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Determination of ionized calcium in serum that has been exposed to air.

We examined changes in ionized calcium concentration in serum after its exposure to air. Samples with total protein concentrations ranging from 50 to 90 g/liter were equilibrated with CO2 in nitrogen (5/95, by vol) or CO2 alone, to produce pH values of 7.0 to 8.0. Ionized calcium was then measured with an Orion flow-through electrode system. Curves relating pH and ionized calcium concentration had statistically identical slopes regardless of protein concentration. A factor was derived, based on pH change, for correcting values for ionized calcium in serum exposed to air, and its validity was confirmed by comparing corrected values for samples allowed to stand at ambient temperature (23 degrees C) without anaerobic precautions with values initially obtained on anaerobic aliquots of the same samples.

Air↗

Ion effects in measurement of ionized calcium with a calcium-selective electrode.

We examined the performance characteristics of an improved electrode for measurement of ionized calcium (Orion Research, Inc.) with respect to interferences by Na+, K+, Li+, Mg2+, and H+, as well as the effect of changes in ionic strength and osmolality. At physiologically observed concentrations, all ions except Na+ insignificantly affected ionized-calcium measurements. The decrease in ionized Ca2+ with increased Na+ concentration is caused by the increase in ionic strength and the associated decrease in Ca2+ activity. Sodium had no significant direct effect in concentrations below 250 mmol/L. A previously published (Clin. Chem. 23: 690, 1977) equation for the Na+ correction is invalid for this improved electrode. Changes in osmotic pressure negligibly affect electrode response. Significant changes in ionic strength, as would be observed in severe hypo- and hypernatremic sera, increase or decrease, respectively, values for ionized calcium by changing Ca2+ activity. With aqueous Ca2+ solutions, changes of less than or equal to 3% were observed for Na+ concentrations that deviate from 140 mmol/L by not more than 20 mmol/L. Because the calcium ion activity is considered to be the physiologically important variable, we suggest that no correlation be made for ionic strength effects.

Calcium↗

[Characteristics of peripheral blood leukocytes in persons working with ionizing radiation sources].

A study was made of 47 men working under the conditions of exposure to a number of occupational factors. Part of the examined persons dealt with ionizing radiation sources. Over the last 5 yrs. annual irradiation doses were on an average 1.82 +/- 0.14 rem. The activity of leukocyte enzymes, blast transformation and the frequency of damages to the chromosomes of peripheral blood T-lymphocytes as well as the level of redox reactions of the body and protein and lipid metabolism were studied. It was shown that in persons with 10-year experience of work with ionizing radiation sources, the activity of leukocyte enzymes and the amount of neutrophils in 1 microliter of blood were raised. The suppression of enzymatic function and a decrease in the amount of leukocytes were noted in persons with experience over 10 yrs. Lowered blast transformation and more frequent T-lymphocyte chromosome aberrations in persons having to do with ionizing radiation sources over 10 yrs., were not accompanied by changes in the health status. No changes were revealed in protein and lipid metabolic indices either, however the level of redox reactions was raised in all these persons. The changes should be regarded as adaptation in response to the exposure of the body to small doses of ionizing radiation and a number of occupational factors. The effect of small doses of irradiation on age indices was equivalent but a tendency for some of the indices was different.

Adult↗

Analysis of fatty acid methyl esters by a gas--liquid chromatography--chemical ionization mass spectrometry computer system.

The technique of gas-liquid chromatography-chemical ionization mass spectrometry can easily identify trace peaks and unresolved peaks on gas-liquid chromatography, utilizing MH(+) ions of chemical ionization mass spectra. In polyunsaturated fatty acid methyl esters such as C22:5 and C22:6, the determination of molecular weights that are difficult to determine by electron impact mass spectrometry could be easily identified by chemical ionization mass spectrometry. The identification could be performed even more easily from a mass chromatogram obtained by means of a gas-liquid chromatography-chemical ionization mass spectrometry-computer system. This technique was applied to analysis of fatty acid methyl esters of triglycerides, cholesteryl esters, nonesterified fatty acids, and phospholipids obtained from normal human serum. It was observed that odd-carbon-number fatty acids contained more isomers of different types than even-carbon-number fatty acids, whether the fatty acids were saturated or unsaturated. As for the types of isomers, we presume the existence of iso, anteiso, branched, cyclic fatty acids, and, in the case of unsaturated fatty acids, positional isomers. The qualitative determination of the group of fatty acid isomers containing 20 carbon atoms was also investigated as well as the application of procedures for quantitative determination. Sensitivities for saturated fatty acids differ from those for unsaturated fatty acids of the same carbon number, and sensitivities for unsaturated fatty acids of the same carbon number differ with the number of double bonds because the amounts of MH(+) - 32 and MH(+) - 32 - 18 fragment ions formed are different.

Chromatography, Gas↗

Sodium lactate infusion, panic attacks, and ionized calcium.

The ability of sodium lactate to precipitate panic attacks in vulnerable individuals has been repeatedly demonstrated, although its mechanism of action is unknown. Pitts and McClure hypothesized that the panicogenic effect of sodium lactate was due to its induction of a peripheral hypocalcemia via the complexing of infused lactate ions with extracellular ionized calcium. In the current study, serial ionized calcium measurements during lactate infusion are assessed for 22 panic patients who panicked during infusion, 11 panic patients who did not panic during the procedure, and 6 normal controls. Intravenous sodium lactate infusion was found to be associated with a significant decrease in ionized calcium in all groups. No specific association was found between the rate or magnitude of decrease in ionized calcium and the occurrence of a panic attack during the infusion.

Agoraphobia↗

Total and ionized calcium levels during open heart surgery with two different pump priming solutions.

UNLABELLED: Changes of total (Ca) and ionized Ca-levels (Ca2+) were studied during open heart surgery in 18 patients. 9 patients (group A) had only crystalloid solutions as pump priming, the other 9 patients (group B) had 500 ml of citrated whole blood in the priming solution. For assessment of hemodilution hct and total plasma protein and plasma albumin were determined. Measurements were done preoperatively, before and after systemic heparinisation, during and after extracorporeal circulation (ECC) and on the first postoperative day. RESULTS: 1. Anticoagulation with 375 U/kg BW heparin had no effect on ionized calcium levels. 2. With onset of ECC (Ca) decreased by 30% in group A and by 20% in group B. (Ca2+), however, decreased by 20% in group A and by 35% in group B. The percentage of ionized calcium increased by 15% in group A whereas it decreased by the same amount in group B. This difference is contributed to the calcium binding effect of citrate added to pump priming in group B. Mechanisms of the relative increase of ionized calcium during ECC in group A, however, remain to be studied.

Blood Glucose↗

Ionized calcium in human seminal plasma.

A low concentration of ionized calcium (Ca++) - 2-4% - was found in human seminal plasma with a calcium sensitive electrode. The mean level of ionized calcium (measured after a standardized air exposition) was 0.17 mM +/- 0.05 (s.d.) (range 0.09-0.29 mM). Dilution of the seminal plasma gave a linear decrease in free calcium concentration. Freezing and thawing or storage of the seminal plasma under anaerobic conditions did not influence the level of ionized calcium. Storage under aerobic conditions gave a temperature dependent decrease in which Ca++ parallelled a spontaneous increase in pH. Spermatozoa in semen samples with an ionized calcium level less than average had a better motility and viability than in semen samples with a higher Ca++ level.

Adult↗

[Penicillin amidase from E. coli. The determination of the ionization constants of the Michaelis complex ionogenic groups in the enzymatic deacylation reactions of the phenacetyl derivatives of phenylglycine and 7-aminodesacetoxychephalosporanic acid].

pH and temperature relationships of the maximum rate of the reaction of enzymatic hydrolysis of phenacetyl derivatives of phenylglycine (PPG) and 7-aminodesacetoxycephalosporanic acid (7-PADCA) catalysed by immobilized penicillinamidase (IPA) (penicillinamidohydrolase CE 3.5.1.11) were studied. A possibility of applying for the routine methods used in determination of electrochemical properties of ampholites for estimation of the ionization constants of the functional groups of both the enzyme and the enzyme-substrate complex was shown. The applicability of various methods for estimation of the ionization constants is discussed and the ways of determination of the ionization constants and the means of quantitative description of the bell-like pH relationship of the kinetic and equilibrium parameters of the biocatalytic reaction are presented. The equations described were used in analysis of the pH relationship of the immobilized penicillinamidase enzymatic activity in the reactions of 7-PADCA and L-PPG hydrolysis. The estimated ionization constants of the ionogenic groups of the Michaelis complexes were used in quantitative description of the electrochemical state of the complexes at wide pH ranges. The acid properties of the PA and IPA complexes with a number of substrates, such as benzylpenicillin, 7-PADCA, L-PPG and PANAB were compared. The effect of the immobilization procedure, electrochemical properties of the substrates and the reaction products on the electrochemical state of the Michaelis complexes is discussed.

Acylation↗

[Effect of the psychostimulants caffeine and methylphenidate on the efficiency of physical activity in rats exposed to ionizing radiation].

The authors carried out studies on 267 male rats and examined the effect of ionizing irradation (single irradation with 737 roentgens) on the duration of swimming and on the alteration of this effect by psychic stimulators caffeine and methylphenidate, administered in overthreshold doses (30 and 50 mg/kg of body weight for caffeine and 5 and 10 mg/kg of body weight for methylphenidate). On the 7th day after irradiation there was statistically significant shortening of the duration of swimming in the control animals. The mentioned doses (statistically significant for the larger dose) were used in nonirradiated animals and the two psychic stimulators also shortened the duration of swimming in comparison with the control nonirradiated animals. This effect could be explained by hyperexcitatory action of these doses of caffeine and methylphenidate. As a result of this, desoptimization of the cerebral activity occurred and as a consequence of which was the diminution of the efficiency of the physical activity. Together with this they observed that both psychic stimulators partially counteracted the shortening of the duration of swimming of rats, caused by ionizing irradiation itself. This effect, especially for caffeine, could be explained by the induced of the ionizing irradiation increase in the sensitivity of cerebral phosphodiesterase of rats to its inhibitor caffeine as a result of which under these conditions the effect of caffeine on the level of cerebral cyclic AMP was reinforced. The cyclic AMP is presumed to have some protective effect against ionizing irradiation.

Animals↗

Reference values for ionized, complexed, and protein-bound plasma magnesium in men and women.

Of the three magnesium fractions in plasma, free ionized magnesium (Mg2+) has the greatest biological activity. Accordingly, information concerning this form in plasma is of cardinal importance to investigations in biometry and human pathology. For this reason, we developed an indirect assay for ionized magnesium in which Mg2+ is determined as the difference between ultrafiltrable magnesium, as measured in plasma water after ultracentrifugation, and complexed magnesium, as obtained after fixation of the ionized and protein-bound magnesium on Amberlite IR-120(H) cation-exchange resin. All magnesium assays were performed by atomic absorption spectrometry. We used this methodology to compare ionized, complexed, and protein-bound plasma magnesium in 34 normal men and 12 normal women. Sex-related differences between the values for these fractions were not significant. Interesting preliminary results for cases of myocardial infarction prompt us to continue our investigations concerning these three states of plasma magnesium in cardiac pathology.

Adult↗

Ionization of bromouracil and fluorouracil stimulates base mispairing frequencies with guanine.

To test whether ionized base pairs influence polymerase-catalyzed misinsertion rates, we measured the efficiency of forming 5-bromouracil (B), 5-fluorouracil (F), and thymine base pairs with guanine and adenine as a function of pH using avian myeloblastosis reverse transcriptase. When B, F, and T were present as dNTP substrates, misincorporation efficiencies opposite G, normalized to incorporation of C opposite G, increased by about 20-, 13-, and 7-fold, respectively, as reaction pH increased from 7.0 to 9.5. Incorporation efficiencies to form the correct base pairs, B.A and F.A, normalized to T.A, decreased by 4- and 8-fold, respectively, with increasing pH. The effects of pH on misincorporation efficiencies were about 10-fold greater when B, F, and T were present as template bases. The relative misincorporation efficiencies of G opposite template B, F, and T, normalized to incorporation of A opposite B, F, and T, increased by about 430-, 370-, and 70-fold, respectively, as pH was increased from 6.5 to 9.5, while correct incorporation of A opposite template B and F decreased about 10-fold over the same pH range. Plots depicting incorrect and correct incorporation efficiencies versus pH were fit to a pH titration equation giving the fraction of ionized base as a function of pH. We conclude that avian myeloblastosis reverse transcriptase forms B.G and F.G mispairs in an ionized Watson-Crick conformation in preference to a neutral wobble structure containing favored keto tautomers of B or F. Although participation of disfavored enol tautomers in enzyme-catalyzed base mispair formation cannot be ruled out, the results are inconsistent with the "standard" disfavored tautomer model of mutagenesis. Instead, the data support a model in which ionization of halouracil bases is primarily responsible for B- and F-induced mutagenesis.

Base Sequence↗

Dental enamel in relation to ionized calcium and parathyroid hormone. Studies of human primary teeth and rat maxillary incisors.

The aims of this thesis were to evaluate the role of lowered calcium values in blood on enamel formation and mineralization, and further to analyze whether the calcium regulating parathyroid hormone (PTH) would have any effects on the forming and mineralizing enamel. DENTAL ENAMEL AND IONIZED CALCIUM: Human primary teeth from two groups of infants were clinically and histologically examined. One group (n = 25) was born with optimal perinatal conditions. The infants had low, but not hypocalcemic values on day 1 when compared with days 3 and 5 postpartum. The second group of infants (n = 11) was subjected to blood exchange transfusion on the first few days postpartum. All infants developed very low values of blood ionized calcium due to the treatment, and the infants had a mean of three hypocalcemic days. Enamel aberrations were seen in both groups, but only four infants had multiple enamel aberrations located at levels corresponding to the enamel development at the time of the birth. Low values of blood ionized calcium alone were not associated with enamel aberrations, as the aberrations were only seen in infants subjected to more than three blood exchange transfusions. The neonatal line was present in all teeth investigated, thin lines dominated, and the widths were not dependent on the levels of blood ionized calcium during the first few days after birth. Rats were also used to investigate whether the maxillary incisor enamel would be affected during a diet-induced hypocalcemic state. Of ten experimental rats, nine had normal enamel, indicating that hypocalcemia in rats does not generally affect the enamel. DENTAL ENAMEL AND PARATHYROID HORMONE: Rats was used in a study where they were subjected to daily injections of PTH. Three different doses were used and the experimental periods were 7 and 14 days. In a pilot part, enamel aberrations were seen but not in the main study performed later. The main difference in experimental design between the pilot and the main part of the study was the use of hard tissue marker, oxytetracycline, at start of the pilot part. For this reason, a separate study was performed to evaluate the use of oxytetracycline in hard tissue research. The results clearly demonstrated that oxytetracycline itself induces enamel aberrations and so it was not used in the main study of parathyroid hormone. As no enamel aberrations were seen in the main part, it was concluded that the doses of PTH used do not seem to affect enamel formation and mineralization.

Amelogenesis↗

Effects of side chain length on ionization behavior and transbilayer transport of unconjugated dihydroxy bile acids: a comparison of nor-chenodeoxycholic acid and chenodeoxycholic acid.

13C-NMR spectroscopy was used to examine the effect of side chain length on the ionization properties and transmembrane transport rate of 3 alpha,7 alpha-dihydroxy bile acids. When solubilized in taurocholate micelles, [23-13C]nor-chenodeoxycholic acid (nor-CDCA) had a pKa of 6.1, similar to that of CDCA (pKa 6.2), its C24 homologue. In unilamellar phosphatidylcholine vesicles, the pKa of nor-CDCA was 7.0, whereas that of CDCA was 6.6. Lineshape analysis indicated that the rate of ionization of nor-CDCA as a micellar solute or as a vesicle component was very slow (0.4 x 10(5) sec-1) compared to that of acetic acid in water (8.7 x 10(5) sec-1). Lineshape analysis of spectra of the protonated form of nor-CDCA at acidic bulk pH indicated that the transbilayer transport rate of nor-CDCA (580 sec-1) was six times faster than that of CDCA (100 sec-1). It is proposed that the shorter side chain of the nor-CDCA molecule causes it to reside more deeply inside the vesicle bilayer than CDCA, explaining its weaker ionization and more rapid flip-flop rate. These in vitro experiments imply that, in vivo, a given C23 nor-dihydroxy bile acid will ionize less readily when present in membranes, and it will also flip-flop faster than its C24 homologue.

Biological Transport↗

A precise ionization method for determination of the energy deposited in small sites of irradiated objects.

The ionization method for determination of the energy deposited in sensitive sites of irradiated objects is usually used with the assumption that deposited energy is directly proportional to the number of ionizations in a site. This assumption fails in two cases important for nanometer-sized sites: (1) when the fluctuation characteristics of deposited energy such as higher moments, probability distributions, etc. are determined instead of the mean value; (2) when the radiation field in a site is spatially non-uniform. In this paper both cases are investigated. Exact formulae connecting energy and ionization quantities (moments, cumulants, probability distributions) are established as well as practical procedures to obtain energy quantities from those of ionization. The validity of the direct proportionality principle is analyzed and approximate methods to correct it are proposed. Some microdosimetric results are presented. The solution of these problems required that we refine some known notions and introduce new terms. In particular, in the paper the necessity of distinguishing two distinct types of events and correspondingly two sets of microdosimetric quantities is noted; new radiation parameters such as the fluctuation W value and non-equivalence factor for the events are defined and investigated numerically.

Models, Theoretical↗

Ionizing radiation down-regulates histone H1 gene expression by transcriptional and post-transcriptional mechanisms.

The cellular response to ionizing radiation includes growth arrest and DNA repair. However, little is known about the regulation of gene expression by this agent. The present studies demonstrate that exposure to ionizing radiation is associated with a dose-dependent decrease in histone H1 gene expression. Following treatment with 20 Gy, this effect was transient, detectable at 15-30 min, and maximal at 6 h. Nuclear run-on assays demonstrate that this down-regulation is controlled at least in part by transcriptional mechanisms. We also demonstrate that inhibition of protein synthesis with cycloheximide abrogates the down-regulation of both histone H1 gene transcription and mRNA levels in irradiated cells. The results demonstrate that treatment with ionizing radiation is associated with a decrease in the stability of the histone H1 transcript, and that this effect is reversed by inhibition of protein synthesis. These findings demonstrate that ionizing radiation activates at least two distinct signaling pathways that control histone H1 expression at the transcriptional and post-transcriptional levels.

Dose-Response Relationship, Radiation↗

Influence of changes in ionized calcium on cardiovascular reactivity during hemodialysis.

In order to prevent hypercalcemia due to the treatment of secondary hyperparathyroidism the use of low calcium dialysate is advocated. However, as calcium ions play a pivotal role in both myocardial and vascular smooth muscle contraction, lowering the dialysate calcium concentration might result in a further impairment of the cardiovascular response during dialysis. Therefore, arterial blood pressure, forearm vascular resistance (FVR) and venous tone (VT) (straing-gauge plethysmography) as well as cardiac dimensions and output (echocardiography) were measured in 10 hemodynamically stable dialysis patients (ejection fraction > 30%) during two standardized sessions of three-hour combined ultrafiltration-hemodialysis (UF + HD) at two different dialysate calcium concentrations: 1.25 and 1.75 mmol/l. High calcium UF + HD resulted in a significant increase in plasma ionized calcium (+0.19 +/- 0.11 mmol/l; p < 0.01) while ionized calcium remained unchanged during low calcium UF + HD (-0.02 +/- 0.07 mmol/l). As a result, systolic, diastolic and mean arterial blood pressure were respectively 14 +/- 10, 5 +/- 7 and 9 +/- 9 mmHg higher during high calcium UF + HD as compared to low calcium UF +/- HD (p < 0.05). There were no significant differences in FVR and VT between the two treatments. During both treatments FVR increased while VT decreased. In addition, there were no differences in calculated systemic vascular resistance. However, with comparable end-diastolic dimensions, stroke volume (-18 +/- 13 ml) and cardiac output (-1.3 +/- 1.5 l/min) decreased significantly (p < 0.05) only during low calcium UF + HD. We conclude that even in hemodynamically stable patients changes in plasma ionized calcium are an important determinant of the blood pressure response during dialysis therapy. Whereas peripheral vascular reactivity is unaffected by changes in ionized calcium, myocardial contractility is improved with higher dialysate calcium concentrations.

Adult↗

Selective sampling of multiply phosphorylated peptides by capillary electrophoresis for electrospray ionization mass spectrometry analysis.

The ionization of phosphorylated peptides in positive ion mode mass spectrometry is generally less efficient compared with the ionization of their non-phosphorylated counterparts. This can make phosphopeptides much more difficult to detect. One way to enhance the detection of phosphorylated proteins and peptides is by selectively isolating these species. Current approaches of phosphopeptide isolation are based on the favorable interactions of phosphate groups with immobilized metals. While these methods can be effective in the extraction, they can lead to incomplete sample recovery, particularly for the most strongly bound multiply phosphorylated components. A non-sorptive method of phosphopeptide isolation using capillary electrophoresis (CE) was recently reported [Zhang et al., Anal. Chem. 77 (2005) 6078]. The relatively low isoelectric points of phosphopeptides cause them to remain anionic at acidic sample pH. Hence, they can be selectively injected into the capillary by an applied field after the electroosmotic flow (EOF) is suppressed. The technique was previously coupled with matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). In this work, the exploitation of selective sampling in conjugation with electrospray ionization mass spectrometry (ESI-MS) is presented. The transition was not immediately straightforward. A number of major alterations were necessary for ESI interfacing. These adaptations include the choice of a suitable capillary coating for EOF control and the incorporation of organic solvent for efficient ESI. As expected, selective injection of phosphopeptides greatly enhanced the sensitivity of their detection in ESI-MS, particularly for the multiply phosphorylated species that were traditionally most problematic. Furthermore, an electrophoretic separation subsequent to the selective injection of the phosphopeptides was performed prior to analysis by ESI-MS. This allowed us to resolve the multiply phosphorylated peptides present in the samples, predominantly based on the number of phosphorylation sites on the peptides.

Caseins↗

Influence of the labeling group on ionization and fragmentation of carbohydrates in mass spectrometry.

The ionization and fragmentation behaviors of carbohydrate derivatives prepared by reaction with 2-aminobenzamide (AB), 1-phenyl-3-methyl-5-pyrazolone (PMP), and phenylhydrazine (PHN) were compared under identical mass spectrometric conditions. It has been shown that the intensities of signals in MS spectra depend on the kind of saccharides investigated and reducing end labels used. PMP sialyllactose, when ionized by ESI/MALDI, produced a mixture of [M + H]+, [M + Na]+, [M - H + 2Na]+ ions in the positive mode and [M - H]-, [M + Na - 2H]- ions in the negative mode. The AB and PHN derivatives formed abundant [M + H]+ and [M - H]- ions in ESI, and by matrix-assisted laser desorption/ionization (MALDI) produced abundant [M + Na]+ ions. PMP- and reduced AB-sialyllactose produced only Y-type fragment ions under both MS/MS sources. In the electrospray ionization (ESI)-MS/MS spectrum of PHN-sialyllactose, abundant ions corresponded to B, Z cleavages and in its MALDI-MS/MS spectrum, the abundant ions were consistent with Y glycosidic cleavages with the concurrence of B, C, and cross-ring fragment ions. In the MALDI-MS spectra of oligosaccharides acquired immediately after derivatization, it was possible to detect only PHN derivatives. After purification, spectra of all three types of derivatives showed high signal-to-noise ratios with the most abundant ions observed for AB reduced saccharides. [M + Na]+ ions were the dominant products and their fragmentation patterns were influenced by the type of the labeling and the kind of oligosaccharide considered. In the MALDI-PSD and -MS/MS spectra of AB-derivatized glycans, higher m/z fragment ions corresponded to B and Y cleavages and the loss of bisecting GlcNAc appeared as a weak signal or was not detected at all. Fragmentation patterns observed in the spectra of hybrid/complex PHN and PMP glycans were more comparable-higher m/z fragments corresponded to B and C glycosidic cleavages. For PHN glycans, the abundance of ions resulting from the loss of bisecting GlcNAc depended on the number of residues linked to the 6-positioned mannose. Also, PHN and PMP derivatives produced cross-ring cleavages with abundances higher than observed in the spectra of AB derivatized oligosaccharides. For high-mannose glycans, the most informative cleavages were provided by AB and PHN type of labeling. Here, PMP produced dominant Y-cleavages from the chitobiose while other ions produced weak signals.

Antipyrine↗