scholarly journals Clinical Symptoms of Human Rotavirus Infection Observed in Children in Sokoto, Nigeria

2015 ◽  
Vol 2015 ◽  
pp. 1-6 ◽  
Author(s):  
B. R. Alkali ◽  
A. I. Daneji ◽  
A. A. Magaji ◽  
L. S. Bilbis

Rotavirus has been identified among the most important causes of infantile diarrhoea, especially in developing countries. The present study was undertaken to determine the occurrence and clinical symptoms of human rotavirus disease among children presenting with varying degree of diarrhoea in selected urban hospitals in Sokoto metropolis, Nigeria. Diarrhoea samples were collected from 200 diarrheic children younger than 5 years of age and tested using a commercially available DAKO Rotavirus ELISA kit which detects the presence of human group A rotaviruses. A questionnaire, based on WHO generic protocol, was completed for each child to generate the primary data. Of the total number of samples collected, 51 were found to be positive for human group A rotavirus indicating 25.5% prevalence of the disease in Sokoto state. The symptoms associated with the disease were analyzed and discussed.

1998 ◽  
Vol 36 (1) ◽  
pp. 6-10 ◽  
Author(s):  
Mitsutaka Kuzuya ◽  
Ritsushi Fujii ◽  
Masako Hamano ◽  
Masao Yamada ◽  
Kuniko Shinozaki ◽  
...  

Fecal specimens from patients with acute diarrhea were collected from 10 prefectures in Japan over a 6-month period (November 1992 to April 1993), and the specimens that were negative for human group A rotaviruses were screened for the presence of human group C rotaviruses (CHRVs) by the reverse passive hemagglutination test. Of 784 specimens examined, 53 samples (6.8%) that were collected in 7 of 10 prefectures were positive for CHRV, indicating that CHRVs are widely distributed across Japan. Most of the CHRV isolates were detected in March and April, and CHRVs mainly prevailed in children ages 3 to 8 years. The genome electropherotypes of eight strains isolated in five individual prefectures were surprisingly similar to each other and were different from those of CHRV strains isolated to date. The outer capsid glycoprotein (VP7) gene homologies of the isolates retrieved in 1993 were subsequently analyzed by the dot blot hybridization method. As a result, the VP7 genes of the isolates revealed very high levels of homology not only with each other but also with the VP7 gene of the OK118 strain isolated in 1988. These results suggest that a large-scale outbreak of CHRV occurred during the winter of 1992 and 1993 in Japan.


Heliyon ◽  
2020 ◽  
Vol 6 (8) ◽  
pp. e04521
Author(s):  
Abhay Raorane ◽  
Zunjar Dubal ◽  
Sandeep Ghatak ◽  
Michael Mawlong ◽  
B. Susngi ◽  
...  

2011 ◽  
Vol 140 (2) ◽  
pp. 247-259 ◽  
Author(s):  
O. CASHMAN ◽  
P. J. COLLINS ◽  
G. LENNON ◽  
B. CRYAN ◽  
V. MARTELLA ◽  
...  

SUMMARYCommunity and hospital-acquired cases of human rotavirus are responsible for millions of gastroenteritis cases in children worldwide, chiefly in developing countries, and vaccines are now available. During surveillance activity for human rotavirus infections in Ireland, between 2006 and 2009, a total of 420 rotavirus strains were collected and analysed. Upon either PCR genotyping and sequence analysis, a variety of VP7 (G1–G4 and G9) and VP4 (P[4], P[6], P[8] and P[9]) genotypes were detected. Strains G1P[8] were found to be predominant throughout the period 2006–2008, with slight fluctuations seen in the very limited samples available in 2008–2009. Upon either PCR genotyping and sequence analysis of selected strains, the G1, G3 and G9 viruses were found to contain E1 (Wa-like) NSP4 and I1 VP6 genotypes, while the analysed G2 strains possessed E2 NSP4 and I2 VP6 genotypes, a genetic make-up which is highly conserved in the major human rotavirus genogroups Wa- and Kun-like, respectively. Upon sequence analysis of the most common VP4 genotype, P[8], at least two distinct lineages were identified, both unrelated to P[8] Irish rotaviruses circulating in previous years, and more closely related to recent European humans rotaviruses. Moreover, sequence analysis of the VP7 of G1 rotaviruses revealed the onset of a G1 variant, previously unseen in the Irish population.


2008 ◽  
Vol 89 (7) ◽  
pp. 1690-1698 ◽  
Author(s):  
Andrej Steyer ◽  
Mateja Poljšak-Prijatelj ◽  
Darja Barlič-Maganja ◽  
Jožica Marin

A surveillance of human, porcine and bovine rotaviruses was carried out in Slovenia in 2004 and 2005. Stool samples were collected from a total of 406 pigs (373 from asymptomatic animals), 132 cattle (126 from asymptomatic animals) and 241 humans (all with diarrhoea), tested for group A rotaviruses using RT-PCR and analysed by sequencing. The aims of the study were to determine the incidence of asymptomatic rotavirus infection in animals, to look for evidence of zoonotic transmission and to detect reassortment among rotaviruses. The rates of asymptomatic shedding of rotaviruses in pigs and cattle were 18.0 % (67/373) and 4.0 % (5/126), respectively. Evidence for zoonotic transmission was detected in one human rotavirus strain, SI-MB6, with the G3P[6] genotype combination, as the nucleotide and predicted amino acid sequences of the VP6, VP7, VP8* and NSP4 genes of strain SI-MB6 and of porcine strains showed high nucleotide and amino acid sequence identity. Two porcine rotavirus strains carried VP7 of probable human origin, suggesting an interspecies reassortment event in the past.


2002 ◽  
Vol 40 (7) ◽  
pp. 2398-2407 ◽  
Author(s):  
V. Chizhikov ◽  
M. Wagner ◽  
A. Ivshina ◽  
Y. Hoshino ◽  
A. Z. Kapikian ◽  
...  

2004 ◽  
Vol 132 (4) ◽  
pp. 745-749 ◽  
Author(s):  
S. D. KELKAR ◽  
J. K. ZADE

Generally, group A rotaviruses are the most common cause of paediatric diarrhoea. However, group B rotavirus, adult diarrhoea rotavirus (ADRV), was found to be involved in epidemics of severe gastroenteritis in several areas of China during 1982–1983 and had resulted in more than one million cases among adults as well as older children. Human group B rotavirus has been rarely reported outside China, but has been detected first from five adults with diarrhoea in Kolkata, India during 1997–1998 (strain CAL-1). During epidemiological studies at the National Institute of Virology (NIV) on hospitalized diarrhoea patients at Pune, India, faecal specimens from patients of >5 years age, which were negative for group A rotavirus by ELISA were tested by polyacrylamide gel electrophoresis (PAGE). We detected rotavirus RNA migration patterns similar to that of group B rotavirus in three faecal specimens from adults, two from the specimens collected in 1993 and one in 1998 from sporadic diarrhoea cases. RT–PCR was carried out using primers derived from gene 8 which codes for the NS2 protein, followed by nested PCR, which confirmed the presence of group B rotavirus in all three specimens. The sequences of the PCR products of NIV specimens were compared with that of CAL-1, ADRV and IDIR (infectious diarrhoea of infant rat) belonging to group B rotaviruses. The sequence analysis of the PCR products showed the highest identity with CAL-1, which was reported from Kolkata, India during 1997–1998. The finding suggests that human group B rotaviruses have been circulating in Pune, India, since 1993. This emerging virus may lead to more severe disease among adults in India. There is a need for surveillance of group B rotavirus infections, especially in adult diarrhoea cases and seroepidemiological studies on group B rotavirus are required among humans and animals of Western Maharashtra, India.


2016 ◽  
Vol 61 (4) ◽  
pp. 154-159 ◽  
Author(s):  
K. P. Alekseev ◽  
S. L. Kalnov ◽  
T. V. Grebennikova ◽  
T. I. Aliper

Rotavirus was first isolated in 1973 in Australia from children with diarrhea. Hundreds of thousands of children die annually in developing countries from this virus with the mortality peaks in the most impoverished among them. According to wHo, rotavirus infection claims about 440 thousands children lives each year, being third in the mortality rate after pneumonia and malaria. Rotavirus is widely spread throughout the world and by the age of five years almost every child encountered this pathogen at least once. Rotavirus has a high genetic and antigenic diversity. The most important for humans is the group A rotavirus, and the most common by far genotypes are G1P [8], G2P [4], G3P [8], G4P [8], G9P [8], and to a lesser extent G12P [8]. There are three gene constellations described in rotavirus designated Wa, Ds-1, and Au-1. It is believed that they originated from rotaviruses of pigs, cattle, dogs, and cats, respectively. Cases of rotavirus interspecies transmission from animal to humans were reported. The first vaccines against rotavirus infection were based on naturally attenuated virus of the animal origin. Their efficiency, especially in developing countries, was inadequate, but today China and India use vaccines based on animal rotaviruses. Using the method of gene reassortation with the cattle rotavirus WC3 as a backbone, pentavalent vaccine against most common human rotavirus serotypes was developed and now successfully used as RotaTeq. The ability of rotavirus to protect against heterologous isolates was taken into account in the development of other vaccine, Rotarix, created on the basis of rotavirus genotype G1P1A [8]. The efficacy of these vaccines in developing countries is significantly reduced (51%), the cost of a dose is high, and so the search for more effective, safe, and inexpensive vaccines against rotavirus continues around the world.


2006 ◽  
Vol 36 (3) ◽  
pp. 183-188 ◽  
Author(s):  
S. Samajdar ◽  
V. Varghese ◽  
P. Barman ◽  
S. Ghosh ◽  
U. Mitra ◽  
...  

1989 ◽  
Vol 102 (3) ◽  
pp. 523-530 ◽  
Author(s):  
S. K. Ghosh ◽  
T. N. Naik

SUMMARYMonoclonal antibodies specific for rotavirus subgroup 1 (SG1) and subgroup 2 (SG2) were used to analyse by enzyme immunoassay (EIA) the subgroups of human rotavirus isolates obtained from three different parts of India during the period September 1985 to July 1987. We identified one isolate which failed to react with either SG1 or SG2 specific monoclonal antibodies, although it reacted well with a monoclonal antibody specific for group A rotaviruses. This finding suggests that it belongs to a new rotavirus subgroup. Further, another isolate was found to belong to SG1 although it had a ‘long’ electropherotype.


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