PubMed HealthSearch

SEARCH · PubMed Health

Results for “zoonosis”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Current problems in zoonosis research.

New developments in the field of Zoonosis research are discussed. They include: 1. New emerging viral zoonosis 2. Multicausal zoonoses 3. Genetic aspects of the origin of new zoonoses 4. Transmission of zoonoses to man through foodstuffs of animal origin 5. The environment and zoonoses. Continuous zoonosis research with new molecular biological techniques is a necessity. In the final analysis, there are no true limits in the field of infectiology. Such research requires cooperation between ecologists, zoologists, botanists, molecular biologists, physicians and veterinarians.

Animals

The zoonosis-prone veterinarian.

A study of 1,182 Illinois veterinarians revealed that 833 had experienced an accident, and of these 833, 42.7% also had experienced a zoonosis. Brucellosis and animal bites were especially prevalent zoonoses. This percentage differed significantly (P less than 0.01) from the 32.4% of 349 accident-free veterinarians who had experienced zoonoses. The prevalence of zoonoses was even higher (50%) among veterinarians with a history of 3 or more accidents. The prevalence of 16 nonzoonotic health conditions was similar in veterinarians who had experienced an accident and in the total veterinary population, demonstrating a degree of specificity to the accident-zoonosis association. Of the subjects studied, 5.7% had experienced 16.5% of the events, accidents or zoonoses. The subgroup that had experienced 5 or more events and the subgroup that experienced no events differed in many characteristics from the total veterinary population. The biological importance of the characteristics of these veterinarians remains to be determined. The hypothesis was advanced that zoonoses can be considered occupational accidents in veterinarians and that certain veterinarians are zoonosis prone. If true, this hypothesis also might apply to certain communicable diseases in the general human population.

Accident Proneness

[Studies on the giardiasis as the zoonosis. III. Prevalence of Giardia among the dogs and the owners in Japan].

To obtain the basic data on the route of Giardia infection as zoonosis, of many regions in Japan, the feces from 2218 dogs were examined for detection of Giardia cysts. Giardia cysts were detected in 239 of the 2218 dogs (10.9%), which was the same as previous reports from America. None were found from the owners of 51 dogs in which Giardia cysts were detected. The detection rates of each facilities were, 68 of 366 (18.6%) from the breeder's kennels, 169 of 1811 (9.3%) in individual houses, 2 of 42 (4.9%) from research institutes. The detection rate of the breeder's kennels was higher than the other two facilities (p less than 0.05, p less than 0.001). The detection rates of Kanagawa and Shizuoka prefectures among 17 regions in Japan were higher than the others (p less than 0.001, p less than 0.05). Especially in Shizuoka, the rate of the individual houses was higher than from breeder's kennels. In kanagawa the rates of the individual houses and the breeders kennels were higher than the mean in Japan (p less than 0.001). Therefore one must instruct the breeders when teaching health education to included zoonosis, and that the detection rate of the age groups of less than 3 years old was high-221 of 1276 (17.3%). Since the detection rates of Giardia cysts in the dogs were low, the possibility that human infection acquired from dogs was low. However, some of patients with giardiasis we encountered had never been abroad, and it is not yet clear whether Giardia is strictly host specific or not, so attention should be paid to the possibility of cross-infection between man and animals.

Animals

Prevalence of antibodies to five selected zoonosis agents in monkeys.

The prevalence of antibodies against 5 zoonosis agents was determined in serum samples of 443 breeding monkeys. Of the monkeys, 296 were bred or kept for a long time at R institute, and the remaining 147 were newly imported from the Philippines and kept at S institute for quarantine. Antibodies to simian virus 40 were highly prevalent at 89.1% among monkeys of R institute, whereas no antibody could be detected in those of S institute. Antibodies to Chlamydia psittaci and Yersinia pseudotuberculosis were detected in 14.4 and 11.6% at R institute, and in 9.0 and 3.5% at S institute, respectively, evidencing a significant difference (P less than 0.05) between those of the two institutes for both agents. Antibodies to Toxoplasma gondii and Leptospira interrogans were found in 3.6 and 2.9% of the overall, respectively, showing no difference in positive rates in relation to breeding place. Even in cases positive to the latter 4 zoonosis agents, the antibody titers were low. The results obtained suggest that all zoonoses tested do not seem to be so serious diseases among monkeys at the present time except simian virus 40 infection, which is highly prevalent among breeding monkeys in Japan.

Animals

Campylobacter pylori in abattoir workers: is it a zoonosis?

Sera from 98 abattoir workers were tested for IgG to Campylobacter pylori, C jejuni, and klebsiella. Clerical workers had significantly lower C pylori and C jejuni IgG titres than any of the groups in direct contact with freshly cut animal parts. No difference was found for antibodies to klebsiella. 28 non-clerical workers with high-titre C pylori IgG consented to upper gastrointestinal endoscopy. C pylori associated gastritis was found in all 28, and four weeks of colloidal bismuth subcitrate (240 mg twice daily) was prescribed. On repeat testing at three months all showed a decrease in IgG titres to C pylori but not to C jejuni, whereas 18 untreated non-endoscoped workers showed no change. These findings raise the possibility that C pylori infection is a zoonosis.

Abattoirs

[Studies on the giardiasis as the zoonosis].

To obtain basic data on the route of Giardia infection as zoonosis, we examined feces from 80 dogs and 16 cats for Giardia cysts and evaluated the detection rates. In addition, familial infection was studied in 3 family members of the patient with giardiasis. Giardia cysts were detected in 10 of the 80 dogs (12.5%) but none of the cats. Of the 10 dogs from which Giardia cysts were isolated, 6 had been maintained by the breeders. Tow other dogs were for examination in the research institutions. None of the family members of the patient with giardiasis had this infection. Since the detection rates of Giardia cysts in the dogs and cats were low, the possibility that human infection is acquired from dogs or cats seemed to be low. However, some of patients with giardiasis we encountered had never been abroad. This fact together with the presence of Giardia cysts in the dogs despite the low detection rates suggest that attention should be paid to the possible association between human giardiasis and pets since the number of people keeping pets is increasing.

Animals

[Studies on the giardiasis as the zoonosis. II. Giardiasis in dogs and cats].

To obtain the basic data on the route of Giardia infection as zoonosis, we examined feces from 354 dogs and 34 cats for Giardia cysts and trophozoites and evaluated the detection rates. In addition, the feces of owners of the dogs infected with Giardia were examined. Giardia cysts and trophozoites were detected in 58 of the 354 dogs (16.4%) and 3 of the 34 cats (8.8%). Of the 61 animals from which cysts and trophozoites were isolated, 59 were purchased from the breeders and the other two animals had been kept for examinations in the research institute. None of the owners of the dogs had this infection. This result suggests that the possibility of human infection from contact with infected dogs or cats seems to be very low. However, attention should be paid to the possibility of cross-infection between men and animals, because it is not yet clear whether Giardia is strictly host-specific or not.

Animals

Systemic lupus erythematosus--a zoonosis?

The medical history was obtained and a physical examination carried out--in addition to an immunological investigation of the blood and skin--on 11 dogs in the ownership of patients with systemic lupus erythematosus (SLE). The results were compared with those obtained from a control group and it was found that they do not support the hypothesis that SLE is a zoonosis.

Animals

Pandemic influenza: a zoonosis?

In the last two decades, influenza A viruses have been found to occur throughout the animal kingdom, mainly in birds, notably aquatic ones, in which infection is largely intestinal, waterborne, and asymptomatic. The domestic duck of southern China, raised in countless numbers all year round mainly as an adjunct to rice farming, is the principal host of influenza A viruses. Studies based on Hong Kong H3N2 viruses from southern China suggest that pandemic strains originate from the domestic duck there and are transmitted to humans via the domestic pig, which acts as a "mixing vessel" for two-way transmission of viruses. This provides further support for the hypothesis that the region is a hypothetical influenza epicenter. Rural dwellers in the epicenter show serological evidence of contact with non-human influenza A viruses. Two hypotheses are advanced for the range of hemagglutinin (HA) subtypes of viruses that can cause pandemics (1) circle or cycle limited to H1, H2, and H3 subtypes, thereby implying that a virus of the H2 subtype will cause the next pandemic; and (2) spiral, by which any one of the 14 HA subtypes recorded to date may be involved. Consideration is given to the temporal and geographical factors and range of hosts, namely the duck, pig, and human, that need to be submitted to virus surveillance in China and beyond to attempt to anticipate a future pandemic. Evidence is presented that points strongly to pandemic influenza being a zoonosis.

Animals

An emerging zoonosis in Scandinavia -- nephropathia epidemica.

The paper reviews as zoonosis the disease called Nephropathia epidemica in north European countries. The etiology is as yet unsolved but a viral one is highly suspected with small rodents (voles and mice) as the source of infection. Based on the epidemiological peculiarities of the disease, the ecology of the agent and hypothetical ways of transmission of infection from small rodents to man are discussed.

Adult

[Human ehrlichiosis, a new zoonosis].

Human Ehrlichiosis is a recently discovered zoonosis. It is an infections disease caused by E. canis and transmitted by Rh. sanguineus. Its diagnosis is difficult since the symptoms are non-specific and could be misleading. The IFA Test is the only method for diagnosis. Treatment with tetracyclines gives good results.

Animals

Role of S. wien in the epidemic epizootiology of salmonellosis, zoonosis of dramatic distribution.

The appearing of S. wien and its diffusive and pathogenic distribution are reported within the general framework of Salmonelloses and the problems of epidemiological and epizootiological nature that arise this zoonosis. The measures to be adopted are also stressed in view of a more strict control and protection of human and animal health together with environmental hygiene from Salmonella infection and other Enterobacteria which are increasingly met inhuman and animal pathology. In future notes the components of this worldwide problem of hygiene and economy will be examined in detail.

Animals

[Parasitosis and zoonosis in mice and rats caught in and around Beytepe Village (author's transl)].

This helmintho-zoonotic investigation has been made on 106 mice and rats from different species caught in and around of Beytepe Village, these animals are reservoirs for a number of zoonotic parasites and most of these parasites are causative agents of zoonosis in man. The parasites found and their prevalences are; Sphacia obvelata: 42.4%, Sphacia muris: 28.3%, Aspicularis tetraptera: 14.1%, Ascaris lumbricoides (Pseudo.) 2.8%, Gongylonema neoplasticum: 1.8% Trichuris muris: 6.6%, Capillaria gastrica: 2.8%, Taenia pisiformis(lar.) 3.7%, Taenia taeniformis (1.) 3.7%, Hymenolepis nana: 5.6% Hymenolepis diminuta 3.7%.

Animals

The occurrence of babesiasis affecting small terrestrial mammals and the importance of this zoonosis in Europe.

A short survey is given of the occurrence of babesiasis affecting small terrestrial mammals in some parts of Europe. Results obtained in studies of 7,038 small terrestrial mammals (42 species) from Czechoslovakia, Austria, Hungary, Yugoslavia and Bulgaria, show the distribution of Babesia microti in these countries. The authors found babesias in the following host species: Neomys anomalus, Clethrionomys glareolus. Microtus arvalis, M. agrestis, Apodemus agratius, A. flavicollis, A. sylvaticus and Mus musculus. The average incidence was very low-0.2% and varied in individual countries from negative to 0.7%. Problems of the natural foci of B. microti in Central Europe and discussed and hitherto recorded cases of Babesia infections in man are summarised. The epidemiological importance of the unspecific mammal hosts of B. microti is emphasised and the necessity of surveillance of this zoonosis in Europe is pointed out.

Animals

Viral zoonosis and human cancer: a perspective.

Zoonotic viruses, which are pathogens naturally transmitted from animals to humans, pose a significant and evolving challenge to public health. Although most known zoonotic viruses do not exhibit the persistence typically necessary for viral oncogenesis, the potential cancer-causing effects of these infections remain unclear. Persistent infection, latency, or abortive replication within susceptible but non-permissive human cells may allow some animal-origin viruses to evade immune clearance, disrupt host cell signaling, and induce genomic instability-key features of cancer development. Evidence from both in vitro and in vivo studies indicates that certain animal viruses can enter human cells, integrate their genetic material, or express oncogenic proteins, even without completing full replication. These mechanisms resemble those of established human oncoviruses and suggest that, under specific host and environmental conditions, zoonotic viruses could contribute to neoplastic transformation. Given the increasing frequency of human-animal interactions through companionship, agriculture, wildlife trade, and food production, multidisciplinary research combining virology, oncology, and epidemiology is essential. Such efforts should focus on sensitive molecular detection, mechanistic studies, and population-based investigations to better understand the long-term cancer risks associated with zoonotic viral infections and to guide effective prevention strategies.

Cancer

Human exposure to bovine polyomavirus: a zoonosis?

A competitive-type solid phase radioimmunoassay (RIA) was developed for the detection of antibody to bovine polyomavirus. Comparison of RIA and counter-immunoelectrophoresis (CIE) results on 273 cattle sera indicated that both techniques were detecting antibody of like specificity. Human sera from 256 blood donors, 219 people recently vaccinated against polio, rubella or rabies, 50 immunosuppressed patients and 472 people with various occupational exposure to cattle were tested for antibody to bovine polyomavirus, the foetal rhesus monkey kidney strain, (anti-FRKV) by RIA. Apart from one blood donor and one of 108 rabies vaccinees only those in close contact with cattle possessed anti-FRKV. Compared with 62 per cent seropositive in the natural hosts, cattle, 71 per cent of veterinary surgeons, 50 per cent of cattle farmers, 40 per cent of abattoir workers, 16 per cent of veterinary institute technical staff and 10 per cent of veterinary students were anti-FRKV positive. Our findings indicate that the theoretical hazard of FRKV infection from undetected contamination of current tissue culture derived vaccines may, in practice, be remote. Proposed wider use of primate kidney cells as substrates for new vaccines may increase this risk.

Animals

Ocular chlamydial zoonosis: an experimental study in monkeys.

Two locally isolated strains of Chlamydia psittaci from faeces of apparently healthy sheep and conjunctiva of Holstein heifers suffering from conjunctivitis and pneumonia were used for ocular experimental studies in 7 Rhesus monkeys. Titrated (ELD50 10(3.6)/0.2 ml and 10(4.5)/0.2 ml) partially purified yolk sac suspension of each strain was instilled onto conjunctiva of each animal. The clinical and laboratory studies were followed till 8 weeks post-infection. Both the strains produced trachoma like follicles (0.3-0.5 mm dia) preferably on lower conjunctiva between 2-4 weeks of post-infection. Pannus was not observed in any of the experimental eye. Laboratory studies revealed a good correlation between reisolation, fluorescent antibody test and cytology between 2-4 weeks of post-infection. Highest complement fixing antibody titre 1:32 was recorded in 4 out of 7 animals. The studies indicated that both the animal strains had no barrier across ocular tissues in monkeys, vis-à-vis human conjunctiva.

Animals

Eosinophilic meningitis beyond the Pacific Basin: the global dispersal of a peridomestic zoonosis caused by Angiostrongylus cantonensis, the nematode lungworm of rats.

The principal etiologic agent of human eosinophilic meningitis, Angiostrongylus cantonensis, was first detected in rats in Canton, China in 1933. The first human case was detected on Taiwan in 1944. Epidemic outbreaks were noted on Ponape (E. Caroline Is.) from 1944 to 1948. The disease may present as transient meningitis or a more severe disease involving the brain, spinal cord and nerve roots, with a characteristic eosinophilia of the peripheral blood and CSF. Since 1961 it has been known that human infections are usually acquired by purposeful or accidental ingestion of infective larvae in terrestrial mollusks, planaria and fresh-water crustacea. There is no effective specific treatment. The African land snail, Achatina fulica played an important role in the panpacific dispersal of the organism: it will be important in Africa in the future as well. Rats were, and will continue to be the principal agents of expansion of the parasite beyond the Indopacific area. During and just after WWII the parasite was introduced, and/or spread passively from South and Southeast Asia into the Western Pacific islands and eastward and southward through Micronesia, Melanesia, Australia and into Polynesia, sequestered in shipments of war material and facilitated by post-war commerce. In the 1950s numerous cases were identified for the first time on Sumatra, the Philippines, Taiwan, Saipan, New Caledonia, and as far east as Rarotonga and Tahiti. Then cases were detected in Vietnam, Thailand, Cambodia, Java, Sarawak, the New Hebrides, Guam and Hawaii during the 1960s. Subsequently in the Pacific Basin the disease has appeared on Okinawa, other Ryukyu islands, Honshu, Kyushu, New Britain, American Samoa and Western Samoa, Australia, Hong Kong, Bombay, India, Fiji and most recently in mainland China. The parasite in rats now occurs throughout the Indopacific Basin and littoral. Beyond the Indopacific region, the worm has been found in rodents in Madagascar (ca 1963), Cuba (1973), Egypt (1977), Puerto Rico (1984), New Orleans, Louisiana (1985) and Port Harcourt, Nigeria (1989). Human infections have now been detected in Cuba (1973), Réunion Island (1974) and Côte d'Ivoire (1979) and should be anticipated wherever infected rats of mollusks have been introduced. Caged primates became infected in zoos in Hong Kong (1978) and New Orleans and Nassau, Bahamas (1987). The use of mollusks and crustacea as famine foods, favored delicacies and medicines has resulted in numerous outbreaks and isolated infections. Economic and political instability, illicit trade, unsanitary peridomestic conditions and lack of health education promote the local occurrence and insidious global expansion of parasitic eosinophilic meningitis.(ABSTRACT TRUNCATED AT 400 WORDS)

Africa