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241.
242.
Preface 总被引:1,自引:0,他引:1
Rotavirus diarrhea is the major cause of death of millions of children in developing countries besides causing economically
significant malady in neonates of many domestic animals. In neonates, the infection is non-viremic, have very short incubation
period, and manifests profuse diarrhea and severe dehydration. Concurrent infection with secondary pathogens may augment the
disease severity. Diarrhea occurs due to virus-mediated destruction of absorption efficient enterocytes, activation of enteric
nervous system, or due to a rotavirus enterotoxin. Diagnosis of the infection relies on conventional techniques like isolation
in MA 104 cell lines, electron microscopy, electro-pherotyping, and various serological tests. Presently, diagnosis and molecular
typing is performed using serotype specific RT-PCR, sequencing or genomic hybridization techniques. As the rotaviruses are
known to exhibit extreme genetic diversity and outplay disinfection procedures, eradication of the pathogen is often difficult.
Hence, for prevention, good management practices coupled with vaccination of dam for protecting young ones, has to be practiced.
Recently, new generation prophylactic strategies including DNA vaccines, subunit vaccines, virus-like particles (VLPs) and
edible vaccines have been found to induce sufficient levels of passive immunity. Aside to the infection in animals, zoonotic
significance of the animal rotaviruses has to be further unearthed. In this review, efforts have been made to highlight the
importance and prevalence of the disease in bovines, its pathogenesis along with preventive measures, salient features of
rotaviruses and their inter-species transmission abilities, zoonotic implications, and a concise account of the infection
in various domestic animals and poultry. 相似文献
243.
Alessandro Troisi Riccardo Orlandi Margherita Maranesi Cecilia DallAglio Gabriele Brecchia Francesco Parillo Cristiano Boiti Massimo Zerani Angela Polisca 《Reproduction in domestic animals》2019,54(2):176-183
In the present study, we evaluated the dynamic changes of intra‐ovarian blood flow, by real‐time colour‐coded and pulsed Doppler ultrasonography, as well as the immunopresence of prostaglandin F2α (PGF2α) receptor (FP) and peripheral plasma progesterone concentrations in pseudopregnant rabbit after PGF2α treatments at either early‐ (4 days) and mid‐luteal (9 days) stages. During the pre‐treatment observation interval of one hour, the ovarian blood flows showed a fluctuating pattern. Independently of luteal stage, PGF2α administration caused a fourfold decline in the blood flow within 40 min that was followed 50 min later by a reactive hyperaemia that lasted several hours, while the resistive index showed an opposite trend. Twenty‐four hour later, the blood flow was one half that measured before PGF2α injection. At day 4 of pseudopregnancy, PGF2α did not affect peripheral plasma progesterone concentrations, but at day 9, it caused functional luteolysis as progesterone levels declined 6 hr later to reach basal values after 24 hr. The changes in the ovarian blood flows of pseudopregnant rabbits receiving PGF2α were accompanied by simultaneous changes in the resistance index. This biphasic response in the blood flow and vascular resistances likely reflects reactive hyperaemia following vasoconstriction. By immunohistochemistry, strong positive immune reaction for FP was detected in the cytoplasm of endothelial cells of ovarian arteries, veins and capillaries. In conclusion, these results suggest that PGF2α could acutely regulate the ovarian blood flow of pseudopregnant rabbits, even if there is no evidence of a blood flow reduction anticipating luteolysis. 相似文献
244.
Angelica Stranieri Roberta Ferrari Sergio Zanzani Gabriele Rossi 《Veterinary clinical pathology / American Society for Veterinary Clinical Pathology》2016,45(2):225-228
A 13‐year‐old female Domestic Shorthair cat was presented to the Veterinary Teaching Hospital of the University of Milan for an interscapular mass suspected to be a mesenchymal malignant tumor. A preoperative CBC performed with Sysmex XT‐2000iV showed leukocytosis with neutrophilia and eosinophilia. The Sysmex WBC/DIFF scattergram showed an additional, well‐separated cluster of events between the neutrophil, eosinophil, and lymphocyte clusters. Blood smear evaluation revealed the presence of a significant number of basophils; thus, it was hypothesized that the additional cluster could represent the basophilic population. A second CBC, 24 days later, showed the same pattern on the WBC/DIFF scattergram in the absence of leukocytosis and neutrophilia. After surgical excision of the mass, a definitive diagnosis of feline injection site sarcoma was made. To the author's knowledge, there are no previous reports about the identification of feline basophils in the WBC/DIFF scattergram of Sysmex XT‐2000iV. 相似文献