Search PubMed⌕ Search

Biomedical subjects

K Winter

Publications and source records attributed to K Winter.

At least 73 records · Page 4Linked to original sources

[Sialochemical and morphology studies of the submandibular gland of the diabetic patient--a contribution to diabetic sialadenosis].

Sixty-four sialochemical and six morphological examinations were carried out on diabetics with swollen glandula submaxillaris. The significant decrease of the sodium content, the significant increase of potassium content as well as the significantly decreased amylase content of submaxillary saliva speak for diabetogenous sialadenosis. The microscopical and ultramicroscopical findings in needle biopsies confirm the morphological pattern of sialadenosis in the diabetic submaxillary gland.

Amylases↗

Effect of serotonin uptake inhibition by zimelidine on hypothalamic-pituitary-adrenal activity.

Plasma ACTH levels after oral ingestion of 2 g metyrapone at 24.00 hours in six healthy subjects were higher after pretreatment with zimelidine (300 mg) in comparison to placebo. Since zimelidine is a relatively selective serotonin reuptake inhibitor its action on hypothalamic-pituitary-adrenal (HPA) activity suggests that serotonin is a potent stimulator of ACTH release. The ratio of cortisol to 11-deoxycortisol was taken as a measure of 11-hydroxylase activity, which indicates biological activity of secreted ACTH. These cortisol/11-deoxycortisol ratios were significantly increased after zimelidine treatment, when compared to placebo. Both the ACTH response and the cortisol/11-deoxycortisol ratios substantiate evidence derived from animal experiments, indicating a stimulatory influence of serotonin on HPA activity. No firm conclusion, however, may be drawn on by which mechanism zimelidine exerts its action on the HPA-axis. Moreover these findings provide no information on whether serotonin has a stimulatory role on ACTH production under physiological condition.

Adrenocorticotropic Hormone↗

Relationships among measures of smoking topography.

Interrelationships between puffing, puff duration, puff volume, and heart rate change were assessed in a sample of 63 chronic, high rate smokers. Results showed puff duration and volume were related for males and females, and that heart rate change was related to volume in males and puff duration in females. Puffs were not related to either volume or heart rate change in males or females. These results call into question research on smoking behavior which does not measure volume, and shows that components of puffing may not be used interchangeably, and that neither puffs nor puff duration are accurate predictors of volume of intake.

Adult↗

Anatomical localization schemes for use in positron computed tomography using a specially designed headholder.

A headholder system is described for use in the correlation of images obtained with positron computed tomography (PCT) and other neuroradiological imaging modalities. Methods are described for defining brain anatomy from PCT images by the use of projection schemes from tomographic data. Cross-correlation of images between positron CT and standard lateral skull films, X-ray computed tomography (XCT), and two-dimensional rectilinear positron images are discussed. Such methods allow for improved reproducibility of head positioning and more precise cortical localization necessary in studies of normal brain function as well as in neuropathological conditions.

Brain↗

Intracellular Localization of Enzymes of Carbon Metabolism in Mesembryanthemum crystallinum Exhibiting C(3) Photosynthetic Characteristics or Performing Crassulacean Acid Metabolism.

Mesembryanthemum crystallinum, a halophilic, inducible Crassulacean acid metabolism (CAM) species, was grown at NaCl concentrations of 20 and 400 millimolar in the rooting medium. Plants from the low salinity treatment showed exclusively C(3)-photosynthetic net CO(2) fixation, whereas plants exposed to the high salinity level exhibited net CO(2) dark fixation involving CAM. Mesophyll protoplasts, isolated from both tissues, were gently ruptured, and the intracellular localization of enzymes was studied following differential centrifugation and Percoll density gradient centrifugation of protoplast extracts. Both centrifugation techniques resulted in the separation of intact chloroplasts, with up to 90% yield, from other organelles and the nonparticulate fraction of cells. Enzymes were identified by determination of activity and by sodium dodecyl sulfate gel electrophoresis of enzyme protein.Experiments established the extraorganellar (cytoplasmic) location of phosphoenolpyruvate carboxylase, enolase, phosphoglyceromutase, and NADP-malic enzyme; the mitochondrial location of NAD-malic enzyme; and the chloroplastic location of pyruvate, Pi dikinase. NAD-glyceraldehyde-3-phosphate dehydrogenase, phosphohexose isomerase, and phosphoglycerate kinase were associated with both cytoplasm and chloroplasts. NADP-dependent malate dehydrogenase activity was found in both the chloroplastic and extrachloroplastic fractions; the activity in the chloroplast showed an optimum at pH 8.0 and was dependent upon preincubation of enzyme with dithiothreitol. The extrachloroplastic activity showed an optimum at pH 6.5 and was independent of pretreatment with dithiothreitol. Protoplast extracts of M. crystallinum performing CAM exhibited higher activities (expressed per mg chlorophyll per min) of phosphoenolpyruvate carboxylase, pyruvate, Pi dikinase, NADP-malic enzyme, NAD-malic enzyme, NADP-malate dehydrogenase, enolase, phosphoglyceromutase, NAD-glyceraldehyde-3-phosphate dehydrogenase, phosphoglycerate kinase, and phosphohexose isomerase than protoplast extracts from M. crystallinum not exhibiting CAM. The increase in total activity of the latter three enzymes following exposure of plants to 400 millimolar NaCl and the development of CAM was due to specific increases in the levels of activity in the cytoplasm.

Journal Article↗

Influence of Nitrate and Ammonia on Photosynthetic Characteristics and Leaf Anatomy of Moricandia arvensis.

The leaf anatomy and certain photosynthetic properties of nitrate- and ammonia-grown plants of Moricandia arvensis (L.) DC., a species previously reported to be a C(3)-C(4) intermediate, were investigated. Nitrate-grown plants had a high level of malate in the leaves while ammonia-grown plants had low levels of malate. In young leaves of nitrate-grown plants, there was a diurnal fluctuation of malate content, increasing during the day and decreasing during the night. Titratable acidity remained low in leaves of both nitrate- and ammonia-grown plants.In nitrate-grown plants, the activity of phosphoenolpyruvate (PEP) carboxylase was about 2-fold higher than in ammonia-grown plants, the latter having activity typical of C(3) species. Also, in nitrate-grown plants, the ratio of activities of ribulose 1,5-bisphosphate (RuBP) carboxylase/PEP carboxylase was lower than in ammonia-grown plants. Nitrate reductase activities were higher in nitrate- than in ammonia-grown plants and the greatest activity was found in younger leaves.With nitrate-grown plants, during a pulse-chase experiment the label in malate, as a percentage of the total labeled products, increased from about 7% after a 10-second pulse with (14)CO(2) up to 17% during a 5-minute chase with (12)CO(2). The pattern of (14)C labeling in various metabolites suggests the primary carboxylation is through RuBP carboxylase with a secondary carboxylation through PEP carboxylase. In similar experiments, with ammonia-grown plants, the percentage label in malate was only 0% to 4% with no increase in malate labeling during the chase period. The CO(2) compensation point was lower in nitrate-grown than ammonia-grown plants.There was no evidence of Kranz-like anatomy in either the nitrate or ammonia-grown plants. Mitochondria of bundle-sheath cells were strikingly positioned along the inner tangential wall. This might allow the chloroplasts of these cells to fix the mitochondrial photorespired CO(2) more effectively and contribute to the low CO(2) compensation point in the species. Chloroplasts of bundle-sheath cells and contiguous mesophyll cells were similar in size and structure in plants grown on different media, although chloroplast thylakoids and stromata of the ammonia-grown plants stained more intensely than those of nitrate-grown plants. In addition, irregular clusters of phytoferritin particles occurred in the chloroplasts of the ammonia-grown plants.The results indicate that the substantial activity of PEP carboxylase, incorporation of CO(2) into malate, the high malate content, and in part the relatively low CO(2) compensation point in Moricandia arvensis may be accounted for by metabolism of nitrate rather than by a state of C(3)-C(4) intermediacy.

Journal Article↗

Light-Stimulated Burst of Carbon Dioxide Uptake following Nocturnal Acidification in the Crassulacean Acid Metabolism Plant Kalanchoë diagremontiana.

CO(2) exchange characteristics were studied during the light-stimulated burst of CO(2) uptake (MB) immediately following a period of nocturnal CO(2) fixation in the Crassulacean acid metabolism plant Kalanchoë daigremontiana. During the early parts of the MB, stimulation of net CO(2) uptake by low ambient O(2) concentration (1.5%) was small, and leaves showed the capacity for net CO(2) uptake at low ambient CO(2) partial pressure (30 microbars) and when the MB was interrupted by darkness. During the later phase of the MB, stimulation of net CO(2) uptake by 1.5% O(2) was increased, and net CO(2) loss was recorded both at 30 microbars CO(2) and during dark interruptions. These results suggest that CO(2) fixation during the MB occurs simultaneously via phosphoenolpyruvate carboxylase (predominant during the early phase of the MB) and via ribulose bisphosphate carboxylase (predominant during the later phase of the burst). The magnitude and duration of the MB was increased by a reduction in the length of the dark period and by low (15 degrees C) compared to high (30 degrees C) leaf temperatures.

Journal Article↗

Nocturnal Accumulation of Malic Acid Occurs in Mesophyll Tissue without Proton Transport to Epidermal Tissue in the Inducible Crassulacean Acid Metabolism Plant Mesembryanthemum crystallinum: EVIDENCE AGAINST A PREVIOUS HYPOTHESIS.

The inducible Crassulacean acid metabolism plant, Mesembryanthemum crystallinum, accumulates malic acid, i.e. equivalent amounts of malate anions and protons in the mesophyll cells at night. Levels of malate and titratable acidity are low in the epidermal tissue and do not change significantly during the day/night cycle. This result is in contrast to a recent report (Bloom 1979 Plant Physiol 64: 919-923) that the synthesis of malic acid during dark CO(2) fixation is associated with an equivalent exchange of inorganic cations from epidermal tissue with protons in the mesophyll cells.

Journal Article↗

[Contributions to the liberation of drugs from suspension ointments. Part 12: On the suitability of some synthetic hydrophobic membranes for liberation studies (author's transl)].

The release rates determined for various salicylic acid and prednisolone ointments on using different membranes in the in vitro model according to Horsch and Kögel [20] were compared with one another in regard to possible membrane-specific differences in liberation kinetics and in validity. The results obtained with salicylic acid ointments by the lipophil collodion-lipid membranes and silicone membranes developed by Fürst and coworkers [14] were comparable with those yielded by the hydrophilic cellulose membrane: release rates of comparable order of magnitude; same order of ranking of the bases used; plots of the cumulated percentages of release against the root of time providing no evidence of differences in kinetics. In contrast, the permeability of a further hydrophobic membranes (silicone, polyester) was markedly lower. As to the prednisolone ointments, the collodion-lipid membranes yielded comparable release rates and orders of ranking when the drug was incorporated into hydrophilic bases, whereas the silicone membrane was considerably inferior in permeability.

Kinetics↗

Day/Night Changes in the Sensitivity of Phosphoenolpyruvate Carboxylase to Malate during Crassulacean Acid Metabolism.

Phosphoenolpyruvate carboxylase (PEPC) was extracted from Mesembryanthemum crystallinum L. performing Crassulacean acid metabolism, at frequent intervals during a 12-hour light/12-hour dark cycle. Inhibition of PEPC by malate was followed at pH 8.0 and 7.5, 1 minute after homogenization of leaves. PEPC was more sensitive to malate during the light than during the dark periods and inhibition by malate was more pronounced at pH 7.5 than 8.0. For example, PEPC was not or only slightly inhibited by 0.5 millimolar malate during the dark period at both pH values and the rates per milligram chlorophyll were about the same. During the light period, 0.5 millimolar malate resulted in a 20 to 30% reduction of PEPC activity at pH 8.0 and a 80 to 90% reduction at pH 7.5. These and other experiments, in which plants were kept in prolonged dark periods, indicate that the increase in sensitivity of PEPC to malate is correlated with the change from acidification to deacidification in the tissue. These interactions account for apparent changes in pH response of PEPC in crude extracts assayed at different times of the day/night cycle.The experiments suggest the existence of two distinct states of PEPC in vivo, which differ in their susceptibility to malate inhibition during a day/night cycle. The change in properties is discussed in relation to the regulation of PEPC during Crassulacean acid metabolism.

Journal Article↗

Carbon Dioxide and Water Vapor Exchange in the Crassulacean Acid Metabolism Plant Kalanchoë pinnáta during a Prolonged Light Period: METABOLIC AND STOMATAL CONTROL OF CARBON METABOLISM.

Net CO(2) and water vapor exchange were studied in the Crassulacean acid metabolism plant Kalanchoë pinnáta during a normal 12-hour light/12-hour dark cycle and during a prolonged light period. Leaf temperature and leaf-air vapor pressure difference were kept constant at 20 C and 9 to 10 millibar. There was a 25% increase in the rate of CO(2) fixation during the first 6 hours prolonged light without change in stomatal conductance. This was associated with a decrease in the intracellular partial pressure of CO(2), a decrease in the stimulation of net CO(2) uptake by 2% O(2), and a decrease in the CO(2) compensation point from 45 to 0 microbar. In the normal light period after deacidification, leaves showed a normal light dependence of CO(2) uptake but, in prolonged light, CO(2) uptake was scarcely light-dependent. The increase in titratable acidity in prolonged light was similar to that in the dark.The results suggest a change from C(3) photosynthetic CO(2) fixation in the second part of the 12-hour light period to a mixed metabolism in prolonged light with both ribulose bisphosphate carboxylase and phosphoenolpyruvate carboxylase as primary carboxylating enzymes.

Journal Article↗