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At least 19 recordsLinked to original sources

Release of 3H-nucleosides from 3H-adenine labelled hypothalamic synaptosomes.

[3H]adenine was taken up by a crude hypothalamic synaptosomal fraction and incorporated into mainly nucleotides. The synaptosomes were superfused and after the initial washout a steady fractional release rate of 0.5-1% of the content/min was found. Electrical pulses (2 ms, 50 Hz, 10-20 mA, 4 min) and veratridine (10 microM, 4 min) induced a Ca++-dependent increase in purine release rate. K+ (30 mM, 4 min) caused a largely Ca++-independent increase. Most of the released material co-chromatographed with adenosine, inosine and hypoxanthine, while little or no nucleotide material was detected. Release of endogenous adenosine, inosine and hypoxanthine was detected by high performance liquid chromatography. However, following hypo-osmotic shock most of the released material was in nucleotides. The removal of glucose from the medium increased the fractional release rate 2-3 fold. Histamine, acetylcholine and glutamate were without effect. High amounts of noradrenaline caused an EGTA-inhibited release of purines, which was un-affected by propranolol or phentolamine. It is suggested that purines are released from neuronal structures and that the release reflects increased energy consumption and/or decreased energy production.

Adenine

Transport parameters and stoichiometry of active calcium ion extrusion in intact human red cells.

Ca2+-transport and its energy consumption were studied in intact human red cells loaded with Ca2+ by the aid of the ionophore A23187. After the complete elimination of the ionophore the passive Ca2+-permeability of the membrane returned to its normal low value, except when the intracellular Ca2+-concentration was higher than 3 mM or the ATP level fell below 100 muM. Within these limits the rate of Ca2+-extrusion was independent of the cellular ATP content but was greatly enhanced by increasing [Ca2+]i and reached a plateau at about 1 mM intracellular Ca2+-concentration. The maximum rate of Ca2+-efflux was about 85 mumol/l of cells per min at 37 degrees C, pH 7.4. The activation energy of active Ca2+-extrusion was found to be 15 200 cal/mol, and the optimum pH in the suspension was 7.7. Ca2+-efflux was not connected with the counter-transport of cations. The Ca2+-pump was not affected by ouabain or oligomycin and only partial inhibition could be achieved by the SH-reagents: ethacrynic acid, N-ethylmaleimide and p-chloromercuribenzoate or with propranolol and ruthenium red. An 80 to 95% inhibition of the active Ca2+-extrusion was brought about by 50-250 muM lanthanum, which in the above concentrations caused no aggregation or haemolysis. The inhibition of the Ca2+-pump by lanthanum was found to be reversible, the site of inhibition being at the external surface of the cell membrane. To examine the energy consumption of the Ca2+-extrusion, ATPase activity was assessed by measuring inorganic phosphate liberation in Ca2+-loaded red cells the metabolism of which was inhibited by iodoacetamide + Na+-tetrathionate. Ca2+-activated ATPase activity connected with the Ca2+-pump was distinguished from other Ca2+-ATPases by using the non-penetrating inhibitor, lanthanum. The molar ratio of Ca2+-transported per ATP split was found to be 2 : 1.

Adenine Nucleotides

Nutrient intake, adiposity, and diabetes.

To study the role of nutritional factors in the genesis of diabetes, estimations of blood sugar concentration, food intake, and adiposity (as body mass index; BMI) were carried out on three normal population samples--namely, 961 employees of Beecham Ltd, 1005 employees of the Greater London Council, and 1488 middle-aged male civil servants (Whitehall study). Blood sugar concentrations and indices of glucose tolerance correlated positively with the degree of adiposity but tended to be negatively correlated with total food energy intake and its component nutrients (total carbohydrate, sucrose, and fat). This inverse trend was largely accounted for by highly significant inverse correlations between food energy intake and adiposity, a relation found in both sexes and in all three population samples and which extended across the whole range of nutrient intake and BMI. These findings suggest that greater degrees of adiposity are associated with lower than average food energy intakes and hence lower total energy expenditures. The association of increased adiposity with low food energy consumption may indicate an underlying "low energy throughput" state, and it may be the mechanisms of this, as well as the obesity, that are responsible for disease.

Adipose Tissue

New insights into multistability and complex resonances driven by subthreshold periodic signals in a neuronal model.

Understanding how neurons respond to weak external signals is crucial for accurate signal transmission and processing in both individual nerve cells and interconnected neuronal networks. One mechanism for the detection of these responses is through resonances. In this paper, we numerically investigate the firing patterns induced in a silent Huber-Braun neuron by a sinusoidal external force. We observe complex resonance patterns, including a sequence of frequency-locking exhibited in a Devil's Staircase structure. Furthermore, we also explore the emergence of multistability induced by the nonlinear resonance. This multistability manifests as the coexistence of three attractors, such as periodic spiking, chaotic spiking, and subthreshold oscillations. The dynamical behaviors are comprehensively analyzed using time series, bifurcation diagrams, phase portraits, and the basin of attraction. In addition, we compute the maximum Lyapunov exponent to verify chaotic regimes, and estimate the fractal dimension of basin boundaries using the uncertainty exponent. We also analyze the energy consumption of resonance-induced firing patterns and coexisting attractors. The results presented in this paper have important implications for understanding the detection of subthreshold signals and the encoding of stimulus information within a neuron's firing patterns.

Basins of attraction

Aerobic and anaerobic metabolism of the crystalline lens of a poikilotherm; the toad Bufo marinus.

1. The O2 consumption and lactic acid production of the lens of the toad Bufo marinus was measured under various conditions. The energy consumption was very low compared to other amphibian tissues and about 20% of that previously described in the rat lens. About 80% was derived from oxidative metabolism, which is the converse of that seen in mammals. 2. Cyanide abolished O2 consumption and increased lactate production 20-30 times ("Pasteur effect"). 3. Under aerobic conditions about 40% of the energy requirements of the lens are related to the presence of Na in the bathing-media but this was not seen in the presence of CN. 4. Oxidative metabolism was predominant in the outer cortical regions of the lens while glycolysis persisted even in the central nucleus. The energetic requirements of this region were, however, only about 10% of those in the intact lens. 5. Lactate readily leaves the lens and passes into its bathing fluids, and at high rates of glycolysis this occurs more readily across the posterior surface. 6. The results are discussed in relation to the unique physiological needs, structure and situation of the lens.

Aerobiosis

Total mechanical energy of a ventricle model and cardiac oxygen consumption.

Mechanical energy (ENG) required by a time-varying elastance model of the ventricle was compared with oxygen consumption per beat (VO2) of the canine left ventricle contracting under a variety of loading conditions. ENG needed for this model to increase its elastance during systole is shown to be equal to the sum of the potential energy built in the elastance during systole plus the external mechanical stroke work. This ENG is equivalent to the area (PVA) bounded by the end-systolic and end-diastolic P-V curves and the systolic limb of the P-V loop trajectory in the P-V plane. There was a high correlation (r = 0.89) between VO2s documented in the literature and PVAs assessed by the author from the accompanying P-V data from both isovolumic and ejecting contractions in 11 hearts. A linear regression analysis yielded an empirical equation: VO2 (ml O2/beat) = a . PVA (mmHg . ml/beat) + b, where a = 1.37 X 10(-5) and b = 0.027, which can be used to predict VO2 from PVA. A preliminary experimental study in my laboratory confirmed the validity of this empirical equation.

Elasticity

Energetics of abiogenic chemical systems.

After recalling the energy consumption necessary to produce the main categories of biochemicals from the equilibrium state of an hydrogenated atmosphere, the primary processes by which energy can be absorbed in a mixture of methane and ammonia in the presence of aqueous solutions are defined. From the very first excitations, unsaturated products are formed. In fact, this formation of atmospheric precursors is the primordial state of a photochemically induced redox dismutation. The evolution of solutions obtained from the dissolution of these atmospheric precursors in aqueous media is described from experimental data and analysed on energetic grounds. The relaxation of energy accumulated in such solutions involves non enzymic archetypes of the main categories of metabolic processes; in particular some unsaturated atmospheric precursors must be looked upon as primordial representatives of biochemical dehydrating agents. Absorption of light energy in the solutions obtained from the evolution of precursors happens near the visible range and should govern their further evolution. In fact, biochemicals which were previously detected as products of model experiments are not present in these solutions. They were probably obtained during analytical procedures from products of the evolution of atmospheric precursors which are unstable against decreases of pH. Cyclic autocatalytic effects must be involved in the further evolution of the models of the first aqueous solutions. Their possible role in the appearance of optical dissymmetry is emphasized on theoretical grounds.

Amino Acids

Sodium chloride stimulated respiration of Anacystis nidulans.

With certain salts a stimulation of respiration of the blue-green alga Anacystis nidulans was found in the dark. The stimulation was observed only at high concentrations (10(-2)M--10(-1)M). NaCl or LiCl are the most effective salts and on addition the increase of the respiration is about 2.5fold. Li is assumed to function as a substitute for Na. Potassium salts, except KCl, are ineffective. The order for the effectiveness is: NaCl greater than NaNO3, Na2SO4 greater than KCl greater than KNO3, K2SO4 (=zero). Accordingly, the cation Na+, and to a less degree the anion Cl- are responsible for the stimulatory effect. K, which is ineffective, is passively accumulated by Anacystis according to the membrane potential. Na is actively extruded. At 0.1 M external NaCl, the passive influx of Na is high, but even then it is balanced by an active efflux. This increases the energy consumption of the cells and leads to a stimulated respiration. With DCCD (N,N'-dicyclohexylcarbodiimide) or NEM (N-ethylmaleimide), the Na efflux is inhibited, simultaneously the stimulation of respiration is abolished and the passive influx of Na becomes detectable. At 0.1 M NaCl, the passive influx of Na measured in presence of DCCD is 5 x 10(-6) moles Na/min and ml packed cells. In absence of DCCD on addition of 0.1 M NaCl the extra oxygen consumption is 2 x 10(-6) moles O2/min and ml cells. This may prove that the stimulation of respiration is mainly caused by the active Na extrusion.

Chlorides

Phosphorus nuclear magnetic resonance studies of phosphorus metabolites in frog muscle.

31P-nuclear magnetic resonance was applied to living muscles of bullfrogs, and the time courses of metabolic changes of ATP, creatine phosphate, inorganic phosphate, and sugar phosphates were studied under anaerobic and aerobic conditions. A decrease in creatine phosphate was observed in the resting muscle under anaerobic conditions with a concomitant decrease in the intracellular pH, while the ATP level remained constant. With the use of 2,4-dinitro-1-fluorobenzene and iodoacetic acid, ATP disappeared quickly. When the resting muscle was perfused with oxygen-saturated glucose-Ringer's solution, the amount of creatine phosphate increased gradually. These findings indicate that anaerobic glycolysis is insufficient for even the resting energy consumption whereas oxidative phosphorylation is sufficient. The effects of tetanic stimulation on living muscles were also studied. When glycolysis and oxidative phosphorylation were suppressed, the intracellular energy store was depleted by the tetanic contraction. Anaerobic glycolysis produced rapid recovery of the energy store level, although it was insufficient to reach the initial level. Aerobic oxidative phosphorylation produced sufficient energy to reach the initial level, and this level was never exceeded. This finding suggests the existence of a regulatory mechanism for the energy store level.

Adenosine Triphosphate

Acute Stevia Consumption does not Alter Endocrine Responses in Individuals with Normal Weight, Overweight, and Type 2 Diabetes Mellitus.

BACKGROUND: Stevia is a plant-based non-nutritive sweetener. Acute effects of stevia ingestion on glycemia and hormonal responses have not been fully investigated. OBJECTIVE: This objective of this study was to evaluate the acute effects of beverages containing stevia alone and in combination with glucose on glycemic, hormonal, and appetite responses. METHODS: This study evaluated three cohorts of n=23 individuals with either normal weight (NW), overweight (OW), or type 2 diabetes mellitus (T2DM) for which each individual completed four test conditions in a randomized sequence crossover study design. The four test conditions were beverages containing stevia (75.6 mg steviol equivalents), water, glucose (30 g), and stevia+glucose (30 g glucose+75.6 mg steviol equivalents). Blood samples were collected before and for 180 min after beverage consumption. Assessments included net area under the curve (niAUC) and incremental maximal concentration values for plasma glucose, insulin, glucose-dependent insulinotropic polypeptide (GIP), glucagon-like peptide-1, glucagon, and PYY. Appetite was assessed with visual-analog scale questions and energy consumption during an ad libitum meal. RESULTS: Responses to the stevia beverage did not differ significantly from those for water alone, and stevia + glucose did not differ significantly from glucose alone for any of the three groups. CONCLUSION: Acute stevia consumption did not materially alter responses for glycemia or hormones involved in glucose and appetite regulation, appetite ratings, or energy intake at a subsequent meal. Clinical Trial Registry number and website where it was obtained: Clinical Trials.gov Identifier: NCT05287906. Study Details | NCT05287906 | A Trial to Assess Steviol Glycosides on Acute Appetite Hormone Release | ClinicalTrials.gov.

Appetite

Mathematical analysis of multienzyme systems. I. Modelling of the glycolysis of human erythrocytes.

A mathematical model for the glycolysis of human erythrocytes is presented which takes into account ATP-synthesis and -consumption. A set of three differential equations describes the steady states and the time-dependent changes of the metabolite concentrations under blood storage conditions. For a given parameter combination there are in general three stationary points of the system, one of which is unstable. At a low ATP-need the ATP-level is relatively constant for variations in the rate constant of the ATP-consuming processes. Above a critical level of the energy consumption the system breaks down. An important role of the 2.3P2G-bypass of the erythrocytes is its action as an "energy buffer", wasting ATP in case of ATP-overproduction and producing ATP in case of underproduction. A parameter combination consistent with the data on the isolated enzymes was found which gives a good agreement of theoretical predictions with the measured metabolite concentrations. Under blood preservation conditions the difference of the rates of ATP-production and -consumption is the most important factor for a high ATP-level over long periods.

Adenosine Triphosphatases

Amputation: energy cost of ambulation.

A mobile instrument system was used to measure energy consumption by indirect calorimetry at rest and during ambulation in 25 unimpaired subjects, 6 unilateral below-knee (BK) amputee patients, 6 unilateral above-knee (AK) amputee patients and 4 bilateral AK amputee patients. To prevent the introduction of gait difficulties among the impaired subjects, each subject was permitted to walk at his own comfortable speed. Since speed thus varied among subjects, ambulation data were expressed in units of energy per foot traveled. Statistical analyses of the mean oxygen costs indicated several significant differences among the groups. In comparison to unimpaired subjects, the mean oxygen consumption was 9% higher in unilateral BK amputee patients, 49% higher in unilateral AK amputee patients and 280% higher in bilateral AK amputee patients.

Adult

Open chain crown-type polyethers and pyridinophane cryptands act as ionophores upon frog motor nerve and isolated rat heart cells.

Frog motor nerves and isolated heart cells from neonatal rats were incubated with solutions of open chain crown-type polyether or pyridinophane cryptand. The following alterations in membrane excitability and energy consumption were found: 1. The non-cyclic ligand stabilizes the resting potential of the frog nerve and reduces the pulsation rate of heart muscle cells. It is reversibly bound at the cell surface and does not affect the energy metabolism of the heart cells. (formula: see text) 2. The cryptand 1,12-dioxo-2,11-diaza-5,8,21,24-tetraoxa[12-8(2,11)] (2,6)-pyridinophane) ([2.2.1py]-diamide) is irreversibly bound by the tissues. It facilitates the depolarization of the nerve and shows a positively chronotropic effect upon the heart muscle cells. Single treatment of the cell cultures with 10 microgram [2.2.1py]-diamide per ml medium increased the activities of lactate dehydrogenase and of creatine kinase. When the cell cultures were treated three times at 24 h intervals with 10 microgram complexone/ml, the creatine kinase activity of the heart muscle cells decreased by about 40%. The physiological properties of the ligands are correlated with the stability of their alkali metal ion complexes and with the rate constants of complex formation. It is concluded that [2.2.1py]-diamide can act as a passive carrier for Na+ K+.

Animals

Effect of mineral mixture in diet on protein intake regulation in the weanling rat.

Weanling rats fed a choice of two diets varying only in protein concentration (10 and 60% casein) select a lower proportion of dietary energy as protein when the dietary minerals are supplied by a mineral mixture high in Na, K, and Cl but low in P and Cu (Hi Cl) than when the diets contain the Bernhart-Tomarelli (BT) mineral mixture. The addition of Na and/or K as acetate salts to the BT mineral mixture, to levels in the Hi Cl mixture, had no effect on regulation of protein intake. However, the addition of Na and/or K as chloride salts to the BT mineral mixture resulted in the rats selecting a protein concentration equivalent to the Hi Cl fed group. Weight gains and energy consumption were similar for all groups. It was therefore concluded that dietary chloride affects protein feeding behavior.

Acetates

Phosphorus biochemistry.

The biochemistry of phosphorus is outlined. As this element appears to have no redox reactions in biological systems phosphorus is always handled as phosphate and, as all phosphate compounds are thermodynamically unstable in water, phosphate uptake and incorporation are associated with energy consumption. The subsequent use of phosphate in metabolism and synthesis is illustrated by metabolic pathways and DNA (RNA) polymerizations, respectively. The importance and unique chemical significance of phosphorus in biology cannot be overestimated.

Adenine Nucleotides

Short circuit current in tight and leaky epithelia.

The effect of short circuit current on the unidirectional fluxes of ions transported across tight and leaky epithelia was investigated. It was found that short circuiting of the frog gastric mucosa (classified as a tight epithelium) caused a decease of the passive JClms and a significant increase of the net Cl- secretion. However, no significant change of H+ secretory rate was observed. On the other hand, short circuiting of the mouse intestine (a known leaky membrane) caused a simultaneous increase of both Jms and Jsm fluxes of Na+ while the net fluxes of Na+ and Cl- remained unchanged. Also, short circuiting did not change the water permeability of the mouse intestine. To explain some of these results a theoretical model is presented to demonstrate that while short circuiting can block the passive ionic movement, it will cause an increase in the energy consumption of the system and introduce certain important changes in the ionic barriers and e.m.fs. The simultaneous increase in the unidirectional fluxes of Na+ under short circuit conditions can best be explained by a decrease in the polarized nature of the transepithelial shunt, thereby increasing the diffusion coefficient of the ion(s). Such an increase is specially favorable to the Na+ rather than an anion.

Animals