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991.
M M Sánchez del Pino R A Hawkins D R Peterson 《The Journal of biological chemistry》1992,267(36):25951-25957
Endothelial cell membranes, the site of the blood-brain barrier, were obtained from the capillaries of cow brain. The luminal and abluminal membranes were separated by centrifugation on a discontinuous Ficoll gradient. Electron microscopy revealed that the membrane preparations consisted almost entirely of sealed vesicles. The release of latent enzyme activity showed that both membrane preparations were primarily right side out. Radiolabeled L-phenylalanine uptake by luminal vesicles was proportional to membrane protein concentration, with less than 10% binding. Transport was by a high affinity carrier (Km 11.8 +/- 0.1 microM, asymptotic standard error) that showed little or no stereospecificity, and was independent of Na+ or H+ gradients. Transport was inhibited by L-tryptophan, L-leucine, 2-aminobicyclo[2,2,1]heptane-2-carboxylate and D-phenylalanine, but not by N-(methylamino)-isobutyrate. Abluminal membranes showed an additional component in which a Na+ gradient accelerated the transport of both phenylalanine and N-(methylamino)-isobutyrate. These studies demonstrate the utility of membrane vesicles as a model to characterize the transport properties of the distinct membranes of the polar endothelial cells that form the blood-brain barrier. 相似文献
992.
Clifford Hawkins 《BMJ (Clinical research ed.)》1983,286(6373):1275-1276
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P. R. Hawkins 《Hydrobiologia》1988,157(2):105-118
This paper examines seasonal changes in the density and taxonomic composition of the zooplankton of a small tropical impoundment,
in relation to factors of water temperature, food supply and reservoir flushing. The response of the zooplankton to management
techniques designed to regulate the density of cyanobacteria in the dam are also considered.
Cyclopoid copepods were the dominant zooplankters, although Cladocera became much more significant following the introduction
of measures to control cyanobacteria. Planktonic Rotifera were a diverse but generally unimportant fraction of the total biomass,
except following seasonal or management induced environmental perturbations, when the Rotifera often recovered most rapidly. 相似文献
994.
Development of complete plants was achieved from isolated shoot apical meristems of Nicotiana tabacum L., Daucus carota L., Nicotiana glauca Grah., Tropaeolum majus L., and Coleus blumei Benth. The explants consisted of only meristematic dome tissue with no visible leaf primordia. A simple nutrient medium composed of the Murashige and Skoog salt mixture, 100 mg/liter myo-inositol, 0.4 mg/liter thiamin-HCl, 1-2 mg/liter IAA, 30 g/liter sucrose, and 1% agar was adequate. Histologically there occurred principally tissue enlargement during the first 3-6 days, followed by appearance of bipolar organization in 6-9 days and formation of a well-defined root apex and initiation of first leaf primordium by 12 days. 相似文献
995.
Harold D. Howse Robin M. Overstreet William E. Hawkins James S. Franks 《Journal of morphology》1992,212(2):175-189
The liver of the cobia, Rachycentron canadum, was examined by gross dissection, histological, and ultrastructural procedures. Other visceral organs were examined by histological techniques only. Unique perivenous smooth muscle cords are associated with veins in these systems, but they are particularly prominent in their association with the hepatic portal veins and their numerous intrahepatic branches. The perivenous smooth muscle cords accompany tributaries of the portal veins to the junction of the venules with the hepatic sinusoids. The reciprocal contraction and relaxation of various segments of the smooth muscle cords appear to result in pooling of blood in temporary reservoirs and in its transport to various regions of the organ. This process might apply to other organ systems as well. Possibly this unique relationship of the smooth muscle cords with veins functions in a diving reflex. Triads are occasionally encountered in the cobia liver. © 1992 Wiley-Liss, Inc. 相似文献
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Clifford Hawkins 《BMJ (Clinical research ed.)》1980,281(6238):503-504
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