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91.
二氧化硅活化巨噬细胞中早期生长反应因子-1及其信号转导通路的研究 总被引:3,自引:0,他引:3
目的 探讨早期生长反应因子(Egr-1)及其信号转导在矽肺发生发展中的作用。方法用细胞免疫荧光、原位杂交方法检测二氧化硅(SiO2)刺激后Egr-1的表达定位,用报道质粒及EMSA检测其活性改变;用激酶活性分析法检测si0:刺激巨噬细胞后ERK1/2活性改变,进一步用激酶抑制剂初步探讨SiO2活化Egr-1的信号转导通路。结果SiO2刺激RAW264.7细胞短时间Egr-1核蛋白表达及转录因子明显增加;且在处理后30~60min,Egr-1核蛋白结合活性明显升高(为未处理组的20倍);在刺激后15min ERK1/2活性开始升高,30min达高峰(活性为对照组的29倍)而后渐降至基础水平;进一步用激酶阻断发现,Egr-1 mRNA及蛋白表达均减少。结论SiO2能激活巨噬细胞中Egr-1,且此过程可能由ERK1/2、p38介导,提示SiO2-ERK1/2、p38-Egr-1通路可能在矽肺发生发展过程中起重要作用。 相似文献
92.
金针菇子实体多糖提取物对人肝癌SMMC—7721细胞的抑增殖作用 总被引:2,自引:0,他引:2
金针菇子实体经热水提取,乙醇沉淀,胰蛋白酶水解,Sevag法去除蛋白质,乙醇分级沉淀等处理得金针菇子实体多糖。研究了该多糖对人肝部SMMC-7721细胞生长曲线,有丝分裂指数及线粒体活性的影响。结果表明该多糖对体外培养的人肝癌SMMC-7721细胞具一定抑制作用。 相似文献
93.
94.
当归注射液对脑血栓患者花生四烯酸代谢产物和氧自由基水平的影响 总被引:4,自引:0,他引:4
目的 :了解当归注射液改善脑循环治疗脑血栓的临床效果。方法 :对 46例脑血栓形成患者应用当归注射液进行治疗 ,对比分析其治疗前后血浆前列环素 (PGI2 )、血栓烷A2 (TXA2 )及自由基水平。结果 :脑血栓形成患者TXA2 、丙二醛 (MDA)明显升高 ,超氧化物岐化酶 (SOD)明显降低。当归注射液治疗后上述改变明显减轻或恢复至正常组水平。结论 :当归注射液能有效调节花生四烯酸代谢产物和氧自由基水平 ,对治疗脑血栓效果明显。 相似文献
95.
本文探讨了5/6肾切除术后慢性肾衰大鼠残肾纤维化的发生机理,发现术后120天,在残肾单个核炎性细胞浸润、残肾显著纤维化和肾功能损害的同时,残肾脂质过氧化物含量显著升高,抗氧化机制功能显著下降,钠钾ATP酶活力显著下降,周围血单个核细胞内游离钙浓度显著升高,单个核细胞培养上清白介素-1活性增高。而摄入大量维生素E的大鼠,上述各指标有不同程度的改善,残肾纤维化显著减轻。提示残肾纤维化可能与单个核白细胞内游离钙浓度升高,进而产生白介素-1增多有关。 相似文献
96.
散发性急性戊型肝炎血清抗体动态变化和肝脏超微… 总被引:1,自引:0,他引:1
为探讨散发性戊型肝为血清抗体动态变化,应用酶联免疫法(EIA)检测了7例急性戊型肝炎抗戊型肝炎病毒(HEV)IgG和IgM抗体、并对1例2进行了肝超微结构病理检测,结果表明,发病10天至45天内抗HEV-IgG和IgM滴度最高,发病第40天仍有肝细胞肿胀,胞浆空化和线粒体固缩等病理变化。患者轿清抗-HEVIgM滴度在45天后逐渐下降,2个月内全中消失,抗-HEVIgM滴度在45天后逐渐下降,2个月 相似文献
97.
H. Yamada Y.-M. Jiang S. Oshima K. Wada F. Goshima T. Daikoku Y. Nishiyama 《Archives of virology》1998,143(6):1199-1207
Summary. We have identified the herpes simplex virus type 2 (HSV-2) UL4 gene product using a rabbit polyclonal antiserum raised against
a recombinant 6xHis-UL4 fusion protein expressed in Escherichia coli. The antiserum reacted specifically with a 27-kDa protein in HSV-2 186-infected cell lysates. The protein was not detectable
in the presence of the viral DNA synthesis inhibitor, suggesting that the UL4 gene was expressed as a γ2 gene. Indirect immunofluorescence studies localized the UL4 protein within the nucleus as discrete punctate forms at late
times postinfection. However, when expressed in the absence of other viral proteins, the UL4 protein was limited to the cytoplasm,
indicating that an interaction with one or more other virus-induced proteins was responsible for the nuclear localization
during infection. Subnuclear fractionation studies showed that the protein was released from the nuclear structure of infected
cells by high salt treatment. Moreover, the UL4 protein was detected in purified virions and light particles.
Received December 24, 1997 Accepted February 4, 1998 相似文献
98.
99.
Interleukin-1 and tumor necrosis factor receptor signaling is not required for bacteria-induced osteoclastogenesis and bone loss but is essential for protecting the host from a mixed anaerobic infection 下载免费PDF全文
Bacterial infection causes significant morbidity, mediated in part by the up-regulation of inflammatory cytokines. Cytokine induction is thought to stimulate osteolysis in conditions such as periodontal disease and otitis media. To establish the relative importance of interleukin-1 (IL-1) and tumor necrosis factor (TNF) in mediating the response to a mixed anaerobic infection, we used an in vivo model in which the dental pulp was inoculated with six anaerobic pathogens, in mice with functional deletions of receptors to IL-1 (IL-1RI(-/-)), TNF (TNFRp55(-/-)-p75(-/-)), or both (TNFRp55(-/-)-IL-1RI(-/-)). Polymorphonuclear and mononuclear phagocyte recruitment occurred to the greatest extent in TNFRp55(-/-)-IL-1RI(-/-) mice, and to a lesser extent in IL-1RI(-/-) or TNFRp55(-/-)-p75(-/-) mice, and the least in wild-type mice, demonstrating that recruitment of these phagocytes is not dependent on IL-1 or TNF receptor signaling. A similar pattern was observed for bacterial penetration into host tissue. Because it had recently been reported that TNF played a critical role in mediating lipopolysaccharide-induced bone loss, we anticipated that mice with targeted deletions of TNFRp55(-/-) would have reduced osteoclastogenesis. Surprisingly, osteolytic lesion formation was greatest in animals lacking TNF and/or IL-1 receptors. These results indicate that IL-1 or TNF receptor signaling is not required for bacteria-induced osteoclastogenesis and bone loss, but does play a critical role in protecting the host against mixed anaerobic infections. 相似文献
100.
Display of a PorA peptide from Neisseria meningitidis on the bacteriophage T4 capsid surface. 总被引:6,自引:0,他引:6 下载免费PDF全文
The exterior of bacteriophage T4 capsid is coated with two outer capsid proteins, Hoc (highly antigenic outer capsid protein; molecular mass, 40 kDa) and Soc (small outer capsid protein; molecular mass, 9 kDa), at symmetrical positions on the icosahedron (160 copies of Hoc and 960 copies of Soc per capsid particle). Both these proteins are nonessential for phage infectivity and viability and assemble onto the capsid surface after completion of capsid assembly. We developed a phage display system which allowed in-frame fusions of foreign DNA at a unique cloning site in the 5' end of hoc or soc. A DNA fragment corresponding to the 36-amino-acid PorA peptide from Neisseria meningitidis was cloned into the display vectors to generate fusions at the N terminus of Hoc or Soc. The PorA-Hoc and PorA-Soc fusion proteins retained the ability to bind to the capsid surface, and the bound peptide was displayed in an accessible form as shown by its reactivity with specific monoclonal antibodies in an enzyme-linked immunosorbent assay. By employing T4 genetic strategies, we show that more than one subtype-specific PorA peptide can be displayed on the capsid surface and that the peptide can also be displayed on a DNA-free empty capsid. Both the PorA-Hoc and PorA-Soc recombinant phages are highly immunogenic in mice and elicit strong antipeptide antibody titers even with a weak adjuvant such as Alhydrogel or no adjuvant at all. The data suggest that the phage T4 hoc-soc system is an attractive system for display of peptides on an icosahedral capsid surface and may emerge as a powerful system for construction of the next generation multicomponent vaccines. 相似文献