Zoonotic

人畜共患
  • 文章类型: Journal Article
    Enterocytozoon bieneusi is an obligate intracellular microsporidian parasite with a worldwide distribution. As a zoonotic pathogen, E. bieneusi can infect a wide range of wildlife hosts through the fecal-oral route. Although the feces of flying squirrels (Trogopterus xanthipes) are considered a traditional Chinese medicine (as \"faeces trogopterori\"), no literature is available on E. bieneusi infection in flying squirrels to date. In this study, a total of 340 fresh flying squirrel fecal specimens from two captive populations were collected in Pingdingshan city, China, to detect the prevalence of E. bieneusi and assess their zoonotic potential. By nested PCR amplification of the ITS gene, six specimens tested positive, with positive samples from each farm, with an overall low infection rate of 1.8%. The ITS sequences revealed three genotypes, including known genotype D and two novel genotypes, HNFS01 and HNFS02. Genotype HNFS01 was the most prevalent (4/6, 66.7%). Phylogenetic analysis showed that all genotypes clustered into zoonotic Group 1, with the novel genotypes clustering into different subgroups. To our knowledge, this is the first report of E. bieneusi infection in flying squirrels, suggesting that flying squirrels could act as a potential reservoir and zoonotic threat for E. bieneusi transmission to humans in China.
    UNASSIGNED: Occurrence et génotypage d’Enterocytozoon bieneusi chez les écureuils volants (Trogopterus xanthipes) de Chine.
    UNASSIGNED: Enterocytozoon bieneusi est un parasite microsporidien intracellulaire obligatoire présent dans le monde entier. En tant qu’agent pathogène zoonotique, E. bieneusi peut infecter un large éventail d’hôtes sauvages par la voie fécale-orale. Bien que les excréments d’écureuils volants (Trogopterus xanthipes) soient considérés comme un ingrédient de médecine traditionnelle chinoise (comme « faeces trogopterori »), aucune littérature n’est disponible à ce jour sur l’infection par E. bieneusi chez les écureuils volants. Dans cette étude, un total de 340 spécimens fécaux frais d’écureuils volants provenant de deux populations captives ont été collectés dans la ville de Pingdingshan, en Chine, pour détecter la prévalence d’E. bieneusi et évaluer leur potentiel zoonotique. Par amplification PCR nichée du gène ITS, six échantillons se sont révélés positifs, avec des échantillons positifs dans chaque ferme, et un taux d’infection global faible, à 1,8 %. Les séquences ITS ont révélé trois génotypes, dont le génotype D connu et deux nouveaux génotypes, HNFS01 et HNFS02. Le génotype HNFS01 était le plus répandu (4/6, 66,7 %). L’analyse phylogénétique a montré que tous les génotypes se regroupaient dans le groupe zoonotique 1, les nouveaux génotypes se regroupant en différents sous-groupes. À notre connaissance, il s’agit du premier rapport d’infection par E. bieneusi chez des écureuils volants, ce qui suggère que les écureuils volants pourraient agir comme un réservoir potentiel et une menace zoonotique pour la transmission d’E. bieneusi aux humains en Chine.
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  • 文章类型: Journal Article
    野生啮齿动物可以作为E.bieneusi的水库或载体,从而使寄生虫传播给家畜和人类。本研究旨在调查中国内蒙古自治区和辽宁省野生啮齿动物中E.bieneusi的流行情况。此外,为了评估基因型水平的人畜共患传播的可能性,对分离株进行了遗传分析.
    从中国两个省份共捕获了486只野生啮齿动物。进行聚合酶链反应(PCR)以扩增啮齿动物粪便DNA中的脊椎动物细胞色素b(cytb)基因,以检测其物种。通过rDNA的内部转录间隔区(ITS)区域的PCR扩增确定E.bieneusi的基因型。遗传特征和人畜共患潜力的检查需要应用相似性和系统发育分析。
    在四种确定的啮齿动物中,E.bieneusi的感染率为5.2%(n=89),黄鲸4.5%(n=96),小家鼠11.3%(n=106),褐家鼠为38.5%(n=195)。在486只啮齿动物中,平均感染率为17.4%。在确定的11种基因型中,已知9个:SHR1(在32个样品中检测到),D(30个样本),EbpA(9个样品),PigEbITS7(8个样品),HNR-IV(6个样品),IV型(5个样品),HNR-VII(2个样品),HNH7(1个样品),和HNPL-V(1个样品)。还发现了两种新的基因型,NMR-I和NMR-II,每个包含一个样本。通过系统发育分析将基因型分为第1组和第13组。
    根据初始报告,E.bieneusi在各自省和地区的野生啮齿动物中非常普遍,并且遗传多样性。这表明这些动物对于E.bieneusi的传播至关重要。携带人畜共患E.bieneusi的动物对当地居民构成重大危害。因此,有必要提高对这些啮齿动物带来的危险的认识,并减少其数量,以防止环境污染。
    UNASSIGNED: Wild rodents can serve as reservoirs or carriers of E. bieneusi, thereby enabling parasite transmission to domestic animals and humans. This study aimed to investigate the prevalence of E. bieneusi in wild rodents from the Inner Mongolian Autonomous Region and Liaoning Province of China. Moreover, to evaluate the potential for zoonotic transmission at the genotype level, a genetic analysis of the isolates was performed.
    UNASSIGNED: A total of 486 wild rodents were captured from two provinces in China. Polymerase chain reaction (PCR) was performed to amplify the vertebrate cytochrome b (cytb) gene in the fecal DNA of the rodents to detect their species. The genotype of E. bieneusi was determined via PCR amplification of the internal transcribed spacer (ITS) region of rDNA. The examination of genetic characteristics and zoonotic potential requires the application of similarity and phylogenetic analysis.
    UNASSIGNED: The infection rates of E. bieneusi in the four identified rodent species were 5.2% for Apodemus agrarius (n = 89), 4.5% for Cricetulus barabensis (n = 96), 11.3% for Mus musculus (n = 106), and 38.5% for Rattus norvegicus (n = 195). Infection was detected at an average rate of 17.4% among 486 rodents. Of the 11 identified genotypes, nine were known: SHR1 (detected in 32 samples), D (30 samples), EbpA (9 samples), PigEbITS7 (8 samples), HNR-IV (6 samples), Type IV (5 samples), HNR-VII (2 samples), HNH7 (1 sample), and HNPL-V (1 sample). Two novel genotypes were also discovered, NMR-I and NMR-II, each comprising one sample. The genotypes were classified into group 1 and group 13 via phylogenetic analysis.
    UNASSIGNED: Based on the initial report, E. bieneusi is highly prevalent and genetically diverse in wild rodents residing in the respective province and region. This indicates that these animals are crucial for the dissemination of E. bieneusi. Zoonotic E. bieneusi-carrying animals present a significant hazard to local inhabitants. Therefore, it is necessary to increase awareness regarding the dangers presented by these rodents and reduce their population to prevent environmental contamination.
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  • 文章类型: Journal Article
    Wild rodents serve as reservoirs for Cryptosporidium and are overpopulated globally. However, genetic data regarding Cryptosporidium in these animals from China are limited. Here, we have determined the prevalence and genetic characteristics of Cryptosporidium among 370 wild rodents captured from three distinct locations in the southern region of Zhejiang Province, China. Fresh feces were collected from the rectum of each rodent, and DNA was extracted from them. The rodent species was identified by PCR amplifying the vertebrate cytochrome b gene. Cryptosporidium was detected by PCR amplification and amplicon sequencing the small subunit of ribosomal RNA gene. Positive samples of C. viatorum and C. parvum were further subtyped by analyzing the 60-kDa glycoprotein gene. A positive Cryptosporidium result was found in 7% (26/370) of samples, involving five rodent species: Apodemus agrarius (36), Niviventer niviventer (75), Rattus losea (18), R. norvegicus (155), and R. tanezumi (86). Their respective Cryptosporidium positive rates were 8.3%, 5.3%, 11.1%, 7.1%, and 7.0%. Sequence analysis confirmed the presence of three Cryptosporidium species: C. parvum (4), C. viatorum (1), and C. muris (1), and two genotypes: Cryptosporidium rat genotype IV (16) and C. mortiferum-like (4). Additionally, two subtypes of C. parvum (IIdA15G1 and IIpA19) and one subtype of C. viatorum (XVdA3) were detected. These results demonstrate that various wild rodent species in Zhejiang were concurrently infected with rodent-adapted and zoonotic species/genotypes of Cryptosporidium, indicating that these rodents can play a role in maintaining and dispersing this parasite into the environment and other hosts, including humans.
    UNASSIGNED: Transmission interspécifique de Cryptosporidium chez les rongeurs sauvages de la région sud de la province chinoise du Zhejiang et son impact possible sur la santé publique.
    UNASSIGNED: Les rongeurs sauvages servent de réservoirs à Cryptosporidium et ont des grandes populations à l’échelle mondiale. Cependant, les données génétiques concernant Cryptosporidium chez ces animaux en Chine sont limitées. Ici, nous avons déterminé la prévalence et les caractéristiques génétiques de Cryptosporidium parmi 370 rongeurs sauvages capturés dans trois endroits distincts de la région sud de la province du Zhejiang, en Chine. Des excréments frais ont été collectés dans le rectum de chaque rongeur et l’ADN en a été extrait. L’espèce de rongeur a été identifiée par amplification par PCR du gène du cytochrome b des vertébrés. Cryptosporidium a été détecté par amplification PCR et séquençage d’amplicons de la petite sous-unité du gène de l’ARN ribosomal. Les échantillons positifs de C. viatorum et C. parvum ont ensuite été sous-typés en analysant le gène de la glycoprotéine de 60 kDa. Un résultat positif pour Cryptosporidium a été trouvé dans 7 % (26/370) des échantillons, impliquant cinq espèces de rongeurs : Apodemus agrarius (36), Niviventer niviventer (75), Rattus losea (18), R. norvegicus (155) et R. tanezumi (86). Leurs taux respectifs de positivité pour Cryptosporidium étaient de 8,3 %, 5,3 %, 11,1 %, 7,1 % et 7,0 %. L’analyse des séquences a confirmé la présence de trois espèces de Cryptosporidium : C. parvum (4), C. viatorum (1) et C. muris (1), et de deux génotypes : Cryptosporidium génotype IV de rat (16) et C. mortiferum-like (4). De plus, deux sous-types de C. parvum (IIdA15G1 et IIpA19) et un sous-type de C. viatorum (XVdA3) ont été détectés. Ces résultats démontrent que diverses espèces de rongeurs sauvages du Zhejiang sont simultanément infectées par des espèces/génotypes de Cryptosporidium zoonotiques et adaptés aux rongeurs, ce qui indique que ces rongeurs peuvent jouer un rôle dans le maintien et la dispersion de ce parasite dans l’environnement et d’autres hôtes, y compris les humains.
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  • 文章类型: Journal Article
    肠孢子虫是一种广泛存在的细胞内真菌,可以感染人类和动物,使其成为重大的人畜共患威胁。在目前的研究中,共检测了208份粪便样本,以调查浙江省饲养的猪中E.bieneusi的流行情况,中国。采用专门设计用于靶向小亚基核糖体RNA(rRNA)基因的内部转录间隔区(ITS)的聚合酶链反应(PCR)扩增技术,结果显示,78个样品(37.5%)对E.bieneusi的存在呈阳性。共检测到19种不同基因型的E.bieneusi。已知这些基因型中的9种:EbpC(n=36),KIN-1(n=10),PigEbITS7(n=8),EbpA(n=6),河南三世(n=3),PigEbITS5(n=2),河南四世(n=1),EbpD(n=1),和TypeIV(n=1),和10个是新颖的:ZJP-I到ZJP-X(各一个)。目前的调查显示,在这里的猪中鉴定出的所有9种已知基因型,以前也在人类中发现过。此外,这里发现的E.bieneusi的新基因型都被归类为属于第1组。这些发现表明了人和猪之间跨物种传播的可能性。
    Enterocytozoon bieneusi is a widespread intracellular fungus that can infect both humans and animals, making it a significant zoonotic threat. In the current study, a total of 208 fecal samples were assayed to investigate the prevalence of E. bieneusi in pigs reared in Zhejiang Province, China. Employing polymerase chain reaction (PCR) amplification techniques specifically designed to target the internal transcribed spacer (ITS) region of the small subunit ribosomal RNA (rRNA) gene, the results revealed that 78 samples (37.5%) tested positive for the presence of E. bieneusi. A total of 19 different genotypes of E. bieneusi were detected. Nine of these genotypes were already known: EbpC (n = 36), KIN-1 (n = 10), PigEbITS7 (n = 8), EbpA (n = 6), Henan III (n = 3), PigEbITS5 (n = 2), Henan-IV (n = 1), EbpD (n = 1), and TypeIV (n = 1), and 10 were novel: ZJP-I to ZJP-X (one each). The present investigation revealed that all the nine known genotypes identified in pigs here, have also been previously discovered in humans. Additionally, the novel genotypes of E. bieneusi discovered here were all classified as belonging to Group 1. These findings suggest the potential for cross-species transmission between humans and pigs.
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  • 文章类型: Journal Article
    Wild rodents are key carriers of various human pathogens, including Blastocystis spp. Our study aimed to assess the prevalence and genetic characteristics of Blastocystis among wild rodents in the Inner Mongolian Autonomous Region and Liaoning Province of China. From November 2023 to February 2024, 486 rodents were captured in these regions. Fresh feces were collected from the intestines of each rodent for the isolation of DNA and PCR amplification of the vertebrate cytochrome b (cytb) gene to identify rodent species. Subsequently, PCR analysis and sequencing of the partial small subunit of the ribosomal RNA (rRNA) gene were utilized to detect Blastocystis in all fecal samples. Of the total samples, 27.4% (133/486) were found to be Blastocystis positive. The results revealed the presence of four species of rodents infected with Blastocystis, 32.3% (63/195) in Rattus norvegicus, 15.1% (16/106) in Mus musculus, 20.2% (18/89) in Apodemus agrarius, and 37.5% (36/96) in Cricetulus barabensis. Sequence analysis confirmed the existence of five Blastocystis subtypes: ST1 (n = 4), ST2 (n = 2), the ST4 (n = 125, the dominant subtype), ST10 (n = 1), and a novel ST (n = 1). The identified zoonotic subtypes (ST1, ST2, ST4, and ST10) highlight the possible role played by wild rodents in the transmission of Blastocystis to humans, thereby elevating the chances of human infection. Meanwhile, the discovery of novel sequences also provides new insights into the genetic diversity of this parasite.
    UNASSIGNED: Enquête moléculaire sur les infections à Blastocystis chez des rongeurs sauvages de la région autonome de Mongolie intérieure et de la province du Liaoning, Chine : forte prévalence et dominance du sous-type ST4.
    UNASSIGNED: Les rongeurs sauvages sont des vecteurs clés de divers agents pathogènes humains, dont Blastocystis spp. Notre étude visait à évaluer la prévalence et les caractéristiques génétiques de Blastocystis chez les rongeurs sauvages de la région autonome de Mongolie intérieure et de la province chinoise du Liaoning. De novembre 2023 à février 2024, 486 rongeurs ont été capturés dans ces régions. Des matières fécales fraîches ont été collectées dans les intestins de chaque rongeur pour l’isolement de l’ADN et l’amplification par PCR du gène du cytochrome b des vertébrés (cytb) afin d’identifier les espèces de rongeurs. Par la suite, l’analyse PCR et le séquençage de la petite sous-unité partielle du gène de l’ARN ribosomal (ARNr) ont été utilisés pour détecter les Blastocystis dans tous les échantillons fécaux. Sur le total des échantillons, 27.4% (133/486) présentaient un résultat positif à Blastocystis. Les résultats ont révélé la présence de quatre espèces de rongeurs infectées par Blastocystis, 32.3% (63/195) chez Rattus norvegicus, 15.1% (16/106) chez Mus musculus, 20.2% (18/89) chez Apodemus agrarius et 37.5% (36/96) chez Cricetulus barabensis. L’analyse de séquence a confirmé l’existence de cinq sous-types de Blastocystis : ST1 (n = 4), ST2 (n = 2), ST4 (n = 125, le sous-type dominant), ST10 (n = 1) et un nouveau ST (n = 1). Les sous-types zoonotiques identifiés (ST1, ST2, ST4 et ST10) mettent en évidence le rôle possible joué par les rongeurs sauvages dans la transmission de Blastocystis à l’Homme, augmentant ainsi les risques d’infection humaine. Parallèlement, la découverte de nouvelles séquences fournit également de nouvelles informations sur la diversité génétique de ce parasite.
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  • 文章类型: Journal Article
    总结新出现或重新出现的蝙蝠传播病毒的高影响跨物种传播的几个例子,比如苏丹病毒,尼帕病毒,和严重的急性呼吸道综合症冠状病毒2,在过去的几十年中已经发生。下一代测序的最新进展加强了对全球病毒基因进行分类的持续努力,特别是来自多种不同种类的蝙蝠。然而,这些新病毒和病毒序列的功能表征通常在评估其跨物种潜力方面受到限制。我们对成功跨物种传播的病毒与宿主之间复杂的相互作用的理解集中在进入和复制的基本机制上,以及宿主先天免疫反应的重要性。在这次审查中,我们以最近不同的蝙蝠传播病毒为例,讨论了跨物种传播的各个分子机制的各种作用。为了描绘跨物种传播的关键细胞和分子步骤,我们提出了一个整体表征的框架,以提高我们将病毒表征为良性的能力,的兴趣,或担心。
    SUMMARYSeveral examples of high-impact cross-species transmission of newly emerging or re-emerging bat-borne viruses, such as Sudan virus, Nipah virus, and severe acute respiratory syndrome coronavirus 2, have occurred in the past decades. Recent advancements in next-generation sequencing have strengthened ongoing efforts to catalog the global virome, in particular from the multitude of different bat species. However, functional characterization of these novel viruses and virus sequences is typically limited with regard to assessment of their cross-species potential. Our understanding of the intricate interplay between virus and host underlying successful cross-species transmission has focused on the basic mechanisms of entry and replication, as well as the importance of host innate immune responses. In this review, we discuss the various roles of the respective molecular mechanisms underlying cross-species transmission using different recent bat-borne viruses as examples. To delineate the crucial cellular and molecular steps underlying cross-species transmission, we propose a framework of overall characterization to improve our capacity to characterize viruses as benign, of interest, or of concern.
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  • 文章类型: Journal Article
    甲型H5N1禽流感是一个重大的全球公共卫生威胁。虽然相关,缺乏关于其在动物中患病率的系统评价。
    我们在书目数据库中进行了系统的文献综述,以评估H5N1在动物中的流行情况。使用随机效应模型进行荟萃分析以计算合并患病率和95%置信区间(95CI)。此外,报告了异质性测量(Cochran的Q统计量和I2检验)。
    文献检索产生了1359篇文章,其中33项研究完全适用于分析,包括96,909只动物。H5N1在鸟类中的合并患病率(n=90,045,24项研究)为5.0%(95CI:4.0-6.0%;I2=99.21);在猪中(n=3,178,4项研究)为1.0%(95CI:0.0-1.0%);在猫中(n=2,911,4项研究)为0.0%(95CI:0.0-1.0%);在狗中(n=4
    虽然与其他流感病毒相比,H5N1在动物中的发生可能相对有限,当它传播给人类时,它对公共健康的影响可能是巨大的。这种病毒可能导致严重疾病,并与以前的疫情有关。因此,必须密切监测和了解影响H5N1在禽类和人类人群中流行的因素,以制定有效的疾病控制和预防策略。
    UNASSIGNED: Avian influenza A H5N1 is a significant global public health threat. Although relevant, systematic reviews about its prevalence in animals are lacking.
    UNASSIGNED: We performed a systematic literature review in bibliographic databases to assess the prevalence of H5N1 in animals. A meta-analysis with a random-effects model was performed to calculate the pooled prevalence and 95 % confidence intervals (95%CI). In addition, measures of heterogeneity (Cochran\'s Q statistic and I2 test) were reported.
    UNASSIGNED: The literature search yielded 1359 articles, of which 33 studies were fully valid for analysis, including 96,909 animals. The pooled prevalence for H5N1 in birds (n = 90,045, 24 studies) was 5.0 % (95%CI: 4.0-6.0 %; I2 = 99.21); in pigs (n = 3,178, 4 studies) was 1.0 % (95%CI: 0.0-1.0 %); in cats (n = 2,911, 4 studies) was 0.0 % (95%CI: 0.0-1.0 %); and in dogs (n = 479, 3 studies) was 0.0 % (95%CI: 0.0-2.0 %).
    UNASSIGNED: While the occurrence of H5N1 in animals might be comparatively limited compared to other influenza viruses, its impact on public health can be substantial when it transmits to humans. This virus can potentially induce severe illness and has been linked to previous outbreaks. Therefore, it is essential to closely monitor and comprehend the factors influencing the prevalence of H5N1 in both avian and human populations to develop effective disease control and prevention strategies.
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  • 文章类型: Journal Article
    病原体溢出对应于病原体或寄生虫从原始宿主物种向新宿主物种的传播。疾病的出现。了解在人畜共患周期中导致病原体传播的相互作用因素可以帮助识别病原体的新宿主和导致疾病出现的模式。我们假设生态和生物地理因素驱动宿主相遇,感染易感性,和跨物种溢出传播。在新热带地区使用啮齿动物-外寄生虫系统,共同的外寄生虫协会作为啮齿动物物种之间生态相互作用的代理,我们使用地理范围评估了啮齿动物之间的关系,系统发育相关性,和外寄生虫协会,以确定通才和专家宿主在汉坦病毒传播周期中的作用。在基于外寄生虫共享的网络模型中,总共对50种啮齿动物进行了中心性排名。地理接近性和系统发育相关性是啮齿动物共享外寄生虫物种的预测因子,并且与啮齿动物之间通过共享外寄生虫的网络路径距离较短有关。啮齿动物-外寄生虫网络模型成功预测了七个已知汉坦病毒宿主的独立数据。该模型预测了五种新的啮齿动物是潜在的,南美未识别的汉坦病毒宿主。研究结果表明,外寄生虫的数据,地理范围,野生动物物种的系统发育相关性可以帮助预测易受感染和人畜共患病原体可能传播的新宿主。汉坦病毒是一种高后果的人畜共患病原体,动物对人类,和人与人之间的传播。对新的啮齿动物宿主的预测可以指导特定地区和野生动植物物种的积极流行病学监测,以减轻汉坦病毒从啮齿动物向人类的溢出传播风险。这项研究支持以下观点:啮齿动物之间的体外寄生虫关系是宿主物种相互作用的代理,并且可以告知在野生动植物疾病系统中循环的多种病原体的传播周期。包括具有流行潜力的野生动物病毒,比如汉坦病毒。
    Pathogen spillover corresponds to the transmission of a pathogen or parasite from an original host species to a novel host species, preluding disease emergence. Understanding the interacting factors that lead to pathogen transmission in a zoonotic cycle could help identify novel hosts of pathogens and the patterns that lead to disease emergence. We hypothesize that ecological and biogeographic factors drive host encounters, infection susceptibility, and cross-species spillover transmission. Using a rodent-ectoparasite system in the Neotropics, with shared ectoparasite associations as a proxy for ecological interaction between rodent species, we assessed relationships between rodents using geographic range, phylogenetic relatedness, and ectoparasite associations to determine the roles of generalist and specialist hosts in the transmission cycle of hantavirus. A total of 50 rodent species were ranked on their centrality in a network model based on ectoparasites sharing. Geographic proximity and phylogenetic relatedness were predictors for rodents to share ectoparasite species and were associated with shorter network path distance between rodents through shared ectoparasites. The rodent-ectoparasite network model successfully predicted independent data of seven known hantavirus hosts. The model predicted five novel rodent species as potential, unrecognized hantavirus hosts in South America. Findings suggest that ectoparasite data, geographic range, and phylogenetic relatedness of wildlife species could help predict novel hosts susceptible to infection and possible transmission of zoonotic pathogens. Hantavirus is a high-consequence zoonotic pathogen with documented animal-to-animal, animal-to-human, and human-to-human transmission. Predictions of new rodent hosts can guide active epidemiological surveillance in specific areas and wildlife species to mitigate hantavirus spillover transmission risk from rodents to humans. This study supports the idea that ectoparasite relationships among rodents are a proxy of host species interactions and can inform transmission cycles of diverse pathogens circulating in wildlife disease systems, including wildlife viruses with epidemic potential, such as hantavirus.
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  • 文章类型: Case Reports
    背景:棘球蚴病,通常被称为包虫病,是由细粒棘球蚴引起的人畜共患感染。眼眶区包虫囊肿的发生并不常见,占所有报告的包虫病例的不到1%。本报告详细介绍了眼眶区域肌肉内包虫囊肿导致压迫性视神经病变的独特病例。
    方法:一名来自喀布尔的22岁男性,阿富汗的左眼有五个月的进行性眼球突出史,与过去三周视力逐渐下降有关。左眼表现出向上的反乌托邦,眼运动受限,轻度结膜注射,和化学.通过影像学和组织病理学检查获得诊断。治疗包括手术切除囊肿和延长阿苯达唑治疗。术后病程显示患者病情明显改善,视力恢复。
    结论:尽管它很少,这个案例强调了医生对包虫病的认识和知识的重要性,尤其是那些在流行地区工作的人。它强调了在眼眶肿块的鉴别诊断中包括包虫病的重要性,特别是在流行地区。
    BACKGROUND: Echinococcosis, commonly known as hydatid disease, is a zoonotic infection resulting from the tapeworm Echinococcus granulosus. The occurrence of hydatid cysts in the orbital region is uncommon, representing less than 1% of all reported hydatid cases. This report details a unique case of an intramuscular hydatid cyst in the orbital region that led to compressive optic neuropathy.
    METHODS: A 22-year-old male from Kabul, Afghanistan presented with a five-month history of progressive proptosis in his left eye, associated with a gradual decrease in vision over the past three weeks. The left eye exhibited upward globe dystopia, ocular motility limitation, mild conjunctival injection, and chemosis. Diagnosis was achieved through imaging and histopathological examination. Treatment involves surgical removal of the cyst and prolonged albendazole therapy. The postoperative course showed significant improvement in the patient\'s condition and restoration of his vision.
    CONCLUSIONS: Despite its rarity, this case underscores the importance of awareness and knowledge of hydatid disease among physicians, especially those working in endemic areas. It emphasizes the importance of including hydatid disease in the differential diagnosis of orbital masses, particularly in endemic regions.
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  • 文章类型: Journal Article
    小牛的健康对奶牛和牲畜的生产有重大影响。一些沙漠植物具有药理作用,因为它们可以用来减少抗生素耐药性。我们的假设旨在检测病毒性多药耐药和广谱β-内酰胺酶肠杆菌科(病毒性MDR-ESBL肠杆菌科,并确定辣木是否对检测到的分离株具有抗菌活性。从28个腹泻样本中收集了39个肠杆菌科细菌,这些小牛来自北西奈的3个不同的羊群,年龄在20天至20个月之间,Sahl-Eltina地区,埃及。E.大肠杆菌46%(18/39),O15713%(5/39),肺炎克雷伯菌41%(16/39)。MDR成员占87%,而ESBL分离株占43%。抗菌活性由微量稀释表示。在大肠杆菌中,辣木甲醇提取物的最小抑制浓度(MIC)范围为2.5、5、10和25mg/ml。O157易感(2.5mg/ml),肺炎克雷伯菌对(5-50mg/ml)敏感。甲醇提取物的分析表明,阿魏酸是主要的酚类化合物,其浓度为29,832份/百万份(ppm)。在硅对接研究中,预计阿魏酸的活性位点通过Pi-烷基作用于酪氨酸细菌酶,Pi-阴离子,碳氢键,和额外的离子吸引相互作用与铜离子,可以稳定目标口袋内的阿魏酸在大肠杆菌中观察到不同的毒力基因谱。在83%的分离大肠杆菌中报告了产生志贺毒素的大肠杆菌(STEC),而DNA促旋酶(gyrA)在100%的肺炎克雷伯菌分离物中存在。区分了大肠杆菌和肺炎克雷伯菌分离株的各种抗生素抗性基因谱。在99%的大肠杆菌和100%的肺炎克雷伯菌中检测到blaTEM基因。将大肠杆菌菌株DRC-NorthSinai-Eg的序列分析置于志贺毒素2基因(Stx2A)的登录号(OP955786)中,(OP997748)和(OP997749)用于对宿主细胞的粘附基因(Eae)。对于溶血素基因(hylA),登录号为(OP946183)。将肺炎克雷伯菌菌株DRC-NorthSinai-Eg置于(OP946180)中用于(gyrA)。这项研究证明了辣木对北西奈小牛腹泻分离的强毒性MDR-ESBL大肠杆菌和肺炎克雷伯菌的体外抗菌作用。因此,通过对接研究,这些与细菌酪氨酸酶的残疾作用相一致。我们建议使用这种沙漠植物作为预期的饲料添加剂,我们认为这是一种抗菌的新见解天然来源,并用于治疗具有人畜共患影响的病原体。
    The health of calves has a significant impact on the production of cows and livestock. Some desert plants have pharmacological importance, as they can be used to reduce antibiotic resistance. Our hypothesis is designed to detect Virulent- Multidrug-Resistant and Extended- spectrum Beta- lactamase Enterobacteriaceae (Virulent-MDR-ESBL Enterobacteriaceae and to determine whether Moringa oleifera has antibacterial activity against the detected isolates. A total of 39 Enterobacteriaceae isolates from 28 diarrheic samples were collected from calves aged between 20 days and 20 months from 3 different flocks in North Sinai, Sahl-Eltina region, Egypt. E.coli 46% (18/39), O157 13% (5/39), Klebsiella pneumoniae 41% (16/39). MDR members accounted for 87%, while ESBL isolates accounted for 43%. The antibacterial activity is represented by microdilution. Minimum inhibition concentration (MIC) for the methanol extract of Moringa oleifera ranged from 2.5,5,10, and 25mg/ ml among E.coli isolates, and O157 was susceptible to (2.5mg/ ml), Klebsiella pneumoniae isolates were susceptible to (5-50mg/ ml). Analysis of the methanol extract revealed that ferulic acid was the dominant phenolic compound with a concentration of 29,832 parts per million (ppm). In silico docking study expected the active site of ferulic acid to act on the tyrosine bacterial enzyme through Pi-alkyl, Pi-anion, Carbon hydrogen bonds, and extra ionic attractive interactions with copper ions which can stabilize ferulic acid inside the targeted pocket Diverse virulent gene profiles were observed in E. coli. The Shiga toxin-producing Escherichia coli (STEC) was reported in 83% of the isolated E. coli, while the DNA gyrase (gyrA) was harbored in 100% of Klebsiella pneumoniae isolates. Various profiles of antibiotic resistance genes for both E. coli and Klebsiella pneumoniae isolates were distinguished. blaTEM genes were detected in 99% of E. coli and 100% of Klebsiella pneumoniae. Sequence analysis for E. coli strain DRC-North Sinai-Eg was placed in accession numbers (OP955786) for the Shiga toxin 2 gene (Stx2A), (OP997748) and (OP997749) for the Adhesion to host cell gene (Eae). For the hemolysine gene (hylA), the accession number was (OP946183). Klebsiella pneumoniae strain DRC-North Sinai-Eg was placed in (OP946180) for (gyrA). This study has proven the broad range of Moringa oliefera\'s antibacterial effects in vitro against the virulent-MDR- ESBL E. coli and Klebsiella pneumoniae isolated from North Sinai calves diarrhea. These are congruent with the disability effect on bacterial tyrosinase enzyme through docking study therefore, we recommend the usage of this desert plant as a prospective feed additive, we endorse this as an antibacterial new insight natural source and for the medication of considered pathogens with zoonotic impacts.
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