= control) period. The room temperature was kept at 20 +/- 1 degrees C, except during one experimental series in lactating goats, which was performed at +30 degrees C. Approximately the same volume of blood had been removed in all periods, when the mean arterial blood pressure (MAP) fell. At this moment bleeding was stopped. The volume loss, calculated as per cent of total blood volume, was significantly smaller during pregnancy and lactation than in the control period. The fastest heart rate, both at rest and during haemorrhage, was observed in LP goats. The respiratory frequency of the LP goats increased markedly in response to haemorrhage, but the most rapid respiratory rate was observed in lactating goats bled at the room temperature +30 degrees C. The increase in plasma vasopressin (AVP) concentration coincided with the fall in MAP. The AVP rise seen during late pregnancy was significantly higher than in all the other periods. The plasma noradrenaline (NA) concentration increased by about five times in LP goats, but did not change significantly in the other periods. Plasma renin activity did not rise, with the exception of a small increase in lactating goats bled at +30 degrees C. The plasma aldosterone concentration rose, but there was no difference between periods.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Blood pressure response to angiotensin II in pregnant and lactating goats maintained on high or low sodium intake.

Goats were kept on either high (274 mmol day-1) or low (68 mmol day-1) sodium intake during pregnancy, lactation, and anoestrus. High salt (HS) animals had about three times greater renal Na excretion than low salt (LS) animals, but the differences in plasma volume, protein concentration, and haematocrit were generally not significant. Angiotensin II (AII) was infused intravenously for 28-min periods in doses of 0.30, 0.75, or 1.00 nmol min-1. The increase in mean arterial blood pressure (MAP) during AII infusions was greater in HS than in LS goats, but became attenuated in all animals during the course of the pregnancy. In LS goats the MAP rise was smaller in late pregnancy than during lactation and anoestrus. In HS goats the rise in MAP was exaggerated in early pregnancy and was similar to lactation and anoestrus values in late pregnancy. During lactation and anoestrus the goats showed similar MAP increase in response to AII infusions. The pulse pressure was greater during AII infusions performed in early pregnancy, lactation and anoestrus than in late pregnancy. Cardiac arrhythmias were noted during AII infusions, most frequently during lactation and in HS goats in early pregnancy. The results show that a moderately elevated sodium intake causes a significantly higher MAP increase in response to AII infusions during pregnancy. This abolishes the reduction of the MAP increase to AII infusions during late pregnancy as compared to anoestrus; a phenomenon which is observed in goats on a low sodium intake.

Anestrus↗

Renal and hormonal responses to atrial natriuretic peptide infusions in goats on high and low sodium intake.

Synthetic atrial natriuretic peptide (ANP) was infused intravenously (1 microgram min-1; 60 min) in five goats during two series of experiments. For at least 4 weeks before the ANP infusions the goats received either no salt supplementation (= low sodium diet), or were given 16 g NaCl mixed with the food each day (Na = 274 mmol day-1; high sodium intake). The goats were changed between the treatments at random. ANP infusions caused diuresis, natriuresis and haemoconcentration during both diets. The urinary Na excretion increased about four-fold during the high sodium intake, and about 10 times during the low sodium intake. The urinary K excretion increased significantly during the low sodium diet, but decreased slightly during the high sodium intake. During both diets the K excretion became significantly lowered after the infusions. The mean glomerular filtration rate (GFR) was generally lower during the low sodium diet, but increased significantly during ANP infusions on both diets. The GFR returned to baseline immediately after the infusions, in contrast to urine flow and urinary Na excretion. Renal free water clearance increased slightly at the end of the infusion during the low sodium diet, but did not change during the high salt diet. Plasma renin activity (PRA) and plasma aldosterone concentration fell during ANP infusions in goats on the low sodium intake, but did not change significantly during the high sodium diet. These results indicate that the diuresis and natriuresis observed during intravenous ANP infusions in goats are mainly due to increased GFR.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Formation of 4,8-DiMeIQx from the model system fructose, alanine and creatinine. Comparison with the isomeric 5,8-DiMeIQx.

In a previous paper, the main mutagenic compound isolated from the model reaction system D-fructose, DL-alanine and creatinine was tentatively identified as 4,8-DiMeIQx. Its mutagenic activity and spectral characteristics have now been compared with those of the isomer 5,8-DiMeIQx. The comparison clearly demonstrates that the isolated compound was indeed 4,8-DiMeIQx. This finding is in agreement with the hypothesis that sugars, amino acids and creatinine present in meat may be the precursors of the mutagenic imidazoquinolin- and imidazoquinoxalin-2-amines (IQ compounds).

Alanine↗

Formation of a new mutagenic DiMeIQx compound in a model system by heating creatinine, alanine and fructose.

A mixture of creatinine, D-fructose and DL-alanine was heated in diethylene glycol containing 14% water for 2 h at ca. 128 degrees C. The mutagens formed were extracted with 1-butanol, and purified by cation-exchange column chromatography, C18 reversed-phase Sep-Pak treatment and reversed-phase HPLC. According to its UV absorption, mass and 1H NMR spectra, one isolated fraction was tentatively assigned the chemical name, 3,4,8-trimethyl-3H-imidazo[4,5-f]quinoxalin-2-amine (4,8-DiMeIQx). This finding is in agreement with the suggestion that sugars, amino acids and creatinine present in meat may be the precursors of the mutagenic imidazoquinolin- and imidazoquinoxalin-2-amines (IQ compounds).

Alanine↗

Effects of a synthetic vasopressin analogue (desmopressin) in pregnant, lactating and anoestral goats.

The effects of the long-acting synthetic vasopressin analogue desmopressin (dose 2 X 2 micrograms day-1 for two days) were investigated in pregnant, lactating and anoestral goats. Urine flow fell and urine osmolality increased in all experiments. However, pregnant goats continued to drink the same volumes of water each day with the result that the ratio of water intake/urine output increased markedly and the plasma osmolality fell. The results support the hypothesis that the regulation of water intake is changed during pregnancy and that pregnant goats have a lowered sensitivity to signals that normally inhibit water consumption. In lactating goats, milk secretion was not affected by desmopressin. The animals did not drink enough to compensate for the water losses in milk and urine, but more than was needed to cover the water losses in the urine. The plasma osmolality decreased slightly. It appears as if the mechanisms involved in the control of water balance are not sufficiently adapted to take water losses via the milk into account, if the animals are subjected to challenges. In anoestral animals, the water balance was maintained during desmopressin injections. The renal sodium excretion did not change, but the renal potassium excretion decreased in pregnant and lactating goats in response to desmopressin.

Anestrus↗

An improved synthesis of 3,8-dimethyl-3H-imidazo[4,5-f]quinoxalin-2-amine ("MeIQx") and its 2-14C-labelled analogue.

The highly mutagenic title compound (MeIQx) was prepared in 21% overall yield from 4-fluoro-o-phenylenediamine. The 3,7-dimethyl isomer may be obtained as a minor by-product. The 14C-label was introduced in the last step through cyclization with [14C]cyanogen bromide. An alternative synthesis of MeIQx from p-fluoroaniline avoided the separation of isomers but gave poorer yield.

Chemical Phenomena↗

Effects of meat composition and cooking conditions on the formation of mutagenic imidazoquinoxalines (MeIQx and its methyl derivatives).

In recent years it has been shown that certain methyl derivatives of 3H-imidazo[4,5-f]quinoxaline-2-amine are responsible for a major part of the mutagenicity formed during frying, broiling or baking of meat, and also formed in the preparation of meat extracts. The present study describes the precursors of these compounds and their formation with participation of Maillard or nonenzymatic browning reactions. The formation of these IQ-type mutagens was shown to occur when model systems of creatin(in)e, reducing monosaccharides, and certain amino acids were heated at 128 degrees C for 2 hr. In meat experiments, the mutagenicity was found to be significantly correlated with the presence of creatin(in)e in the meat samples. The same conditions that are favorable for Maillard reactions, such as supply of starting materials, high temperature, and a suitable water concentration, also increased the yield of mutagenicity during cooking. Fats seemed to act as regulators of the amount of heat transferred into the product rather than as reactants in the formation of mutagenicity.

Amino Acids↗

Computer-based analysis of the single chewing cycle during mastication in repeated registrations.

A new computer-based analysis of the single chewing cycle was described as a complement to the Selspot system used for recording mandibular movements. Fifteen adults took part in a clinical investigation of masticatory movements recorded in two sessions with an interval of about 4 weeks. The analysis of the single cycle was performed in regard to chewing rhythm, mandibular displacement, and velocity; the results showed agreement with earlier published results. Most parameters showed agreement between the two registrations, but there was an indication of a weak adaptation to the test situation that should not be disregarded in repeated test situations.

Adult↗

Formation of 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline in a model system by heating creatinine, glycine and glucose.

A mixture of creatinine, glucose and glycine was heated in diethylene glycol containing 14% water for 2 h at 128 degrees C, and the mutagens formed were purified by XAD-2 column chromatography, acid-base partition, Sephadex LH-20 column chromatography, 'blue cotton' treatment and HPLC. Two mutagenic substances were isolated by HPLC. The major mutagen was identified by its UV absorption and mass and NMR spectra as 2-amino-3,8- dimethylimidazo [4,5-f]quinoxaline, which was originally isolated from fried beef. This finding supported the idea that creatinine, amino acids and sugars present in meat are precursors in the formation of the mutagenic imidazoquinoxaline derivative.

Chemical Phenomena↗

Homeostatic responses to water deprivation or hemorrhage in lactating and non-lactating Bedouin goats.

Three lactating and three non-lactating black Bedouin goats were subjected to four days of water deprivation or to hemorrhage. Four days of water deprivation caused body wt losses of 32 and 23% and plasma volume losses of 30 and 34% in lactating and non-lactating goats respectively. Plasma osmolality increased 17 and 15% in lactating and non-lactating goats. Plasma arginine vasopressin concentration rose from about 5 pg/ml to a mean of 36 pg/ml. Plasma renin activity increased from about 0.7 ng/ml/hr to a mean of 3.45 ng/ml/hr in lactating and to 3.15 ng/ml/hr in non-lactating goats. At 4.5 hr post-rehydration plasma osmolality and plasma vasopressin concentration were back to normal in non-lactating, but still elevated in lactating goats. Plasma renin activity increased after rehydration. Rapid blood volume loss of 21-28% increased plasma vasopressin concentration to 16-35 pg/ml in non-lactating and to 70 or greater than 500 pg/ml in lactating goats. It is concluded that black Bedouin goats are well adapted to endure severe dehydration and rapid rehydration, but that they (especially lactating animals) react strongly to rapid volume depletion.

Animals↗