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1.
硝唑尼特抗免疫抑制小鼠隐孢子虫活性试验   总被引:1,自引:0,他引:1  
研究硝唑尼特抗隐孢子虫的活性,采用地塞米松抑制昆明鼠免疫功能,经口接种感染微小隐孢子虫孢子化卵囊,成功制备出微小隐孢子虫感染的动物模型。将感染微小隐孢子虫的小鼠随机分为感染对照组以及高、中、低剂量3个药物剂量组,连续经口灌服硝唑尼特治疗1周,观察每只小鼠每天排出微小隐孢子虫卵囊的数量,以感染抑制率来评价硝唑尼特抗微小隐孢子虫的活性。结果表明,200 mg/(kg.d)剂量组能显著减少小鼠排出隐孢子虫卵囊的数量,对治疗微小隐孢子虫感染具有较好的疗效。  相似文献   

2.
为了解不同地区鸡源贝氏隐孢子虫的致病特点,对收集到的郑州、林州两地区鸡源贝氏隐孢子虫卵囊经雏鸡传代扩增纯化后,分别以1×106个卵囊量接种3日龄罗曼公雏鸡,从其排卵囊情况、临床症状和病理学变化比较了2个分离株的致病情况。结果表明:2个隐孢子虫分离株均主要引起雏鸡呼吸道症状和法氏囊炎病变;接种雏鸡均于感染后第4天开始排卵囊,林州株和郑州株排卵囊持续期分别为23 d和13 d;排卵囊高峰期均为感染后第8~12天。雏鸡感染2个地区鸡源贝氏隐孢子虫分离株后,排卵囊量及排卵囊规律存在差异。  相似文献   

3.
北京地区牛隐孢子虫病的调查及小鼠的人工感染   总被引:12,自引:0,他引:12  
隐孢子虫病是全世界流行的一种人畜共患病。笔者对北京地区的牛隐孢子虫病进行了初步调查,在调查的5个牛场中有4个发现有隐孢子虫感染,其中二月龄、三月龄犊牛感染率最高(二月龄为19.5%,三月龄为17.4%),四、五月龄时逐步下降,一月龄犊牛感染率最低。人工感染试验证明牛隐孢子虫能够感染正常的和免疫力降低的小鼠。从而证明北京地区牛隐孢子虫不具有宿主特异性,它既能感染牛,又能感染小鼠。笔者还在电镜样品和组织切片中发现了隐孢子虫各发育阶段的虫体;被隐孢子虫寄生的肠绒毛发生不同程度的变性、坏死、萎缩和上皮细胞的脱落,从而证明北京地区牛隐孢子虫具有一定的致病性。  相似文献   

4.
隐孢子虫卵囊形态学观察及动物交叉感染试验   总被引:3,自引:1,他引:2  
作者观察了从湖南6种动物分离出的隐孢子虫卵囊的光镜下形态,并以鸡源、牛源和猪源隐孢子虫卵囊人工感染实验动物作交叉感染性研究。结果鉴定出隐孢子虫3个种,即贝氏隐孢子虫(C.baileyi),寄生于鸡、鸭;微小隐孢子虫(C.Parvum),寄生于牛、山羊、猪、家兔和小鼠;鼠隐孢子虫(C.muris),寄生于牛。交叉感染结果表明,来自鸡的隐孢子虫可以感染雏鸡和雏鸭,而不能感染小鼠和家兔;来自牛的隐孢子虫可以感染小鼠和家兔而不能感染雏鸡,来自猪的隐孢子虫可以感染小鼠而对雏鸡无感染性。作者认为,哺乳类和鸟类的隐孢子虫可能在宿主纲的水平上具有宿主持异性。  相似文献   

5.
(1)对长春地区兔、小鼠、牛以及婴幼儿腹泻的隐孢子虫感染情况作了调查,其感染率分别为36%、90%、9/10和1/22;(2)对兔隐孢子虫卵囊排出规律的观察结果表明,每隔6~8d出现一个高峰期,在两个高峰期之间有时检不到卵囊;(3)交叉感染试验,从兔粪便中分离的卵囊经口感染BALB/c乳鼠和雏鸡后,在鼠粪便中检到卵囊,而在鸡粪便中未发现卵囊;(4)建立了兔和鼠的隐孢子虫病动物模型;(5)成功地进行了隐孢子虫体外培养试验;(6)鼠隐孢子虫病的治疗药物筛选结果,10~(-3)mol/L SM520和10~(-6)mol/LSMW在体外对隐孢子虫有杀灭作用;动物试验发现,中药配方I和SMW对鼠隐孢子虫有一定抑制作用.  相似文献   

6.
应用PCR检测隐孢子虫卵囊的研究   总被引:2,自引:0,他引:2  
隐孢子虫病是一种重要的人畜共患原虫病。为了在临床样品中更准确、快速地检测隐孢子虫卵囊,从初步纯化的含有不同数量隐孢子虫卵囊的样品中和含有不同数量隐孢子虫卵囊的奶牛粪便中,直接提取DNA或用DNA纯化试剂盒对提取的奶牛粪便中卵囊DNA进行纯化之后用作PCR模板,用1对人工合成寡核苷酸作为PCR引物,扩增片段大小为452bp。优化了Mg^2 浓度、引物浓度和dNTP浓度,并进行了特异性检验。建立的PCR具有隐孢子虫属特异性,不仅扩增出新鲜样品DNA提取物中的目的片段,而且扩增出放置6年之久的DNA提取物中的目的片段。样品经过初步纯化之后,最低检测值100个卵囊/ml;从含有隐孢子虫卵囊的奶牛粪便中提取DNA,尔后经过DNA纯化试剂盒纯化,PCR最低检测值为10^5个卵囊/g粪便。  相似文献   

7.
<正>自Tyzzer(1907)首次发现小鼠隐孢子虫(C.muris)以来,国内外学者对隐孢子虫病进行了大量研究,已在人、哺乳动物、禽类、爬行动物和鱼类等多种动物中发现15个种类的隐孢子虫感染[1-3],其中可感染牛的隐孢子虫种为安氏隐孢子虫(C.an-dersoni)、小球隐孢子虫(C.parvum)、牛隐孢子虫(C.bovis)、小鼠隐孢子虫(C.muris)、犬隐孢子虫(C.ca-  相似文献   

8.
苦参碱对微小隐孢子虫体内外感染的抑制作用   总被引:1,自引:0,他引:1  
应用犬肾细胞(MDCK)模型和BALB/c小鼠模型,研究了苦参碱(MT)对隐孢子虫(C.parvum)感染的抑制作用。用C.parvum感染MDCK细胞和BALB/c小鼠,通过检测感染MDCK细胞中C.parvum的数量和BALB/c小鼠的排卵囊数来评价不同剂量的MT对C.parvum活性与感染性的体内外抑制作用。体外试验表明,MT高、中、低3个剂量组均能显著或极显著降低MDCK细胞模型中的C.parvum感染数量(P<0.05或P<0.01);体内试验表明,MT高、中、低3个剂量组均能显著减少BALB/c小鼠的排卵数(P<0.05)。  相似文献   

9.
贵州省四县山羊隐孢子虫调查   总被引:4,自引:0,他引:4  
隐孢子虫病是由隐孢子虫科隐孢子虫属的隐孢子虫 (Cryptosporidium)寄生于人和动物的消化系统、呼吸系统等系统器官而引起的一种以严重腹泻为主要特征的世界性人畜共患寄生性原虫病。自1 90 7年 Tyzzer首先在实验小鼠的胃腺中发现以来 ,国内外已有大量人体和动物感染的报道。但贵州地区山羊隐孢子虫的感染和致病情况目前尚未见报道。近年来贵州省由于山羊腹泻每年导致 2 0 %左右的羊死亡 ,造成巨大的经济损失 ,已严重地影响养羊业的发展。为了及时查清贵州山羊腹泻的病因 ,为有效防治该病提供科学依据 ,我们于 1 999年 1 2月至2 0 0 0年 4…  相似文献   

10.
用饱和蔗糖溶液漂浮法和改良抗酸染色法对采自犬养殖场、郑州郊区宠物市场、实验动物房、宠物医院以及郑州郊县农村的309份犬粪便样品进行了隐孢子虫感染情况调查,同时用幼犬和SCID小鼠进行了人工感染试验。结果显示,隐孢子虫平均感染率为2.59%(8/309);犬养殖场、郑州郊县农村和实验动物房犬的隐孢子虫感染率分别为0.56%(1/179)、10.53%(2/19)、16.67%(5/30),而宠物市场、宠物医院的被调查犬未发现隐孢子虫感染。所查到的8份隐孢子虫阳性样品有6份来自1~3月龄的幼犬,表明幼犬更容易感染隐孢子虫。动物感染试验表明,犬源隐孢子虫不感染SCID小鼠和2月龄非免疫抑制幼犬,但能感染免疫抑制幼犬。组织切片用HE染色观察的结果显示,犬源隐孢子虫主要寄生在幼犬的十二指肠和空肠。根据卵囊形态大小和动物感染试验结果,将从犬分离的隐孢子虫初步鉴定为犬隐孢子虫。  相似文献   

11.
The present study was undertaken to compare the viability and infectivity of Cryptosporidium parvum oocysts that had been stored for 1, 4, 7, 10, 13, 16, 20, 25 and 30 months at 4 degrees C in 2.5% potassium dichromate (Cr) or chlorinated tap water, respectively. An excystation protocol was performed in vitro to evaluate viability. One hundred and eighty female BABL/c mice were used to evaluate the infectivity of oocysts by investigating the prepatent period of C. parvum infection, the quantity of oocysts excreted, and the number of parasites that colonized the villi of the ileum. The results showed that C. parvum oocysts preserved in Cr for 1-16 months or in water for 1-13 months were capable of excystation in vitro and infection of mice. The excystation rates of oocysts and the prepatent periods in mice infected by oocysts stored in Cr and water were not significantly different (p>0.05), and there was a strong correlation between prepatent period and duration of oocyst storage (Cr: R2=0.92; water: R2=0.98). There were no significant differences in oocyst shedding from feces or parasitism of the terminal ilea of mice by Cryptosporidia between the two storage media (p>0.05). In conclusion, C. parvum oocysts may be stored at 4 degrees C in water instead of Cr for the purposes of laboratory research. However, the presence of viable C. parvum oocysts in water is a severe challenge to the drinking water treatment industry.  相似文献   

12.
温度是影响隐孢子虫活力的重要环境因素之一.对于疾病暴发的风险评估需要有效的方法来准确分析卵囊的活力.本试验应用核酸染色和小鼠感染力2种方法研究了脱囊和热处理后完整卵囊和不完整卵囊的活力,并与新鲜卵囊进行了对比.结果表明,脱囊和中性温度热处理后的完整卵囊保持活力.然而,高温处理后的完整卵囊以及脱囊和热处理后的不完整卵囊完全丧失活力.对于新鲜卵囊,灭活卵囊,以及在脱囊后或在40℃和70℃处理后的完整和非完整卵囊,核酸染色法和小鼠感染力法的结果相对应;但是对于50℃和60℃处理后的完整卵囊这2种方法不对应.  相似文献   

13.
The viability of two Cryptosporidium parvum bovine isolates from Spain and Colombia was evaluated by in vitro excystation, inclusion/exclusion of two fluorogenic vital dyes (DAPI and PI) and infectivity assay in a suckling murine model. Excystation percentages were similar for both Spain and Colombia isolates (83% and 87%, respectively). The total viability of the Spain isolate, measured by inclusion/exclusion of two fluorogenic vital dyes, was 71% in comparison with that detected for oocysts of the Colombia isolate, 32.3%. The bovine C. parvum oocysts of both isolates were viable and infectious for suckling Swiss CD-1 mice. However, infectivity percentage and the mean intensity of infection were consistently higher in the Spain isolate than those from Colombia isolate. It was not possible to obtain a good correlation between in vitro excystation, inclusion/exclusion of vital dyes and in vivo infectivity for the Colombia isolate, while data obtained with the Spain isolate indicated that there was an apparent strong correlation between excystation efficiency, total viability and the infectivity. Although a comparative analysis of genetic variation among these isolates from different geographical location is necessary, variations observed between the both isolates seemed to be a result of parasite adaptation to environmental stresses such as temperature which appears to have a direct effect on the permeability of the oocysts.  相似文献   

14.
The viability and infectivity of Cryptosporidium parvum (C. parvum) oocysts, detected in water samples collected from river water in Hokkaido, were investigated using Severe Combined Immunodeficient (SCID) mice. The water samples collected from September 27 through October 10, 2001 by filtration using Cuno cartridge filters were purified and concentrated by the discontinuous centrifugal flotation method. From 1.2 x 10 (5) liters of the raw river water, approximately 2 x 10(4) oocysts were obtained and designated as Hokkaido river water 1 isolate (HRW-1). Oocyst identification was carried out using microscopic and immunological methods. Six 8-week-old female SCID mice were each inoculated orally with 1 x 10 (3) oocysts. Infection was successfully induced, resulting in fecal oocyst shedding. Oocysts were then maintained by sub-inoculation into SCID mice every 3 months. Infectivity was evaluated by making comparisons with two known C. parvum stocks, HNJ-1 and TK-1, which were bovine genotypes detected in fecal samples from a cryptosporidiosis patient and young cattle raised in Tokachi, Hokkaido respectively. The oocyst genotypes were determined from a small subunit ribosomal RNA (SSU-rRNA) gene by polymerase chain reaction - restriction fragment length polymorphism (PCR-RFLP) analysis. No significant differences were observed in the average number of oocysts per gram of feces (OPG) in any of the isolates. Our data indicates that the C. parvum oocysts detected in the sampled river water were of C. parvum genotype 2. Moreover, our data on the continued isolation, detection and identification of the C. parvum isolates is consistent with the available epidemiological data for the Tokachi area.  相似文献   

15.
Cryptosporidiosis is mainly a problem in neonatal ruminants. Not only do Cryptosporidium spp. spread ubiquitously in our environment, but the protozoa are highly resistant to harsh environmental conditions and disinfectants, and a control measure is urgently required. This study investigated the potential biocidal activity on Cryptosporidium parvum oocysts of two commercial disinfectants developed originally to be used in farms and food-processing industries. The products, containing formaldehyde and hydrogen peroxide respectively, both had some anticryptosporidial effects. The viability and infectivity of purified C. parvum oocysts exposed to both disinfectants at different concentrations and exposure times were evaluated by inclusion or exclusion of vital dye (propidium iodide), use of an excystation technique and infection of suckling mice. Viability assays showed a decrease in oocyst viability associated with an increase in exposure time for each of the concentrations used. The intensity of infection in neonatal mice was significantly lower (P<0.05) than in the control litters.  相似文献   

16.
The efficacy of alpha-cyclodextrin against infection by Cryptosporidium parvum was evaluated using in vitro and in vivo models. Cyclodextrins are water-soluble cyclic hexamers of glucose units with hydrophobic cavities capable of solubilizing lipophiles and are widely used as drug excipients in the pharmaceutical industry. The viability of purified C. parvum oocysts, exposed for 30, 60, 90, 120 min and 24h to different concentrations of alpha-cyclodextrin (2.5, 5, 7.5, 10, 12.5 and 15%), was evaluated by inclusion or exclusion of two fluorogenic vital dyes and by an excystation technique. Preventive and curative efficacies against cryptosporidial infections, at different doses (2.5 and 5%) and regimes of administration of alpha-cyclodextrin, were determined in an experimental neonatal mice model. Results of the viability assay showed a decrease in oocyst viability that was associated with an increase in exposure time, for each of the concentrations used. Moreover, a high proportion of nonviable oocysts (81%) was observed when C. parvum oocysts were exposed to alpha-cyclodextrin (2.5%) for 24h. The intensity of infection, determined 7 days post-inoculation by examination of intestinal homogenates, was significantly lower (P<0.05) than in the control litters, for all the assays carried out with alpha-cyclodextrin. Only 38.8% of the animals became infected when the alpha-cyclodextrin solution (5%) was administered 2h before inoculated oocysts, and every 24h at 1 and 2 days post-inoculation.  相似文献   

17.
Cryptosporidium parvum is a zoonotic protozoan parasite that may cause severe neonatal diarrhoea or even mortality in newborn ruminants: its oocysts are extremely resistant to normal environmental conditions and to most common disinfectants. KENO?COX, a patent pending amine-based formula, was tested for its ability to inactivate C. parvum oocysts. The Daugschies assay (2002), a standardized assay for chemical disinfection initially described for Eimeria spp., was adapted for C. parvum oocysts. KENO?COX diluted in water at 2% and 3% concentration and incubated with oocyst suspensions for 2h, allowed a significant reduction in viability, lysing 89% and 91% of oocysts respectively. Infectivity of the remaining C. parvum oocysts was assessed by inoculation to C57 Bl/6 neonatal mice. Each mouse received 2.5 μl of a suspension initially containing 500,000 oocysts before contact with KENO?COX. Six days post inoculation, the intestinal parasite load was significantly reduced by 97.5% with KENO?COX 2% compared to that of the mice inoculated with untreated parasites. KENO?COX 3% completely eliminated infectivity of oocysts. The number of oocysts remaining infectious in the inoculum treated with KENO?COX 2% was calculated from an inoculated dose-response curve: it was estimated at about 48.6 oocysts among the 500,000 oocysts initially treated corresponding to 99.99% of inhibition. These results demonstrate the high efficacy of KENO?COX against C. parvum oocysts. Combined with an appropriate method of cleaning, the application of KENO?COX may be a useful tool to reduce cryptosporidial infectious load on farm level.  相似文献   

18.
We isolated Cryptosporidium parvum-type oocysts from naturally infected siberian chipmunks which originated in the People's Republic of China and examined the infectivity to rodents as experimental animals. The naturally infected chipmunks did not show any clinical symptoms. The oocysts were 4.8 x 4.2 microm on average in size. They were ovoid and morphologically similar to the C. parvum oocysts isolated from human and cattle. Experimental rodents were inoculated with 1.6 x 10(6) original oocysts each. SCID mice began to shed oocysts on day 7 and the OPG value was 10(5) from 50 days. The oocysts were found from ICR mice on days 13 and 16 by only sugar flotation method, however, any oocysts were not detected from the rats, guinea pigs and rabbits until 30 days. Two infected SCID mice were necropsied on days 100 and 102 and examined for coccidian organisms. Merozoites and oocysts were found in the low part of jejunum and ileum, however, no parasites were detected in the stomach. Consequently, it was considered that the present species was C. parvum and was probably genotype 2 from result of infectivity to rodents.  相似文献   

19.
The effect of heat treatment was examined against oocysts of Cryptosporidium parvum, Cryptosporidium muris and chicken Cryptosporidium sp. isolated in Japan. The oocysts of these species were exposed at 50, 55, 60 and 70 degrees C for 5, 15, 30 and 60 sec in water bath, respectively. To determine the infectivity of heated oocysts, the nice and chickens were inoculated with the treated oocysts and the oocyst output in the feces after inoculation was examined. In C. parvum and chicken Cryptosporidium sp., the oocysts were not detected from mice or chickens which were received oocysts heated at 55 degrees C for 30 sec, 60 degrees C for 15 sec and 70 degrees C for 5 sec. In C. muris, the oocysts were not detected from mice which were received oocysts heated at 55 degrees C for 15 sec, 60 degrees C for 15 sec and 70 degrees C for 5 sec. Consequently, it was clarified that the infectivity of Cryptosporidium oocysts to mice and chickens was lost by heating at 55 degrees C for 30 sec, 60 degrees C for 15 sec and 70 degrees C for 5 sec.  相似文献   

20.
In order to test various viability assays for Cryptosporidium parvum oocysts were used to infect HCT-8 cells in vitro or baby mice. Infected cells were either stained with fluorescent anti-Cryptosporidium-antibody or lysed and subjected to C. parvum-specific PCR after 48 h. Titrations with infective oocysts were performed and compared to oocysts disinfected with Neopredisan for 2 h at varying concentrations. Caecal smears and histological sections from infected animals were examined in parallel. The number of foci of parasite development in vitro after immunofluorescent staining correlated well with the infection dose. PCR was less quantifiable and the results were not always reproducible, especially when low infection doses were used. Disinfection resulted in a dose-dependent reduction of oocyst infectivity when compared to the controls in all three assays. The infection of cells cultured in vitro with oocysts of C. parvum provides a suitable tool for the estimation of viability after treatment with chemical disinfectants. Immunofluorescence is easy to perform and gives quantitative results, while PCR-based detection of parasite DNA, although possible, requires the use of more sophisticated tools for quantification.  相似文献   

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