Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Simbu virus”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

Jatobal virus antigenic characterization by ELISA and neutralization test using EIA as indicator, on tissue culture.

A virus antigenic characterization methodology using an indirect method of antibody detection ELISA with virus-infected cultured cells as antigen and a micro virus neutralisation test using EIA (NT-EIA) as an aid to reading were used for antigenic characterization of Jatobal (BeAn 423380). Jatobal virus was characterized as a Bunyaviridae, Bunyavirus genus, Simbu serogroup virus. ELISA using infected cultured cells as antigen is a sensitive and reliable method for identification of viruses and has many advantages over conventional antibody capture ELISA's and other tests: it eliminates solid phase coating with virus and laborious antigen preparation; it permits screening of large numbers of virus antisera faster and more easily than by CF, HAI, or plaque reduction NT. ELISA and NT using EIA as an aid to reading can be applicable to viruses which do not produce cytopathogenic effect. Both techniques are applicable to identification of viruses which grow in mosquito cells.

Animals↗

Effect of heparin on hemagglutination by Akabane and Aino viruses belonging to the Simbu group of bunyaviruses.

Heparin inhibited the hemagglutinin activity of Akabane and Aino viruses. The minimal inhibitory concentration of heparin required to inhibit 8 hemagglutination (HA) U of Akabane and Aino viruses was 10 U/ml. Goose erythrocytes failed to combine with the HA inhibitory factor of heparin. On the other hand, goose erythrocytes treated with heparinase had greatly reduced agglutinability by Akabane virus. Virus-heparin complex formation was observed by sedimenting heparin with the virus particles.

Animals↗

Diagnosis of Oropouche virus infection by RT-nested-PCR.

Using the RT-PCR with primers that anneal to the 5' and the 3' extremities of the genome segments of bunyaviruses and internal primers that anneal to the S segment of Simbu serogroup viruses in a nested PCR it was possible to amplify the Oropouche virus (ORO) genome from the sera of three patients. These results show that this RT-nested-PCR is a useful tool for rapid diagnosis of Oropouche fever infections.

Base Sequence↗

Rapid identification of Australian bunyavirus isolates belonging to the Simbu serogroup using indirect ELISA formats.

The Bunyavirus genus, belonging to the Bunyaviridae family, is comprised of a large group of antigenically and geographically disparate arthropod-borne viruses of medical and veterinary significance. In Australia, viruses belonging to the Simbu serogroup of the Bunyavirus genus, Akabane, Tinaroo, Peaton, Aino, Douglas, Thimiri and Facey's Paddock have been isolated. In this communication we describe two indirect ELISAs, referred to as the Simbu serogroup ELISA (SG-ELISA), and the Simbu typing ELISA (ST-ELISA), for the identification of these Simbu serogroup viruses. Infected cell lysate antigens prepared from Simbu serogroup virus isolates were assessed in the SG-ELISA for reactivity with a mouse monoclonal antibody (4H9/B11/F1). The monoclonal antibody reacted strongly with all Australian members of Simbu serogroup reference viruses and is proposed for use as a serogrouping reagent for Simbu viruses. Furthermore, the ST-ELISA enabled specific identification of viruses from within this group by recognition of characteristic reaction patterns between infected cell lysate antigens and a panel of polyclonal antisera raised to Simbu serogroup viruses.

Animals↗

Infection of Israeli culicoides with African horse sickness, blue tongue and akabane viruses.

Type 9 African horse sickness virus and type 4 bluetongue virus multiplied to a high titre in an Israeli strain of Culicoides puncticollis after intrathoracic inoculation. Akabane virus persisted for at least 10 days in this midge after intrathoracic inoculation but with little evidence of virus multiplication. All 3 viruses failed to multiply in C. puncticollis after ingestion by the oral route and all were inactivated by 4 days post infection. Five other species of Israeli Culicoides supported multiplication of bluetongue virus after intrathoracic inoculation.

African Horse Sickness Virus↗

Teratogenicity of Australian Simbu serogroup and some other Bunyaviridae viruses: the embryonated chicken egg as a model.

The use of embryonated chicken eggs as a model for assessing the teratogenic potential of animal viruses was investigated with 12 members of the Bunyaviridae family. Infection of 4-day-old embryonated chicken eggs via the yolk sac with 10 of the viruses resulted in deaths or congenital deformities that were similar to those observed in Akabane virus infections of fetal ruminants and included arthrogryposis, scoliosis, mandible defects, and retarded development. Statistical analysis showed that the viruses fell into three main groupings, namely, those that caused both death and deformities (Akabane, Aino, Tinaroo, and Belmont viruses), those that mainly caused death (Peaton, Thimiri, and Facey's Paddock viruses), and those that required very high doses to cause either death or deformities (Douglas and CSIR0296 viruses). In addition, two viruses (Kowanyama and Mapputta viruses) caused neither death nor deformities. A difference in the pathogenic potential between two Akabane isolates (B8935 and CSIR016) in the embryonated chicken egg model was found to correlate with differences previously observed in experimentally infected sheep; Akabane CSIR016 was the more pathogenic. It is concluded that the embryonated chicken egg model should also be of value in assessing the teratogenic potential of other Bunyaviridae and attenuated vaccine viruses, although it does not assess the ability of the virus to cross the placenta.

Animals↗

Culicoides: biological vectors of Akabane virus.

Akabane virus replicated in Culicoides nubeculosus and Culicoides variipennis after intrathoracic inoculation and was maintained in both species of midge for at least 9 days post-infection. The virus also replicated to high concentration in C. variipennis after oral infection and was transmitted through a membrane by this species of midge 7-10 days after infection. The experiments described in this paper provided the first definitive evidence that Culicoides spp. are able to act as fully competent vectors of Akabane virus.

Animals↗

Viruses isolated from Panamanian sloths.

Seven virus strains were isolated in Vero cells from whole blood samples from 80 wild-caught sloths, Bradypus variegatus and Choloepus hoffmanni, from Central Panamá. Four strains of at least two different serotypes are related to Changuinola virus; two of these were associated with prolonged or recrudescent viremias. One strain is an antigenic subtype of Punta Toro virus, and another, described here as Bradypus-4 virus, is a new, antigenically ungrouped virus. A second new virus from sloths, Utive virus, forms an antigenic complex within the Simbu serogroup with Utinga and Pintupo viruses. Tests on sequential plasma samples from radio-marked free-ranging sloths and from recently captured animals maintained in captivity showed that both species develop neutralizing antibodies following naturally acquired virus infections. Antibodies against the Changuinola and Simbu serogroup viruses are widespread in both sloth species and are especially prevalent in Choloepus, but are virtually absent in all other wild vertebrate species tested.

Animals↗

The growth of akabane virus in chicken embryos.

Akabane virus produced either death or developmental abnormalities including arthrogryposis in chicken embryos inoculated by the yolk sac route when four days old. The effects depended on the dose of virus. Yolk sac inoculation of seven-day-old embryos did not result in abnormal embryos, but some chickens were viraemic when they hatched. Inoculation of older embryos intravenously, into the allantoic cavity, or onto the chorioallantoic membrane had no effect on the embryo and akabane virus was not recovered.

Animals↗