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1.
我们的实验结果揭示流行性出血热病毒(EHFV)在酸性条件下可导致感染细胞发生融合,细胞间隙消失,细胞界限不清,细胞和细胞连在一起,形成多核的巨细胞体,姬姆薩染色比未融合细胞浅。融合液(Eagle’s基础培养液,含0.2%BSA,20mmol/L HEPES),用1.0NNaOH调pH至5.0—6.0时,细胞融合最甚,几乎所有的感染细胞都  相似文献   
2.
The febrile response and sympathetic nervous response to hypothalamic microinjections of prostaglandin E2 (PGE2) were investigated in anesthetized rabbits. Microninjection of PGE2 (500–1000 ng) caused an increase in rectal temperature of more than 0.3°C in 13 of 50 loci in the preoptic and anterior hypothalamic area (PO/AH). At 8 of these 13 loci, PGE2 elicited response patterns in the sympathetic nervous system, such as an increase in cutaneous sympathetic nervous activity and decrease in renal sympathetic nervous activity. This pattern of sympathetic nervous responses was induced with a simultaneous increase in rectal temperature of more than 0.5°C. The 8 loci were distributed in the preoptic area, especially in the vicinity of the supraoptic nucleus. Electrolytic lesions of this region were made bilaterally, and intracerebroventricular injection of PGE2 (8 µg/kg) was found to inhibit fever and sympathetic activity. The results demonstrate that the action of PGE2 is responsible for the response patterns of sympathetic twigs during fever. The preoptic area, especially in the vicinity of the supraoptic nucleus, is most sensitive to PGE2 for the patternized response of sympathetic neurons and fever.  相似文献   
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本文应用空斑减少中和试验(PRNT)和细胞病变中和试验(cPENT)两种方法对出血热沙鼠肾细胞灭活疫苗扩大人体免疫后的血清进行中和抗体水平检测。根据两种方法对总计74人份的免疫后血清检测比较结果,两种方法检测的抗体阳转率和抗体水平(GMT)。CPENT法均高于PRNT法,经统计学处理均有显著性差异。不同免疫组的中和抗体水平比较结果,注射三针的阳转率(n=10,100%)高于两针组(n=10,20—30%);接种加氢氧化铝佐剂疫苗(n=13)较接种不加佐剂的两种疫苗(n=26)的抗体水平高,阳转率为92%—100%GMT为22—69;皮下途径(n=15)和肌肉途径(n=13)注射无明显差别,阳转率分别为87—93%和92—100%,GMT分别为29—46和22—61。以上结果进一步肯定沙鼠肾细胞疫苗的人体免疫性  相似文献   
5.
一株广谱中和抗原性出血热病毒株的发现   总被引:5,自引:0,他引:5  
一株分离自杭州市褐家鼠的出血热病毒Gou_3株的免疫血清对10株I型病毒的中和滴度除二株为160外均为320,而对4株Ⅱ型病毒的滴度为320—640,说明Gou_3株免疫血清对两型毒株中和效价大多数无差异或只差2倍,是一株中和抗原广谱的毒株。用I型和Ⅱ型毒株免疫血清对Gou_3株进行型别检定结果表明Gou_3株是Ⅱ型病毒。  相似文献   
6.
Dengue is becoming recognized as one of the most important vector-borne human diseases. It is predominant in tropical and subtropical zones but its geographical distribution is progressively expanding, making it an escalating global health problem of today. Dengue presents with spectrum of clinical manifestations, ranging from asymptomatic, undifferentiated mild fever, dengue fever (DF), to dengue hemorrhagic fever (DHF) with or without shock (DSS), a life-threatening illness characterized by plasma leakage due to increased vascular permeability. Currently, there are no antiviral modalities or vaccines available to treat and prevent dengue. Supportive care with close monitoring is the standard clinical practice. The mechanisms leading to DHF/DSS remains poorly understood. Multiple factors have been attributed to the pathological mechanism, but only a couple of these hypotheses are popular in scientific circles. The current discussion focuses on underappreciated factors, temperature, natural IgM, and endotoxin, which may be critical components playing roles in dengue pathogenesis.  相似文献   
7.
The febrile response is elicited by pyrogenic cytokines including IL-6 in response to microorganism infections and diseases in vertebrates. Mammalian HSF1, which senses elevations in temperature, negatively regulates the response by suppressing pyrogenic cytokine expression. We here showed that HSF3, an avian ortholog of mammalian HSF1, directly binds to and activates IL-6 during heat shock in chicken cells. Other components of the febrile response mechanism, such as IL-1β and ATF3, were also differently regulated in mammalian and chicken cells. These results suggest that the febrile response is exacerbated by a feed-forward circuit composed of the HSF3-IL-6 pathway in birds.  相似文献   
8.
Crimean-Congo hemorrhagic fever (CCHF) is a zoonotic viral infection that is a serious threat to humans. The disease is widely distributed in Africa, Asia, and Europe and has developed into a serious public health concern. Humans become infected through the bites of ticks, by contact with a patient with CCHF, or by contact with blood or tissues from viremic livestock. Microvascular instability and impaired hemostasis are the hallmarks of the infection. Infection in human begins with nonspecific febrile symptoms, but may progress to a serious hemorrhagic syndrome with high mortality rates. Enzyme-linked immunoassay (ELISA) and polymerase chain reaction (PCR) are the most used and specific tests for the diagnosis. The mainstay of treatment is supportive. Although definitive studies are not available, ribavirin is suggested to be effective especially at the earlier phase of the infection. Uses of universal protective measures are the best way to avoid the infection. In this review, all aspects of CCHF are overviewed in light of the current literature.  相似文献   
9.
目的:研究Treg细胞在发热CTD患者外周血表达对结核感染的诊断价值。方法:对103例发热CTD患者进行T-SPOT.TB试验,将39例阳性者设为实验组-1,进行抗结核治疗,将64例阳性者设为实验组-2,另选取40例健康者作为对照组,检测三组外周血CD4+CD25+Treg细胞、Foxp3基因、IL-10、TGF-β的表达。结果:实验组CD4+CD25+Foxp3 Treg细胞占CD4+T比例高于对照组(P0.05),实验组-1治疗前外周血CD4+CD25+Foxp3 Treg细胞占CD4+T比例高于实验组-1治疗后、实验组-2(P0.05);实验组TGF-β表达量低于对照组(P0.05),实验组-1治疗前低于实验组-1治疗后及实验组-2(P0.05);实验组-1治疗前IL-10表达量低于实验组-1治疗后、实验组-2及对照组(P0.05)。结论:CD4+CD25+Foxp3 Treg细胞在发热CTD伴有结核感染患者外周血中的表达升高,其变化可作为结核感染诊断的辅助性指标。  相似文献   
10.
Crimean-Congo hemorrhagic fever virus (CCHFV) is a causative agent of serious hemorrhagic diseases in humans with high mortality rates. CCHFV glycoprotein Gc plays critical roles in mediating virus-host membrane fusion and has been studied extensively as an immunogen. However, the molecular mechanisms involved in membrane fusion and Gc-specific antibody-antigen interactions remain unresolved largely because structural information of this glycoprotein is missing. We designed a trimeric protein including most of the ectodomain region of Gc from the prototype CCHFV strain, IbAr10200, which enabled the cryo-electron microscopy structure to be solved at a resolution of 2.8 ?. The structure confirms that CCHFV Gc is a class II fusion protein. Unexpectedly, structural comparisons with other solved Gc trimers in the postfusion conformation revealed that CCHFV Gc adopted hybrid architectural features of the fusion loops from hantaviruses and domain III from phenuiviruses, suggesting a complex evolutionary pathway among these bunyaviruses. Antigenic sites on CCHFV Gc that protective neutralizing antibodies target were mapped onto the CCHFV Gc structure, providing valuable information that improved our understanding of potential neutralization mechanisms of various antibodies.  相似文献   
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