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1.
贵州省某规模化猪场暴发猪瘟与链球菌病混合感染的诊断   总被引:1,自引:0,他引:1  
为了解贵州某规模化猪场发病断奶仔猪死亡原因,本研究采用流行病学调查、临床症状观察、病理解剖诊断和RT-PCR检测等方法,对该规模化猪场发病猪进行了诊断。试验结果表明,通过流行病学调查、剖检病理和猪瘟抗体快速金标检测卡检测,初步诊断该猪场发病猪疑似猪瘟病毒和细菌混合感染;RT-PCR检测核酸确诊发病猪为猪瘟病毒感染;细菌培养分离、生化特性鉴定和动物致病性试验确诊为猪链球菌。造成该猪场断奶仔猪发病死亡的原因为猪瘟病毒和猪链球菌混合感染所致。  相似文献   

2.
狐狸巴氏杆菌病的诊治   总被引:1,自引:0,他引:1  
2006年秋,吉林左家某狐场的狐狸突然发病并陆续死亡,经流行病学调查、病理剖检和实验室检验,确诊为多杀性巴氏杆菌感染。  相似文献   

3.
为了确诊贵州省贵阳市某动物园梅花鹿死亡的原因,采用了流行病学调查、临床症状观察、病理剖检、细菌分离培养、血涂片检查和支原体检测等方法对发病死亡的梅花鹿进行诊断。根据流行病学调查、病理剖检初步诊断送检的病死梅花鹿疑似血液原虫、支原体和细菌感染,经血涂片、支原体核酸检测和细菌分离,结果支原体检测出特异性条带,判断为阳性;血涂片吉姆萨染色镜检,观察到大量的呈齿轮状、星芒状或不规则形状的变形红细胞,判断为附红细胞体。结果表明:造成该动物园梅花鹿发病死亡的原因为附红细胞体和支原体混合感染。  相似文献   

4.
为了对贵州省贵定县某种牛养殖场种牛死亡原因进行确诊,采用流行病学调查、临床症状观察、病理剖检、细菌分离培养、寄生虫和支原体检测等方法对发病死亡的种牛进行诊断。结果表明:根据流行病学调查、病理剖检初步诊断送检的病死种牛疑似血液原虫、支原体感染后支原体病原核酸检测出特异性条带;血涂片染色镜检观察到大量附红细胞体,感染率为80%(8/10),且红细胞内有典型双芽巴贝斯虫虫体,感染率为40%(4/10)。确诊造成该种牛养殖场种牛发病死亡的原因为双芽巴贝斯虫、附红细胞体和支原体混合感染。  相似文献   

5.
通过对湖北省某鹌鹑养殖场发病鹌鹑的病理剖检和实验室诊断,结合流行病学调查、临床症状,确诊为由多杀性巴氏杆菌感染引起的禽霍乱.根据药敏试验结果,选用敏感药物,采取综合防控措施进行治疗,使疫病得到有效控制.  相似文献   

6.
为了确诊贵州省贵阳市某赛鸽养殖场赛鸽死亡的原因,采用了流行病学调查、临床症状观察、病理剖解、细菌分离、发病鸽HI试验和RT-PCR检测诊断等方法对发病死亡的赛鸽进行诊断。结果表明:根据流行病学调查、病理剖检初步诊断送检的病死赛鸽疑似禽流感、新城疫和细菌感染,经病毒核酸检测和细菌分离,结果新城疫病毒RT-PCR检测出特异性条带,判断为阳性。确诊造成该赛鸽场赛鸽发病死亡的原因为新城疫病毒感染。  相似文献   

7.
为了确诊贵州省清镇市某养牛场牛发病死亡的原因,通过临床症状观察、病理剖检、细菌分离培养、病原核酸PCR检测进行诊断。结果:病牛临床表现为精神沉郁、气喘咳嗽、体温升高、流浆液性鼻涕及呼吸困难;病理剖检发现病变肺脏质地变硬,肺脏表面有白色坏死灶;细菌分离培养在鲜血琼脂培养基上生长出灰白色、露珠状菌落,革兰氏染色镜检呈革兰氏阴性短小杆菌; PCR检测均扩增出牛支原体和巴氏杆菌特异性核酸片段。结论:确诊病例为牛支原体与巴氏杆菌混合感染。根据药敏试验结果对发病牛使用盐酸多西环素和氟苯尼考进行治疗,有效控制了疫情。  相似文献   

8.
为了对2017年3月份安徽省六安地区某猪场40~50日龄发病保育猪所患疾病进行诊断,试验采用病史调查、临床观察、病理剖检、细菌分离鉴定及PCR/RT-PCR检测的方法,对送检病猪进行诊断。结果表明:从病猪肺脏组织分离到一株革兰氏阴性杆菌,经PCR鉴定为多杀性巴氏杆菌,同时病原检测伪狂犬病毒也为阳性。说明该病例为猪伪狂犬病毒与多杀性巴氏杆菌的混合感染。  相似文献   

9.
为摸清贵州省某猪场猪只发病死亡的原因,采用流行病学调查、临床症状观察、病理解剖诊断、猪繁殖与呼吸综合征抗体快速金标检测卡检测和RT-PCR检测核酸确诊等方法,对该猪场发病猪进行了诊断.试验诊断结果表明:通过流行病学调查、剖检病理和猪繁殖与呼吸综合征抗体快速金标检测卡检测初步诊断该猪场发病猪疑似猪繁殖与呼吸综合征病毒感染,RT-PCR检测核酸确诊为猪繁殖与呼吸综合征病毒野毒感染.  相似文献   

10.
为弄清贵州某猪场猪发病死亡的原因,采用流行病学调查、临床症状观察、病理解剖诊断、猪瘟抗体快速金标检测卡检测和RT-PCR检测核酸确诊等方法,对该猪场发病猪进行了诊断。实验结果表明:流行病学调查、剖检病理和猪瘟抗体快速金标检测卡检测初步诊断该猪场发病猪疑似猪瘟病毒感染,RT-PCR检测核酸确诊为猪瘟病毒野毒感染。  相似文献   

11.
The gram-negative bacterium Pasteurella multocida constitutes a heterogeneous species associated with wide range of disease in many animals. Isolates are classified into five groups based on capsular antigen (capA, B, D, E and F). Recently, a new valuable PCR-based method was introduced to determine the epidemiological correlation between P. multocida infection and existence of virulence genes including tbpA, pfhA, toxA and hgbB. However, this method is tedious and laborious. Thus, in the current study, we designed a reliable multiplex PCR method for rapid detection of virulence genes in P. multocida. Eighty seven strains of P. multocida isolated from various clinically healthy and infected hosts were examined by uniplex PCR method for each virulence associated genes. Based on our improved and simplified multiplex PCR method, rapid detection of four virulence genes was accomplished. It is proposed that its implementation may benefit the epidemiological investigations.  相似文献   

12.
本试验旨在通过细菌分离鉴定,明确家养观赏地图鱼的死因,筛选敏感药物。采用常规方法分离纯化细菌后,进行细菌形态学观察,并通过小白鼠致病性试验、细菌主要生化鉴定、16SrDNA序列测定分析、药敏试验及耐药基因检测等方法对分离的细菌进行鉴定及耐药分析。分离出3株革兰氏阴性短杆菌,根据细菌形态特征及理化特性,结合16SrDNA序列测定与系统发育分析结果,判定其分别为肺炎克雷伯氏菌(Klebsiella pneumoniae)、维氏气单胞菌(Aeromonas veronii)和黏质沙雷氏菌(Serratia marcescens),其中肺炎克雷伯氏菌具有较强致病性。3株细菌均对洛美沙星、氧氟沙星、阿米卡星、卡那霉素敏感,对阿莫西林、氟苯尼考、克林霉素、甲硝唑等具有较强耐药性。结果表明,肺炎克雷伯氏菌、维氏气单胞菌、黏质沙雷氏菌的混合感染是家养观赏地图鱼的死亡原因。  相似文献   

13.
An exhaustive biochemical characterisation of 60 porcine Pasteurella multocida clinical isolates recovered from lesions indicative of pneumonia, previously confirmed by PCR and all belonging to the capsular serogroup A, was performed by means of four commercial systems. The API 20NE correctly identified almost all isolates (95%), but only 60% could be ascribed to this species by the API 20E method. The high diversity exhibited by the API 50CHB/E system, with six different patterns, does not advise its use as additional system for a definitive identification at the species level, but this method could be a potential tool for characterising P. multocida isolates below this level. The more uniform reactions yielded by the API ZYM test make this system helpful in the confirmatory identification of this organism. The high variability (20 profiles) obtained when the four systems are taken together also suggests their usefulness for epidemiological purposes in order to sub-type P. multocida isolates.  相似文献   

14.
Pasteurella multocida serotype B:2 is the causative agent of haemorrhagic septicaemia (HS), a fatal disease of cattle and buffaloes. As a step towards the identification of individual antigens that may protect against HS, proteins present in a sonicated cell extract (SCE) and outer-membrane protein (OMP) preparation of a wild-type P. multocida serotype B:2 were investigated by immunoblotting with sera from calves which had been protected against challenge with a virulent strain of P. multocida B:2 by vaccination with a live-attenuated aroA derivative of the challenge strain. Five proteins in SCE, of approximately 50, 37, 30, 26 and 16 kDa, were recognised by the sera. In an OMP preparation, two bands, at 37 and 50 kDa, were recognised as strongly immunogenic. Mass spectrometry analysis of proteins corresponding in size to those detected by immunoblotting identified the 37 kDa band as OmpA, but the band at 50 kDa was not identified with certainty. A major 30 kDa OMP, identified as OmpH, was not strongly immunogenic.  相似文献   

15.
Antiserum to a partially purified neuraminidase fromPasteurella multocida, type A:3, was adsorbed with protease-digestedP. multocida type 3 lipopolysaccharide (LPS) to remove LPS immunoreactivity. The LPS-adsorbed antineuraminidase caused a 77% reduction in the neuraminidase activity of homologousP. multocida in anin vitro enzyme neutralization test. All 14 mice passively immunized with the adsorbed antineuraminidase were protected against challenge infection with homologousP. multocida in a mouse protection test. Ten out of 14 mice in one group that received antisera containing antibodies to both neuraminidase and LPS were protected. In contrast, only 1 out of 14 mice that were immunized with pre-immune serum survived the challenge. These results suggest that antiserum toP. multocida neuraminidase was, at least partly, responsible for the protection observed in this study. Neuraminidase may be one of the immunogenic protective proteins present in aqueous extracts ofPasteurella multocida.  相似文献   

16.
猪源多杀性巴氏杆菌荚膜分型及外膜蛋白H基因序列分析   总被引:1,自引:0,他引:1  
为了解国内猪源多杀性巴氏杆菌外膜蛋白H基因的变异情况及与荚膜型之间的相关性,本试验采用PCR方法对44株猪源多杀性巴氏杆菌进行荚膜分型和ompH基因的扩增测序。结果显示,44株菌株中22株为荚膜A型,17株为荚膜B型,5株为荚膜D型;44株菌株的ompH基因开放阅读框在1 002~1 056bp之间;SignaIP 4.1预测结果显示,信号肽为N端20个氨基酸残基;ProtParam分析结果显示,成熟蛋白氨基酸残基数量在313~331aa之间,推测的分子质量在33.83~36.46ku之间。序列分析结果显示,44株菌株核苷酸同源性为86.2%~100.0%,氨基酸同源性为86.0%~100.0%;ompH基因核苷酸序列遗传进化树结果显示,荚膜A型、B型和D型菌株分别在不同的分支。试验结果表明,猪源多杀性巴氏杆菌ompH基因在不同血清型之间具有较高的同源性,与荚膜型之间存在相关性。  相似文献   

17.
Mice were experimentally infected with Pasteurella multocida serotype A1 to study the cytokine profiles, host cell apoptosis and sequential pathology at different hours of post-infection. Infected mice were dull, anorectic and depressed. A transient leukocytopenia followed by progressive leukocytosis was observed in the course of infection. Serum cytokine profiles showed significantly (P < 0.01) higher amount of pro-inflammatory cytokines (TNF-α, IL-1β, IL-6 and mouse KC) in the infected mice when compared to control mice. The circulating lymphocytes were apoptotic on annexin V staining. Apoptotic nuclei were detected in splenocytes, hepatocytes and infiltrating leukocytes of the lungs on TUNEL staining. The lungs were grossly congested and hemorrhagic, and showed infiltration with polymorphonuclear cells at early and mononuclear cells in the late hours of infection. Alveolar epithelia, inter-alveolar septa and capillary endothelium of the lungs showed ultrastructural changes. Liver had degenerative changes in histological and ultrathin sections.  相似文献   

18.
Sixteen 8- to 9-week-old Pasteurella multocida-free rabbits were divided into two equal groups. Eight rabbits in one group were inoculated intranasally with P. multocida type A:3. The other eight were inoculated intranasally with phosphate-buffered saline and used as controls. Nasal swabs taken before and after inoculation were cultured for bacterial isolation. Post-mortem nasal swabs and lung samples were cultured for bacteriological isolation. Nasal mucosa and lung samples were collected and processed for transmission electron microscopy. Pasteurella multocida was isolated from the nasal cavity of all infected rabbits and from the lungs of four infected rabbits. Degenerative ultrastructural changes in epithelial cells and endothelial cells were seen in the infected rabbits. Deciliation of the cilated epithelium and hyperplasia of the goblet cells in the nasal mucosa were noted. Thickening of the alveolar septa due to hyperplasia of type II pneumocytes, swelling of the endothelial lining of capillaries and infiltration of inflammatory cells were also observed. Intracellular invasion of the nasal epithelial cells and of type II pneumocytes by the organism was observed. Coccobacilli were observed in membrane-bound vacuoles in the cytoplasm of these cells. The vacuoles were adjacent to the host-cell mitochondria and some of these vacuoles appeared to be fused to the mitochondrial membrane. Some type I pneumocytes with intracellular membrane-bound vacuoles containing bacterial cells showed protrusions, which appeared to detach into the alveolar lumina. These results indicated that P. multocida serotype A:3 in rabbits can invade the epithelial cell and cause structural changes in the interstitium, epithelium and endothelium. Heterophils and macrophages appear to play important roles in tissue injury.  相似文献   

19.
Retropharyngeal infections in horses normally induce local painful swelling of the retropharyngeal area, which may lead to dyspnea, dysphagia, and systemic manifestations. Differential diagnosis of local painful swelling of the retropharyngeal area includes retropharyngeal lymph node infection, neoplasm, cellulitis, hematoma, guttural pouch empyema, parotiditis, and jugular thrombosis. Apart from Streptococcus equi ssp. equi, other bacteria are rarely reported as a cause of retropharyngeal abscesses. The reason for this might be a lack of specific sampling to identify the causative agent. This work deals with a case of retropharyngeal infection in an 11-year-old Standardbred stallion with acute depression, fever, tachycardia, asymmetric painful swelling in the throat area, ptyalism, and respiratory distress. Endoscopy, radiography, ultrasonography, blood analysis, and cytological examination of a puncture sample taken from the throat mass were consistent with a pyogenic to pyogranulomatous retropharyngeal inflammation. The clinical evolution was initially satisfactory in response to treatment with nonsteroidal anti-inflammatory drugs and antibiotics, but clinical signs relapsed twice, each time a few weeks after cessation of antibiotic therapy. The bacteriologic finding in this case was unusual and consisted of the isolation of a Pasteurella multocida strain that was obtained after the second relapse (ie, 79 days after initial admission), using a brain heart infusion (BHI) medium, and after two successive negative bacteriological cultures performed on day one of clinical signs and at the first relapse of clinical signs, respectively.  相似文献   

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