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1.
Emerging infectious diseases threaten a wide diversity of animals, and important questions remain concerning disease emergence in socially structured populations. We developed a spatially explicit simulation model to investigate whether—and under what conditions—disease-related mortality can impact rates of pathogen spread in populations of polygynous groups. Specifically, we investigated whether pathogen-mediated dispersal (PMD) can occur when females disperse after the resident male dies from disease, thus carrying infections to new groups. We also examined the effects of incubation period and virulence, host mortality and rates of background dispersal, and we used the model to investigate the spread of the virus responsible for Ebola hemorrhagic fever, which currently is devastating African ape populations. Output was analyzed using regression trees, which enable exploration of hierarchical and non-linear relationships. Analyses revealed that the incidence of disease in single-male (polygynous) groups was significantly greater for those groups containing an average of more than six females, while the total number of infected hosts in the population was most sensitive to the number of females per group. Thus, as expected, PMD occurs in polygynous groups and its effects increase as harem size (the number of females) increases. Simulation output further indicated that population-level effects of Ebola are likely to differ among multi-male–multi-female chimpanzees and polygynous gorillas, with larger overall numbers of chimpanzees infected, but more gorilla groups becoming infected due to increased dispersal when the resident male dies. Collectively, our results highlight the importance of social system on the spread of disease in wild mammals.  相似文献   
2.
近年来,随着对microRNA(miRNA)的广泛研究,人们发现,不仅有细胞结构的生物具有产生miRNA的能力,无细胞结构的病毒同样具有产生miRNA从而影响自身复制及调控宿主基因表达和信号通路的能力。埃博拉病毒(Ebola virus,EBOV)已经多次导致一定规模的流行,病毒的高致死率和复杂的致病机制引起了人们的高度重视,多项研究指出EBOV具有产生miRNA的能力,且在其感染过程中发挥一定的作用。本文对埃博拉病毒来源miRNA的预测、证实及检测相关研究进行综述,以期为全面了解EBOV来源的miRNA提供参考。  相似文献   
3.
埃博拉病毒属丝状病毒科,能引发动物和人出血热症状,人感染后病死率高达90%以上,目前还没有有效预防和治疗的药物和疫苗。近年来,这种烈性传染病病毒传入我国的可能性不断加大,给我国公共卫生应急体系带来新的挑战。本研究针对埃博拉病毒的最主要结构蛋白——糖蛋白(GP),构建了重组原核表达载体pET28a(+)-GP1(33~313aa)、pET28a(+)-GP1(190~313aa)、pET28a(+)-GP2(502~632aa)、pET28a(+)-sGP,以及重组真核表达载体pcDNA3.1(+)-edited GP、pcDNA3.1(+)-GP1、pcDNA3.1(+)-GP。结果表明,GP1(33~313aa)、GP1(190~313aa)和sGP能在大肠埃希菌BL21(DE3)中以包涵体的形式表达,GP、GP1和GP2能在HEK293T细胞中表达,但均不能在BHK21细胞中表达。本研究为进一步探索埃博拉病毒GP的结构和功能及GP抗体制备奠定了基础。  相似文献   
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布鲁氏菌病(简称布病)是由布鲁氏菌属细菌侵入机体引起的人畜共患传染病.近年来,布病疫情在世界范围内呈反弹趋势,我国尤甚.进入2000年以后,人间布病在我国成为报告发病数上升速度最快的传染病之一,令我国布病防治形势严峻.为了明确我国布病防治工作的现状和需求、最新研究现状和研究动态以及面临的挑战和机遇,深入研讨分析我国布病防治研究中的重大科学和关键技术问题,凝练和提出今后我国布病防治研究发展中亟需关注、解决的重要基础科学问题,在国家自然科学基金委员会资助下,由中国疾病预防控制中心地方病控制中心主办,哈尔滨医科大学、中国疾病预防控制中心传染病预防控制所和内蒙古地方病防治研究中心共同协办,于2013年6月21日召开了由来自全国布病防治与基础研究领域专家共同参加的“布鲁氏菌病防治基础研究发展战略研讨会”.会议在我国布病疫情最重的省份内蒙古自治区呼和浩特市召开,中国疾病预防控制中心传染病预防控制所、军事医学科学院疾病预防控制所、石河子大学、中国兽医药品监察所等19家从事布病防治与基础研究的科研院所、高等院校、疾病防治机构的40余位专家参加了此次会议.现结合文献资料以及本次会议的内容,对国内外布病流行现状、研究进展,以及影响我国布病防治的亟需解决的科学问题和建议作一综述.  相似文献   
6.
In this paper we study a method for the identification of the unknown parameter of the periodic function and also the first component of the state vector, in a mathematical model which describes the evolution of some diseases with an oro-fecal transmission.To solve the identification problem we use a numerical method to integrate the differential equations system, which reproduces the stability properties of the above mentioned continuous system.The numerical methods which we propose can be applied also to a spatial semi discretization of the reaction-diffusion model which is a diffusive generalization of the system that we consider in this paper.Finally, through an analysis on both the continuous and the discrete system we also obtain a necessary condition on the experimental data in order that a periodic trajectory of the system exists.Work supported by: Progetto Finalizzato Controllo Malattie da Infezione-CNR and by Ministero Pubblica Istruzione  相似文献   
7.
The HIV-1 envelope (Env) glycoproteins play an essential role in the virus replication cycle by mediating the fusion between viral and cellular membranes during the entry process. The Env glycoproteins are synthesized as a polyprotein precursor (gp160) that is cleaved by cellular proteases to the mature surface glycoprotein gp120 and the transmembrane glycoprotein gp41. During virus assembly, the gp120/gp41 complex is incorporated as heterotrimeric spikes into the lipid bilayer of nascent virions. These gp120/gp41 complexes then initiate the infection process by binding receptor and coreceptor on the surface of target cells. Much is currently known about the HIV-1 Env glycoprotein trafficking pathway and the structure of gp120 and the extracellular domain of gp41. However, the mechanism by which the Env glycoprotein complex is incorporated into virus particles remains incompletely understood. Genetic data support a major role for the cytoplasmic tail of gp41 and the matrix domain of Gag in Env glycoprotein incorporation. Still to be defined are the identities of host cell factors that may promote Env incorporation and the role of specific membrane microdomains in this process. Here, we review our current understanding of HIV-1 Env glycoprotein trafficking and incorporation into virions.  相似文献   
8.
Global stability of an SIR epidemic model with time delays   总被引:11,自引:0,他引:11  
An SIR disease transmission model is formulated under the assumption that the force of infection at the present time depends on the number of infectives at the past. It is shown that a disease free equilibrium point is globally stable if no endemic equilibrium point exists. Further the endemic point (if it exists) is globally stable with respect to the whole state space except the neighborhood of the disease free state.Research partly supported by the Ministry of Education, Science and Culture, Japan, Grant 05640256  相似文献   
9.
Traditionally, the termination of parasite epidemics has been attributed to ecological causes: namely, the depletion of susceptible hosts as a result of mortality or acquired immunity. Here, we suggest that epidemics can also end because of rapid host evolution. Focusing on a particular host–parasite system, Daphnia dentifera and its parasite Metschnikowia bicuspidata , we show that Daphnia from lakes with recent epidemics were more resistant to infection and had less variance in susceptibility than Daphnia from lakes without recent epidemics. However, our studies revealed little evidence for genetic variation in infectivity or virulence in Metschnikowia . Incorporating the observed genetic variation in host susceptibility into an epidemiological model parameterized for this system reveals that rapid evolution can explain the termination of epidemics on time scales matching what occurs in lake populations. Thus, not only does our study provide rare evidence for parasite-mediated selection in natural populations, it also suggests that rapid evolution has important effects on short-term host–parasite dynamics.  相似文献   
10.
埃博拉出血热是由埃博拉病毒引起的一种急性出血性传染病,具有极高的传染性,致死率高达50%~88%,目前对埃博拉出血热的预防还极为困难,暂无有效的抗病毒药物和疫苗。构建埃博拉出血热的动物模型,对于病毒致病机理的了解和深入研究,以及治疗药物及疫苗的研发具有至关重要的作用。  相似文献   
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