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An immunohistochemical study on the endocrine cells in the gastrointestinal tract of domestic duck.

Endocrine cells in the gastrointestinal tract of the domestic duck were identified immunocytochemically using antisera specific to bombesin, chromogranin A, cholecystokinin (CCK), gastrin, glucagon, neuron specific enolase (NSE), neurotensin, secretin, 5-hydroxytryptamine (5-HT), somatostatin, substance P and vasoactive intestinal polypeptide (VIP). Chromogranin A, 5-HT and somatostatin immunoreactive cells were widespread throughout the gastrointestinal tract. Bombesin immunoreactive cells were observed only in the proventriculus and the gizzard. CCK, substance P and neurotensin immunoreactive cells were present in the intestinal tracts from the duodenum to the colorectum. The latter were numerous also in the antrum. Gastrin cells were peculiar to the antrum but present also in the gizzard and small intestine. Glucagon immunoreactive cells were present in the jejunum-ileum and above all in the large intestine. Only few secretin cells were present in the duodenum. The highest frequency of endocrine cells was found in the antrum, while the lowest was observed in the caeca. Antisera to somatostatin and substance P showed numerous nerve cells and fibers besides endocrine cells, whereas NSE and VIP immunopositivity was found in the nervous structures only of the gut wall.

APUD Cells↗

Mast cells in the chick digestive tract. II. Fixation, distribution, histochemistry and ultrastructure.

Mast cells in the chick digestive tract were investigated with different fixatives, histochemical methods and transmission electron microscopy. Carnoy's fluid was the best fixative for the chick mast cell. Fixation in formalin reduced the number of mast cells and dissolved the granules. Mast cells stained reddish purple with toluidine blue, and bright blue with Alcian blue-periodic acid schiff (AB-PAS). Staining with Alcian blue-safranin O (AB-S) resulted in some cells only containing blue or red granules, and others containing both blue and red granules in the same cell. The result of AB-S staining was obviously affected by fixation. The ultrastructure of chick mast cells was described. Internal large granules had a variable morphology; some higher or lower electron density with a homogeneous appearance; some were finely granular; some had a mottled appearance, and a few showed a reticular structure. The distribution of mast cells varied. The proventriculus was the most abundant in mast cells among the organs examined. Only one type of mast cell was found in the chick digestive tract. The fixation, staining and the ultrastructure of chick mast cell granules were discussed.

Animals↗

Occurrence of runting and stunting syndrome in broiler chickens in the Sudan.

The first outbreak of reovirus infection in broiler chickens was observed in the Sudan in the largest poultry industry of the country. The disease was characterized clinically by growth retardation, lameness, poor feathering, shank depigmentation and occasionally retraction of the head. Grossly there was enlargement of the proventriculus, atrophy of the pancreas and bone abnormalities. Histopathologic changes included hepatitis, nephritis, myocarditis, pericarditis, catarrhal enteritis, pancreatic necrosis, encephalomalacia and ricketic changes. Details were described. Reovirus was isolated from affected birds and reisolated from experimentally infected chicks. Infection was confirmed by immunoelectrophoresis and agar gel precipitation tests.

Animals↗

Toxoplasma gondii infections in red-tailed hawks inoculated orally with tissue cysts.

The response to inoculation of Toxoplasma gondii tissue cysts was examined in 3 red-tailed hawks (Buteo jamaicensis). One hawk (hawk 1) was inoculated orally with 3.000 tissue cysts of the GT-1 isolate of T. gondii and 2 hawks (hawks 2 and 3) each were inoculated orally with 12,000 tissue cysts of a mixture of 8 isolates of T. gondii. None of the hawks developed clinical signs of toxoplasmosis. Serum antibodies were measured with the modified direct agglutination test using formalin-fixed tachyzoites. Hawk 1 had a titer of 1:40 prior to inoculation and did not have an increase in titer during the study. Hawks 2 and 3 had titers of 1:5 and 1:10, respectively, prior to inoculation, and both had increased titers (titers greater than or equal to 1:60) by 1 wk postinoculation and remained T. gondii antibody positive throughout the 10 wk of the study. Toxoplasma gondii was isolated from the heart and breast muscle of hawk 1. The biologic behavior of this T. gondii isolate was different from the 1 inoculated, and it probably represents a prior natural infection. Toxoplasma gondii was isolated from the brain, heart, breast muscle, and a mixture of gizzard and proventriculus from hawk 2 and from breast muscle of hawk 3. Toxoplasma gondii was not isolated from the eye, lung, liver, kidney, or spleen of any red-tailed hawk.

Agglutination Tests↗

Pathogenesis of Marek's disease in chickens with maternal antibody.

Histopathological lesions were studied in chickens with maternal antibody against MD virus at 14-day intervals after their exposure by contact to HPRS-16 of MD virus in the first-day of life. The first lesions occured 14 days after infection in the liver, kidney, heart, brain and the sciatic nerves. Relatively, the most expressive changes were observed between 56th and 70th day after infection. Lesions were characterized as light to heavy infiltrations formed by immature and mature pleomorphic mononuclear cells. Among these cells myeloid type cells occured too. In some cases expressive tumorous lesions with intensive mitosis were observed mainly in the liver. Intranuclear inclusion bodies were also observed mainly among the proliferating epithelial cells of the proventriculus. 14-days after infection changes in the brain were classified as nonpurulenta encephalitis. Gross lesions characteristic of MD occured the most frequently in the gonads, liver and the kidney. In one case 56 days after infection herpesvirus-like particles were observed by electron microscopy in the tumorous gonads and liver. They measured about 200 to 260 nm in diameter. Degraded and/or aberrant incompleted virus-like particles occured the most often and completed (enveloped) ones with electrondense nucleoids were observed occasionally. It was concluded that MD in chickens with materanal antibody against MD virus shows monophasis progress.

Animals↗

Early pathogenesis in chicks of infection with an enterotropic strain of infectious bronchitis virus.

One-day-old specific-pathogen-free chicks were inoculated intranasally and intraocularly with infectious bronchitis virus (strain G). At days 1, 3, 5, 7, 10, and 14 postinfection, three birds were euthanatized, and the virus contents of both enteric tissues and some non-enteric tissues were assayed. Immunofluorescence and histopathological studies were also conducted. Six of 30 chicks died of nephritis between days 5-10 postinfection. Gross kidney lesions were the major pathological abnormalities. Inflammation was observed histologically in trachea, kidney, and rectum. High virus titers were found at various times in trachea, kidney, and all enteric tissues except for the jejunum. Relatively high titers of virus were still detectable at day 14 postinfection in the kidney, proventriculus, cecal tonsil, ileum, rectum, and bursa of Fabricius. Immunofluorescence staining showed viral antigens in enterocytes at the tips of villi in the ileum and rectum, and in the bursa. Viral antigens were also demonstrated in the epithelial cells of the trachea and in kidney tubules.

Animals↗

[The efficiency of Rhadinopsylla rothschildi and R. dahurica fleas as vectors of the causative agent of plague in a Transbaikal natural focus].

Experiments have shown that a block of proventriculus arises in 2.1 to 12.5% of infected fleas of R. rothschildi and in 7.2 to 10.5% of R. dahurica. These fleas transmit the plague agent to different animals (Brandt's vole, narrow-skulled vole, Dahurian suslik). The plague microbe is preserved in the organism of infected insects till the end of the experiment, 74 and 24 days respectively. Therefore, the fleas can play a part in the maintenance of plague epizootics in the Transbaikal natural nidus.

Animals↗

Marek's disease (MD). XX. Incidence and epizootology of MD in broiler flocks.

The frequency of Marek's disease in broiler chickens as measured by gross evidence of tumors at processing differs markedly among flocks and between poultry farm origin. Organs affected in broilers, in order of frequency of tumors, were proventriculus (57.6%), spleen (42.3%), kidney (30.6%), lung (19.1%), liver (15.3%), gonads (12.3%), heart (7.6%). Virus isolations were performed on samples from three broiler flocks to examine the possibility that such differences in MD incidence were causally related to differences in the frequency of naturally occurring, nononcogenic serotype 2MD virus infection. Serotype 2 virus was isolated from two flocks. MD condemnations were lower in two serotype-2 infected flocks (V1) than in the third one serotype 1 and serotype 2 positive flock (Mh). Thus, these data suggest a strong positive association between MD losses, housing and a weak probable negative association between serotype 2 virus and MD losses in broilers. However, low level of leukosis condemnations in certain flocks from the same farm are not related to high serotype 2 virus exposure.

Animals↗

In situ detection by monoclonal antibody D-35.1 of cells infected with Marek's disease virus that interact with splenic ellipsoid-associated reticulum cells.

Immuno- and enzyme-histochemical staining procedures were used to investigate in vivo the interaction of Marek's disease virus (MDV) with splenic non-lymphoid cells. The newly developed monoclonal antibody D-35.1, which recognizes all three MDV serotypes, was used to study the localization of MDV at various times after intramuscular inoculation of 1-day-old chicks with MDV strain K. The D-35.1-positive cells were detected in the bursa of Fabricius, spleen, thymus, proventriculus, and cecal tonsils, and the number of chickens showing the cells increased between days 4 and 10. From day 21, the skin of the chickens contained D-35.1-positive feather follicles. The D-35.1 monoclonal antibody did not stain any cells in peripheral blood, nerves, kidney, and gonads at any time. In addition, D-35.1-positive cells were not detected in lymphoproliferative lesions in visceral organs and peripheral nerves. Double staining procedures on serial sections using monoclonal antibody CVI-ChNL-68.2, specific for splenic ellipsoid-associated reticulum cells, revealed that the majority of D-35.1-positive cells were situated in the peri-capillary sheath of reticulum cells at day 10. The sheath of cells detected by monoclonal antibody CVI-ChNL-68.2 was disrupted, and they were clustered around D-35.1-positive cells. These results support the hypothesis that ellipsoid-associated reticulum cells are involved in the early pathogenesis of Marek's disease.

Animals↗

The distribution and ontogeny of gastrin/CCK-, somatostatin- and neurotensin-immunoreactive cells in the gastrointestinal tract of the chicken.

The distribution and time of appearance of cells with gastrin/CCK-, neurotensin- and somatostatin-like immunoreactivity were studied in samples from eight regions of the gastrointestinal tract of chick embryos from 11 days of incubation to hatching. No immunoreactive cells were found in any region at 11 days of incubation. Somatostatin- and neurotensin-immunoreactive cells appeared for the first time in the proventriculus, pyloric region and duodenum at 12 days of incubation with cells immunoreactive for neurotensin occurring in the rectum at the same stage. Gastrin/CCK-immunoreactive cells were detected in the small intestine first at 14 days and in the pyloric region two days later. Cells immunoreactive for somatostatin and neurotensin appeared in the upper and lower ileum at 14 days of incubation for the first time; neurotensin-immunoreactive cells, present in the caecum at 14 and 16 days, were rare. Cells of all three types were plentiful in the pyloric region by 17 1/2 days of incubation. No immunoreactive cells were detected in the gizzard at any stage studied. Endocrine cells were present in the relatively undifferentiated surface epithelium which occurs throughout the gastrointestinal tract of chick embryos at 12 days of incubation. Thereafter cells of all three types were detected in the glandular epithelium at or very soon after morphogenesis and differentiation of the latter had occurred.

Animals↗

An immunohistochemical study on the distribution of endocrine cells in the gastrointestinal tract of domestic pigeon, (Columba livia var domestica).

The endocrine cells in the gastrointestinal tract of the domestic pigeon (Columba livia var domestica) were studied immunohistochemically, and their distribution and relative frequencies were determined. In the proventriculus, moderate numbers of somatostatin- and numerous gastrin-releasing polypeptide (GRP)-immunoreactive cells were found. No immunoreactive cells were detected in the gizzard. In the pyloric region, many motilin-immunoreactive cells were found in addition to numerous somatostatin- and gastrin-immunoreactive cells. In the intestine, somatostatin-, gastrin-, serotonin-, neurotensin-, pancreatic glucagon- and enteroglucagon-immunoreactive cells were found to have in differing distribution patterns.

Animals↗

An immunohistochemical study on the distribution of endocrine cells in the chicken gastrointestinal tract.

The distribution and the frequency of occurrence of nine types of gut endocrine cells were revealed using immunohistochemical methods in eight portions from the gastrointestinal tract of the chicken (Gallus gallus var domestica). In the proventriculus, somatostatin- and gastrin-releasing polypeptide (GRP)-immunoreactive cells were commonly found. Serotonin-, pancreatic glucagon-, and enteroglucagon-immunoreactive cells were uncommon. Avian pancreatic polypeptide (APP)-immunoreactive cells were rare. In the gizzard, numerous GRP-, and a small number of somatostatin-immunoreactive cells were observed. The pyloric region was characterized by the presence of abundant gastrin-, somatostatin-, and neurotensin-immunoreactive cells. Numerous serotonin-immunoreactive cells were detected in all portions of the intestine. Moderate numbers of neurotensin-immunoreactive cells were detected in all portions of the intestine except for the cecum. A few gastrin- and somatostatin-immunoreactive cells were detected in the duodenum and jejunum. A small number of pancreatic glucagon-immunoreactive cells were detected in the jejunum and ileum. Enteroglucagon-immunoreactive cells were detected in the small intestine in increasing numbers forwards the ileum. Motilin-immunoreactive cells were rare in the small intestine.

Animals↗

The effect of intraperitoneally administered gold thioglucose on growth, food consumption and accumulation of gold in various organs of the chicken (Gallus domesticus).

1. Gold thioglucose (GTG) was intraperitoneally injected into 10-day-old male and female chickens in a dose of 0, 0.2, 0.4 or 0.8 mg per gram of body wt. 2. Mortality of the GTG-injected chickens was 100% and 25% for doses of 0.8 and 0.4 mg/gBW respectively, in both sexes and 25% for a dose of 0.2 mg in females, which were all found within 14.5 hr after the GTG treatment. 3. Body weight gain, food consumption and food efficiency of surviving chickens for 23 days after the GTG injection were not affected by GTG in spite of dose level. 4. Gold detected in blood, heart, liver, gallbladder, spleen, proventriculus, gizzard, duodenum, kidney, pectoral muscle, small intestine, lung and brain of the dead chickens accumulated most highly in heart and followed by spleen, but in the surviving chicken a little gold was only found in liver, spleen and kidney of some GTG-treated chickens.

Animals↗

Marek's disease in Japanese quails (Coturnix coturnix japonica): a study of natural cases.

Marek's disease was observed in quails. Gross lesions were confined mostly to the spleen and liver. Microscopic lesions were commonly seen in spleen, proventriculus, liver, and duodenum. Skin, peripheral nerves, and other visceral organs were also involved. Of 123 quails examined, 39 had serum antibodies against Marek's disease. These antibodies were detected from 11 to 17 weeks of age; the highest incidence was recorded at 15 weeks. Feather follicular antigen detected in 30 of the 95 quails was comparable to that of chicken. The disease was experimentally reproduced in susceptible quails. Marek's-disease-tumor-associated surface antigens (MATSA) were demonstrated in the peripheral leukocytes and spleen cells of affected quails. The possible source of infection and its epidemiological importance are discussed.

Age Factors↗

Embryo vaccination of specific-pathogen-free chickens with infectious bursal disease virus: tissue distribution of the vaccine virus and protection of hatched chickens against disease.

Vaccination of specific-pathogen-free chickens as 18-day embryos with the BVM isolate of infectious bursal disease virus (IBDV) resulted in extensive replication of the vaccine virus in the embryonic tissues. The virus was recovered from lung, thymus, proventriculus, liver, kidney, and spleen of embryos 1 day postvaccination, and recoverable virus persisted for at least 7 days. Replication and spread of the vaccine virus in chickens vaccinated as 18-day embryos was compared with that in chickens vaccinated at hatch. Distribution of the virus in tissues was more extensive, virus levels in tissues were generally higher, and detectable virus persisted longer in chickens vaccinated as 18-day embryos than in those vaccinated at hatch. Effective vaccine response could be initiated with 6.2 median embryo lethal doses, the lowest dose tested. Chickens immunized as embryos developed neutralizing antibody against IBDV and resisted challenge with pathogenic IBDV at 4, 6, 8, and 10 weeks of age.

Animals↗

Neuropathic gastric dilatation in psittaciformes.

Psittacine neuropathic gastric dilatation was studied in four cockatoos (Cacatua spp.). The birds died with characteristic clinical signs, and post-mortem examination revealed a highly distended proventriculus. Upon light microscopic examination, most of the ganglia of the gastric plexus and some of the duodenal myenteric plexus appeared destroyed and replaced by round cell accumulations; the same was true for the celiac ganglion. The neuronal perikaryon of the celiac ganglion and the myenteric plexus revealed intranuclear and extranuclear eosinophilic inclusion bodies. The electron microscope revealed virus-like particles outside and within those inclusions. These particles were similar to particles described and identified as paramyxovirus.

Animals↗

[Efficiency of Neopsylla abagaitui fleas as plague vectors in Transbaikalia].

Experiments have shown that the block of proventriculus develops in 1.1 to 1.5% of individuals of the flea Neopsylla abagaitui infected with plague microbe. These insects transmit the agent during bloodsucking to different plague carriers (Citellus dauricus, C. undulatus, Meriones unguiculatus, Microtus gregalis). The plague microbe is preserved in fleas for 65 days (the observation period).

Animals↗

Conium maculatum (poison hemlock) toxicosis in a flock of range turkeys.

Five 20-week-old tom turkeys from a flock of range turkeys were presented for examination; the flock had a history of salivation, tremors, paralysis, and increased mortality. Necropsy revealed numerous seeds identified as seeds from Conium maculatum (poison hemlock) within the crop, proventriculus, and gizzard. Histopathologic alterations were limited to catarrhal enteritis. Clinical signs of Conium maculatum toxicosis abated after the turkeys were removed from their range, which was infested with poison hemlock.

Animals↗