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"Blind focusing": an objective method for avoiding errors of focus at the television texture analysis system (TAS).

The amount of light energy a particle absorbs does not depend upon correct focus. The change in the path of light rays brought about by defocusing causes absorbing areas to be registered as areas of higher transmittance than when in focus. Already wellknown in photometry, this effect is put to use by the "blind focus" method at the television texture analysis system (TAS, Leitz). Some chromophores within the object to be measured are compared to a preset value of transmittance, for example T = 0.40. Only the area representing the structures as dense or denser than the preset density are registered. If the structures are out of focus the size of the registered area is too low, since by defocusing, structures to be measured become pale and diffuse, the correct focus corresponds to the largest area to a preset value of transmittance.

Amnion↗

The syndrome of senile gait.

Infrared computed stroboscopic photometry was used to quantify the kinematic profiles of walking in 10 elderly patients with symmetrical neurological disturbances of gait and in 19 age-matched neurologically healthy people. Clinical examination of the patients revealed similar profiles of walking even though their diagnoses were vascular dementia (2), normal pressure hydrocephalus (2), Alzheimer dementia with possible normal pressure hydrocephalus (2), mixed Alzheimer and vascular dementia (1), peripheral neuropathy (1), Alzheimer dementia with parkinsonian features (1), and undetermined (1). Quantitatively, the patients' gait kinematics deviated greatly from control values, but these deviations were statistically attributable to reductions in stride. We suggest that many gait disturbances in elderly people are similar, regardless of etiology, because the characteristics of these gait disturbances are heavily veiled by nonspecific stride-dependent changes that comprise the syndrome of senile gait.

Aged↗

Preparation of an insoluble fraction of ox brain and its affinity for Na+ and K+.

A water insoluble fraction was prepared from ox cerebrum by homogenization in water, dialysis against water, washing with water and drying in air at 293 degrees K. The fraction represented 15.5 +/- 3% (n = 8) of the weight of the fresh brain; it contained means of 81% (n = 6) of the lipid, found in freshly dried ox brain samples, and 46% (n = 5) (biuret method) or 51% (n = 3) (6) of the protein, respectively. The Na+ and K+ concentrations were measured by atomic emission flame photometry, firstly, in prepared media, and then after 4 ml of the same media had been mixed with 1 g of the insoluble fraction at 310 degrees K for 20 min; the concentration in the fraction was calculated from that found in the medium. The concentration in the medium (mM) after incubation was compared with that calculated to be in the fraction, (mumol/g). When the insoluble fraction was mixed with Krebs Ringer saline containing bicarbonate and glucose, modified so that the ratios of NaCl and KCl varied-(although together they always added up to 150 mM)-there was a mean of 2.6 times as much Na+ or K+ in the fraction (mumol/g) as in the media (mM) when the latter contained up to 80 mM Na+ or K+. When the concentration of the cations in the media exceeded this value, the concentration of Na+ in the fraction rose considerably, while the concentration of K+ fell to zero. When only Ca2+ or only Mg2+ was omitted from the Krebs-Ringer bicarbonate glucose saline, the fraction did not take up Na+ or K+ from the medium at any concentration. On electron microscopy the fraction was granular and amorphous and contained myelin figures. The fraction did not take up any significant volume of oxygen measured manometrically either in the modified Krebs-Ringer solutions or in a mitochondrial substrate.

Animals↗

Microenvironment of tryptophan residues in beta-lactoglobulin derivative polypeptide-sodium dodecyl sulfate complexes.

The changes of microenvironment of tryptophan residues in beta-lactoglobulin A and its cyanogen bromide (CNBr) fragments with the binding of sodium dodecyl sulfate (SDS) were studied with measurements of the rates of N-bromosuccinimide (NBS) modification reactions by stopped-flow photometry. Two tryptophan residues of carboxyamidomethylated (RCM) beta-lactoglobulin A in the states of their complexes with SDS were clearly distinguishable by their differences in NBS modification rates. We confirmed by experiments with CNBr fragments containing trytophan residue. The modification rates of Trp 19 in RCM beta-lactoglobulin A-SDS complexes were about 10-fold smaller than those expected for tryptophan residues exposed entirely to the aqueous solvent. The Trp 61 was hardly changed. The change of rate constants for Trp 19 was virtually consistent with those observed when N-acetyl-L-trytophan ethylester was dissolved in SDS micelles. For various species of polypeptide-SDS complexes, all tryptophan residues were reactive to NBS and also, for some of them, the differences in NBS modification rates were observed between tryptophan residues on a common polypeptide chain. These results suggest micellar and heterogeneous bindings of SDS to polypeptides.

Cyanogen Bromide↗

Attenuation of furosemide's diuretic effect by indomethacin: pharmacokinetic evaluation.

The pharmacokinetics and pharmacodynamics of intravenous furosemide, 40 mg, were studied in four normal males in a crossover fashion with and without indomethacin pretreatment. In each study 16 plasma and 10 urine samples were collected over 24 hr. Fluid and electrolyte urinary losses were replaced orally throughout the study. Unchanged furosemide and indomethacin were measured using HPLC; urinary sodium was measured by flame photometry. Pretreatment with indomethacin resulted in increased and prolonged fourosemide plasma levels, increased area under the curve, decreased plasma clearance, decreased renal clearance, increased half-life, no change in volume of distribution, and decreased sodium excretion and urine volume. Analysis of sodium excretion rate with time shows that the inhibiting effect of indomethacin was greater during the first 2 hr than at later times.

Adult↗

Determinants of bumetanide response in the dog: effect of probenecid.

The pharmacokinetics and pharmacodynamics of intravenous bumetanide (0.250 mg/kg), alone (treatment I) and after probenecid pretreatment (treatment II), were studied in four mongrel dogs. Lactated Ringer's solution was administered by vein throughout both treatments at a flow rate of 2 ml/min to avoid fluid and electrolyte depletion. Bumetanide and probenecid concentrations were analyzed by HPLC, sodium by flame photometry, and creatinine by colorimetry. Although the probenecid markedly reduced the plasma and renal clearances of bumetanide, as well as the fraction excreted unchanged in the urine, there was no significant difference between treatments I and II in the 4-hr natriuretic and diuretic responses. However, analysis of the dose-response curves between treatments I and II showed that sodium excretion was better correlated with bumetanide urinary excretion rate than with plasma concentration. The reasons for a poor correlation between treatments during the early time periods are discussed.

Animals↗

The effect of Ca2+ on the metarhodopsin I-II transition. I. Experiments.

The effect of Ca2+ on kinetics and equilibrium of the Meta I-II transition was studied in rhodopsin-digitonin-solutions using flash-photometry. With increasing Ca2+-concentrations the Meta I-II-equilibrium is shifted to Meta I. The pH-dependence of the Meta I-II equilibrium is suppressed by Ca2+. To obtain the same effect as with bivalent cations about the 10-fold concentration of univalent ions is required. Ca2+-ions have also an effect on the rate of equilibrating Meta I-II: with increasing Ca2+-concentration the rate-constants of the rapid and slow component decrease and become equal to the value at pH8. This observation can be described as an inhibition of the catalytic effect of protons by Ca2+. Similar results are obtained with Mg2+, whereas K+ and Na+ are practically ineffective. In the presence of the Ca2+-blocking agents verapamil (Isoptin) and D-600 the rate of equilibrating Meta I-II is reduced. These and several former observations can be explained by a model in which the Meta I-II transition is coupled with the separation of negative fixed charges, which can be clamped by Ca2+.

Animals↗

[Nickel, cobalt, iron, manganese, zinc and chromium content of black tea and the distribution of these metals between prepared infusion and the extracted tea leaves (author's transl)].

Twentytwo samples of black tea were examined for nickel, cobalt, iron, manganese and chromium by atomic absorption spectro-photometry. The amounts of these metals in the tea beverage as well as the amount remaining in the tea leaf residue was determined in duplicate experiments. From these results the proportion of each metal extracted may be calculated, as well as its concentration in the tea beverage prepared under defined conditions.

Chromium↗

[Trigonelline in coffee. I. Comparison of thin layer chromatography with high-performance liquid chromatography. Simultaneous determination of caffeine].

Determination of trigonelline in several green and roasted coffees by thin-layer (TLC) and high-performance liquid chromatography (HPLC) were compared. Using TLC, two methods of detection were also compared. In addition, caffeine could be determined using HPLC. The determinations were each made with several variations of extraction and clean-up. Recoveries, variation coefficients and detection limits are listed. The most suitable method was HPLC in connection with hot water extraction. Only water is required as the mobile phase. The values for precision are in most cases better than (trigonelline) or similar to (caffeine) those reported in the literature. The determination of trigonelline by TLC, followed by extraction and photometry, is possible with a similar precision, but the simultaneous determination of caffeine was not tested.

Alkaloids↗

Quantity of K, Ca, Na, Mg, Fe, Cu, Pb, Zn and ashes in DOC Tacoronte-Acentejo (Canary Islands, Spain) musts and wines.

This study determines ash, K, Ca, Na, Mg, Fe, Cu, Pb, and Zn content in musts and wines of the DOC Tacoronte-Acentejo (Tenerife, Canary Islands) from two consecutive harvests. Samples were treated with HNO3 and H2O2. Na and K were determined by flame photometry and the remaining metals by air/acetilene flame atomic absorption spectrophotometry. Significant differences were observed in Na, Ca and Mg contents between both harvests, possibly due to climate conditions.

Atlantic Islands↗

[Residues of ethylene chlorohydrin (ECH) in infusions of cocoa and in chocolate (author's transl)].

With a sensitive method residues of 0.2--0.6 ppm ECH are found in commercial and bendtop infusions of cocoa and 1.8--5.6 ppm ECH in chocolate. The balance is established with time between ECH and ethylene oxide (EO) in the boiling infusion and the distillate depending on time. It is found that the ECH concentration in the infusion is reduced in 15 min to 1/7 by evaporation alone. No reaction to EO or ethylene glycol or other metabolites is detectable. For the determination alkali is added to the sample, followed by distillation of any formed EO into dilute sulfuric acid, where ethylene glycol is oxidized to formaldehyd according to Malaprade. This is distilled off for further enrichment and determined according to Bremanis by photometry at 570 nm. The determination for limit was to 0.01 ppm, the standard deviation is s = 0.0034 ppm (N = 30), the yield 99.8%. The sensitivity may be increased tenfold by increasing sample size.

Cacao↗

Measurements of intracellular pH in single LLC-PK1 cells: recovery from an acid load via basolateral Na+/H+ exchange.

LLC-PK1 cells (a continuous epithelioid cell line with renal characteristics) are examined by microspectrofluorometry as single cells, in order to determine the mechanism of intracellular pH (pHi) recovery from an acid load imposed by ammonium preincubation and removal (NH4 prepulse). Initial experiments evaluate the intracellular K+ levels through a null point analysis of total cellular K+ with flame photometry. The response of BCECF (a pH-sensitive fluorescent dye) is then calibrated, using saturating concentrations of nigericin to cause defined changes in pH. For experiments with the microspectrofluorometer, LLC-PK1 cells were grown on either glass coverslips or filters (the latter attached to plastic coverslips with a hole under the filter). The cells on glass coverslips demonstrate a Na+-dependent recovery from an (NH4 prepulse) acid load which is sensitive to 1 microM ethylisopropylamiloride. They also demonstrate a 'set point' of activation of Na+/H+ exchange. When examined for changes in pH, due to changes in membrane potential, plasma membrane proton conductance could not be detected at resting pHi. Cells grown on filters also demonstrate a pHi recovery from an acid load which is Na+ dependent and ethylisopropylamiloride sensitive, but in this configuration, the majority of cells (22/23 preparations) require Na+ at the basolateral membrane for rapid pHi recovery. The morphology and polarity of the cells grown on permeable supports appears normal at the electron-microscopic level. The results are not affected by changes in cell seeding density or collagen treatment of the filters.

Animals↗

Metabolic control of the K+ channel of human red cells.

The effects of cAMP, ATP and GTP on the Ca2(+)-dependent K+ channel of fresh (1-2 days) or cold-stored (28-36 days) human red cells were studied using atomic absorption flame photometry of Ca2(+)-EGTA loaded ghosts which had been resealed to monovalent cations in dextran solution. When high-K+ ghosts were incubated in an isotonic Na+ medium, the rate constant of Ca2(+)-dependent K+ efflux was reduced by a half on increasing the theophylline concentration to 40 mM. This effect was observed in ghosts from both fresh and stored cells, but only if they were previously loaded with ATP. The inhibition was more marked when Mg2+ was added together with ATP, and it was abolished by raising free Ca2+ to the micromolar level. Like theophylline, isobutyl methylxanthine (10 mM) also affected K+ efflux. cAMP (0.2-0.5 mM), added both internally and externally (as free salt, dibutyryl or bromide derivatives), had no significant effect on K+ loss when the ghost free-Ca2+ level was below 1 microM, but it was slightly inhibitory at higher concentrations. The combined presence of cAMP (0.2 mM) plus either theophylline (10 mM), or isobutyl methylxanthine (0.5 mM), was more effective than cAMP alone. This inhibition showed a strict requirement for ATP plus Mg2+ and it was not overcome by raising internal Ca2+. Ghosts from stored cells seemed more sensitive than those from fresh cells, to the combined action of cAMP and methylxanthines. Loading ATP into ghosts from fresh or stored cells markedly decreased K+ loss. Although this effect was observed in the absence of added Mg2+ (0.5 mM EDTA present), it was potentiated upon adding 2 mM Mg2+. The K+ efflux from ATP-loaded ghosts was not altered by dithio-bis-nitrobenzoic acid (10 mM) or acridine orange (100 microM), while it was increased two- to fourfold by incubating with MgF2 (10 mM), or MgF2 (10 mM) + theophylline (40 mM), respectively. By contrast, a marked efflux reduction was obtained by incorporating 0.5 mM GTP into ATP-containing ghosts. The degree of phosphorylation obtained by incubating membranes with (gamma-32P)ATP under various conditions affecting K+ channel activity, was in direct correspondence to their effect on K+ efflux. The results suggest that the K+ channel of red cells is under complex metabolic control, via cAMP-mediated and nonmediated mechanisms, some which require ATP and presumably, involve phosphorylation of the channel proteins.

1-Methyl-3-isobutylxanthine↗

Cellular models for the detection and evaluation of drugs that modulate human phagocyte activity.

Simple testing models have been developed for the evaluation of chemical or biological compounds that modulate the activity of human phagocytes. Human neutrophils from buffy coats of donor blood are used. They are stimulated with receptor agonists, and the effects of test compounds on exocytosis of different enzymes, the generation of superoxide (respiratory burst), and cytotoxicity are quantified. All assays are performed in microtiter plates and the responses are evaluated by multi-well photometry or fluorimetry. The models are apt to detect compounds acting on phagocytes as agonists or antagonists, signal transduction activators or inhibitors and primers of agonist responses, and to assess cytotoxic effects.

Cell Survival↗

Familial glucocorticoid deficiency with achalasia of the cardia associated with mixed neuropathy, long-tract degeneration and mild dementia.

This paper describes the progress of two previously reported brothers with familial glucocorticoid deficiency, achalasia of the cardia, and alacrima. In their early 'teens both boys developed polyneuropathy with sensory, motor and autonomic components, Parkinsonism, and signs of both dorsal column and pyramidal tract damage. The older boy also showed signs of dementia. Red cell folate levels were markedly reduced but plasma and CSF folate were normal. Serum B12 and erythrocyte concentrations were at or below the lower limit of normal CSF levels of homovanillic acid and 5-hydroxyindole acetic acid (the major metabolites of dopamine and serotonin in brain) were low, indicating impaired turnover of the two amines within the nervous system. Positron emission photometry scans in the older boy showed low binding of c-methyl-spiperone and reduced uptake of 18-F-L-fluorodopa in the striatum, confirming the impairment in dopamine metabolism and suggesting both reduced synthesis and reduced receptor density. Treatment with L-dopa up to 800 mg/day (along with carbidopa 200 mg/day) corrected the low CSF homovanillic acid levels and produced some improvement in the Parkinsonism but no other obvious clinical benefit. Empirical treatment with hydroxycobalamin (1000 micrograms three times a week) and folinic acid (15 mg/day) was without clinical effect. The cause of the neurological disorder, low red-cell folate concentrations, and amine disturbance remains unknown, as does the pathogenesis of the adrenocortical failure.

Adolescent↗

Therapeutic effect of beta-[1-phenyl-5-bis(beta-chloroethyl)-amino-benzimidazolyl-(2)-DL-alanin (ZIMET 3164) on immune complex nephritis of NZB hybrid mice.

Beta-[1-Phenyl-5-bis(beta-chloroethyl)-amino-benzimidazolyl-(2)]-DL-alanin (ZIMET 3164), a highly immunosuppressive but moderately cytostatic agent, was found to be able to prevent the progression of spontaneous murine immune complex nephritis in a dose-dependent fashion. For experiments, BCG-stimulated conventional female (NMRI X NZB)F1 mice suffering from rapidly progressive nephritis, BCG-stimulated and unilaterally nephrectomized (NMRI X NZB)F1 females, and (AB/Jena X NZB)F1 females characterized by a prolonged course of the disease were used. The beneficial effect was quantified by fluorescence photometry and histometry, and semiquantitatively detected by estimation of the extent of damage of individual glomerular structures when histometric methods were unsuited. Treatment of young adult animals characterized by slight to moderate glomerular lesions was more effective than of older ones with advanced nephritis. At equi-immunosuppressive dose levels ZIMET 3164 was about twice as effective as the reference substance cyclophosphamide.

Animals↗

Altered drug translocation mediated by the MDR protein: direct, indirect, or both?

Overexpression of the MDR protein, or p-glycoprotein (p-GP), in cells leads to decreased initial rates of accumulation and altered intracellular retention of chemotherapeutic drugs and a variety of other compounds. Thus, increased expression of the protein is related to increased drug resistance. Since several homologues of the MDR protein (CRP, ItpGPA, PDR5, sapABCDF) are also involved in conferring drug resistance phenomena in microorganisms, elucidating the function of the MDR protein at a molecular level will have important general applications. Although MDR protein function has been studied for nearly 20 years, interpretation of most data is complicated by the drug-selection conditions used to create model MDR cell lines. Precisely what level of resistance to particular drugs is conferred by a given amount of MDR protein, as well as a variety of other critical issues, are not yet resolved. Data from a number of laboratories has been gathered in support of at least four different models for the MDR protein. One model is that the protein uses the energy released from ATP hydrolysis to directly translocate drugs out of cells in some fashion. Another is that MDR protein overexpression perturbs electrical membrane potential (delta psi) and/or intracellular pH (pHi) and thereby indirectly alters translocation and intracellular retention of hydrophobic drugs that are cationic, weakly basic, and/or that react with intracellular targets in a pHi or delta psi-dependent manner. A third model proposes that the protein alternates between drug pump and Cl- channel (or channel regulator) conformations, implying that both direct and indirect mechanisms of altered drug translocation may be catalyzed by MDR protein. A fourth is that the protein acts as an ATP channel. Our recent work has tested predictions of these models via kinetic analysis of drug transport and single-cell photometry analysis of pHi, delta psi, and volume regulation in novel MDR and CFTR transfectants that have not been exposed to chemotherapeutic drugs prior to analysis. This paper reviews these data and previous work from other laboratories, as well as relevant transport physiology concepts, and summarizes how they either support or contradict the different models for MDR protein function.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Influence of culture duration and ciliogenesis on the relationship between ciliary beat frequency and temperature in nasal epithelial cells.

Human nasal epithelial cells from excised mucosal specimens were cultured directly in suspension and sequentially on monolayer and in suspension. Ciliary beat frequency (CBF) was measured by fast Fourier transform analysis of computerized microscopic photometry. In biopsy material CBF increased in an approximately linear fashion at 0.6 Hz/degree C between 20 degrees C and 35 degrees C. Above 35 degrees C the increase was lower and was 0.25 Hz/degree C between 40 degrees C and 44 degrees C. CBF increased more rapidly in suspension culture between 25 and 35 degrees C (1 Hz/degree C) but reached a plateau at approximately 40 degrees C and decreased with further temperature elevation. Up to 44 degrees C all changes were reversible, while irreversible slowing and deterioration occurred above 45 degrees C. Values found after 3 weeks' initial suspension culture were similar to those after 6 weeks' sequential monolayer suspension culture. After 3 weeks of ciliogenesis in sequential suspension culture, all values up to 41 degrees C were statistically significantly higher than those under the other conditions. Ciliary activity was maintained and expressed in culture. CBF was higher than in biopsy material and a reversible decrease was observed at high temperature.

Body Temperature↗