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Diverse hematologic effects of parvovirus B19 infection.

Human parvovirus B19 is linked with a broadening spectrum of hematologic disorders, including aplastic crises in the context of hemolytic anemias, neutropenia, thrombocytopenia, and hemophagocytic syndromes. Children with any of these cytopenias should be screened for the presence of B19 because treatment with intravenous gamma globulin may provide resolution of abnormal blood counts if other therapeutic options, such as transfusion, are not adequate or desired.

Acquired Immunodeficiency Syndrome↗

Identification of a nonconventional motif necessary for the nuclear import of the human parvovirus B19 major capsid protein (VP2).

Human parvovirus B19 replicates and encapsidates its genome in the nucleus of erythroid progenitors in vivo and in vitro. We wanted to understand the determinants necessary for the nuclear transport of the major coat protein, VP2, which makes up about 96% of the viral capsid proteins. A nonconsensus basic motif, KLGPRKATGRW, necessary for the nuclear localization of VP2 was identified and shown to be able to import reporter proteins into the nucleus. The sequence is conserved among the VP2 C-terminal region of erythroviruses. This newly identified sequence will facilitate the understanding of the replication of these viruses.

Amino Acid Motifs↗

Prevalence of the parvovirus B19 genome in endomyocardial biopsy specimens.

Although enteroviruses have long been considered the most common cause of inflammatory heart muscle diseases, parvovirus B19 (PVB19) is emerging as a new and important candidate for myocarditis and dilated cardiomyopathy with inflammation (DCMi) and without inflammation (DCM). We investigated left ventricular endomyocardial biopsy specimens from 110 patients with suspected inflammatory heart disease for the presence of PVB19, Coxsackie virus (CVB), and adenovirus (Ad2) genome by polymerase chain reaction. Diagnosis of myocarditis (36 patients), DCM (18 patients), DCMi (13 patients), and perimyocarditis (12 patients) was made by immunohistochemical and histopathological investigation of endomyocardial biopsy specimens. A control group consisting of patients with arterial hypertension was also investigated. Prevalence of the PVB19 genome in endomyocardial biopsy specimens was highest in patients with DCMi (3 of 13) and patients with myocarditis (7 of 36); in patients with DCM and perimyocarditis, prevalence was 3 of 13 and 2 of 12, respectively. In patients with resolved myocarditis, no PVB19 DNA was detected; in patients with no inflammation and controls, prevalence was only 4% and 7%, respectively. CVB-RNA was detected in endomyocardial biopsy specimens from 3 of 37 patients with myocarditis; Ad2-DNA was found in 1 patient with DCM and 1 patient with perimyocarditis. These findings suggest an association of the PVB19 genome in endomyocardial biopsy specimens of adults with the development of DCM, DCMi, and chronic myocarditis more frequently than previously expected. PVB19 should therefore be recognized as a potential cardiotropic pathogen in patients of all ages.

Adult↗

Acute parvovirus B19 infection associated with myocarditis in an immunocompetent adult.

Inflammatory heart disease is causally linked with progressive left ventricular dysfunction and congestive heart failure. In childhood, infection with parvovirus B19 (PVB19) is usually benign, causing erythema infectiosum. However, severe fetal PVB19 infection may be associated with hydrops fetalis and fetal death caused by myocarditis. Here we report a PVB19-induced myocarditis in a previously healthy 37-year-old patient admitted to the hospital because of chest pain and dyspnea due to left ventricular dysfunction. Four weeks after the onset of symptoms, we found lymphocytic infiltrates and PVB19 genome in left ventricular endomyocardial biopsy specimens. Consistently, acute PVB19 infection was indicated serologically by elevated IgM titers and the presence of PVB19 genome in peripheral blood lymphocytes. In conclusion, PVB19 infection may be complicated by acute myocarditis in immunocompetent adults. Because PVB19 myocarditis may progress to chronic dilated cardiomyopathy, early diagnosis by endomyocardial biopsy is important to initiate anti-inflammatory treatment.

Acute Disease↗

Frequency of parvovirus B19 infection in nonimmune hydrops fetalis and utility of three diagnostic methods.

The rate of parvovirus B19 (PV) infection in cases of "idiopathic" nonimmune hydrops fetalis (NIHF) is reported to be approximately 16% with polymerase chain reaction (PCR)-based methods. Antibodies for use in paraffin-embedded tissue have not been systematically compared with PCR or with the presence of inclusions at varying gestational ages. All autopsy cases of NIHF and those with effusions of multiple serous membranes examined between 1991 and 1996 (n = 29) were evaluated for the presence of PV DNA by PCR analysis of paraffin-embedded liver tissue. PCR-positive cases and "idiopathic" cases were examined for the presence of inclusions in routine histological sections and for PV protein using a monoclonal antibody (NovoCastra R92F6). Among the four clinically idiopathic cases, one (25%) was positive for PV using PCR. The three negative idiopathic cases had no inclusions and were negative for PV by PCR and immunohistochemistry (IHC); all were third-trimester gestations (28, 31, and 32 weeks). Identifiable risk factors for NIHF other than PV in the remaining 25 cases included cystic hygroma, seven (three 45,X; two 46,XX; two no growth); complex cardiac anomaly, six; infection, three (two CMV, one chlamydia); twin-twin transfusion, two; lymphangiectasia, two; diaphragmatic hernia, tracheal atresia, trisomy 21, congenital cystic adenomatoid malformation, one each. One of these nonidiopathic cases, a fetus with cystic hygroma and a 45,X karyotype, was positive for PV DNA only on the blot, consistent with a low titer; no inclusions were present, and IHC was negative in multiple organs in this instance. One of four (25%) cases of idiopathic NIHF cases contained PV DNA by PCR analysis; there were abundant inclusions in multiple organs, and IHC was strongly positive as well. Of 25 cases of nonidiopathic NIHF, one (4%) was also positive for PV DNA by PCR. PV protein was detected by IHC only in the presence of inclusions; IHC thus may be useful for highlighting sparse inclusions. No second-trimester case of NIHF was unexplained. Late (third-trimester) cases of "idiopathic" NIHF are likely to be negative by all methods, either because they are not attributable to PV infection or because PV protein and DNA are below detectable levels or are no longer present. Maternal serology for PV and TORCH agents may be the best method for investigating third-trimester losses to otherwise unexplained NIHF.

Adult↗

Polymerase chain reaction amplification of archival material for Epstein-Barr virus, cytomegalovirus, human herpesvirus 6, and parvovirus B19 in children with bone marrow hemophagocytosis.

Bone marrow hemophagocytosis may occur as an incidental finding, or it may be a manifestation of a systemic and potentially lethal disorder. When systemic, the proliferation is termed hemophagocytic lymphohistiocytosis (HLH), a clinicopathologic entity characterized by a widespread proliferation of benign hemophagocytic histiocytes, fever, pancytopenia, deranged liver function, and frequently coagulopathy and hepatosplenomegaly. A variety of infectious agents, including Epstein-Barr virus (EBV), cytomegalovirus (CMV), human herpesvirus 6 (HHV6), and parvovirus B19 (PVB19), have been associated with HLH, but the relative frequency of each using one technique has not been evaluated. In addition, infectious causes of incidental bone marrow hemophagocytosis, not occurring in the setting of HLH, have not been evaluated. Review of bone marrow reports from bone marrow examinations done between December 1986 and June 1997 showed that 20 children aged 2 months to 15 years had bone marrow examinations that indicated hemophagocytosis. Archival materials from 19 patients were successfully retrieved, and DNA was extracted from archived unstained coverslips with subsequent polymerase chain reaction for EBV, CMV, HHV6, and PVB19 genomic DNA. DNA extracted from 16 bone marrow specimens of age-matched children was used as negative controls. Eleven of the 19 patients fulfilled the clinical and pathological criteria for HLH; the remaining eight patients had isolated hemophagocytosis without a systemic presentation. Viral DNA was detected in 8 of 11 patients with HLH but in none of eight patients with isolated hemophagocytosis. EBV was present in five of the bone marrows, followed in frequency by HHV6, CMV, and PVB19. Infection with more than one agent was present in three patients. Only one control patient was positive for HHV6 DNA; the remaining control patients were negative for all viruses. Viral infection, detected by PCR analysis of bone marrow, is a common finding in patients with HLH but not in patients with isolated bone marrow hemophagocytosis. This technique may provide another marker to aid in the diagnosis of HLH and suggests a different cause of hemophagocytosis occurring in patients with and without HLH.

Adolescent↗

Parvovirus infection mimicking systemic lupus erythematosus.

There are striking similarities between human parvovirus B19 (HPV-B19) infection and systemic lupus erythematosus (SLE): both may present with malar rash, fever, arthropathy, myalgia, cytopenia, hypocomplementemia, anti-DNA, and antinuclear antibodies (ANA). Therefore, it is difficult at times to differentiate HPV-B19 infection from SLE presentation or exacerbation. We report 4 cases of HPV-B19 infection mimicking SLE and review 10 other reported cases, all of whom were women. The similarity to a typical SLE presentation was indeed striking: most patients presented with rash, arthropathy, myalgia, fever, and positive ANA. In some cases, HPV-B19 infection seemed to exacerbate SLE rather then resemble it, and differentiation was difficult. Nearly all patients improved within several weeks. However, a few patients had symptoms and laboratory abnormalities lasting more than 6 months. The possibility of HPV-B19 infection should be entertained in patients presenting with SLE-like features.

Adult↗

Human parvovirus B19 infection: its relationship with systemic lupus erythematosus.

OBJECTIVES: The clinical presentation and outcome of four cases of human parvovirus-B19 (HPV-B19) infection, initially diagnosed as systemic lupus erythematosus (SLE), were reviewed and compared with similar cases previously reported in the literature. The relationship between HPV-B19 infection and SLE is discussed. METHODS: The medical records of four patients with documented HPV-B19 infection, initially diagnosed as SLE, were reviewed and studied in detail. A Medline search from 1985 to 1997 was performed to identify other cases reported in the literature in which a relationship between HPV-B19 and SLE had been identified in both adults and children. RESULTS: In all of our cases, the clinical findings (fever, rash, arthritis and malaise) and hematologic data (leukopenia, thrombocytopenia, anemia, presence of autoantibodies, hypocomplementemia, etc.) had initially suggested a diagnosis of juvenile SLE. Subsequently, evidence of HPV-B19 infection at the time of clinical presentation was ascertained. In three of these cases, the disease course was self-limiting with complete clinical remission and normalization of hematologic abnormalities within 18 months; one case, however, had persistent disease activity and repeated exacerbations. CONCLUSIONS: The occurrence of HPV-B19 infection has been documented in patients with SLE, in particular in relation to disease onset. Similarities in clinical and immunological features of viral infections and SLE at presentation may hinder the differential diagnosis between these two conditions. The family history, a self-limiting disease course and certain disease specific clinical aspects may help the pediatrician formulate an accurate diagnosis. In our patients, HPV-B19 infection may have mimicked the onset of SLE in three cases, but triggered the disease in one.

Adolescent↗

Association of human parvovirus B19 infection with acute meningoencephalitis.

To find out the incidence and clinical presentation of parvovirus B19 meningoencephalitis, we tested samples of cerebrospinal fluid from 162 patients (one from each patient) with undiagnosed meningoencephalitis, who presented between March, 1997, and March, 1998 (an outbreak period) using nested PCR for B19 genes. Seven patients were positive; an incidence of 4.3%. Five additional cases of meningoencephalitis were detected from other years. Three patients with underlying disorders (haemophagocytic lymphohistiocytosis, Cockayne's syndrome, and Turner's syndrome) died. Neurological sequelae were observed in three surviving patients, all of whom had had striking abnormalities detected on brain scans done during the acute phase.

Adolescent↗

B19 parvovirus DNA in solvent/detergent-treated anti-haemophilia concentrates.

A transfusional B19 parvovirus infection may have severe consequences in immunocompromised hosts. The presence of B19 DNA was investigated with a polymerase chain reaction (PCR) assay in 30 batches of solvent/detergent-treated clotting factor concentrates (12 batches of factor VIII, 16 batches of factor IX, 1 batch of factor VII, and 1 batch of PPSB). B19 DNA was detected in 6 (20%) batches, including 3 factor VIII and 3 factor IX concentrates. Because of the frequency of B19 DNA in batches of clotting factors, measures to prevent transfusional risk of B19 infection via these blood products are justified, especially in recipients immunocompromised by HIV infection.

Blood Coagulation Factors↗

Active or recent parvovirus B19 infection in children with Kawasaki disease.

Because parvovirus B19 occasionally causes some of the features typical of Kawasaki disease, we investigated B19 involvement in 15 children with Kawasaki disease. Active or recent B19 infection, as shown by B19-DNAaemia, positive B19-specific IgM antibodies, or both, was diagnosed in 10 patients (67%). A high frequency of all major criteria for diagnosis of Kawasaki disease (60%), anaemia (60%), coronary aneurysms (30%), and arthropathy (30%) was found in children with B19-associated Kawasaki disease. Thus B19 may have a pathogenic role in the development of Kawasaki disease, with other predisposing factors.

Antibodies, Viral↗

Glomerulonephritis after human parvovirus infection in homozygous sickle-cell disease.

Glomerulonephritis with proteinuria of sufficient degree to manifest the nephrotic syndrome followed aplastic crises induced by human parvovirus (B19) in seven patients with homozygous sickle-cell disease, within 7 days in five patients and 6-7 weeks in two. Segmental proliferative glomerulonephritis was found in all four patients who underwent acute renal biopsies and focal segmental glomerulosclerosis was found in the fifth patient who had a biopsy 4 months later. One patient recovered completely, one died in chronic renal failure after 3 months, and the others had impaired creatinine clearance, four with continuing proteinuria.

Adolescent↗

Human parvovirus B19 infection associated with acute hepatitis.

BACKGROUND: Human parvovirus (HPV) B19 infection produces a range of clinical manifestations including erythema infectiosum in children. Here we describe seven children who had acute hepatitis with HPV B19 infection. METHODS: Hepatic dysfunction was noted in three children referred to our hospital during the course of erythema infectiosum caused by HPV B19 infection diagnosed by ELISA and PCR. The role of HPV B19 in the pathogenesis of hepatic involvement was investigated retrospectively by PCR assay of stored serum samples from 773 patients admitted to our hospital. FINDINGS: 15 patients admitted to our hospital from January, 1991, to June, 1992, were HPV B19 DNA positive, of whom four had acute hepatitis of unknown origin. These four patients were aged between 7 months and 5 years. Of the seven patients, infection with hepatitis A, B, or C viruses or Epstein-Barr virus was ruled out in six by virological examinations. INTERPRETATION: Epidemiological evidence suggests that HPV B19 can be the cause of acute hepatitis.

Acute Disease↗

Parvovirus B19 infections in pregnancy.

Parvovirus B19 is the viral agent that causes the childhood exanthum erythema infectiosum, or fifth disease. Approximately 50% of pregnant women are seropositive for this agent and thus immune to primary infection. However, acute infection may develop in seronegative pregnant women exposed to B19. Acute B19 infections during pregnancy have been associated with miscarriage and hydrops fetalis. This latter condition is amenable to fetal therapy via intrauterine transfusion.

Anemia↗

Establishment of multifunctional monoclonal antibody to the nonstructural protein, NS1, of human parvovirus B19.

OBJECTIVES: NS1 expression of human parvovirus B19 is a critical event in B19 pathogenesis. However, the mechanisms of NS1-induced cytotoxicity in B19 infection have yet to be clarified mainly because of the absence of multifunctional monoclonal antibodies (Mab) against NS1. The purpose of this study was to establish such Mab, which function in immunoprecipitation assays, immunoblotting, indirect immunofluorescence, and immunohistochemical staining. METHODS: Balb/c mice were immunized with the recombinant NS1 protein and hybridoma cell lines producing Mab against the NS1 protein were screened by ELISA, immunoprecipitation, immunoblotting, and indirect immunofluorescence staining. The Mab were used for immunohistochemical staining of formalin-fixed tissues from an intrauterine B19 infected fetus. RESULTS: ParC-NS1, the monoclonal antibody against the NS1 protein, worked in all tested screening methods. ParC-NS1 could also detect NS1 protein expressed in clinical tissue specimens. CONCLUSIONS: The ParC-Ns1 monoclonal antibody was specific against the NS1 protein. In addition, NS1 protein expression was successfully identified in human tissues. These data indicated that this monoclonal antibody should be a useful tool to study the kinetics and sites of NS1 expression and NS1-induced cytotoxicity in B19 infection.

Animals↗

The incidence of, and factors leading to, parvovirus B19-related hydrops fetalis following maternal infection; report of 10 cases and meta-analysis.

OBJECTIVES: to clarify the approximation of the frequency of B19-related nonimmune hydrops fetalis (NIHF), and to know the critical period during which maternal infection led to NIHF. METHODS: we investigated the characteristics of 10 cases of antenatal B19 infection diagnosed over the past 10 years in Miyagi prefecture, Japan, and performed a meta-analysis of these cases and those previously reported in the literature. RESULTS: NIHF caused by intrauterine B19 infection was diagnosed between 11 and 23 weeks of gestation in 10 women over the past 10 years in Miyagi prefecture, Japan. The source of infection was the mother's older child in six out of 10 cases, and children at a kindergarten where the mothers worked in two cases. The interval between the onset of infection and the diagnosis of NIHF ranged from 2 to 6 weeks. B19 infection was responsible for 10 (15.2%) in 66 cases of aetiology unknown NIHF in this study, and for 57 (19.1%) of 299 cases of non-malformed or aetiology-unknown NIHF by meta-analysis of the literature. Meta-analysis of the 165 reported cases of antenatal B19 infection, including the 10 cases described above, showed that there was a 10.2% excess risk of fetal death in women infected with B19 during pregnancy and a 12.40% excess risk in women infected during the first 20 weeks of pregnancy. Transplacental transmission was confirmed in 69 (24.1%) of 286 cases. The mean gestational age at diagnosis of NIHF was 22.8 +/- 5.1 weeks. The mean interval between the onset of maternal infection and diagnosis of NIHF was 6.2 +/- 3.7 weeks. CONCLUSIONS: these approximations will be useful for counselling and management for pregnant women. The critical period during which maternal infection led to NIHF correlated with the hepatic period of hematopoietic activity. These findings suggest that parvovirus B19 may have an affinity for erythroid lineage cells at the hepatic stage of hematopoiesis, which may strongly influence the clinical features of feto-maternal B19 infection.

Female↗

Parvovirus B19 infection induces apoptosis of erythroid cells in vitro and in vivo.

OBJECTIVE: intrauterine parvovirus B19 infection is related to non-immune hydrops fetalis, the pathogenesis of which is based on the strict tropism of B19 for erythroid precursor cells and the massive destruction of the infected erythroid cells, although the mechanism of beta19-induced cytotoxicity has not been studied in detail. The purpose of this study is to provide empirical evidence that beta19 induces apoptosis of erythroid cells both in vitro and ill vivo. METHODS: we analysed culture cells infected in vitro by B19 and tissues of nine cases of hydrops fetalis caused by B19 intrauterine infection by histological and biological methods. RESULTS: cells infected iil vitro by B19 showed nuclear changes characteristic of apoptosis by light microscopic examination and DNA extracted from the infected cells was fragmented. Electron microscopic examination showed the nuclei of infected cells contained crescent-shaped clumps of heterochromatin with increased density and double staining with anti-B1 9 antibody and terminal deoxynucleotidyl transferase (TdT)-mediated deoxyuridine triphosphate-digoxigenin nick-end labeling (TUNEL) confirmed apoptosis of individual cells. Tissues of cases of hydrops fetalis caused by B19 contained erythroid cells with nuclear inclusions and characteristic nuclear changes of apoptosis by light microscopy. The double-staining confirmed apoptosis of erythroid cells in the tissues. Immunohistochemical analysis with antibodies against cellular factors involved in apoptosis showed that caspase3, p53 and p21 were positive in infected cells.

Apoptosis↗