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Biomedical subjects

J H Morgan

Publications and source records attributed to J H Morgan.

At least 37 records · Page 2Linked to original sources

Pathology of calves with diarrhoea in southern Britain.

Twenty-one moribund calves with diarrhoea were purchased from 11 farms, their faeces examined for enteropathogens and samples of intestinal tissue removed under anaesthesia. Lesions and presence of enteropathogens on the mucosal surface were scored by histological examination of immunostained paraffin sections. Two or more enteropathogens were detected in 19 calves. Cryptosporidium appeared to be the principal cause of diarrhoea in six calves, rotavirus in four, Salmonella typhimurium in two, bacteria adherent to the surface of the large intestine in two, coronavirus in one and K99+ Escherichia coli in one calf. Diarrhoea in four calves was the consequence of mixed infections in which no one enteropathogen appeared to predominate. In one calf no enteropathogen was detected. Diarrhoea was associated with infections and lesions throughout the small and large intestines. The enteropathogens most frequently associated with lesions in the small intestines were rotavirus, coronavirus and cryptosporidium; in the large intestines they were coronavirus and bacteria apparently adherent to the mucosal surface.

Animals↗

Microbiology of calf diarrhoea in southern Britain.

Faeces samples from calves with diarrhoea in 45 outbreaks were examined for six enteropathogens. Rotavirus and coronavirus were detected by ELISA in 208 (42 per cent) and 69 (14 per cent) of 490 calves respectively; calici-like viruses were detected by electron microscopy in 14 of 132 calves (11 per cent). Cryptosporidium were detected in 106 of 465 (23 per cent), Salmonella species in 58 of 490 (12 per cent) and enterotoxigenic Escherichia coli bearing the K99 adhesin (K99+ E coli) in nine of 310 calves (3 per cent). In the faeces of 20 per cent of calves with diarrhoea more than one enteropathogen was detected; in 31 per cent no enteropathogen was found. Faces samples from 385 healthy calves in the same outbreaks were also examined. There was a significant statistical association of disease with the presence of rotavirus, coronavirus, Cryptosporidium and Salmonella species (P less than 0.001). Healthy calves were not examined for calici-like viruses and the association of K99+ E coli with disease was not analysed because there were too few positive samples. Rotavirus infections were more common in dairy herds and single suckler beef herds whereas Salmonella infections were more often found in calf rearing units. Cryptosporidium were more common in single and multiple suckler beef herds. K99+ E coli were found in one dairy herd and one multiple suckler beef herd both with unhygienic calving accommodation. Variations in coronavirus detection among different farm types were not statistically significant. In this survey rotavirus was the most commonly detected agent in calf diarrhoea and Cryptosporidium were found in approximately one quarter of affected calves. Infection with Salmonella species was widespread, but K99+ E coli infections were less common in the United Kingdom than in other countries.

Animals↗

Characterization of c-myc proteins from avian bursal lymphoma cell lines.

We have used a rabbit antiserum directed against a portion of the MC29 viral myc protein expressed in bacteria to characterize the cellular myc protein from three different avian bursal lymphoma cell lines (1104HI, 1104BI S13, BK25), and from normal chick embryo cells. The phosphorylated myc proteins immunoprecipitated from these cells varied in molecular weight from 58 to 62 kDa and localized to the cell nucleus, as shown by cell fractionation experiments. Pulse-chase experiments established that these proteins had short half-lives ranging from 12 min for the myc proteins from the 1104BI S13 cell line to 25 min for myc proteins from both the 1104HI and the BK25 cell lines. The structural relatedness of the proteins was established by comparing their partial proteolytic digestion products (Cleveland analysis) with the partial proteolytic digestion products of the MH2 viral myc protein. The anti-myc-serum also immunoprecipitated a 48-kDa protein from each of the bursal cell lines. We have identified this protein as a breakdown product of the bursal cell myc proteins. The different size and number of these bursal cell myc proteins may be a direct result of the specific site of integration as well as the orientation of the retrovirus LTR sequence relative to the adjacent cellular myc allele.

Animals↗

Isolation of antibodies specific for avian viral and cellular myc proteins.

The myc gene has been implicated in the genesis of various neoplasms in birds, mice, and humans and was originally identified as the cellular homologue of the transforming gene (v-myc) of the avian myelocytomatosis virus MC29. For specific antisera to be obtained for the myc gene product, a bacterial expression vector was constructed in which the coding sequences for approximately 20 kd of MC29 p110gag-myc (amino acid residues 502 to 678) were placed between the coding sequences for the amino terminal 13 kd of Rous sarcoma virus pp60src and the coding sequences for 112 kd of beta-galactosidase. Expression of this tripartite gene was driven by a hybrid trp-lac promoter under lac repressor control. Induction of expression resulted in the production of a 145-kd hybrid protein containing src, myc, and beta-galactosidase sequences. The hybrid protein was purified and injected into rabbits to produce antisera. The resultant antisera immunoprecipitated p110gag-myc and p58myc -p60myc from MC29- and MH2-infected nonproducer quail fibroblasts, respectively. In addition, the antisera also immunoprecipitated a 58-kd protein from the bursal lymphoma cell line BK25, which was identified as chicken c (cellular)-myc gene product.

Animals↗

Dysentery caused by Escherichia coli (S102-9) in calves: natural and experimental disease.

A dysentery syndrome was recognized among the Institute's calves at 18 to 21 days of age. It was reproduced experimentally in gnotobiotic calves with an atypical Escherichia coli (S102-9) isolated from the affected calves. In both natural and experimental disease the calves passed copious bright red blood in the feces and developed diarrhea. Walls of the colon and rectum were thickened, and the mucosa was reddened and covered by an exudate that contained mucus and blood clots. Bacteria were seen closely adherent to the luminal surfaces of enterocytes, often in cup-shaped depressions or on cytoplasmic pedestals. Microvilli were distorted, disorientated or absent. There was exfoliation of infected enterocytes and a mild acute inflammation of the underlying lamina. In two of five calves with natural disease, the adherent bacteria did not stain by the immunoperoxidase method with antisera raised against E. coli (S102-9). This indicated that there was possibly more than one bacterial cause of the syndrome. Lesions in experimentally infected calves were indistinguishable from those produced by some E. coli which are enteropathogenic for man, rabbits, and pigs.

Animals↗

Pathogenesis of osteopetrosis induced by rapid and slow onset plaque isolates of an avian osteopetrosis virus.

Examination of bone from chickens infected as 10-day-old embryos with isolates of an avian osteopetrosis virus revealed that MAV-2(O) plaque isolate 32/2/4 caused rapid bone growth, while MAV-2(O) plaque isolate 13 caused a mild form of bone growth. MAV-2(O) plaque isolate 32/2/4 caused anemia when injected into the 8-day-old hatched chick and bone growth in ovo when injected into the 4-day-old embryo. Passive administration of neutralizing antibody protected against MAV-2(O)-induced bone growth when antibody was given to the embryo 1 day after virus. Neutralizing antibody also protected against an acute anemia observed when normal and bursectomized chickens were given MAV-2(O) 32/2/4, but antibody did not prevent the appearance of a chronic anemia or osteopetrosis in bursectomized chickens. Repeated animal passage of a slow onset plaque isolate of MAV-2(O) caused the virus to progressively induce more severe bone growth and anemia.

Anemia↗

Rapid induction of osteopetrosis by subgroup E recombinant viruses.

Avian osteopetrosis is a proliferative bone disorder initiated at high frequency by MAV-2(O), a subgroup B avian myeloblastosis-associated virus. To examine the role of the MAV-2(O) genome in osteopetrosis induction, a series of recombinant viruses between MAV-2(O) and RAV-O was constructed. Recombinant viruses were selected for rapid growth and subgroup E envelopes. The T1 oligonucleotide fingerprint patterns of viruses selected in this manner demonstrated that they were recombinants and were clonally pure because they had oligonucleotides from each parent, and each oligonucleotide was present in single molar yield. When injected into 10-day-old chicken embryos, approximately 50% of the recombinant viruses induced osteopetrosis within 3 weeks after hatch. Therefore, subgroup E envelope did not inhibit osteopetrosis induction. The osteopetrosis that was induced varied from slight to severe, but none of the recombinant viruses induced osteopetrosis as severe as the MAV-2(O) parent.

Animals↗

Arenavirus inactivation on contact with N-substituted isatin beta-thiosemicarbazones and certain cations.

N-methyl and N-ethyl isatin beta-thiosemicarbazones inactivate cell-free Parana and Pichinde viruses as well as three strains of lymphocytic choriomeningitis virus. This antiviral activity is abolished in the presence of the chelating agent EDTA. The rate of virus inactivation by N-methyl isatin beta-thiosemicarbazone is greatly enhanced and controlled by the addition of cupric sulphate. Divalent cations of other first transition series metals are less effective. A difference exists in the copper requirement for fast inactivation of the prototype arenavirus (lymphocytic choriomeningitis) and the Tacaribe Complex of viruses (Parana and Pichinde). In the presence of 20 muM-N-methyl isatin beta-thiosemicarbazone, LCM and Pichinde viruses can be inactivated at about the same rate if 20 muM-CuSO4 is added to the former and 160 muM-CuSO4 is added to the latter. Using 20 muM-N-methyl isatin beta-semicarbazone and CuSO4 the inactivation of LCM is reduced, but not eliminated, in the presence of an equal amount of infectious Pichinde virus. Crude and highly purified Pichinde virus are inactivated at the same rate when exposed to identical concentrations of N-methyl isatin beta-thiosemicarbazone and cupric sulphate. There is little detectable change in the inactivation rates when Pichinde or LCM viruses are grown in a variety of different cell lines.

Cell Line↗

Characteristics of the in vitro inhibition of arenavirus synthesis by bis-benzimidazoles.

The dihydrochloride salt of (S,S)-1,2-bis(5-methoxy-2-benzimidazolyl)-1,2-ethandiol (A37536) inhibits the synthesis of lymphocytic choriomeningitis (LCM), Parana, and Pichinde viruses in L-929 cells. The compound has no direct inactivating effect on LCM virus nor does it affect the adsorption of LCM virus to L cells. The drug-cell interaction is slow. Maximal activity is observed only by exposing cells to the drug at least 8 h prior to LCM virus infection, or by concomitant drug treatment and infection at a low multiplicity. Addition of serum-free media to L cells after LCM virus infection diminishes the activity of A37536. Whereas A37536 exhibits its antiviral activity at concentrations that have little or no effect on L cell division rate, a marked change can be noted in the cell's sensitivity to lysis by standard trypsin dispersal procedures. A37536 has no specific antiviral activity in LCM virus-infected BHK, HeLa, or Vero cells. All of the four tested derivatives of A37536 showed antiviral activity against LCM virus but only at concentrations that reduced the growth rate or were toxic to L cells.

Antiviral Agents↗

Evaluation of bis-benzimidazoles in the treatment of murine lymphocytic choriomeningitis virus infections.

Seventy percent of the mice receiving (S,S)-1,2-bis(5-methoxy-2-benzimidazolyl)-1,2-ethandiol (A36683) in their drinking water lived at least four times longer than control mice when infected with 10 or 100 mean lethal doses of lymphocytic choriomeningitis virus strain UBC. In the next 4 months, most of the survivors died with lymphocytic choriomeningitis-like symptoms. Drug treatment during the first 7 days after infection was found to have no significant effect on virus titers in various organs. The sparing effect of the drug is discussed in terms of immunosuppression.

Animals↗