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Ectopic tooth in the roof of the maxillary sinus   总被引:1,自引:0,他引:1  
Eruption of a tooth into a nonoral environs is rare. Ectopic eruption of the tooth into the nasal cavity and chin has been reported before. This is a report of an ectopic third molar tooth in the roof of the maxillary sinus, which has not, to our knowledge, been reported before.  相似文献   
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Larger numbers of pneumococci were detected in the nasal tract compared to the lung, cervical lymph nodes, and spleen 1, 2, 4, 7, 14, and 21 days after nasal challenge with Streptococcus pneumoniae strain EF3030. In this mouse model of pneumococcal carriage, peripheral S. pneumoniae pneumococcal surface adhesin A (PsaA)-specific humoral responses (immunoglobulin G2a [IgG2a] > IgG1 = IgG2b > IgG3) were significantly higher than pneumococcal surface protein A (PspA)-specific, genetic toxoid derivative of pneumolysin (PdB)-specific, or pneumococcal surface protein C (PspC)-specific serum antibody levels. However, PspA-specific mucosal IgA antibody levels were significantly higher than those against PsaA, PdB, and PspC. In general, both PsaA- and PspA-specific lung-, cervical lymph node-, nasal tract-, and spleen-derived CD4(+) T-cell cytokine (interleukin-4, interleukin-6, granulocyte-macrophage colony-stimulating factor, gamma interferon, and tumor necrosis factor alpha) and proliferative responses were higher than those for either PspC or PdB. Taken together, these findings suggest that PsaA- and PspA-specific mucosal responses as well as systemic humoral and T helper cell cytokine responses are predominantly yet differentially induced during pneumococcal carriage.  相似文献   
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ObjectiveAn attempt has been made to evaluate the mitochondrial protection in acute and chronic periods after isoproterenol (ISO)-induced myocardial-infarction (MI) in male Wistar rats.Materials and methodsLuteolin was supplemented by intra-gastric intubation at a daily dose of 0.3 mg/kg body weight for 30 days. In the acute MI model, luteolin had been administered once per day to rat groups during 30 days. On 29th and 30th days, the rats of the acute MI control groups were administered 85 mg/kg body weight, isoproterenol, intra-peritoneally at an interval of 24 h. In the chronic MI model luteolin was supplemented to the rat group during 30 days. On the 1st and 2nd days, the rats of the chronic MI control and luteolin treatment groups were administered ISO by the same way.ResultsThe isoproterenol-treated rats both in acute and chronic models showed an increase in the level of TBARS and a decrease in the activities of mitochondrial antioxidants in MI rats, an increase in levels of mitochondrial lipid profile except phospholipids and the activities of mitochondrial enzymes were decreased in isoproterenol-treated rats. Oral treatments with luteolin in both acute and chronic models showed a significant decrease in the levels of mitochondrial lipid peroxidation, increase in the mitochondrial antioxidant levels and also decrease in the mitochondrial enzymes.ConclusionThus the present study revealed that luteolin ameliorates mitochondrial damage in isoproterenol induced myocardial infarction by maintaining lipid peroxidation metabolism due to its free radical scavenging, mitochondrial lipids, antioxidants and mitochondrial enzymes. Histopathological observations were also in correlation with the biochemical parameters.  相似文献   
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As we age, there is an increased risk for the development of pulmonary diseases, including infections, but few studies have considered changes in lung surfactant and components of the innate immune system as contributing factors to the increased susceptibility of the elderly to succumb to infections. We and others have demonstrated that human alveolar lining fluid (ALF) components, such as surfactant protein (SP)-A, SP-D, complement protein C3, and alveolar hydrolases, play a significant innate immune role in controlling microbial infections. However, there is a lack of information regarding the effect of increasing age on the level and function of ALF components in the lung. Here we addressed this gap in knowledge by determining the levels of ALF components in the aging lung that are important in controlling infection. Our findings demonstrate that pro-inflammatory cytokines, surfactant proteins and lipids, and complement components are significantly altered in the aged lung in both mice and humans. Further, we show that the aging lung is a relatively oxidized environment. Our study provides new information on how the pulmonary environment in old age can potentially modify mucosal immune responses, thereby impacting pulmonary infections and other pulmonary diseases in the elderly population.  相似文献   
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