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The past, present and future of childhood malaria mortality in Africa   总被引:11,自引:0,他引:11  
During the past few years, there has been a historic series of declarations of renewed commitment to malaria control in Africa. Whether the burden of malaria is increasing in Africa is a moot point. This article attempts to re-construct the evidence for the trends in childhood mortality as a result of Plasmodium falciparum infection over the last century in Africa.  相似文献   
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Angiotensin II(ANG II) produces vasoconstriction by a direct action on smooth musclecells via AT1 receptors. Thesereceptors are also present in the endothelium, but their function ispoorly understood. This study was therefore undertaken to determinewhether ANG II elicits the release of nitric oxide (NO) from cultured rat aortic endothelial cells. NO production, measured by theaccumulation of nitrite and nitrate, was enhanced by107 M ANG II. Thebiological activity of the NO released by ANG II action was evaluatedby measuring its guanylate cyclase-stimulating activity in smoothmuscle cells. The guanosine 3',5'-cyclic monophosphate (cGMP) content of smooth muscle cells was significantly increased byexposure of supernatant from ANG II-stimulated endothelial cells. Theseeffects resulted from the activation of NO synthase, as they wereinhibited by the L-arginineanalogs. These ANG II actions were mediated by theAT1 receptor, as shown by theirinhibition by the AT1 antagonistlosartan. The cGMP production by reporter cells was inhibited by thecalmodulin antagonist W-7, suggesting that ANG II activates endothelialcalmodulin-dependent NO synthase. This hypothesis is also supported bythe increase of intracellular free calcium induced by ANG II inendothelial cells. ANG II also stimulated luminol-enhancedchemiluminescence in endothelial cells. This effect was inhibited byN-monomethyl-L-arginine andsuperoxide dismutase, suggesting that this luminol-enhancedchemiluminescence reflected an increase in peroxynitrite production.Thus ANG II stimulates NO release from macrovascular endothelium, whichmay modulate the direct vasoconstrictor effect of ANG II on smoothmuscle cells. However, this beneficial effect may be counteracted bythe simultaneous production of peroxynitrite, which could contribute toseveral pathological processes in the vascular wall.

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Although theskeletal muscle sodium channel is a good substrate for cAMP-dependentprotein kinase (PKA), no functional consequence was observed for thischannel expressed in heterologous systems. Therefore, we investigatedthe effect of 8-(4-chlorophenylthio)adenosine 3',5'-cyclicmonophosphate (CPT-cAMP), a membrane-permeable cAMP analog, on thenative sodium channels of freshly dissociated rat skeletal musclefibers by means of the cell-attached patch-clamp technique. Externallyapplied CPT-cAMP (0.5 mM) reduced peak ensemble average currents by~75% with no change in kinetics. Single-channel conductance andnormalized activation curves were unchanged by CPT-cAMP. In contrast,steady-state inactivation curves showed a reduction of the maximalavailable current and a negative shift of the half-inactivationpotential. Similar effects were observed with dibutyryl adenosine3',5'-cyclic monophosphate but not with cAMP, which doesnot easily permeate the cell membrane. Incubation of fibers for 1 hwith 10 µM H-89, a PKA inhibitor, did not prevent the effect ofCPT-cAMP. Finally, the -adrenoreceptor agonist isoproterenolmimicked CPT-cAMP when applied at 0.5 mM but had no effect at 0.1 mM.These results indicate that cAMP inhibits native skeletal muscle sodiumchannels by acting within the fiber, independently of PKA activation.

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In small mammals living in highly seasonal environments, observationalstudies show that female home range size and exclusiveness aresmaller in the nonbreeding winter season than in the breedingsummer season. This has led to the notion that nonbreeding femalesare more social and decrease territorial behavior during winter.However, because territoriality decreases with increasing populationdensity, and density normally increases during the breedingseason, the effects of density and season on social structureare usually confounded. To find out which of the 2 factors explainsspace use, we experimentally established 3 high-density and3 low-density root vole (Microtus oeconomus) populations inlate spring and monitored the populations into the nonbreedingwinter season. Population sizes were controlled throughout thebreeding period to minimize seasonal variation in density. Homerange sizes were larger in founder females than in field-bornfemales but did not change with season or density. Area exclusivelyused by individual females was lower in winter than summer,and founder females decreased exclusiveness as density increased.We argue that this seasonal pattern of space use might be causedby variation in benefits of group living, whereas founder femalesalso responded to density-dependent competition by reducingarea exclusively used.  相似文献   
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Background  

Tuberization in potato (Solanum tuberosum L.) represents a morphogenetic transition of stolon growth to tuber formation, which is under complex environmental and endogenous regulation. In the present work, we studied the regulatory mechanisms and the role of different morphogenetic factors in a newly isolated potato mutant, which exhibited spontaneous tuberization (ST). The ST mutant was characterized in detail at morphological, physiological and biochemical levels.  相似文献   
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Translocation of DNA and protein fibers through narrow constrictions is a ubiquitous and crucial activity of bacterial cells. Bacteria use specialized machines to support macromolecular movement. A very important step toward a mechanistic understanding of these translocation machines is the characterization of their physical properties at the single molecule level. Recently, four bacterial transport processes have been characterized by nanomanipulation at the single molecule level, DNA translocation by FtsK and SpoIIIE, DNA import during transformation, and the related process of a type IV pilus retraction. With all four processes, the translocation rates, processivity, and stalling forces were remarkably high as compared with single molecule experiments with other molecular motors. Although substrates of all four processes proceed along a preferential direction of translocation, directionality has been shown to be controlled by distinct mechanisms.  相似文献   
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