Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0038362 (stomatitis)
8,852 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Although there are notable infectious conditions that are capable of producing clinical disease in the NWC, overall, these species are quite healthy. Of the bacterial diseases, enterotoxemia caused by Clostridium perfringens types C and D would be deemed the most significant in North America, while type A also would be regarded as important in South America. Other important bacterial infections of potential concern are tuberculosis, Johne's disease, anthrax, malignant edema, actinomycosis, tetanus, and the South American condition referred to as alpaca fever, which, to date, has not been observed in North America. Fungal infections include classical ringworm, principally caused by Trichophyton spp., and the cases of coccidioidomycosis that are associated with the arid desert lands of the southwestern United States. Most notable of naturally occurring viral infections in the NWC would be rabies, ecthyma, and a recently described blindness neuropathy that has been associated with the equine herpesvirus I. NWC can be infected experimentally with agents causing hoof-and-mouth disease and vesicular stomatitis, but naturally occurring cases do not seem to occur. Serological evidence of exposure to many viral agents, including blue tongue, parainfluenza 3, bovine respiratory syncytial virus, bovine herpesvirus I, bovine viral diarrhea, influenza A, and rotavirus, has been demonstrated; however, no clinical disease associated with these agents, as yet, is apparent.
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PMID:Infectious diseases of New-World camelids (NWC). 264 31

Prophylactic immunization of animals against obligat and nonobligat pathogenic zoonoses benefit human health in many ways both directly and indirectly. Typical examples of a direct protective effect are the vaccinations of dogs, cats and foxes against rabies as well as the vaccinations against respiratory diseases in cows, horses, dogs and cats to which the most varied species of pathogens of noncompulsory zoonoses contribute. A considerable contribution to the protection of human health is made by the vaccination against salmonellosis and leptospirosis, against vesicular stomatitis, American equine encephalitis and against other zoonoses spread by arthropods, against ecthyma and stomatitis papulosa as well as against brucellosis, anthrax, Q-fever, Newcastle disease and foot-and-mouth disease. The indirect effects of prophylactic vaccination of animals on human health are very complex and still need investigation. An example of this are the vaccinations of animals against human and animal influenza A viruses which can inhibit hybridisation and recombination between human and animal influenza viruses in an ecological system. Occasionally prophylactic vaccinations of animals can do harm to human health. This is invariably a rare incidence in immuno-suppressed persons caused by live vaccines i.e. prophylactic vaccination against Newcastle disease in fowl or against orthopox in animals by the use of the common vaccinia strains, after compulsory vaccination for humans had been cancelled. Prophylactic vaccinations of animals must be constantly followed up and their action on human health must be checked. In the case of positive results prophylactic vaccinations must be carried out selectively and in a wide range.
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PMID:[Vaccination of animals and human health]. 298 81

A 19-year-old male military recruit developed erythema multiforme 20 days after receiving a triad of vaccinations: smallpox (vaccinia virus), anthrax, and tetanus. Over the course of a few days, the erythema multiforme evolved into Stevens-Johnson syndrome, associated with widespread bullae, stomatitis, conjunctivitis, and fever. After 7 days of conservative management, the patient's signs and symptoms improved. This case serves as a timely reminder of a severe and potentially life-threatening complication of smallpox vaccination.
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PMID:Stevens-Johnson syndrome after immunization with smallpox, anthrax, and tetanus vaccines. 1535 44

Following endocytosis, ubiquitinated signaling receptors are incorporated within intraluminal vesicles of forming multivesicular endosomes. These vesicles then follow the pathway from early to late endosomes, remaining within the endosomal lumen, and are eventually delivered to lysosomes, where they are degraded together with their protein cargo. However, intraluminal vesicles do not always end up in lysosomes for degradation; they can also fuse back with the limiting membrane of late endosomes. This route, which might be regulated by lyso-bisphosphatidic acid and its putative effector Alix, can be hijacked by the anthrax toxin and vesicular stomatitis virus and is presumably exploited by proteins and lipids that transit through intraluminal vesicles. Alternatively, these vesicles can be released extracellularly, like HIV in macrophages, upon fusion of endosomes or lysosomes with the plasma membrane.
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PMID:Intra-endosomal membrane traffic. 1694 87