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Determination of sodium and potassium with ion-selective electrodes.

We compared different sample-handling techniques for measurement of Na+ and K+ with ion-selective electrodes (ISE). Imprecision was less for venous blood (with a minimum of heparin) than for plasma, serum, or capillary blood. The results for K+ were higher for serum than for whole blood, and higher for whole blood than for plasma. The latter difference was apparently due to release of K+ during the analysis. Values were more stable for whole blood stored at 20 degrees C than at 4 degrees C or 37 degrees C. The molality of Na+ in the plasma of mixed whole blood changed by -10.5 mmol/kg per unit change in blood pH. This could be explained by the different H+ buffering capacities of plasma and erythrocyte fluid, because when the pH is changed, the concentration of small anions in erythrocytes changes more than it does in plasma, with a consequent osmotic movement of water across the erythrocyte membrane. When we took into account the residual liquid-junction potential and the mass concentration of water in each of 65 patients' sera, the molality determined for Na+ was 1% lower and that of K+ 3% lower by ISE than by flame photometry--differences that may be related to ionic binding or to a lower molal activity coefficient in serum than in the calibrator.

Capillaries↗

[Selective electrochemical method of quantitative determination of chlorides in biological material].

An experiment was made to test the possibility of the quantitative analysis of chlorides in biological material by the modern potentiometric method using an ion-selective electrode. The results were compared with the current practical methods--polarography and photometry. The results demonstrate the suitability and benefits of the use of the ion-selective electrode, mainly in the series determination of Cl- ion concentration in biological material. The expediency of the tested analytical method and its well-reproducible results demonstrate the advantages of the ion-selective method in the analysis of chlorides in biological material, as compared with the polarographic and photometric methods.

Animals↗

Observations on electron probe x-ray microanalysis compared to other methods for measuring intracellular elemental concentration.

Electron probe X-ray microanalysis provides the capability of accurately measuring the concentration of a number of elements at the subcellular level in tissues which are appropriately prepared using cryofixative procedures. This preview compares quantitative data obtained by the authors, using X-ray microanalysis, with quantitative data obtained in other laboratories using routine chemical procedures such as flame photometry, atomic absorption spectrophotometry, titrimetry, and ion-selective electrodes. Results are compared for cells in whole tissue, for cells in suspension (erythrocytes), and for subcellular analysis. Subcellular elemental data obtained after cell fractionation and isolation and after cryomicrodissection are considered. Agreements and differences between the results obtained by the different methods of analysis as compared to microprobe are discussed and the sources of the differences are explored. The biological significance of microprobe concentration data itself is limited without additional information regarding the state of the elements, such as oxidation state, ionic activity, degree of binding, etc. In this regard, the supplementation of subcellular elemental concentration with ionic activity and flux data for the large amphibian oocyte is presented as an example of how measurement of multiple parameters can be used to explain the maintenance of subcellular concentration gradients.

Animals↗

Major developments in clinical chemical instrumentation.

The introduction of instrumentation into the clinical chemistry laboratory is reviewed for the period extending from about 1890 to 1960. Topics covered, from a historical point of view, include the microscope, analytical balance, and centrifuge, colorimetry and spectrophotometry, flame photometry, gasometric analysis, pH, electrophoresis, chromatography, radioisotopes, and automation.

Chemistry, Clinical↗

Laryngeal carcinoma: problems in diagnosis and classification.

Premalignant and malignant laryngeal lesions still offer great problems in diagnosis and classification. Early diagnosis is of the utmost importance for a good functional therapeutic result. Microlaryngoscopic techniques have increased the number of premalignant lesions which have been found. Diagnostic aids may be used e.g. toluidine blue staining and exfoliative cytology. Toluidine blue staining compared to the histological findings in 272 biopsy specimens showed an overall sensitivity of 91% but a specificity of only 52%. Exfoliative cytology compared to the histological findings in 420 cases showed an overall sensitivity of 83% and a specificity of 84%. Photometry on the histologic sections allows objective evaluation of nuclear hyperchromasia and polymorphism, which may otherwise by marked microscopically, especially in well differentiated lesions. Full use must be made of our diagnostic tools in classifying invasive carcinomas to enable selection of the most appropriate treatment. Laryngography is the best method to assess vertical tumor involvement. Computed tomography gives information about deep tumor extension and spread of tumor outside the larynx. However, the strength and weaknesses of computed tomography have to be further assessed by comparison with whole organ sections in the transverse plane.

Aged↗

A simple photometric method for determination of blood loss during transurethral surgery.

A new method for determining blood loss during transurethral operations is presented. Its basic principle is photometry of blood concentrations in haemolysed irrigating fluid. At test study was run on 50 patients who underwent transurethral prostatic resection because of hyperplasia. The photometer was of a type commonly used for routine determination of a haemoglobin concentration in blood. The apparatus for the test is therefore readily available. The test is simple to perform and gives highly reliable results within a few minutes. In seven cases double sampling was done. Since the results within each pair of samples were practically identical, double sampling was considered superfluous for the rest of the case series. Visual estimation of blood loss during transurethral operations seems to be customary in most urologic units in Sweden. We found this method to be unreliable, with underestimates of about 100% in several cases.

Aged↗

[Special qualification of a photometric procedure for determination of salicylic acid in therapeutic drug monitoring].

A procedure for the determination of salicylic acid from human serum is presented. It is based on an acidic extraction, a basic reextraction and the detection of salicylic acid as its iron-III-complex by photometry. The procedure is quantitative over a wide range of linearity, easy to carry out and is especially suitable for therapeutic drug monitoring in the treatment of juvenile rheumatoid arthritis.

Arthritis, Juvenile↗

[Hand-held pupillometer for evaluating pupillary light reflex in general practice and at the bedside].

Owing to the sophisticated equipment currently required for the investigation of pupillary behavior, pupillographic procedures are still the preserve of a few specialized laboratories. To allow pupillographic measurements under ophthalmological office conditions, we designed a portable pupillometer that can also be used for bedside examinations. Following a defined light stimulus, the prototype presented in this paper records a direct pupillary light reflex on the basis of infrared reflex photometry. The latency of the pupillary reflex and the pupillary constriction time are determined and shown on a digital display.

Equipment Design↗

[Photometric determination of copper in the blood].

Copper complex formation and extraction with rhodanide ions and a cyanin stain, cation violet, were studied. The reaction is characterized by a high sensitivity and specificity. A new method for blood copper extraction photometry has been developed.

Copper↗

Simpler flame photometric determination of erythrocyte sodium and potassium: the reference range for apparently healthy adults.

Separated erythrocytes are washed repeatedly with iso-osmolar magnesium chloride solution, lysed by adding saponin, and sodium potassium measured in the diluted hemolysate by flame photometry. The coefficient of variation for the method was less than 4%. Reference intervals determined for a healthy population and hospitalized (elective surgery) patients without electrolyte disorders were 4.6-7.8 mmol/liter for erythrocyte sodium concentration and 94-110 mmol/liter for erythrocyte potassium concentration (2.5-97.5 percentiles).

Adult↗

[Effects of some detergents in measuring inorganic phosphorus: a comparative characterization of 2 methods].

The authors compare the effects of Tween-20, Brij-35, Triton X-100 and X-305 on the development of stain for two methods: (1) with phosphoric molybdenic acid forming a complex with malachite blue and (2) with photometry of nonreduced phosphoric molybdenic complex. In the former method the type of detergent affects the degree of absorption of the photo-measured complex and in the latter it affects only the duration of the complex stabilization. Both methods are sufficiently sensitive, rapid, and reproducible. In both cases Triton X-100 was used in routine studies.

Coloring Agents↗

Potentiophotometry.

The present derivation relates, in terms of analytical chemical photometry, the theory of operation of an extremely simple instrument which embodies both the electrical analog solution to Beer's Law of Spectrophotometry and the multiplication of this solution by a constant, such that the voltage reading of the instrument is identical to the concentration of the light absorbing substance being measured. Because the raw output of the instrument is both linear and proportionable, calibration of the instrument is accomplished by appropriately setting and positioning the potential difference between two known standard solutions. The determination of the concentration of an unknown solution is then the direct reading of the voltage it generates in the system. This approach to measurement is called Potentiophotometry, because it is based on potentials generated from light.

Photometry↗

Laboratory confirmation of the diagnosis of cystic fibrosis.

The recent commercial introduction of a method for detecting albumin in meconium makes screening for cystic fibrosis feasible for many hospitals. If the tests is adopted, confirmatory tests should be available. Quantitative analyses of sweat for sodium by flame photometry and for chloride by silver titration and ion-sleective electrodes are now used as confirmatory tests. We compare results of these confirmatory methods applied to presons with cystic fibrosis, respiratory disorders, or digestive disorders, and to control subjects.

Adolescent↗

Staining of the lens capsule for circular continuous capsulorrhexis in eyes with white cataract.

We have developed a technique of staining the anterior capsule with a solution of indocyanine green that facilitates performance of the circular continuous capsulorrhexis in eyes with a mature cataract. We compared the results of phacoemulsification and intraocular lens implantation in 10 eyes with the capsule stained with results of 10 eyes having the same procedure with standard circular continuous capsulorrhexis. The results of specular microscopy and laser flare-cell photometry showed no statistically significant differences between the 2 groups. Although the safety of intraocular indocyanine green dye has not yet been definitively established, the findings of this pilot study suggest that it is safe and useful in visualizing the anterior capsule of a mature cataract during cataract surgery.

Aged↗

Pseudohyponatremia in acute hyperlipemic pancreatitis. A potential pitfall in therapy.

Six patients had apparent hyponatremia associated with hyperlipidemia and acute pancreatitis. To our knowledge, only one such patient with acute pancreatitis has previously been described, although the association of hyperlipidemia with "pseudohyponatremia" had been well documented. One of the above patients, whose condition was hemodynamically unstable on admission, developed dangerous symptoms of hyperosmolarity and cerebral dysfunction following aggressive resuscitation with hypertonic saline solution. The pseudohyponatremia results from displacement of water in the serum by the lipids, with sodium existing only in the aqueous phase. This volume displacement results in errors of sodium measurement when the latter is determined by flame photometry or indirect potentiometry, but not when determined by ultracentrifugation and direct potentiometry.

Acute Disease↗

Major and trace element compositions of the UICC standard asbestos samples.

Major and trace element compositions for chrysotile (2 samples), amosite, crocidolite, and anthophyllite UICC standard asbestos samples have been determined using UV-visible spectrophotometry, atomic absorption spectometry, flame photometry, volumetric analysis, and gravimetric analysis for major elements and x-ray and optical spectrometry for trace elements. The trace element data are for Li, S, Cl, Sc, V, Cr, Co, Ni, Cu, Zn, Ga, Rb, Sr, Zr, Nb, Ba, La, Ce, Pb, and Th and distribution in the various mineral phases is discussed.

Asbestos↗

Characterizations of critical processes in liquid-liquid phase separation of the elastomeric protein-water system: microscopic observations and light scattering measurements.

Biological self-assembly process of tropoelastin in an extracellular space, viewed as a key step of the elastogenesis, can be mimicked by the temperature-dependent coacervation of the elastin-related polypeptide-water system. Early and late stages of the phase separation behavior of the bovine neck ligamental alpha-elastin-water system were examined respectively by the laser light scattering photometry and phase contrast microscopy. Changes in the hydrodynamic size of molecular assemblies and visible microcoacervate droplet size were traced as a function of the concentration of alpha-elastin and temperature. Near the critical point, alpha-elastin concentration of 0.11 mg/mL and temperature of 21.5 degrees C, the phase separation was initiated after fast increase of the hydrodynamic size of primary aggregates as scattering particles and followed by the appearance of larger microcoacervate droplets with a broad size distribution. Whereas in the off-critical region, slow decrease of the hydrodynamic size of primary particles induced phase separation with smaller droplets of a narrow size distribution. Observation of the phase separation processes in the alpha-elastin-water system with metal chlorides and hydrophobic synthetic model polypeptide-water system indicated that the fast and slow molecular assembly processes were based on the fundamental hydrophobic interactions and involvements of electrostatic interactions between charged amino acid residues, respectively.

Animals↗

Flow cytometric determination of intracellular free potassium concentration.

A flow cytometric assay has been developed for determination of intracellular free potassium concentration ([K+]i). Investigated cells, loaded with the fluorescent pH indicator 2',7bis-(2-carboxyethyl)-5(and-6)-carboxyfluorescein (BCECF), are incubated in the presence of nigericin, and the intracellular pH is measured. The ionophore maintains the same ratio value [H+]/[K+] on both sides of the cytoplasmic membrane, so [K+]i can be evaluated from the measured intracellular pH (pHi) and the known parameters of the buffer. Application of the method revealed that the intracellular potassium concentration is significantly higher in lymphocytes than in proliferating cells of HUT-78, U266, and JY cell lines. A surprisingly low (60 mM) [K+]i concentration was observed with sperm cells of common carp. This method allows measurements on individual cells, provides data of excellent statistics, and still does not require large amounts of material. These features offer remarkable advantages over other techniques used for intracellular K+ measurements, such as steady-state fluorescence, atom absorption photometry, or energy-dispersive x-ray analysis.

Animals↗