Mycoplasma contamination in cell culture of Crohn's disease material.
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Biomedical subjects
Publications and source records attributed to R M Chanock.
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The possibility of immunizing human infants against rotaviruses, which cause severe dehydrating diarrheal disease, may depend on the use of a related rotavirus, derived from another animal species, as a source of antigen. To test the feasibility of this approach, calves were infected in utero with a bovine rotavirus and challenged with bovine or human type 2 rotavirus shortly after birth. Infection in utero with bovine rotavirus induced resistance to diarrheal disease caused by the human virus as well as the homologous bovine virus. These data suggest that the bovine virus is sufficiently related antigenically to the human type 2 virus to warrant further evaluation of the former as a source of vaccine.
The present study demonstrates that the plaque size of certain influenza A H3N2 virus recombinants is dependent on their containing a specific neuraminidase glycoprotein, but is independent of the genes coding for the HA, P3, and NP proteins.
Twenty-five separate outbreaks of nonbacterial gastrointestinal illnesses were studied serologically for evidence of infection with the Norwalk virus and the rotaviruses that affect humans. Eight of 25 outbreaks appeared to be related to the Norwalk virus. In one of the 25 outbreaks, there was evidence of rotavirus infection. These observations suggest that the Norwalk virus or serologically related agents play an important role in epidemic nonbacterial gastroenteritis in adults and older children.
A sharp outbreak of gastroenteritis associated with human rotavirus type 2 involved not only all of nine infants and young children in a playgroup but also seven of 10 parents and grandparents studied. The source of the outbreak appeared to be two non-playgroup siblings. Six of 11 individuals studied shed human rotavirus type 2, and each of seven from whom paired sera were obtained developed a type 2 sero-response. Overall, evidence of infection with rotavirus type 2 was demonstrated in 10 of 11 individuals by detection of virus in stools and/or a serologic response in an enzyme-linked immunosorbent assay.
Influenza A virus activity was demonstrated in infants and young children from metropolitan Washington, DC during each of 19 successive August-July respiratory disease years, and during 17 of these years at least 2% of hospitalized respiratory disease patients yielded an influenza A or B virus and/or showed an influenza A or B serum complement-fixing (CF) antibody response. Between October 1957 and July 1976, 14.3% of 860 croup patients and 5.3% of a total of 5655 hospitalized respiratory patients, including croup patients, showed evidence of influenza A or B infection. The mean period of hospitalization with either virus was about 8 days, though serious infection with influenza A virus was 4.5 times more common than with influenza B virus. Both influenza viruses were detected more frequently in respiratory disease outpatients than in respiratory disease inpatients. Patients with serious influenza A virus infections were especially likely to have croup (particularly during the H3N2 era), to be seen during December through February, and to be black male infants. During the peak month of a composite of 13 consecutive influenza A virus outbreaks, influenza A virus infection was demonstrated in 67.6% of croup patients and in 35.6% of all hospitalized respiratory patients including croup patients. During the peak month of a composite of 6 consecutive influenza B virus outbreaks, influenza B virus infection was demonstrated in 36.0% of croup patients and in 10.8% of all hospitalized respiratory disease patients including croup patients.
Human rotavirus (HRV) type 1 or 2, adenovirus, or non-cultivatable 27 nm virus-like particles were demonstrated by electron microscopy and/or rotavirus ELISA in fecal samples from 45.5% of 604 gastroenteritis inpatients, 25.0% of 200 gastroenteritis outpatients and 6.0% of 812 control subjects, all sampled at Children's Hospital National Medical Center. Washington, DC. Rotaviruses were the most common pathogens detected as 39% and 22% of gastroenteritis inpatients and outpatients, respectively, shed HRV. About three-fourths of the rotaviruses were type 2, which was prevalent during five successive epidemic years from January, 1974, through June, 1978. HRV type 1 was detected in the last four successive epidemic years and represented nearly half of the HRV infections observed among gastroenteritis inpatients during the year 1977--1978. Both rotavirus serotypes were detected most often in the month of January, when 71% of 123 gastroenteritis inpatients and 62% of 34 gastroenteritis outpatients shed one of these viruses. Uncultivatable adenoviruses were detected significantly more frequently in stools from patients with gastroenteritis (3.9%) than from control subjects (0.6%), suggesting that these viruses played a role in acute enteric disease. The frequency of detection of 27 nm particles was not significantly different in gastroenteritis and control patients. Numerically, HRV infection was detected most often in gastroenteritis inpatients who were 10 through 12 months of age. The group of gastroenteritis inpatients with the highest percentage of HRV infection was 13 through 15 months of age. The excess of type 2 HRV infection relative to type 1 infection was especially large in those aged 7 through 24 months. Lower socioeconomic status or greater crowding appeared to be associated with the occurrence of rotavirus infection earlier in life and earlier in the epidemic year.
An influenza A virus recombinant bearing the surface antigens of the A/Victoria/3/75 (H3N2) strain and the two ts genes of the A/Udorn/72-ts-1A2 virus was evaluated for attenuation, antigenicity, and protective effect in 42 doubly seronegative adult volunteers (i.e., individuals who lacked detectable serum antibodies for the hemagglutinin and neuraminidase antigens). This recombinant, which had a 37 degrees C shutoff temperature for plaque formation and ts mutations on the genes thought to code for the P1 and P3 polymerase proteins, infected 90% of the volunteers. Of the volunteers, 5% developed mild coryza or rhinitis but other signs or symptoms were not observed, indicating that the A/Victoria/75-ts-1A2 recombinant was more attenuated than the A/Victoria/75-ts-1[E] recombinant. Vaccinees shed virus for a shorter interval and at a lower titer than did the A/Victoria/75-ts-1[E] vaccinees. Each ts-1A2 isolate retained the ts phenotype indicating that the recombinant was stable genetically in doubly seronegative adults. Finally, the ts-1A2 recombinant induced significant resistance to subsequent challenge with A/Victoria/75 wild-type virus.
Influenza A/Scotland/74 (H3N2) and A/Victoria/75 (H3N2) cold-adapted (ca) recombinant viruses, prepared by mating the A/Ann Arbor/6/60 (H2N2) ca donor virus and influenza A wild-type virus, were evaluated in adult seronegative volunteers (serum hemagglutination-inhibiting antibody titer, </=1:8) for level of attenuation, antigenicity, and genetic stability of the temperature-sensitive and ca phenotypes. At 10(7.0) to 10(7.5) 50% tissue culture infective doses the A/Scotland/74 and A/Victoria/75 ca recombinant viruses were clearly attenuated and antigenic. However, one of eight vaccinees infected with 10(7.5) 50% tissue culture infective doses of the A/Scotland/74 ca recombinant had a febrile reaction (39 degrees C). At a 10-fold higher dose (10(8.5) 50% tissue culture infective doses), 4 of 12 A/Scotland/74 vaccinees had a febrile and/or systemic reaction. Febrile reactions were not observed in volunteers who received the A/Victoria/75 ca recombinant virus, whereas 3 of the 12 vaccinees had mild upper respiratory tract symptoms, in one instance associated with mild systemic manifestations. Significantly, the serum hemagglutination- and neuraminidase-inhibiting antibody responses were comparable to those induced by wild-type virus. Both ca recombinant viruses were shed in low titer for a short period of time. Each isolate retained the temperature-sensitive phenotype. However, there was evidence of genetic instability of the ca marker in that 7 of 24 isolates exhibited some loss of the ca property, and one isolate completely lost the capacity to produce plaques at 25 degrees C. The retention of a low level of residual reactogenicity in the A/Scotland/74 ca recombinant suggests that acquisition of the ca and temperature-sensitive phenotypes by a ca recombinant virus may not always bring about a satisfactory level of attenuation for individuals lacking hemagglutinin immunity.
Intramuscular inoculation of infant or weanling cotton rats with 10(2.2) to 10(4) plaque-forming units of respiratory syncytial virus induced significant or complete resistance to infection in both the upper and lower portions of the respiratory tract. This resistance did not appear to be the result of in vitro neutralization of virus during homogenization of tissue. Virus was not recovered from the local site of inoculation after 5 min and was never detected in the respiratory tract of intramuscularly inoculated rats. Attempts to detect viral antigens at the site of inoculation by using indirect immunofluorescence were unsuccessful. However, inactivation of infectivity of three different strains of respiratory syncytial virus markedly reduced or completely ablated antigenicity and protective efficacy by the intramuscular route. This suggests that these viruses underwent limited replication, perhaps restricted to an abortive cycle, at the local site of inoculation. An immunosuppressive effect of passive maternally derived immunity was observed. Only 50% of weanling rats possessing passive maternal serum antibody were successfully immunized by intramuscular vaccination with live virus.
Serum samples from children and adults from several countries were tested by radioimmunoassay for antibody to the Norwalk virus. Antibody was commonly found in adults from all the countries tested. Antibody appears to be acquired more rapidly in children from underdeveloped countries than in children from the United States.
To explore the relationship between neuraminidase immunity and the degree of attenuatíon of live influenza A virus vaccines, a comparative evaluation of three Victoria/75-ts-1[E] (Vic/75-ts-1[E]) recombinant viruses in serum hemagglutination-inhibiting-negative (titer, </=1:8) adult volunteers was performed. These three ts-1[E] viruses had a similar restriction of replication at 38 degrees C in vitro, and each possessed the two attenuating genes of the ts-1[E] donor strain (13). However, Vic/75-ts-1[E] recombinants 81 and 113 possessed both Vic/75 hemagglutinin (H3(75)) and Vic/75 neuraminidase (N2(75)), whereas Vic/75-ts-1[E] recombinant 67 had Vic/75 hemagglutinin but the N2(65) neuraminidase. Vic/75-ts-1[E] recombinant 67 was significantly more attenuated than Vic/75-ts-1[E] recombinants 81 and 113 in that fewer local and systemic signs and symptoms of illness were observed in those volunteers who received clone 67. These findings were consistent with our previous observations which suggested that the following two factors contribute to the attenuation of ts-1[E] vaccine strains in adults: (i) the attenuating effect of the two ts-1[E] genes and (ii) the neuraminidase immunity of the host. Vic/75-ts-1[E] recombinant clone 67 vaccinees developed an immunological response to the H3(75) hemagglutinin in the absence of a response to the N2(75) neuraminidase. To assess the role that anti-hemagglutinin immunity induced by an attenuated live virus vaccine plays in resistance to influenza A virus, vaccinees who received recombinant 67 were challenged with Vic/75 wild-type virus, and their responses were compared with those of Vic/75-ts-1[E] vaccinees who received recombinant 81 or 113. Each of the three groups of ts-1[E] vaccinees was significantly protected against illness induced by wild-type virus infection, although resistance was not complete. However, the clone 67 vaccinees were protected less against infection. The infection-permissive resistance induced by clone 67 resembled that previously described for inactivated neuraminidase-specific vaccines. These results suggested that a ts-1[E] recombinant that possessed the hemagglutinin of a new pandemic variant, the neuraminidase of the preceding subtype, and the two ts-1[E] ts genes would be satisfactorily attenuated for children and adults with neuraminidase immunity and could induce resistance to illness caused by the new pandemic wild-type influenza A virus.
Influenza A/Hong Kong/68-ts-1[E] virus is a temperature-sensitive mutant developed for use as a live virus vaccine (B. R. Murphy, E. G. Chalhub, S. R. Nusinoff, J. Kasel, and R. M. Chanock, J. Infect. Dis. 128:479--487, 1973). This virus and temperature-sensitive recombinants derived by mating it with A/Udorn/72, A/Georgia/74, or A/Victoria/75 wild-type virus have been administered to volunteers in clinical trials on the assumption that the ts-1[E] temperature-sensitive genetic lesions on a polymerase gene (P3) and on the nucleoprotein gene (NP) would determine a satisfactory and reproducible level of attentuation regardless of the genetic constitution of ts-1[E] recombinants at other loci (B. R. Murphy, D. D. Richman, S. B. Spring, and R. M. Chanock, Postgrad. Med. 52:381--388, 1976). In this paper, the parental origin of genes in the ts-1[E] recombinants was determined by using the technique of polyacrylamide gel electrophoresis of virion ribonucleic acid segments in the presence of a denaturing agent (urea). When tested in individuals who lacked immunity to hemagglutinin antigen, attenuation of the ts-1[E] recombinants appeared to correlate with inheritance of the ts-1[E] temperature-sensitive genes at the P3 and NP loci and with the level of preinfection neuraminidase immunity. There was no evidence that other genes from the ts-1[E] donor virus played a role in attenuation.
Respiratory syncytial virus infected the nose and lungs of each of 20 strains of inbred mice, with viral titers varying 100-fold from least permissive to most permissive strains. Viral titers appeared to be under genetic control, but did not correlate with the H-2 haplotype.
Intranasal inoculation of owl monkeys with wild-type respiratory syncytial virus induced upper respiratory tract disease in each of seven animals. The response of owl monkeys to two highly defective, temperature-sensitive, multiple-lesion mutants was then compared to the pattern seen with wild-type respiratory syncytial virus. These mutants, ts-1 NG-1 and ts-1 NG-16, were derived from the ts-1 mutant that had been remutagenized with nitrosoguanidine (NG). Previously the ts-1 NG-1 and ts-1 NG-16 mutants had been shown to be more temperature sensitive and more stable genetically than their ts-1 parent. Both ts-1 NG-1 and ts-1 NG-16 produced infection that was delayed in onsent compared to wild-type virus infection. However, the mutants were shed from the upper respiratory tract for the same period of time and at the same titer as wild-type virus. The serum neutralizing antibody response to infection with the mutants was nearly equivalent to that elicited by wild-type virus. However, the extent of disease induced by the mutants was significantly less than that seen with wild-type virus. These observations suggest that the mutants are potential vaccine condidates and should be subjected to additional in vivo testing in primates and, ultimately, humans.
The development of a solid-phase microtiter radioimmunoassay blocking test to detect serum antibody to Escherichia coli heat-labile enterotoxin is described. The assay is easy to perform and quantitate, and it is sensitive and specific.
Infection of cell cultures with human rotavirus preparations was attempted and the effects of trypsin and low-speed centrifugation on antigen incorporation, as demonstrated by immunofluorescence and radioimmunoassay, were determined. In addition, the effect of viral aggregation on antigen incorporation was investigated by filtering viral preparations. Four strains of human rotavirus were employed, and the results were compared to those obtained with two tissue culture-adapted animal rotaviruses. Centrifugation and trypsin appeared to have little or no effect on infectivity of the tissue culture-adapted (simian rotavirus) or -adaptable (Nebraska calf diarrhea virus) strains, whereas centrifugation and viral aggregation appeared to be essential for the human viruses. In addition, trypsin enhanced antigen incorporation of the human strains to some extent. Infectivity for cell cultures and in vitro human rotavirus protein formation was demonstrated by [35S]methionine incorporation, and the specificity of this human viral protein was established by radio-immunoprecipitation.
A population of 24 infants and young children followed prospectively during the first 3 years of life was studied for the occurrence of rotavirus infection by using enzyme-linked immunosorbent assay to detect virus in stools. Infection with rotavirus was associated with 26 (14.2%) of 183 selected diarrheal episodes. Twenty of the 24 infants and young children had diarrhea associated with rotavirus on at least one occasion and six had two such episodes. Rotavirus infection was documented in over 50% of the dehydrating episodes studied, thus further indicating the importance of rotavirus in this population.