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Biomedical subjects

J Linkola

Publications and source records attributed to J Linkola.

At least 19 recordsLinked to original sources

Renin-aldosterone axis in ethanol intoxication: effect of A II infusion.

Plasma renin activity (PRA) is increased while plasma aldosterone is not, during moderate ethanol intoxication. To elucidate mechanisms behind this dissociation of renin-aldosterone nexus, six healthy males were given angiotensin II (4 ng kg-1 min-1) by i.v. infusion following ingestion of ethanol (1.2 g kg-1 body weight). Prior to angiotensin II (A II) infusion, PRA rose and plasma aldosterone declined. A II infusion caused a roughly 3-fold increase of plasma aldosterone both in ethanol intoxication and in control experiments, and a transient suppression of PRA. Plasma renin substrate, cortisol, and angiotensin converting enzyme (ACE) remained unchanged. The decrease of serum potassium or the rise of Na+/K+ ratio in ethanol intoxication may explain the failure of the adrenal cortex to respond with aldosterone release to endogenous angiotensin II. However, the pressor dose of A II infused obviously overcame the blunting effect of ethanol on aldosterone release previously reported by us. Blood pressure, both diastolic and systolic, increased similarly during ethanol and control experiments in response to A II infusion, except in one subject, who during ethanol intoxication experienced a paradoxical fall in blood pressure while reacting normally to A II infusion without ethanol.

Adrenal Cortex↗

Time-courses of hepatocellular hyperpolarization and cyclic adenosine 3',5'-monophosphate accumulation after partial hepatectomy in the rat. Effects of fasting for 48 hours and intravenous injection of glucose.

Hepatic cell membrane potentials, hepatic cyclic adenosine 3',5'-monophosphate concentrations, and blood glucose levels were measured in anesthetized rats before, and at various times after, partial hepatectomy. In fed rats, hyperpolarization became evident 1-3 h postoperatively, reached its first peak at 4 h, and was maintained for approximately 36 h. The early phase of hyperpolarization was preceded by depletion of glycogen from the liver remnant and occurred during a decline of blood glucose concentrations below the level in sham-operated rats. Preoperative exhaustion of glycogen stores by fasting for 48 h resulted in marked hyperpolarization within 15 min after partial hepatectomy. In fasted rats, an intravenous injection of glucose (10 mmol X kg-1) caused a delay in hyperpolarization when given 30 min before partial hepatectomy, or a transient normalization of the membrane potentials when given 30 min after partial hepatectomy. Liver tissue cyclic adenosine 3',5'-monophosphate concentrations in fed rats remained largely unchanged 2 h after partial hepatectomy but increased greatly at 4 h. On the other hand, in fasted rats a significant increase was seen within 30 min. Glucose administration to fasted rats depressed cyclic adenosine 3',5'-monophosphate concentrations in the liver remnant. The results suggest that intensified gluconeogenesis, partly mediated by cyclic adenosine 3',5'-monophosphate, could be the event underlying early hepatocellular hyperpolarization induced by partial hepatectomy.

Animals↗

Effect of xylitol and other carbon sources on the cell wall of Streptococcus mutans.

Transferring actively growing bacteria of Streptococcus mutans ATCC 27351 into a xylitol-containing reaction mixture caused distinct alterations in bacterial ultrastructure without notable effect on the total viability of the strain. Incubations in media containing 50 mg/ml of glucose, fructose, sucrose, lactose, sorbitol or mannitol as the primary carbon source did not affect bacterial ultrastructure. These fermentations were reflected biochemically in the amounts of insoluble glucans, as expected. A negative correlation was found between the cell mass and the lipoteichoic acid formation. But these aspects could not be visualized in the electron microscope. In the xylitol series, however, degrading cells and autolysis, intracellular vacuoles and lamellated formations in the cytoplasmic membrane were frequently seen independent of the concentration of xylitol in the reaction mixtures. In freeze-fracturing replicas, however, the membrane intercalated particles of the cytoplasmic membranes seemed to be unaffected and like those in the controls. Minor ultrastructural changes in the fracture-faces were detected. Despite the alterations in ultrastructure of the xylitol-incubated bacteria, there was no difference in their viability when compared to the controls.

Carbohydrates↗

Renin-aldosterone axis in ethanol intoxication: effect of an ADH analogue (desaminocys1-D-arg8-vasopressin, DDAVP).

Plasma renin activity (PRA) is stimulated and renin-aldosterone nexus is broken in acute ethanol intoxication. Serial changes in renin-aldosterone axis were studied in five healthy males during moderate ethanol intoxication, while alcohol diuresis was prevented by 20 micrograms of an antidiuretic hormone analogue, desaminocys1-D-arg8-vasopressin (DDAVP), administered intranasally. The experiment was performed with the subject supine, and the amount of ethanol taken p.o., at a steady rate in 90 min, was 1.2 g/kg body weight, diluted with juice to 20 vol% solution. DDAVP prevented the stimulation of PRA, suggesting that dehydration due to alcohol diuresis is the main reason for this phenomenon during ethanol intoxication. However, there still was a dissociation between PRA and aldosterone, which may be caused by increased serum Na+/K+ ratio or an inhibitory action of ethanol on aldosterone secretion.

Adult↗

Renin-aldosterone axis in ethanol intoxication.

The effect of acute moderate ethanol intoxication on renin-aldosterone axis was studied in four healthy humans in normal sodium and water balance. The subjects drank ethanol 1.2 g/kg body weight during 90 minutes. A dissociation between plasma renin activity (PRA) and plasma aldosterone took place; PRA increased (p less than 0.001) and aldosterone showed a decreasing trend, which was not significant. Serum Na+/K+-ratio increased (p less than 0.001). We observed no significant change in serum osmolality, blood pressure nor heart rate. The increase (p less than 0.001). We observed no significant change in serum osmolality, blood pressure nor heart rate. The increase in PRA was probably caused primarily by dehydration due to ethanol diuresis. The dissociation between plasma aldosterone and PRA may be associated with increasing serum Na+/K+-ratio or an inhibitory action of ethanol on aldosterone secretion.

Adult↗

Plasma vasopressin concentration and renin in the rat: effect of hydration and hemorrhage.

In order to investigate effects of hydration state, different techniques of collecting blood samples, and of acute, stepwise hemorrhage, we studied plasma vasopressin (AVP) concentration, and plasma renin activity (PRA) in 80 female Wistar rats. Plasma AVP was decreased following hydration with 10 ml of water (1.0 +/- 0.3 pg/ml, mean +/- S.E.M.) as compared to controls (6.1 +/- 2.0 pg/ml), while withdrawal of water for 48 hours stimulated AVP release (29 +/- 8 pg/ml). AVP values in jugular venous blood during light ether anesthesia (9.6 +/- 4 pg/ml) were slightly higher than in trunk blood following decapitation (2.7 +/- 0.7 pg/ml). There was no effect of sham gastric lavage on AVP. PRA was slightly increased in trunk blood and in jugular venous blood following ether anesthesia, and 5-fold increased following 48 h of water withdrawal. In aortic blood obtained during ether anesthesia, AVP-levels were 12- to 560-fold those in control trunk blood. Rapid hemorrhage, 2.0 ml stepwise, resulted in corresponding increases of AVP blood concentration, presumably due to hypothalamohypophyseal ischemia. PRA values showed a similar, albeit less pronounced increase. These results show the importance of controlling conditions of blood sample collection for AVP and PRA analysis, and demonstrate massive release of AVP in response to acute hemorrhage. The amount of AVP released is well about the threshold for pressor activity, and may be of importance in vasoconstrictive adaptation to acute hypovolemic hypotension.

Anesthesia↗

Renin, water drinking, walt preference and blood pressure in alcohol preferring and alcohol avoiding rats.

Mechanisms controlling fluid volume were studied in alcohol preferring AA (Alko, Alcohol) and alcohol avoiding ANA (Alko, Non-Alcohol) rats. Hypertonic sodium chloride solution (5%) given orally caused a higher dipsogenic response in AA rats than in the ANA's. One hour after ethanol loading (4.8 g/kg, by stomach tube), plasma renin activity of AA rats was four times as high as in ANA rats. ANA rats had higher degree of sodium chloride (0.9%) preference and higher blood pressure. The strain differences in voluntary salt intake and salt metabolism may modulate the consumption of calories and water as well as blood pressure and different reactivity of the renin system in AA and ANA rats.

Alcohol Drinking↗

Non-specific cyclic nucleotide binding in leukemic leukocytes.

Extracts of leukemic lymphocytes and leukemic myelomonocytic cells bind significantly more cAMP/mg protein than do normal cells. The binding of cAMP in leukemic cells is non-specific since the binders are unable to effectively discriminate between cAMP and cGMP in contrast to normal cells. When normal lymphocytes are activated in vitro with mitogens, their cAMP-binding capacity is increased, but the binding retains the specificity of normal cells. Thus in malignantly transformed leukocytes, cAMP-binding is characterized by a high degree of non-specificity, compared with the binding in resting or proliferating normal leukocytes.

Cyclic AMP↗

Renin, aldosterone and cortisol during ethanol intoxication and hangover.

The effect of ethanol intoxication and hangover on plasma renin activity (PRA), plasma aldosterone (PA) and plasma cortisol (PC) concentrations was studied in 7 healthy supine men in controlled clinical conditions during 18 h beginning at 6 p.m. Large individual variation was observed in the response of PRA, PA and PC to ethanol. Following ethanol, stimulation of PRA was observed at the 14th and the 16th hour (P less than 0.05), of PA at the 4th and the 6th hour (P less than 0.01 and P less than 0.05, respectively) and of PC at the 4th and the 14th hour (P less than 0.01 and P less than 0.05, respectively). Ethanol ingestion suppressed PC during the first hour (P less than 0.02). Water ingestion at 8 a.m. suppressed PA between the 14th and the 16th hour (8-10 a.m.) in control and ethanol experiment (P less than 0.01 and P less than 0.005, respectively). There was a dissociation between PRA and PA, but intra-individually PRA and PA correlated fairly or well. Plasma arginine vasopressin (AVP) and PC were also significantly correlated. The results suggest that changes in PA and PC as well as the dissociation of PRA and PA after ethanol ingestion might be partly related to dehydration and to the increased secretion of hypothalamic and pituitary hormones as well as to sodium and potassium balance. There was a biphasic effect of ethanol, including an inital suppression of PC and a subsequent increase of PC, PRA and PA. Upright posture appears to exaggerate the stimulating effect of ethanol on PRA, PA and PC.

Adult↗

Adenosine 3',5' cyclic monophosphate, calcium and magnesium excretion in ethanol intoxication and hangover.

Effect of ethanol on adenosine 3', 5' cyclic monophosphate (cAMP), calcium (Ca) and magnesium (Mg) excretion was studied in controlled clinical conditions in man. Seven male volunteers served as their own controls. In 5 subjects cAMP excretion was primarily suppressed by ethanol. Ethanol appeared to have a biphasic effect on Ca excretion, an initial stimulation followed by a conservation phase. Mg excretion was stimulated by ethanol in 5 subjects. Subjects having nausea and vomitus and the most severe hangover symptoms had the lowest urinary Ca excretion and the lowest imitial cAMP excretion. Ca and Mg metabolism and the susceptibility of the body to the toxic effects of ethanol appeared to be interrelated.

Adult↗

Urinary cyclic AMP and vasopressin excretion in rat strains selected for their alcohol intake.

Urinary excretion of adenosine 3',5' -cyclic monophosphate (cAMP) and immunoreactive arginine vasopressin (AVP) were investigated after water loading and following ethanol loading in two rat strains selected for their voluntary ethanol intake. After ethanol loading ethanol preferring (AA) rats excreted more cAMP but less AVP than water preferring (ANA) rats. The results suggest that the strain difference in cAMP excretion is of renal origin and is not due to vasopressin or parathormone. Differences in the sympathetic nervous activity may be responsible for the difference in cAMP excretion.

Alcohol Drinking↗

Plasma vasopressin in ethanol intoxication and hangover.

The effect of ethanol intoxication and hangover on immunoreactive plasma arginine vasopressin (AVP) concentration was studied in 7 healthy supine men in controlled clinical conditions. In 6 subjects plasma AVP increased above control values at the time of maximal blood ethanol concentration. The highest AVP values were observed in the subjects having nausea and vomiting and the worst hangover symptoms. During hangover plasma AVP values were higher than the controls and the response of plasma AVP to upright posture was exaggerated. The dissociation of plasma AVP concentration and ethanol diuresis suggested that the suppression of AVP release is not the sole determinant of ethanol diuresis. The study may indicate that the toxic effects of ethanol and the severity of hangover symptoms are associated with the state of hydration and individual sensitivity of AVP triggering mechanisms.

Adult↗

Effect of buffer composition on binding of adenosine 3':5'-cyclic monophosphate by bovine adrenal extracts.

The binding of cyclic [3H] AMP by bovine adrenal extracts was studied in different buffer systems; 50 mM-Tris/HCl, pH 7.5, buffer containing 4mM-EDTA (disodium salt) offered advantages such as low non-specific interference and high binding affinity. 2-Mercaptoethanol decreased, but EDTA and theophylline increased, the specificity of cyclic [3H]AMP binding as expressed by the displacement of cyclic [3H]AMP by a 1000-fold excess of unlabelled cyclic GMP. The study indicated heterogeneity of the binding material. Mg2+-dependent binding may be eliminated in Tris/EDTA buffer. The heterogeneity and the specificity of intracellular cyclic AMP binders and their dependence in environmental factors should be considered in the evaluation of cyclic AMP binding and second-messenger systems.

Adrenal Glands↗

Effects of ethanol on urinary arginine vasopressin excretion in two rat strains selected for their different ethanol preferences.

The effects of ethanol on urinary excretion of arginine vasopressin (AVP), sodium, and potassium were investigated in two rat strains specially selected for their different alcohol preferences. The alcohol preferring (AA) strain excreted more AVP and the water preferring (ANA) strain more urine and sodium during six hours after ethanol intubation (2.4 g/kg b.w.; 20% v/v). The data is insufficient to establish a causal relationship between differences in water and electrolyte metabolism and voluntary ethanol consumption.

Animals↗

Renin-aldosterone axis in ethanol intoxication and hangover.

The renin-aldosterone system was studied in human volunteers during ethanol intoxication and hangover. Plasma renin activity increased more than 100%, when 1.5 - 2.3 g ethanol per kg body weight was ingested over a three hour period. During hangover the increase even exceeded 200%. Plasma aldosterone concentration decreased during ethanol intoxication, but increased greatly during hangover. It is suggested that the stimulation of the renin-aldosterone axis during ethanol intoxication and hangover is due to dehydration and increased activity of the sympathetic nervous system.

Adult↗

Urine sodium, potassium and osmolality in two rat strains selected for their different ethanol preferences.

Urine sodium, potassium and osmolality were investigated during water and ethanol diuresis in two rat strains, AA and ANA, which drink voluntarily different amounts of ethanol. At the start of each experiment the rats were in a positive water balance. During ethanol intoxication the AA strain excreted more urine than the ANA strain. In ethanol experiments the osmolality of the urine was higher in the AA strain than in the ANA strain. With ethanol amounts of 2.4 g/kg body weight and 4.8 g/kg of body weight, urinary sodium and potassium output was greater in AA rats than ANA rats. When only water was introduced urine volumes and the excretion of sodium and potassium during 180 min were greater in ANA males than in AA males.

Animals↗