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Enterovirus and enterovirus infections.

An account of the nature of enterovirus and enterovirus infections with special reference to experiences encountered in Singapore is presented. The most common of enterovirus epidemic diseases since 1970 is Acute Haemorrhagic Conjunctivitis caused by Coxsackievirus A24 variant and Enterovirus type 70. Enterovirus of various serotypes were isolated from a wide range of illnesses varying in severity throughout the year.

Conjunctivitis, Viral

Ecology of enteroviruses in tropics. I. Circulation of enteroviruses in healthy infants in tropical urban area.

A continuing surveillance on enterovirus infection in healthy infants was conducted from October 1971 through February 1973 in urban areas in Ghana, West Africa. About 40 infants were visited in every two months for collection of faecal specimens and examined for infection. Enteroviruses were recovered in tissue culture. The overall isolation rate of enteroviruses was approximately 44%, and there was no seasonal difference between rainy and dry seasons. The rate of virus isolation in urban areas was significantly higher than in rural areas. Within the urban areas, however, no difference in the rate of virus isolation was detected between densely populated and sparsely populated areas. The results of virus identification revealed that all three types of Poliovirus, many types of Echovirus and a few Coxsackieviruses were isolated during the course of the study. It was observed that improvement of sanitary facilities decreased the frequency of virus infection among infants, but the condition of water supply did not influence the virus infection rate. Neither the age of infants nor the size of siblings showed any relation to the virus isolation rate. It was suggested from the results that many types of enteroviruses have been circulation continuously in the tropical urban community throughout the year.

Coxsackievirus Infections

Atypical porcine enterovirus encephalomyelitis: possible interraction between enteroviruses and arsenicals.

Porcine enteroviruses were isolated from weaner pigs that had nervous signs and mild non-suppurative meningoencephalomyelitis and ganglioneuritis. The clinical signs and lesions were not typical of enterovirus infection and it is believed that an organic arsenical present in feed enhanced pathogenicity of enteroviruses. Severe non-suppurative polioencephalomyelitis and ganglioneuritis were produced in gnotobiotic pigs by oral inoculation of the viruses.

Animals

Surveillance of enterovirus infections in Bangkok. I. Isolation of enterovirus from faecal specimens of healthy children.

During the period August 1970 through July 1973, about 50 faecal specimens collected each month from healthy pre-school children of lower economic status in Bangkok were studied for virus isolation using primary monkey kidney cells and new born mice. From a total of 1,823 samples, 557 (30.5%) were positive: 86 (4.8%) polioviruses, 77 (4.2%) coxsackieviruses B, 223 (12.2%) echoviruses, and 127 strains (7.0%) of unidentified viruses. Altogether, 45 serotypes of enteric viruses were identified. More than 30 serotypes, including the 3 types of poliovirus, were present each year. Infection rates were higher in males than in females and highest at one year of age, the rates decreasing with progressing age. There was no marked seasonal variation of enterovirus infections in Bangkok. The poliovirus infection index was low from September to January, and the index of polio and non-polio enterovirus infections was highest in April.

Adenoviridae

Serum IgA, IgG, and IgM responses to different enteroviruses as measured by a coxsackie B5-based indirect ELISA.

An enterovirus-specific indirect ELISA, based on a single local isolate of coxsackie B5 as antigen, was used to study the IgA, IgG, and IgM responses in 19 patients with a recent or current enterovirus infection. Twelve different enterovirus serotypes were isolated from 15 patients. Paired serum samples were available from 10 and a single serum from 5 of these 15 patients. In addition, 4 patients diagnosed by a significant titer rise of complement fixing antibodies to enterovirus were included. A serological diagnosis, defined as an increase in titer of enterovirus IgG and/or presence of enterovirus IgM, were established in all 14 patients with paired sera. Enterovirus IgM was present in either a single serum or in both sera in 13 of them. Out of 5 patients with a single serum sample only, enterovirus IgA or enterovirus IgM was found in 4. Specific IgA was present in either a single serum or in both sera in 14 of the 19 patients. Seven of the 10 enterovirus isolate patients with paired sera had a significant titer rise of complement fixing antibodies; however, all 10 were diagnosed by ELISA. Among 64 healthy controls 2 had enterovirus IgA and none had enterovirus IgM. In conclusion, the use of a single antigen-based ELISA was found to be reliable for the diagnosis of recent and current enterovirus infections.

Adolescent

Comparison of cell cultures for rapid isolation of enteroviruses.

Cell culture isolation is still the most reliable method for the detection of enteroviruses from clinical specimens. Rapid diagnosis of enterovirus infection affects patient management. To increase yield and enhance the rapidity of enterovirus isolation in cell cultures, we used Buffalo green monkey kidney (BGM) cells and subpassages of primary human embryonic kidney (HEK) cells in addition to the human diploid fibroblast (MRC-5) cells and primary cynomolgus or rhesus monkey kidney (MK) cells routinely used for enterovirus culturing. Growth characteristics of enteroviruses from 421 specimens were studied. All specimens were cultured in MRC-5, MK, and BGM cells, and 204 of these specimens were also cultured in HEK cells. Forty-two percent of the enteroviruses became positive within 3 days, and 85% did so within 7 days. MRC-5 cells provided the highest yield of enteroviruses overall and were the best cell type for the recovery of poliovirus and echovirus. MK cells provided the second best yield but were more useful than MRC-5 cells for coxsackievirus. BGM cells supported the growth of additional isolates of coxsackievirus and enhanced the speed of isolation. HEK cells supported the growth of additional isolates of both coxsackievirus and echovirus, but subculturing was always required for definite enterovirus cytopathic effects. The recovery rate increased 11% when two additional cell lines were used. The use of two tubes of MK cells significantly increased the yield of all enterovirus types. We conclude that the use of multiple appropriate cell lines increases yield and enhances the rapidity of enterovirus isolation.

Animals

A solid-phase reverse immunosorbent test for the detection of enterovirus IgM.

IgM antibodies against enterovirus antigen were determined by solid-phase reverse immunosorbent test (SPRIST). The 145 sera studied were sampled from cases of enterovirus infections diagnosed by virus isolation and/or complement fixation. In 91 sera from enterovirus infections diagnosed by virus isolation 11/40, 16/28 and 9/23 were positive in SPRIST against ECHO 3 and/or Coxsackie B3 antigen during the first, during the second and third, and after 3 weeks of illness, respectively. The corresponding figures for 85 sera from enterovirus infections diagnosed by a greater than or equal to 4-fold rise in complement fixing (CF) antibody titre against antigen from ECHO 18 and/or Coxsackie B5 antigen were 10/39, 12/20 and 9/26. None out of 22 sera with rheumatoid factor reacted in SPRIST, but 1/92 and 1/154 sera from blood donors was positive in SPRIST with Coxsackie B3 and ECHO 3 antigen, respectively. IgM antibodies against ECHO 3 antigen as determined by SPRIST were found to be cross-reactive over a broad range of enterovirus types and positive results were recorded with sera from infections with Coxsackie A9, B3, B4, B5, ECHO 3, 9, 17, 18, 25 and 30. Heterotypic titres in SPRIST were of the same magnitude (up to 25,600) as recorded against the homotypic virus, 12,800 and 1,600, in two sera from one patient with an ECHO 3 infection. SPRIST was found to be a rapid convenient, cross-reactive and a cheap mu-capture assay for enteroviruses with more than 50% sensitivity during the second and third weeks after onset of illness.

Coxsackievirus Infections

Secondary enterovirus infection in the murine model of myocarditis. Pathologic and immunologic aspects.

Enteroviruses are implicated as etiologic agents in the inflammatory diseases myocarditis and polymyositis. In this report, we show that a previous enterovirus exposure in mice can influence development of myocardial inflammation with a second enteroviral exposure. Inoculation of 25-day-old male C3H/HeJ mice with 10(3) or 10(5) plaque-forming units (PFU) of infectious or ultra violet (UV)-inactivated coxsackievirus B2 (CVB2), followed by inoculation 28 days later with 10(5) PFU of a myocarditic variant of coxsackievirus B3 (CVB3-m) results in more intense myocardial inflammation and injury than is seen in age-matched mice inoculated with CVB3-m alone. More severe disease occurs with the lower primary dose of CVB2. Neutralizing antibody to CVB2 is detected early after primary inoculation and neutralizing antibody to CVB3 is first detected 5 days after secondary inoculation. In vitro proliferation of splenocytes from mice inoculated with one or both viruses occurs in response to both CVB2 and CVB3 antigens. We recently demonstrated that murine T cells are capable of recognizing an enterovirus group antigen. Thus cell-mediated immune responses to a conserved antigenic epitope(s) among the enteroviruses may be involved in the exacerbation of myocardial inflammatory disease during a second enterovirus infection. The secondary infection model described here may more accurately mirror virus-induced myocarditis in the human population because the majority of adults have been exposed to several enteroviruses before induction of disease.

Animals

Detection of enteroviruses using cDNA and synthetic oligonucleotide probes.

This study compares the detection of enterovirus RNA by cDNA probes prepared from both the 5' and 3' end of the genome of coxsackie A21 and B4 with the use of synthetic oligonucleotides prepared from short but highly conserved sequences in the 5' end non-coding region of the picornavirus genome. The cDNA probes detected enteroviruses with a variable level of sensitivity which presumably depended on the degree of genomic homology with the detecting probes. Generally probes from coxsackievirus A21 detected more enteroviruses than did similar probes from coxsackievirus B4. Probes from the 5' end of the genome of both viruses were more sensitive than 3' end probes. In contrast, synthetic oligonucleotides detected all enteroviruses efficiently suggesting that these probes could be useful as 'universal' probes to detect any enterovirus. This paper discusses the application of these probes in the diagnosis and differentiation of enteroviruses.

Base Sequence

Enterovirus survey before and after poliomyelitis vaccination in Kuala Lumpur, Malaysia.

Stool samples from healthy children mainly of the low income group aged 0 to 7 years of age from five Maternal and Child Health Centres in Kuala Lumpur were obtained for isolation of enteroviruses. The specimens were collected before and after the mass vaccination given in the face of polio type 1 epidemic which started in October, 1971. The prevelance rate of enteroviruses was 11.9% (3.0% polioviruses, 8.9% non-polio enteroviruses) before the vaccination and essentially the same after. Coxsackie A viruses predominated over the other enteroviruses in the pre- and post-vaccination phases. The highest isolation rate of enteroviruses was observed in children 0 to 2 years age. No significant differences in distribution by sex, race and month were noted. A sharp fall in the prevalence rates of total enteroviruses and polioviruses was noted shortly after the mass vaccination campaign However, the rates reverted to the pre-vaccination state during the next successive years.

Child

A novel approach to enterovirus typing.

A novel method was developed for typing enteroviruses producing cytopathic effect. Monolayers of primary or secondary rhesus monkey kidney cells were prepared and covered with an agarose overlay. Wells were formed in the agarose, the well bottom being optimally determined to be 3 mm from the monolayer and homotypic enterovirus antiserum, intersecting antiserum pool or antiserum-diluent as control was added. After 2 h at 37 degrees C, the test virus isolate was added to each well. Cultures were incubated at 37 degrees C and were examined daily until cytopathic effect was readily observed in the control well. Monolayers were fixed and stained for macroscopic reading. Enterovirus identity based on the inhibition of cytopathic effect was confirmed with a conventional micro-neutralization method. In all, 51 enterovirus isolates were typed. Included were 21 polioviruses, 9 coxsackieviruses and 21 echoviruses, all of which were correctly identified. This method takes advantage of the ability of enterovirus and antibody to diffuse through agarose. It is simple to perform. It does not require preliminary titration of the test virus isolate and tolerates 1,000 fold fluctuations in virus concentration, thereby offering laboratories a more rapid and efficient means of typing enteroviruses.

Animals

Detection of hepatitis A virus and other enteroviruses in water by ssRNA probes.

Sensitive and specific methods are needed to detect hepatitis A virus (HAV) and other human enteroviruses in environmental samples such as drinking water and foods. Clones of cDNA encoding the 5'-most 1 kb of the HAV and coxsackievirus B3 (CB3) genomes were subcloned into T7/SP6 RNA transcription vectors. In vitro transcribed RNA from the T7 promoter detected their respective HAV or CB3 genomic RNA. Conversely, SP6 transcripts detected viral negative-stranded RNA but not the genome. When both ssRNA probes were tested at high temperature (65 degrees C), they did not hybridize with intracellular RNAs from 6 primate cell cultures used for isolation of HAV and other enteroviruses. The HAV probe did not hybridize with 13 different enteroviruses but detected as little as 500-1000 infectious units of the 7 strains of HAV tested. Conversely, the CB3 probe showed strong homology with all 13 enteroviruses tested but not HAV. The probes were used to detect HAV and other enteroviruses in water samples after virus amplification in cell culture. HAV was detected in water samples obtained during a waterborne hepatitis outbreak using the ssRNA probe. These samples were negative for HAV by direct solid phase radioimmunoassay and were not positive by immunoassays of inoculated cell cultures until several weeks of propagation. The CB3 ssRNA probe detected enteroviruses in samples of surface water and drinking water that were negative for cytopathic effects in inoculated cell cultures.

Animals

The inactivation of a bovine enterovirus and a bovine parvovirus in cattle manure by anaerobic digestion, heat treatment, gamma irradiation, ensilage and composting.

A bovine enterovirus and a bovine parvovirus seeded into liquid cattle manure were rapidly inactivated by anaerobic digestion under thermophilic conditions (55 degrees C), but the same viruses survived for up to 13 and 8 days respectively under mesophilic conditions (35 degrees C). The enterovirus was inactivated in digested liquid manure heated to 70 degrees C for 30 min, but the parvovirus was not inactivated by this treatment. The enterovirus, seeded into single cell protein (the solids recovered by centrifugation of digested liquid manure), was inactivated by a gamma irradiation dose of 1.0 Mrad, but the parvovirus survived this dose. When single cell protein seeded with bovine enterovirus or bovine parvovirus was ensiled with cracked corn, the enterovirus was inactivated after a period of 30 days, while the parvovirus survived for 30 days in one of two experiments. Neither the enterovirus nor the parvovirus survived composting for 28 days in a thermophilic aerobic environment when seeded into the solid fraction of cattle manure. It was concluded that, of the procedures tested, only anaerobic digestion under thermophilic conditions appeared to be reliable method of viral inactivation to ensure the safety of single cell protein for refeeding to livestock. Composting appeared to be a suitable method for the disinfection of manure for use as a soil conditioner.

Anaerobiosis

Intrathecal synthesis of virus-specific oligoclonal antibodies in patients with enterovirus infection of the central nervous system.

Cerebrospinal fluid (CSF) and serum samples from six patients with enterovirus infections were investigated by isoelectric focusing (IEF) and affinity-mediated immunoblot AMI) for the clonal distribution of entervirus-specific antibodies. In two patients with either acute meningitis or encephalitis and in one patient with a relapse of multiple sclerosis, oligoclonal IgG bands specific for enteroviruses were found predominantly in the CSF, revealing intrathecal synthesis of these antibodies. In three other patients with neurological symptoms probably unrelated to a current enterovirus infection, IEF and AMI disclosed nearly identical patterns of coxsackievirus-B-specific oligoclonal bands in the CSF and serum, indicating diffusion of these antibodies from the serum into the CSF. Although the number of patients in this study is small, the results suggest that intrathecally synthesized enterovirus-specific antibodies may be used as a means of identifying an enterovirus infection of the CNS.

Adult

Single and mixed infections of neonatal pigs with rotaviruses and enteroviruses: virological studies.

Three rotaviruses and three enteroviruses were isolated from pigs with diarrhea. The three enteroviruses and one of the rotaviruses were recovered from pigs infected with both viruses. Separation of rotaviruses and enteroviruses from tissues containing both viruses was effected by pancreatin treatment, terminal dilution, and inoculation onto different cell lines. The three rotaviruses were group A serotype 1, and the enteroviruses were serotypes 2, 3 and 7. Cell culture preparations of these six viruses were inoculated into colostrum-deprived neonatal pigs. All of the rotavirus and enterovirus isolates established intestinal and systemic infection and were shed in the feces after oral inoculation. Concurrent infection with both viruses resulted in only minor alteration of systemic distribution and did not alter fecal shedding of either virus.

Animals

Detection of enteroviruses in endomyocardial biopsy by molecular approach.

Enteroviruses are considered to be the most common agents implicated in myocarditis and cardiomyopathy. Recent studies have suggested persistent enterovirus infection in chronic disease showing the presence of enteroviral RNA in the myocardium. We used gene amplification by PCR which can demonstrate directly the presence of enteroviral sequences in endomyocardial biopsies. The primers were chosen in the 5' non-coding region of the genome representing highly conserved sequences among enteroviruses and therefore allowed the amplification of the majority of enteroviruses. The hybridization of the amplified products was effected with specific general riboprobe derived from 5' non-coding sequences internal of the amplified fragments. The results include 105 patients distributed in 6 groups: 45 idiopathic dilated cardiomyopathies with 66.7%, 17 alcoholic cardiomyopathies with 52.9%, 10 myocarditis with 30%, 5 multifactorial cardiomyopathies with 40%, 5 patients with immunosuppressive therapy with 100%, and 23 control group without viral etiology with 39.1% positive samples. The study suggested a positive link between viral infection and cardiomyopathies, but did not allow a direct relation between enterovirus infection and idiopathic dilated cardiomyopathy to be established.

Adolescent

Chronic enterovirus infection in patients with postviral fatigue syndrome.

76 patients with the postviral fatigue syndrome (PVFS) and 30 matched controls were investigated. Virus isolation was attempted from concentrated faecal samples by direct culture and after acid dissociation of virus from antibody. Positive cultures of enteroviruses were obtained from 17 (22%) patients and 2 (7%) controls. An enterovirus-group-specific monoclonal antibody, 5-D8/1, directed against the VP1 polypeptide, was used to detect enteroviral antigen in the circulation, either free or complexed with antibody. VP1 antigen was detected in the serum of 44 (51%) of a further group of 87 PVFS patients. The number of patients positive for VP1 antigen was greater (42/44) when IgM complexes were detectable than when they were not (2/23). 1 year later, the 17 patients of the first group of 76 with positive cultures were again studied. The same virus was again isolated from 5 (29%), 13 (76%) had detectable IgM responses to enteroviruses, and 9 (53%) were positive for VP1 antigen in the serum. These results show that chronic infection with enteroviruses occurs in many PVFS patients and that detection of enterovirus antigen in the serum is a sensitive and satisfactory method for investigating infection in these patients.

Antibodies, Monoclonal

[Isolation of Enterovirus 70 during an outbreak of acute hemorrhagic conjunctivitis in Algeria in 1973].

The Enterovirus 70 was isolated in Algeria in 1973 during an outbreak of acute hemorrhagic conjunctivitis. The main epidemiological features were similar to those previously described in other countries: involvement of the adults especially, mainly those living in communities, irrelevance of the different socio-economical levels of the population. The spring waters may have played a role in the transmission of the disease. The virological study draws the attention on the optimal conditions for the isolation of the virus and shows that the strains are antigenically related to those isolated in Morocco during 1971. The Enterovirus 70 was associated with adenoviruses and it was not possible to evaluate the respective role of the two groups of viruses in the determinism of the epidemic. The detection of the residual antibodies in sera collected in 1974 indicates that 58% of a group of 50 adults have antibodies against the Enterovirus 70. It is not yet possible to ascertain whether those antibodies are specific or only reflect an antigenic crossing between the Enterovirus 70 and one or several already known enteroviruses.

Adult