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A common feature of neurodegenerative disorders, in particular Alzheimer's disease (AD), is a chronic neuroinflammation associated with aberrant neuroplasticity. Development of neuroinflammation affects efficacy of stem and progenitor cells proliferation, differentiation, migration, and integration of newborn cells into neural circuitry. However, precise mechanisms of neurogenesis alterations in neuroinflammation are not clear yet. It is well established that expression of NLRP3 inflammasomes in glial cells marks neuroinflammatory events, but less is known about contribution of NLRP3 to deregulation of neurogenesis within neurogenic niches and whether neural stem cells (NSCs), neural progenitor cells (NPCs) or immature neuroblasts may express inflammasomes in (patho)physiological conditions. Thus, we studied alterations of neurogenesis in rats with the AD model (intra-hippocampal injection of Aβ1-42). We found that in Aβ-affected brain, number of CD133+ cells was elevated after spatial training in the Morris water maze. The number of PSA-NCAM+ neuroblasts diminished by Aβ injection was completely restored by subsequent spatial learning. Spatial training leads to elevated expression of NLRP3 inflammasomes in the SGZ (subgranular zones): CD133+ and PSA-NCAM+ cells started to express NLRP3 in sham-operated, but not AD rats. Taken together, our data suggest that expression of NLRP3 inflammasomes in CD133+ and PSA-NCAM+ cells may contribute to stimulation of adult neurogenesis in physiological conditions, whereas Alzheimer’s type neurodegeneration abolishes stimuli-induced overexpression of NLRP3 within the SGZ neurogenic niche.

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Mice belonging to 3 strains were shown to differ greatly in their sensitivity to M. arthritidis. This organism persisted for a year in (C57BL/6 X A/Sn)F1 mice, for 6 weeks in BALB/c mice and for 1-3 weeks in C57BL/6 mice. The sensitivity of mice to M. arthritidis infection and the persistence of the infective agent in the organs of the animals were found to depend on the state of their cell-mediated immunity.  相似文献   
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The calmodulin inhibitor trifluoroperazine (5 microM) diminished the velocity of contraction and relaxation of the guinea-pig papillary muscle by 31 and 53%, respectively. Methophenazine showed approximately the same affinity to both calmodulin and trifluoroperazine and nearly 40-fold less affinity to troponin. Methophenazine (5 microM) did not change the contraction velocity and diminished the relaxation velocity ty 21%. It is suggested that calmodulin participates mainly in the control of myocardial relaxation.  相似文献   
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Background  

Parathyroid hormone (PTH) and PTH-related peptide (PTHrP) belong to a family of endocrine factors that share a highly conserved N-terminal region (amino acids 1-34) and play key roles in calcium homeostasis, bone formation and skeletal development. Recently, PTH-like peptide (PTH-L) was identified in teleost fish raising questions about the evolution of these proteins. Although PTH and PTHrP have been intensively studied in mammals their function in other vertebrates is poorly documented. Amphibians and birds occupy unique phylogenetic positions, the former at the transition of aquatic to terrestrial life and the latter at the transition to homeothermy. Moreover, both organisms have characteristics indicative of a complex system in calcium regulation. This study investigated PTH family evolution in vertebrates with special emphasis on Xenopus and chicken.  相似文献   
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The mycoplasma infection rate in children with bronchial asthma   总被引:1,自引:0,他引:1  
A total of 167 children with bronchial asthma (BA) have been examined for the mycoplasma infection rate. Among investigated patients 62,8% were infected with one or more mycoplasma species. The prolonged persistence in patient body as well as biological properties of mycoplasmas give grounds to consider these agents as a risk factor in the development of the allergy-infection-borne BA and its relapses.  相似文献   
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