1.Bocavirus infection in children: what should be the next to do?
Chinese Medical Journal 2008;121(17):1605-1606
2.An Adult with Aplastic Crisis induced by Human Parvovirus B19 as an Initial Presentation of Hereditary Spherocytosis.
Sook Eui OH ; Jung Han KIM ; Chi Hun CHOI ; Kwang Hyuk PARK ; Joo Young JUNG ; Young Iee PARK ; Min Jeong PARK
The Korean Journal of Internal Medicine 2005;20(1):96-99
The association between aplastic crisis and human parvovirus (HPV) B19 infection is well described in patients with sickle cell anemia. This association has also been described, although much less frequently, in patients with hereditary spherocytosis (HS). However, most cases of aplastic crises in patients with HS and induced by HPV B19 have been reported in children or adolescents. In this paper, we describe an aplastic crisis induced by HPV B19 in an adult with HS. A 34-year-old female presented with presyncope, febrile sensation, and myalgia. The complete blood counts showed severe anemia. The peripheral blood smear revealed spherocytosis with reticulocytopenia and pancytopenia. The direct Coombs' test was negative; the osmotic fragility test was positive. In the bone marrow aspirates, a few giant pronormoblasts with deep blue cytoplasm, pseudopods, and intracellular inclusion bodies were observed. The patient was given eight units of packed red blood cells. HPV B19 infection was proven by the presence of IgM antibodies to HPV B19 and the detection of viral DNA using the PCR technique. To the best of our knowledge, this is the first report in Korea that describes an adult with aplastic crisis presenting initially with HS.
Adult
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Anemia, Aplastic/*etiology
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Female
;
Humans
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Parvoviridae Infections/*complications/diagnosis
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Parvovirus B19, Human
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Spherocytosis, Hereditary/*diagnosis
3.Identification of bocavirus infection in a young child with pneumonia using a pan-microbial microarray.
Shu-Mei PENG ; Hua DENG ; Min-Min LI ; Shu-Jun HUANG ; Wei-Ping ZHOU ; Ling-Long LU ; Dong-Ping HUANG ; Wen-Cheng LI ; Ying LIN ; Qiu-Ping CHEN ; Liang ZHANG
Chinese Journal of Contemporary Pediatrics 2016;18(7):662-665
4.Research advance in human bocavirus.
Chinese Journal of Contemporary Pediatrics 2010;12(8):678-680
5.Research advances in porcine bocavirus.
Shao-Lun ZHAI ; Sheng-Nan CHEN ; Wen-Kang WEI
Chinese Journal of Virology 2012;28(2):190-193
Porcine bocavirus (PBoV) was considered as a new member of the genus Bocavirus of the subfamily Parvovirinae of the family Parvoviridae, which was discovered in Swedish swine herds with postweaning multisystemic wasting syndrome (PMWS) in 2009. At present, as an emerging pathogen, it was paid great attention by researchers at home and abroad. This paper referred to some published literatures and reviewed several aspects of PBoV including its finding, classification, genome structure and replication, epidemiology, associativity with diseases, cultural and diagnostic methods.
Animals
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Biomedical Research
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Bocavirus
;
classification
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genetics
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isolation & purification
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physiology
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Parvoviridae Infections
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diagnosis
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veterinary
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virology
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Swine
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Swine Diseases
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diagnosis
;
virology
6.Hemophagocytic Syndrome Secondary to Human Parvovirus B19 Infection in an Acquired Immunodeficiency Syndrome Patient:Report of One Case.
Yan ZHANG ; Jun YAN ; Fei WANG ; Jin GAO ; Kai-Long GU ; Ai-Fang XU
Acta Academiae Medicinae Sinicae 2023;45(3):530-532
The acquired immunodeficiency syndrome patients with compromised immunity are prone to hemophagocytic syndrome secondary to opportunistic infections.This paper reports a rare case of hemophagocytic syndrome secondary to human parvovirus B19 infection in an acquired immunodeficiency syndrome patient,and analyzes the clinical characteristics,aiming to improve the diagnosis and treatment of the disease and prevent missed diagnosis and misdiagnosis.
Humans
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Lymphohistiocytosis, Hemophagocytic/drug therapy*
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Erythema Infectiosum/complications*
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Acquired Immunodeficiency Syndrome/complications*
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Parvoviridae Infections/diagnosis*
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Parvovirus B19, Human
7.Human bocavirus in children suffering from acute lower respiratory tract infection in Beijing Children's Hospital.
Li-Li ZHANG ; Liu-Ying TANG ; Zheng-De XIE ; Xiao-Juan TAN ; Chong-Shan LI ; Ai-Li CUI ; Yi-Xin JI ; Song-Tao XU ; Nai-Ying MAO ; Wen-Bo XU ; Kun-Ling SHEN
Chinese Medical Journal 2008;121(17):1607-1610
BACKGROUNDHuman bocavirus (HBoV) is a parvovirus recently found to possibly cause respiratory tract disease in children and adults. This study investigated HBoV infection and its clinical characteristics in children younger than five years of age suffering from acute lower respiratory tract infection in Beijing Children's Hospital.
METHODSNasopharyngeal aspirates were collected from children suffering from acute lower respiratory tract infection during the winters of 2004 to 2006 (from November through the following February). HBoV was detected by polymerase chain reaction amplification and virus isolation and the amplification products were sequenced for identification.
RESULTSHBoV infection was detected in 16 of 333 study subjects. Coinfections with respiratory syncytial virus were detected in 3 of 16 HBoV positive patients with acute lower respiratory tract infection. The median age for HBoV positive children was 8 months (mean age, 17 months; range, 3 to 57 months). Among the HBoV positive children, 14 were younger than 3 years old, 9 were younger than 1 year old and 7 were younger than 6 months. These 16 positive HBoV children exhibited coughing and abnormal chest radiography findings and more than 60% of these children had wheezing and fever. Ten children were clinically diagnosed with pneumonia, 2 bronchiolitis, 2 acute bronchitis and 2 asthma. One child died.
CONCLUSIONSHBoV was detected in about 5% of children with acute lower respiratory infection seen in Beijing Children's Hospital. Further investigations regarding clinical and epidemiologic characteristics of HBoV infection are needed.
Bocavirus ; isolation & purification ; Child, Preschool ; Female ; Humans ; Infant ; Male ; Parvoviridae Infections ; diagnosis ; etiology ; Polymerase Chain Reaction ; Respiratory Tract Infections ; diagnosis ; etiology
8.A review of detection methods for human bocaviruses.
Yan LU ; Dan-Di LI ; Yu JIN ; Zhao-Jun DUAN
Chinese Journal of Virology 2014;30(3):298-302
Human bocavirus (HBoV) 1-4 have been detected both in respiratory and stool samples since the first HBoV was discovered in 2005. HBoV-1 is mostly associated with respiratory infection, while HBoV 2-4 are usually associated with intestinal tract infection. A variety of signs and symptoms have been described in patients with HBoV infection, including cough, wheezing, pneumonia, and diarrhea, but the research on pathogenic mechanism of HBoV is limited because HBoV cannot be cultured in vitro due to the lack of appropriate host cells. Three-dimensional epithelial cell culture, reverse genetics, and viral metagenomics are identified as novel tools that may promote the research on pathogenic mechanism of HBoV and the discovery of new viruses. This review summaries currently available diagnostic approaches such as electron microscopy, cell culture, PCR, and immunoassay in order to provide a method reference for indepth research on HBoV.
Animals
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Human bocavirus
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genetics
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growth & development
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isolation & purification
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pathogenicity
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Humans
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Parvoviridae Infections
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diagnosis
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virology
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Viral Proteins
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genetics
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metabolism
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Virology
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methods
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Virulence
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Virus Cultivation
9.Hydrops Fetalis Due to Parvovirus B19 Infection: Report of Two Autopsy Cases.
Ho Chang LEE ; Hee Eun LEE ; Pil Gyu HWANG ; Je G CHI ; Sung Hye PARK
Korean Journal of Pathology 2006;40(3):245-249
Hydrops fetalis (HF) is a disease characterized by generalized subcutaneous edema and cavity effusion in the fetal stage. We report here on two autopsy cases of HF that were caused by parvovirus B19 (PVB19) infection. The human PVB19 is an erythrovirus that cause diverse clinical manifestations ranging from an asymptomatic or mild presentation to more severe effects such as hydrops fetalis, and this is the only known human pathogenic parvovirus. The gestational ages of the two fetuses were 21 weeks and 23 weeks, respectively. Both fetuses were hydropic and anemic. Hepatic tissues of both fetuses demonstrated erythroblasts with eosinophilic intranuclear inclusions, the so called "lantern cells". PVB19 was confirmed by electron microscopy and immunohistochemical staining. For the diagnosis of this disease, recognition of parvovirus infection as a cause of hydrops fetalis and careful examination of red blood cells with a high-power view are required.
Anemia
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Autopsy*
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Diagnosis
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Edema*
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Eosinophils
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Erythroblasts
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Erythrocytes
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Erythrovirus
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Fetus
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Gestational Age
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Humans
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Hydrops Fetalis*
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Intranuclear Inclusion Bodies
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Microscopy, Electron
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Parvoviridae Infections
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Parvovirus*
10.Clinical characteristics of 12 persistently wheezing children with human bocavirus infection.
Yu DENG ; En-Mei LIU ; Xiao-Dong ZHAO ; Yuan DING ; Qu-Bei LI ; Zheng-Xiu LUO ; Li-Jia WANG ; Ying HUANG ; Xi-Qiang YANG
Chinese Journal of Pediatrics 2007;45(10):732-735
OBJECTIVEThe impact of human bocavirus (HBoV), a newly identified human parvovirus, on childhood persistent wheezing has not been identified. In this study, the clinical features of infantile persistent wheezing induced by HBoV was analyzed.
METHODSTracheal aspirates were collected by bronchofibroscope or nasopharyngeal (NP) aspirates from April, 2006 to January, 2007. HBoV DNA in the tracheal aspirates of 33 children with persistent wheezing and in NP aspirates of 6 children with persistent wheezing, who had at least or more than four weeks wheezing. RSV was identified by virus isolation in Hep-2 cells and antigen detetion by direct immunofluorescence assay (DIFA) which was also used for diagnosis of adenovirus, influenza A and B, parainfluenza 1, 2, 3 infection.
RESULTSOf the 39 children with persistent wheezing, 12 cases (31%) were positive for HBoV DNA. Age of HBoV-positive patients ranged from 2 month to 1 year. The results of sequencing of PCR products proved that sequences of HBoV DNA from these 12 samples were exactly identical to the those of HBoV stored in GeneBank (accession numbers DQ000495 and DQ000496). Two cases with HBoV infection were found to be co-infected with RSV. Ten of the 12 HBoV-positive samples were collected during the period from winter to spring (1 in November, 4 in December, 2 in January and 3 in April), the other two HBoV-positive samples were collected during the period from summer to autumn (1 in May and the other in July). Seven of the 12 HBoV DNA-positive patients had fever, 5 of them had high fever. Significantly more patients with HBoV infection had fever as compared to patients with RSV infection. All the HBoV positive patients showed abnormal findings on chest X ray such as interstitial infiltrates, lung infiltration and hyperinflation. Abnormal findings on chest X ray were found in higher proportion of HBoV positive patients as compared with RSV positive patients. And other manifestations such as wheezing, cough and respiratory distress had no significant difference between HBoV and RSV infected patients.
CONCLUSIONSThis study further demonstrated that HBoV probably is a common pathogen of lower respiratory infection in children and might particularly be associated with persistent wheezing.
Child, Preschool ; Cough ; etiology ; Female ; Fever ; etiology ; Human bocavirus ; pathogenicity ; Humans ; Infant ; Male ; Nasopharynx ; pathology ; Paramyxoviridae Infections ; physiopathology ; Parvoviridae Infections ; physiopathology ; Respiratory Sounds ; etiology ; Respiratory Syncytial Virus Infections ; classification ; physiopathology ; Respiratory Tract Infections ; diagnosis ; physiopathology ; virology