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971.
972.
Allergic rhinoconjunctivitis is the most common atopic condition encountered in clinical practice. Analysis of the pathogenesis of this condition permits identification of optimal therapeutic targets. The increased knowledge of the underlying pathophysiology suggests that multiple inflammatory mediators are involved in the pathogenesis of the allergic reaction in the ocular and nasal mucosa. However, despite the presence of a wide range of different mediators, it would appear that histamine plays a key role. Experimental allergen challenge studies have demonstrated that histamine is the only mediator which produces the full spectrum of clinical manifestations of the acute allergic reaction when applied to the mucosal surface. While both H(1)- and H(2)-receptors are present in the nasal and ocular mucosa, only H(1)-receptor antagonists are capable of inhibiting histamine-induced symptoms of allergic rhinoconjunctivitis. Furthermore, although the exact role of histamine in the immediate and prolonged allergic reaction has not yet been fully elucidated, these findings do not exclude the possibility that histamine is involved in these processes. The available evidence therefore supports current clinical practice for use of H(1)-receptor antagonist as a first-line therapy in patients with this atopic condition. 相似文献
973.
974.
Jonas Waldenstr?m Diana Axelsson-Olsson Bj?rn Olsen Dennis Hasselquist Petra Griekspoor Lena Jansson Susann Teneberg Lovisa Svensson Patrik Ellstr?m 《PloS one》2010,5(2)
Campylobacter jejuni is a common cause of bacterial gastroenteritis in most parts of the world. The bacterium has a broad host range and has been isolated from many animals and environments. To investigate shedding patterns and putative effects on an avian host, we developed a colonization model in which a wild bird species, the European Robin Erithacus rubecula, was inoculated orally with C. jejuni from either a human patient or from another wild bird species, the Song Thrush Turdus philomelos. These two isolates were genetically distinct from each other and provoked very different host responses. The Song Thrush isolate colonized all challenged birds and colonization lasted 6.8 days on average. Birds infected with this isolate also showed a transient but significant decrease in body mass. The human isolate did not colonize the birds and could be detected only in the feces of the birds shortly after inoculation. European Robins infected with the wild bird isolate generated a specific antibody response to C. jejuni membrane proteins from the avian isolate, which also was cross-reactive to membrane proteins of the human isolate. In contrast, European Robins infected with the human isolate did not mount a significant response to bacterial membrane proteins from either of the two isolates. The difference in colonization ability could indicate host adaptations. 相似文献
975.
Rapid evolutionary change over a few generations has been documented in natural populations. Such changes are observed as organisms invade new environments, and they are often triggered by changed interspecific interactions, such as differences in predation regimes. However, in spite of increased recognition of antagonistic male-female mating interactions, there is very limited evidence that such intraspecific interactions could cause rapid evolutionary dynamics in nature. This is because ecological and longitudinal data from natural populations have been lacking. Here we show that in a color-polymorphic damselfly species, male-female mating interactions lead to rapid evolutionary change in morph frequencies between generations. Field data and computer simulations indicate that these changes are driven by sexual conflict, in which morph fecundities are negatively affected by frequency- and density-dependent male mating harassment. These frequency-dependent processes prevent population divergence by maintaining a female polymorphism in most populations. Although these results contrast with the traditional view of how sexual conflict enhances the rate of population divergence, they are consistent with a recent theoretical model of how females may form discrete genetic clusters in response to male mating harassment. 相似文献
976.
Esther Klaile Olga Vorontsova Kristmundur Sigmundsson Mario M. Müller Bernhard B. Singer Lars-G?ran ?fverstedt Stina Svensson Ulf Skoglund Bj?rn ?brink 《The Journal of cell biology》2009,187(4):553-567
Cell adhesion molecules (CAMs) sense the extracellular microenvironment and transmit signals to the intracellular compartment. In this investigation, we addressed the mechanism of signal generation by ectodomains of single-pass transmembrane homophilic CAMs. We analyzed the structure and homophilic interactions of carcinoembryonic antigen (CEA)–related CAM 1 (CEACAM1), which regulates cell proliferation, apoptosis, motility, morphogenesis, and microbial responses. Soluble and membrane-attached CEACAM1 ectodomains were investigated by surface plasmon resonance–based biosensor analysis, molecular electron tomography, and chemical cross-linking. The CEACAM1 ectodomain, which is composed of four glycosylated immunoglobulin-like (Ig) domains, is highly flexible and participates in both antiparallel (trans) and parallel (cis) homophilic binding. Membrane-attached CEACAM1 ectodomains form microclusters in which all four Ig domains participate. Trans-binding between the N-terminal Ig domains increases formation of CEACAM1 cis-dimers and changes CEACAM1 interactions within the microclusters. These data suggest that CEACAM1 transmembrane signaling is initiated by adhesion-regulated changes of cis-interactions that are transmitted to the inner phase of the plasma membrane. 相似文献
977.
In elaborating a model of the progress of an epidemic, it is necessary to make assumptions about the distributions of latency
times and infectious times. In many models, the often implicit assumption is that these times are independent and exponentially
distributed. We explore the effects of altering the distribution of latency and infectious times in a complex epidemic model
with regional divisions connected by a travel intensity matrix. We show a delay in spread with more realistic latency times.
More realistic infectiousness times lead to faster epidemics. The effects are similar but accentuated when compared to a purely
homogeneous mixing model. 相似文献
978.
979.
Silja K. Diemer Birte Svensson Linnéa N. Babol Darrell Cockburn Pieter Grijpstra Lubbert Dijkhuizen Ditte M. Folkenberg Christel Garrigues Richard H. Ipsen 《Food biophysics》2012,7(3):220-226
Interactions between milk proteins and ??-glucans at pH 4.0?C5.5 were investigated by use of surface plasmon resonance. The ??-glucans were synthesised with glucansucrase enzymes from Lactobacillus reuteri strains ATCC-55730, 180, ML1 and 121. Variations in the molecular characteristics of the ??-glucans, such as molecular weight, linkage type and degree of branching, influenced the interactions with native and denatured ??-lactoglobulin and ??-casein. The highest overall binding levels were reached with ??-(1,4) compared to ??-(1,3) linked glucans. Glucans with many ??-(1,6) linkages demonstrated the highest binding levels to ??-casein, whereas the interaction with native ??-lactoglobulin was suppressed by ??-(1,6) linkages. Glucans with a higher degree of branching generally displayed lower protein binding levels whereas a higher molecular weight resulted in increased binding to ??-casein. The interactions with ??-casein were not pH dependent, whereas binding to denatured ??-lactoglobulin was highest at pH 4.0 and binding to native ??-lactoglobulin was optimal at pH 4.5?C5.0. This study shows that molecular weight, linkage type and degree of branching of ??-glucans highly influence the binding interactions with milk proteins. 相似文献