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Transecting the axons of neurons in the adult superior cervical ganglion (SCG; axotomy) results in the survival of most postganglionic neurons, the influx of circulating monocytes, proliferation of satellite cells, and changes in neuronal gene expression. In contrast, transecting the afferent input to the SCG (decentralization) results in nerve terminal degeneration and elicits a different pattern of gene expression. We examined the effects of decentralization on macrophages in the SCG and compared the results to those previously obtained after axotomy. Monoclonal antibodies were used to identify infiltrating (ED1+) and resident (ED2+) macrophages, as well as macrophages expressing MHC class II molecules (OX6+). Normal ganglia contained ED2+ cells and OX6+ cells, but few infiltrating macrophages. After decentralization, the number of infiltrating ED1+ cells increased in the SCG to a density about twofold greater than that previously seen after axotomy. Both the densities of ED2+ and OX6+ cells were essentially unchanged after decentralization, though a large increase in OX6+ cells occurred after axotomy. Proliferation among the ganglion's total non‐neuronal cell population was examined and found to increase about twofold after decentralization and about fourfold after axotomy. Double‐labeling experiments indicated that some of these proliferating cells were macrophages. After both surgical procedures, the percentage of proliferating ED2+ macrophages increased, while neither procedure altered the proliferation of ED1+ macrophages. Axotomy, though not decentralization, increased the proliferation of OX6+ cells. Future studies must address what role(s) infiltrating and/or resident macrophages play in regions of decentralized and axotomized neurons and, if both are involved, whether they play distinct roles. © 2002 Wiley Periodicals, Inc. J Neurobiol 53: 68–79, 2002  相似文献   
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The demonstration that activators of the Ca2+-activated, phospholipid-dependent protein kinase (protein kinase C), such as phorbol esters and diacylglycerols, can provoke luteinizing hormone (LH) release from pituitary gonadotropes, suggests a possible role for protein kinase C in stimulus-release coupling. We now report that administration of phorbol myristate acetate (PMA) to pituitary cell cultures causes a sustained reduction in Triton X-100-extracted protein kinase C activity. Further, phorbol ester- and diacylglycerol-stimulated LH release, as well as inhibition by PMA of gonadotropin-releasing hormone (GnRH)-stimulated inositol phosphate production, were reduced by pretreatment with PMA. The effects of phorbol ester pretreatment on PMA-stimulated LH release and protein kinase C activity were dose-dependent, sustained (greater than or equal to 24 h) and specific (no measurable effect with 4 alpha-phorbol didecanoate). The effect on PMA-stimulated LH release was apparently Ca2+-independent. In pituitary cell cultures with reduced protein kinase C activity, the gonadotropes have reduced responsiveness to PMA but release a similar proportion of cellular LH in response to Ca2+-mobilizing secretagogues (GnRH and A23187) as do control cells. The normal responsiveness to GnRH of cells with reduced responsiveness to protein kinase C activators calls into question the requirement for this enzyme for GnRH-stimulated LH release.  相似文献   
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Summary The nuclei of mesophyll cells of olive trees contain numerous sizeable crystalloid inclusions. Cytochemical examination using epoxy resin-embedded, semithin-sectioned tissue indicated the presence of proteins and oligoor polysaccharides in these inclusions. Their electron microscopical analysis revealed a crystalline substructure consisting of intersected subunits of high order. The spacing of the lattice fibrils and the angles of intersection were determined and used to establish a model of the unit cell of crystallization. It is suggested that the nuclear crystalloids of olive trees consist of glycoprotein molecules. They differ from the intranuclear crystalloids observed in other species predominantly in the high density of their subunit arrangement.  相似文献   
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Optimal Foraging Models and the Case of the !Kung   总被引:2,自引:0,他引:2  
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This paper describes a method for the culture of rat placental cells. The method involved separation of the basal layer from the labyrinth and sequential digestion of the cells. The cells were demonstrated not to be fibroblasts and are described in terms of their appearance under the light and electron microscopes. Transferrin and iron uptake by the cells was examined and compared with results achieved using other methods of study. The results showed that transferrin bound to receptors on the cell surface and that the transferrin, once bound, was taken into the cell. Only this internalized transferrin was capable of donating iron to the cells. The iron was accumulated within the cells and did not appear to be released to the incubation medium. The apparent dissociation constant (Ka) for transferrin was found to be 6.96 X 10(6) M-1, a value similar to that described by earlier workers. The placental cells had 3.4 X 10(11) binding sites/microgram DNA, equivalent to approximately 1 X 10(6) sites/cell. From these data, and from the rate of accumulation of iron by the cells, the receptor turnover time was estimated as being between 5 and 10 min.  相似文献   
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Wie aus Elektrophorese- und spektralphotometrischen Untersuchungen hervorgeht, liegt der kationische Farbstoff Chrysoidin G, je nach dem pH-Wert der wäßrigen Farblösungen, als I-, II-, III- und IV-wertiges Kation und elektroneutrales Farbbasenmolekül vor. Von physiologischer Bedeutung ist nur das I-wertige Kation und das Farbbasenmolekül. Die Unabhängigkeit der Absorptionsmaxima wäßriger Farbstofflösungen mit konstantem pH-Wert von der Farbstoffkonzentration deutet darauf hin, daß Chrysoidin keine Assoziate bildet. In organischen Lösungsmitteln ergibt Chrysoidin G je nach dem Grad der Polarität des Solvens und dem pH-Wert der wäßrigen Phase bei Ausschüttelungs-versuchen unterschiedliche Absorptionskurven. Natriumnucleinat bedingt eine negative Metachromasie; die jeweilige Lage des Maximums wird von der Natriumnucleinatkonzentration bestimmt. Rutin übt keinen wahrnehmbaren Einfluß auf das Absorptionsspektrum aus. Nach einer Vitalfärbung von Oberepidermiszellen der Schuppenblätter von Allium cepa mit Chrysoidin G zeigen das diffus gefärbte Plasma und die darin auftretenden gelben Kugeln übereinstimmende Absorptionsspektren mit einem breiten Bandenmaximum bei ? 420 nm. Der lebende Zellkern färbt sich nicht. Der gefärbte volle Zellsaft der Unterepidermis besitzt ein Maximum bei ? 448 nm. Aus der Lage der Absorptionsmaxima und dem Verlauf der Absorptionskurven kann geschlossen werden, daß die Färbung des lebenden Plasmas auf eine Anreicherung des einwertigen Kations und des Farbbasenmoleküls in polaren Lipoiden beruht, während es sich bei der Färbung des fixierten Zellkerns um eine Bindung des Chrysoidins an Nucleinsäuren handelt. Die Vitalfärbung des vollen Zellsaftes mit Chrysoidin G ist nicht auf den Gehalt der Vakuolen an Flavonolen zurückzuführen, sondern hängt vermutlich vom pH-Wert des Zellsaftes ab.  相似文献   
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