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Skeletal muscle blood flow in vivo: detection with rubidium-82 and effects of glucose, insulin, and exercise.

In order to assess the effects of glucose, insulin, and exercise on skeletal muscle blood flow in vivo, we measured positron emission from the thigh muscle of anesthetized rabbits after simultaneous aortic bolus injection of 82Rb and radiolabeled microspheres (15 micron diameter). Estimates of flow with 82Rb were based on first-pass regional extraction of 82Rb by skeletal muscle. Flow estimates were made serially as a function of variations in plasma glucose and insulin and changing the muscle contractile state by electrical stimulation. Flow ranged from 3.1 ml/min/100 g at rest to 71 ml/min/100 g during stimulation. There was good agreement between the two methods of flow measurement over the entire range of flows (r = 0.96 at a slope of 0.90). Flow measured by either method did not vary significantly from baseline over a range of plasma glucose from 5 to 30 mM and plasma insulin from 0 to 20 microU/ml. When flow was increased up to 20-fold by electrical stimulation there was a decrease in extraction of 82Rb proportional to the increase in flow. However, at pharmacologic levels of insulin (greater than 150 microU/ml) flow was increased twofold as measured by radiolabeled microspheres, but not as measured by rubidium. There was no apparent decrease in extraction of 82Rb with high insulin. The discrepancy between the microsphere measured flow and rubidium measured flow with high plasma insulin levels can be explained by the assumption that the expected decrease in the extraction fraction was counteracted by an increase in Na+/K+-ATPase activity. It is concluded that the first-pass flow model gives valid estimates of skeletal muscle blood flow in vivo with 82Rb, provided that plasma insulin levels are normal.

Animals↗

Rubidium-82 kinetics after coronary occlusion: temporal relation of net myocardial accumulation and viability in open-chested dogs.

Serial assessment of perfusion and viability during myocardial infarction has not been feasible, in part, because of the long half-lives of available tracers. Rubidium-82 (82Rb) is a generator-produced, positron-emitting potassium analog with a short half-life (75 sec) that permits repeated studies. To determine the temporal relation of net myocardial 82Rb accumulation to loss of viability during prolonged ischemia, a 2-3 mCi bolus of 82Rb was given to 46 open-chested dogs while regional myocardial time-activity curves were obtained with beta probes at baseline, and serially after coronary occlusion lasting 1-6 hr. Hearts were then stained with triphenyl tetrazolium chloride (TTC) to assess the viability of the epicardium under the probe to a depth corresponding to the range of positrons. Irreversible injury occurred in two out of 16 experiments at 1 hr and ten out of 15 experiments at 3 hr and also at 6 hr (p less than 0.05 vs. 1 hr). In viable myocardial samples, rubidium extraction increased with low flow as compared with nonischemic controls for all time periods but was unchanged (failed to increase) in nonviable tissue. Net 82Rb accumulation decreased during 1 to 6 hr of occlusion in irreversibly injured samples (0.28 +/- 0.19 to 0.16 +/- 0.07, p less than 0.05) but remained unchanged in myocardial tissue subsequently shown to be viable. For myocardial samples that were nonviable at 3 and 6 hr, changes in net accumulation of tracer became abnormal only after 6 hr of occlusion. The mechanisms primarily responsible for the decrease in net accumulation of 82Rb at 6 hr appeared to be leakage of tracer after first pass. Therefore, failure to increase extraction at low flows may be an early indicator of cell death, whereas membrane leakage occurs several hours after loss of viability.

Animals↗

Experimental comparative renal toxicity of lithium and rubidium.

Rat kidney was perfused using Krebs solution containing 3 or 6 mEq/l lithium or 3 or 6 mEq/l rubidium; the histological lesions thus induced were compared. Rubidium-induced lesions, irrespective of concentrations, consisted of tubular dilations, degeneration and necrosis very similar to those induced by lower concentrations of lithium; moreover, Bowman space alterations were observed. In contrast, lithium-induced damage was dose-dependent: 6 mEq/l solution induced severe tubular damage with necrosis, endoluminal cellular debris and hyaline substance.

Animals↗

The effects of rubidium on mammary tumour growth in C57 blk/6J mice.

A high pH therapy for cancer arrived at theoretically was tested in mice by feeding them rubidium carbonate. Tumours were transplanted in the abdomen of mice and allowed to grow for 8 days. The mice were then divided into two groups. The control group was continued on conventional mouse chow. The test group, in addition to the mouse chow, was force-fed 1.11 mg of rubidium carbonate dissolved in distilled water. At the end of 13 more days the tumours in the controls had grown to a large size so all the mice were sacrificed. The tumours were then removed and weighed. The tumours in the test animals weighed essentially one eleventh of those in the controls. In addition the test animals were showing no adverse effects from the cancers. The probability that this marked difference in tumour size could have come about by chance is exceedingly small.

Animals↗

[Psychomotor excitation caused by beta-endorphin: effect of rubidium and lithium].

Effects of lithium and rubidium administered into the cerebral ventricles of conscious cats on psychomotor excitation produced by synthetic human beta-endorphin similarly injected have been investigated. Lithium, but not rubidium, prevented the psychomotor stimulation caused by beta-endorphin. Naloxone, applied intracerebroventricularly, also prevented the psychomotor stimulation produced by this polypeptide. It appears, therefore, that only lithium has a psychotherapeutic value when homeostatic neurohumoral mechanisms are disturbed in the central nervous system by a surplus of beta-endorphin.

Akathisia, Drug-Induced↗

Myocardial perfusion with rubidium-82. I. Measurement of extraction fraction and flow with external detectors.

Accurate measurement of the regional extraction of a diffusible radiopharmaceutical is essential for the quantifying of regional blood flow, and may also provide an important physiologic or diagnostic indicator of the cellular viability of an organ in man through external detection by positron emission tomography. However, extraction fraction of a diffusible tracer usually decreases as flow increases, and thus noninvasive methods for measuring flow are nonlinear unless the extraction fraction can be measured independently. This report describes the theoretical basis and documents the applicability of this theory for determining, with external detectors, the first-pass regional extraction fraction of rubidium-82 by the heart, following a single intravenous bolus injection of the tracer. Measurement of extraction fraction was found to be independent of flow, thereby making it possible to determine accurately with a single intravenous bolus injection of rubidium-82, the regional blood flow in the myocardium at up to five times normal resting flow.

Coronary Circulation↗

[Estimation of regional circulation in rats: results obtained by using 15 and 50 micron diameter microspheres and rubidium].

Radioactive microspheres, 15 or 50 micron in diameter, were used to estimate the distrubtion of cardiac output and the degree of shunting of microspheres through the systemic and pulmonary circulations in anaesthetized rats. Extraction of 15 micron spheres by the pulmonary capillaries was nearly 100% and the amounts of microspheres per gram of lung tissue were not significantly different in the various lobes of lung. After injection into the left ventricle, the proportion of microspheres shunted to the lungs was almost identical using 15 or 50 micron spheres. Similar results were observed after injection into the internal of external carotid artery. The distribution of cardiac output showed a significant difference between 15 and 50 micron spheres, the proportion of 50 micron spheres found in the stomach being higher, which suggests the existence in this organ of arteriovenous shunts larger than 15 micron. The rubidium method yielded higher fractions of cardiac output in the liver (hepatic artery), lung and skin whereas the microspheres distribution to the heart, spleen and digestive tract exceeded that of rubidium. The origins of these differences are discussed.

Animals↗

[Rubidium chloride in the treatment of major depression].

The present study evaluated 20 patients (18 females and 2 males: mean age 55 +/- 8.8 years) suffering from major depression who had been treated with 360/720 mg/die rubidium chloride for 60 days. A gradual and significant improvement in depressive symptoms (HDRS and Zung Scale) and anxiety (Stai X1 and HamARS) was reported. Serum levels were not correlated to clinical improvement. Slight adverse effects were also observed (diarrhea and skin rashes). Rubidium chloride showed a marked and rapid anti-depressive action which was particularly evident in relation to mood, anti-conservative ideas, work, occupational interests and psychomotory slowing-down. It is clear that these symptoms represent the most important aspects of the polymorphous depressive syndrome and, in some ways, this improvement should be interpreted as the effective influence of the drug on the biological contest of mood changes.

Chlorides↗

[Chronic administration of lithium and rubidium in rats. General behavior, explorative behavior and electric activity of the brain].

We have studied the rat under chronic treatment with lithium carbonate and rubidium chloride both given ip. For a four week period we have recorded, once a week, weight, rectal temperature, tail-flick, motor co-ordination and general activity in a one-arm radial maze and in a Boissier-Simon table. At the end of the fourth week surface (SEEG) and deep EEGrams (DEEG: hippocampus, amygdala) were recorded from treated and control animals. FFT (Hanning window) was performed both for SEEG and DEEG. The findings are: 1) No changes in weight, rectal temperature, tail-flick and motor coordination (rotarod). 2) In the one-arm maze and in the Boissier-Simon table rubidium is in contrast to the effects of lithium, it causes increased activity and aggression 3) the EEGrams were analyzed by means of FFT as power in preselected bands of frequency. The results, on the whole, suggest, since these two ions have opposite effects on brain norepinephrine metabolism, that they may be useful in the treatment of PMD.

Animals↗

[The pharmacological action of rubidium chloride in depression].

In the last few years antidepressant activity or Rubidium chloride has risen new interest. The drugs develops his action on dopaminergic stimulation reducing the depressive pattern. Fifteen depressed inpatients were studied for three weeks treated with Rubidium chloride (540 mg/day) and periodically monitored after hospitalization. Speed therapeutic efficacy has been shown, with lack of side effects. The results are discussed.

Adult↗

RUBIDIUM, a program for computer-aided assignment of two-dimensional NMR spectra of polypeptides.

Taking advantage of the rule-based expert system technology, a program named RUBIDIUM (Rule-Based Identification In 2D NMR Spectrum) was developed to accomplish the automatic 1H NMR resonance assignments of polypeptides. Besides noise elimination and peak selection capabilities, RUBIDIUM detects the cross-peak patterns of amino acid residues in the COSY spectrum, assigning these patterns to amino acid types, performing sequential assignments using combined COSY/NOESY spectra, and finally, achieving the total assignment of the 1H NMR spectrum.

Amino Acid Sequence↗

Structural Aspects of Rubidium Ion Selectivity by Tribenzo-21-crown-7(1)(a).

The structural origins of the selectivity of rubidium ion over other alkali metal ions by tribenzo-21-crown-7 is investigated from single-crystal X-ray diffraction: data for Cs(tribenzo-21-crown-7)(NO(3)), monoclinic, P2(1)/c, a = 9.598(2) Å, b = 23.466(3) Å, c = 23.973(5) Å, beta = 93.31(1) degrees, V = 5390(2) Å(3), Z = 8; data for [Rb(4,4'-bis-tert-butylbenzo,benzo-21-crown-7)(dioxane)(1.5)(H(2)O)(0.18)][Cl].(dioxane)1.82(H(2)O), triclinic, P&onemacr;, a = 11.687(3) Å, b = 12.800(4) Å, c = 17.680(3) Å, alpha = 75.31(2) degrees, beta = 80.01(2) degrees, gamma = 69.09(2) degrees, V = 2379.8(10) Å(3), Z = 2; data for Na(4,4'-bis-tert-butylbenzo,benzo-21-crown-7)ReO(4).0.5(i-PrOH), monoclinic, P2(1)/c, a = 24.300(5) Å, b = 14.066(3) Å, c = 22.676(5) Å, beta = 108.06(3) degrees, V = 7369(3) Å(3), Z = 8; data for and 4,4'-bis-tert-butylbenzo,benzo-21-crown-7, monoclinic, P2(1)/n, a = 16.427(2) Å, b = 11.3675(9) Å, c = 33.137(3) Å, beta = 94.469(8) degrees, V = 6169.0(10) Å(3), Z = 8. The structures reported here are the first reported for a tribenzo-21-crown-7, and the alkali metal ion complexes are the first reported structures of these ions with any 21-crown-7 ether. Different crown conformations are observed for each structure. Molecular mechanics calculations were performed on all conformers, and the results are related to the observed extraction selectivity for rubidium.

Journal Article↗

MIL-50, an open-framework GaPO with a periodic pattern of small water ponds and dry rubidium atoms: a combined XRD, NMR, and computational study.

A new fluorinated gallium phosphate, MIL-50, has been synthesized under mild hydrothermal conditions using 1,6-diaminohexane. The chemical formula of MIL-50 is Rb(2)Ga(9)(PO(4))(8)(HPO(4))(OH)F(6).2N(2)C(6)H(18).7H(2)O. The structure is a network of hexameric units of Ga(3)(PO(4))(3)F(2) and Ga(3)(PO(4))(2)(HPO(4))F(3) via corner sharing. It creates a three-dimensional open-framework delimiting 6- and 18-ring channels running along the c axis. The diprotonated 1,6-diaminohexane and water molecules are trapped within the 18-ring pores, whereas the rubidium cations reside in the 6-ring ones. A double quantum (31)P NMR experiment and partial charge calculations indicate that water molecules are present under the form of periodic small clusters, lowering the multiplicity of one phosphorus site, P3. Though water hops within the clusters, the motion leaves the water pattern periodic. Rubidium is so tightly embedded into the framework that water moving in the large 18-ring channels does not reach it, leaving it therefore dry. The crystal framework may be ascribed to the orthorhombic space group Cmc2(1) (n degrees 36), a = 32.1510(2), b = 17.2290(3), c = 10.2120(1) A. The periodic water pattern has a different symmetry than that of the framework. A method has been devised to superpose the two sublattices that coexist in the same unit cell in order to have full occupancy of each site and to perform Madelung summations. This original method is of general interest for most zeolitic materials exhibiting a different symmetry for the framework and the template sublattices.

Journal Article↗

Substituent control of potassium and rubidium uptake by asymmetric calix[4]-thiacalix[4]tubes.

Herein we report on the synthesis and ionophore properties of the first asymmetric p-tert-butylcalix[4]-p-R-thiacalix[4]tubes 7a-c (R = t-Bu, H, 1-adamantyl). The target compounds were obtained by the condensation of tosyloxyethoxy-p-tert-butylcalix[4]arene with the corresponding p-R-thiacalix[4]arenes in the presence of K2CO3 in acetonitrile. The complexation with sodium, potassium and rubidium iodides was studied in CDCl3-CD3OD (4:1) medium by means of 1H NMR measurements. It was found that the ionophore properties of calixtubes 7a-c are controlled by the character of the substituents at the upper rim of the thiacalix[4]arene fragment and it was shown that only the molecular tube 7c with an adamantane-containing thiacalixarene unit is capable of quantitatively binding potassium (swiftly) and rubidium (slowly) cations.

Journal Article↗

Fine structure continuum cross section ratios in the two-photon ionization of rubidium using elliptically polarized light.

Using fully relativistic perturbation theory we report fine structure continuum cross section ratios for the two-photon ionization of rubidium under elliptically polarized light. The choice of light polarization and wavelength matches the recent complete experiments on rubidium reported by Wang and Elliott [Phys. Rev. Lett. 84, 3795 (2000)]. The sigma(d5/2)/sigma(d3/2) cross section ratios calculated are consistent with results expected if relativistic fine structure effects are small, and are very much at odds with the recent experimental findings.

Journal Article↗

Feshbach resonances in rubidium 87: precision measurement and analysis.

More than 40 Feshbach resonances in rubidium 87 are observed in the magnetic-field range between 0.5 and 1260 G for various spin mixtures in the lower hyperfine ground state. The Feshbach resonances are observed by monitoring the atom loss, and their positions are determined with an accuracy of 30 mG. In a detailed analysis, the resonances are identified and an improved set of model parameters for the rubidium interatomic potential is deduced. The elastic width of the broadest resonance at 1007 G is predicted to be significantly larger than the magnetic-field resolution of the apparatus. This demonstrates the potential for applications based on tuning the scattering length.

Journal Article↗

Potassium hydrogen trans-glutaconate monohydrate at 295, 245 and 40 K, and its rubidium analogue at 298 K.

A centrosymmetric and short O-H.O hydrogen bond was found in isomorphic crystals of potassium hydrogen trans-glutaconate monohydrate (potassium hydrogen trans-pent-2-ene-1,5-dioate, K(+).C(5)H(5)O(4)(-).H(2)O), (I), and rubidium hydrogen trans-glutaconate monohydrate (rubidium hydrogen trans-pent-2-ene-1,5-dioate, Rb(+).C(5)H(5)O(4)(-).H(2)O), (II). The O.O distance at room temperature is 2.444 (3) A in (I), and 2.417 (4) A in (II). The O.O distance for (I) showed no significant decrease at low temperatures.

Journal Article↗

Rb(GaPO4)2(OH)(H2O).H2O: a hydrated rubidium gallium phosphate analogue of GaPO4.2H2O and leucophosphite.

Crystals of the title hydrated rubidium gallium phosphate, rubidium aqua-mu(3)-hydroxo-di-mu-phosphato-digallium hydrate, were synthesized hydrothermally at 453 K under autogenous pressure. The solid crystallizes in the monoclinic system and its structure was determined from single-crystal X-ray diffraction analysis. It is similar to dihydrated gallium phosphate, GaPO(4).2H(2)O, which is isostructural with the mineral leucophosphite. The structure is built up from a three-dimensional anionic framework composed of corner-linked octameric Ga(4)(PO(4))(4)(OH)(2)(H(2)O)(2) units. The Ga atom is in an octahedral coordination. Connection of the Ga(4)P(4) species generates eight-ring channels, in which are encapsulated the Rb(+) cations and water molecules.

Journal Article↗