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At least 19 recordsLinked to original sources

Potassium fluxes and ouabain binding in growing, density-inhibited and Rous sarcoma virus-transformed chicken embryo cells.

Potassium fluxes, ouabain binding, and Na+ and K+ intracellular concentrations were determined for cultures of growing normal, density-inhibited and Rous sarcoma virus-transformed chicken embryo fibroblasts. No significant differences in K+ influx or ouabain binding were detected between growing normal cells and Rous sarcoma virus-transformed cells; however, ouabain binding and ouabain-sensitive K+ influx were 1.5- to 1.8-fold lower in density-inhibited cells. Thus, potassium influx in this system can be classified as a growth-related, but not transformation-specific change. As determined by both flame photometry and radioisotopic (42K) equilibration, growing normal and density-inhibited cells had similar potassium contents, whereas transformed cells exhibited 1.4-fold higher potassium levels. Sodium ion levels, as measured by flame photometry, were also 2- to 4.5-fold higher in transformed than normal or density-inhibited cells. Complementary studies of potassium efflux showed a 1.3- to 1.5-fold higher rate (based on the percentage of pool exiting the cell) in growing normal versus density-inhibited or transformed fibroblasts. Because of the larger potassium pool in transformed cells, efflux based on absolute number of potassium ions is similar in normal and transformed chicken embryo fibroblasts.

Animals↗

[Effect of reduced extracellular level of sodium ions on the intracellular level of calcium ions in the cytoplasm of cultured rat cardiomyocytes].

Cytosolic free calcium [( Ca2+]in) was measured using fura-2 in isolated cultured ventricular myocytes of neonatal rat. Exposure of the cardiomyocyte to a solution in which all Na+ have been replaced by impermeable cations results in a 400-600 nmol/l increase of [Ca2+]in. This increase is followed by a slow decrease to the initial level. A decrease of the extracellular calcium concentration from 2.5 to 0.5 mmol./l or increase to 10 mmol/l produced, respectively, decrease and increase of the amplitude of [Ca2+]in rise in response to low-Na+ superfusion. Exposure of cardiomyocytes to low-Na+ solutions also led to a 2-3 fold increase of caffeine++-dependent Ca2+ release from intracellular stores. Changes in [Ca2+]in can be attributed to the operation of a sodium-calcium exchanger in heart cells.

Animals↗

Effect of gossypol on cultured TM3 Leydig and TM4 Sertoli cells: 31P and 23Na NMR study.

The effects of gossypol on glucose metabolism, ATP levels and intracellular sodium levels in murine TM3 Leydig and TM4 Sertoli cell lines were investigated, and their response compared. Relative ATP levels and sodium ion levels in the two cell lines were determined by 31P and 23Na NMR spectroscopy. Short-term effect of gossypol on phosphate metabolism in immobilized and perfused cells was apparent in 31P NMR spectra only with relatively high concentrations of gossypol, corresponding to about 40 times IC50. However, incubation with low gossypol concentrations markedly affected the energetic status of the cells, especially of the TM3 cells. Although inhibition of proliferation by gossypol was stronger with the TM4 cells, the decrease of intracellular ATP level and increase of sodium ion concentration were more pronounced in the TM3 cells. The growth-inhibitory effect of (-)-gossypol was stronger than that of (+)-gossypol, with the eudesmic ratio of 2-2.5. The enantioselectivity of the effect of gossypol on the energy metabolism of TM3 and TM4 cells was low, in contrast to the in vivo antispermatogenic effect, which was reported to be solely associated with (-)-gossypol. Inhibition of energy production in somatic testicular tissue is thus unlikely to be major cause of the antispermatogenic effect of gossypol.

Adenosine Triphosphate↗

[A decrease in plasma sodium ion during the course of an acute attack of porphyria].

Sodium ion level disorders were analysed in 53 patients with porphyria during 84 acute attacks of the disease. Thirty two daily water-electrolyte balances in 6 patients treated at ICU were analysed in detail. A decrease in sodium ion levels in patients with porphyria is rather rare and most frequently transient during the acute attack of the disease. Noted disorders were not characteristic for the reported syndrome of the abnormal antidiuretic hormone release. The treatment of the acute attack of porphyria requires the achievement of the positive energy balance which leads to the normalization of sodium ion levels despite intensive hydratation of some patients.

Acute Disease↗

Determination of trace sodium in the water-steam system of power plants using an FIA/ISE method with an automatic penetration and alkalization apparatus.

A new method for the rapid determination of trace-level sodium ion based on flow-injection analysis (FIA) and an ion selective electrode (ISE) is proposed. Various effects on the sensitivity of the method such as the flow rate and alkalinity of the carrier, sampling volume, temperature, length of reaction coil, length and thickness of alkalization tube, concentration of the alkalizing reagent etc. were investigated. The optimum conditions were ascertained. The method showed good linearity in the concentration ranges of 0.5 - 10 microg L(-1) and 10 - 100 microg L(-1), and could deal with 40 - 50 samples per hour. The consumption of the sample is only 0.80 mL per time. The relative standard deviation was 0.55%, and the recovery range was 98 - 103%. By designing a hermetically sealed single-line FIA-ISE manifold, a problem removing the interference of sodium ion from air could be solved, and automatic alkalization of the sample was realized. This method has been used for successfully determining the trace-level sodium ions in the water-steam system at fossil power plants.

Journal Article↗

Effect of sodium ion on levels of cyclic adenosine 3',5'-monophosphate in guinea pig cerebral slices.

Accumulation of cyclic AMP was studied in guinea pig cerebral slices when Na+ levels in the bathing medium were varied or agents which affect tissue Na+ content were added. When NaCl was gradually replaced with Tris-HCl or choline chloride, cyclic AMP formation was progressively enhanced. ;when Na+ was below 30 mM, cyclic AMP formation reached the maximum (approximately 30 fold), but this increment was not blocked by tetrodotoxin. The stimulatory effect of high K+ was nearly linear over 120 mM and became much more prominent when Na+ also was not blocked by tetrodotoxin. Ouabain (10(-4) M), electrical pulses and glutamate (5 x 10(-3) M), each stimulated cyclic AMP formation about 17-, 7- and 5-fold, respectively. Tetrodotoxin (2 x 10(-6) M) completely blocked the effects of electrical pulses and partially blocked the effects of glutamate and oubain. It is suggested that the increase of cyclic AMP in cerebral cortical slices may be related to the decrease in Na+ gradient across the cell membrane.

Animals↗

The sodium-calcium ion membrane exchanger: physiologic significance and pharmacologic implications.

The Na(+)-Ca2+ exchanger is a non-ATP-dependent protein that, under steady-state conditions, extrudes Ca2+ from the interior of the cell into the extracellular space via facilitated transport. The activity of the exchanger seems to be reduced in myocardial ischemia, leading to increased intracellular Ca2+ in the ischemic heart, which can result in arrhythmia, myocardial stunning, and necrosis. In contrast, congestive heart failure and myocardial hypertrophy are associated with increased exchanger activity and a decreased inotropic state. Pharmacologic agents are being developed to modulate sodium ion levels in the cell, which could enhance or reduce sodium-calcium exchange as needed in various pathophysiologic states. At this time there are no available drugs that act specifically on the Na(+)-Ca2+ exchanger itself. The exchanger has been cloned, and inhibitory peptides of the exchanger may soon be available for possible use in treatment of congestive heart failure.

Azetidines↗

A technique for the identification and direct analysis of hexahydro-1,3,5-tris(2-hydroxyethyl)-s-triazine in metalworking fluids using electrospray-mass spectrometry.

Hexahydro-1,3,5-tris(2-hydroxyethyl)-s-triazine is a widely used biocide in metalworking fluids that resists direct quantification in many analytical methods due to instability. It can be detected in electrospray-mass spectrometry (ES-MS) due to the formation of a charged and relatively stable adduct with the sodium ion. This adduct produces a distinct ion spectrum via collision-induced fragmentation, which should promote specific detection of the analyte in complex matrices. ES-MS detection of the analyte added to, or already present in, metalworking fluid samples at microg mL(-1) levels is demonstrated. Parameters affecting the formation and detection of the sodium adduct, including choice of solvent, alkalinity, and sodium ion level are explored. Linearity of response in flow injection mode is demonstrated.

Anti-Infective Agents↗

ONAC005 enhances salt stress tolerance by promoting suberin deposition in root endodermis.

Salt stress impairs photosynthetic efficiency and consequently reduces the growth, development, and grain yield of crop plants. The formation of hydrophobic barriers in the root endodermis, including the suberin lamellae and Casparian strips, is a key adaptive strategy for salt stress tolerance. In this study, we identified the role of the rice NAC transcription factor, ONAC005, in salt stress tolerance. ONAC005 expression was induced by NaCl and abscisic acid (ABA). Expression analysis using the β-glucuronidase reporter gene driven by the ONAC005 promoter revealed that ONAC005 is predominantly expressed in the stele and endodermis of rice roots. The null mutation of ONAC005 increased sodium ion levels in the shoots and roots, indicating susceptibility to salt stress, whereas ONAC005 overexpression enhanced tolerance to salt stress by reducing sodium ion accumulation. Yeast one-hybrid, chromatin immunoprecipitation, and dual-luciferase assays demonstrated that ONAC005 upregulates the expression of trehalose-6-phosphate synthase 8 (OsTPS8) by directly binding to its promoter region, leading to increased trehalose accumulation. ONAC005 enhances the formation of the root hydrophobic barrier by upregulating OsTPS8 expression under salt stress. Furthermore, considering the altered expression of ABA signaling and responsive genes, ONAC005 regulates the expression of genes in specific stress-responsive pathways that are independent of OsTPS8-mediated signaling. These results indicate that ONAC005 positively regulates hydrophobic barrier formation in the roots, thereby enhancing salt stress tolerance in rice.

Oryza↗

Preproenkephalin DNA-binding proteins in the rat: 5' flanking region.

Various extracellular signals (i.e. transmitters, hormones, growth factors, etc.), together with their respective second-messenger pathways, regulate transmitter biosynthesis and neuronal function by altering gene expression. In this study we validated a protocol for isolating rat striatum and adrenal medullary nuclei for the purpose of extracting, identifying, and characterizing, nuclear regulatory factors which may serve a functional role in signal-transduction processes. Through gel retardation studies using a 299 base pair (bp) XmnI-SacI 32P-labeled probe (derived from the 5' untranslated region of the rat preproenkephalin gene), we show that different patterns of retained bands result from nuclear extracts derived from rat adrenal medulla and striatum (as well as from other tissue). These tissue differences may have biological significance since rat adrenal medullae have low basal enkephalin levels while the striatum has high levels of this peptide and its respective mRNA. Additionally, certain retained bands were common to both cytosolic and nuclear compartments, suggesting binding factors may be located in either cell space. An initial biochemical characterization of these factors was also undertaken. Generally, salt levels of 100 mM or more reduced factor binding while 10-50 mM sodium ion levels showed preferentially enhanced bands. Binding activity appeared optimal at pH 6.8. As all retained bands were abrogated by proteinase K treatment, these factors appear to have a significant protein component. Finally, of particular interest is that this 299 bp region contains many sequences showing over 80% sequence identity with several previously characterized transcriptional control elements (i.e. cAMP and phorbol ester inducible enhancers, GCN4, AP1, Sp1, CCAAT binding factor, ATF, and AP2). If binding is confirmed (footprint analysis) and function validated (transfection studies), the evolutionary significance of the apparent presence of gene regulatory sequences and functional element divergence of the DNA region between different species can be evaluated.

Adrenal Medulla↗

Sodium transport in plant cells.

Salinity limits plant growth and impairs agricultural productivity. There is a wide spectrum of plant responses to salinity that are defined by a range of adaptations at the cellular and the whole-plant levels, however, the mechanisms of sodium transport appear to be fundamentally similar. At the cellular level, sodium ions gain entry via several plasma membrane channels. As cytoplasmic sodium is toxic above threshold levels, it is extruded by plasma membrane Na(+)/H(+) antiports that are energized by the proton gradient generated by the plasma membrane ATPase. Cytoplasmic Na(+) may also be compartmentalized by vacuolar Na(+)/H(+) antiports. These transporters are energized by the proton gradient generated by the vacuolar H(+)-ATPase and H(+)-PPiase. Here, the mechanisms of sodium entry, extrusion, and compartmentation are reviewed, with a discussion of recent progress on the cloning and characterization, directly in planta and in yeast, of some of the proteins involved in sodium transport.

Arabidopsis↗

The role of the iris-ciliary complex in the control of protein synthesis by the organ cultured rabbit ocular lens.

When freshly isolated rabbit lenses were co-cultured with iris-ciliary body (IC), the protein synthetic activity of these lenses decreased significantly. The inhibitory effect is temporal as longer incubation showed greater inhibition. it was also found that the presence of IC in the culture medium increases the sodium ion levels in the lenses and causes some decrease in the potassium ion levels. Both the protein synthetic activity and cation levels of the lenses cocultured with IC are at least partially reversible. It seems that the IC-derived factor(s) has a molecular weight of more than 1 kDa. It is not clear from these experiments whether the altered cation balance is responsible for the inhibition of the protein synthesis.

Animals↗

[Dynamics of indicators of blood inorganic phosphorus during gastrointestinal surgery].

Inorganic phosphorus and the associated potassium, magnesium, and sodium ion levels were measured in the serum and daily urine in the perioperative period in 210 patients of both sexes aged 31-84 years subjected to planned and urgent surgery on the abdominal organs. Control group consisted of 14 patients subjected to planned operations for inguinal hernias. Intraoperative hypophosphatemia was observed in all patients at the beginning, during, and immediately after the operation. The level of serum phosphorus decreased greater (48.1%) during operations performed under local anesthesia than under total anesthesia (by 24.5%) or under total anesthesia combined with epidural analgesia (by 20.4%). After the operation, changes in the serum phosphorus concentration directly depended on the severity of hemostatic disorders: after short operations, the level of serum phosphorus spontaneously normalized within the first 24 h after surgery. After more extensive interventions (resections of the stomach, large intestine, abdominoperineal operations), the decrease of serum phosphorus was 0.3 mmole/liter, on average, and persisted for at least 3-5 days after surgery. The changes were the greatest in patients subjected to urgent operations for ileus and peritonitis. In this group, manifest hypophosphatemia persisted for the entire period of observation, that is, for at least 5 days postoperation, and had to be corrected.

Adult↗

Osmotic demyelination syndrome. Lack of pathologic and radiologic imaging correlation.

An otherwise healthy diabetic woman developed severe hyponatremia, her serum sodium ion levels were rapidly corrected to normal, and she had a course of improvement then neurologic deterioration, with seizures and coma developing in the subsequent two days. Imaging studies, including computed tomography and magnetic resonance images of the brain as late as 19 days after the osmotic insult, failed to show pathologically demonstrated demyelinating lesions. Osmotic brain injury induces demyelination in areas of gray-white apposition and, clinically, results in a delayed neurologic deterioration one to three days following the osmotic challenge. Even with magnetic resonance imaging, review of the literature and this experience suggest that osmotic demyelination cannot reliably be imaged during the first month after the insult.

Brain↗