Search PubMed⌕ Search

Biomedical subjects

P Wattré

Publications and source records attributed to P Wattré.

At least 19 recordsLinked to original sources

Antibody-dependent enhancement of coxsackievirus B4 infectivity of human peripheral blood mononuclear cells results in increased interferon-alpha synthesis.

IgG devoid of neutralizing activity and isolated from donor plasma by chromatography formed immune complexes with coxsackievirus B4 (CVB4) and significantly increased the infection of peripheral blood mononuclear cells with CVB4. The major host cells for CVB4 infection enhanced with IgG are monocytic CD14+ cells. The roles of CVB and adenovirus receptor and Fcgamma receptor II and III have been shown. Increased viral replication and the release of infectious particles were demonstrated when interferon (IFN)-alpha produced by infected cells was first neutralized by use of antibodies. The CVB4 IgG-induced synthesis of IFN-alpha by monocytes reflected entry and uncoating of CVB4 but not of viral replication and required the presence of CVB4 RNA inside the cells. Thus, CVB4 can infect monocytes by an antibody-dependent mechanism through interactions between the virus, antiviral antibodies, and specific receptors that result in IFN-alpha production.

Antibodies, Viral↗

Inhibition of coxsackievirus B4 replication in stably transfected cells expressing human MxA protein.

Coxsackieviruses B (CVB) (B1-B6), positive-strand RNA viruses, cause a variety of diseases. CVB4 may have a causal role in insulin-dependent diabetes mellitus. IFN-alpha inhibits CVB replication; however, the mechanism is not well known. The interferon-alpha-inducible human MxA protein exerts an antiviral activity against negative-strand RNA viruses and against Semliki Forest virus, a positive-strand RNA virus. To test the antiviral spectrum of MxA against CVB4, we took advantage of stably transfected Vero cells expressing MxA (Vero/MxA) in 98% of cells. Compared with control cells, in Vero/MxA cells, CVB4 yields were dramatically reduced and expression of the VP1 CVB protein analyzed by immunofluorescence was highly restricted. Furthermore, the accumulation of positive- and negative-strand CVB4 RNA was prevented as shown by in situ hybridization and RT-PCR. These results indicate that the antiviral activity of MxA extends to CVB4 and that its replication cycle is inhibited at an early step in Vero/MxA cells.

Animals↗

Detection of enteroviruses ribonucleic acid sequences in endomyocardial tissue from adult patients with chronic dilated cardiomyopathy by a rapid RT-PCR and hybridization assay.

A rapid reverse transcription polymerase chain reaction (RT-PCR) and microwell capture hybridisation assay with general specificity for enteroviruses was developed and compared with an improved nested RT-PCR for the detection of enteroviral RNA sequences in endomyocardial tissue from patients with chronic dilated cardiomyopathy. This method could detect as few as 20 genomic RNA copies per 100 mg of heart tissue homogenate and results could be obtained within 8 hours. Of the 55 biopsy specimens aseptically collected from the explanted hearts of 55 patients, 21 (38.2%) were positive by RT-PCR microplate assay, whereas only 19 (34.5%) were positive by nested RT-PCR assay and none were positive by classical cell culture assays. No enterovirus was detectable by RT-PCR or classical cell culture assays in any of the 55 heart biopsy specimens taken from organ donors without any known heart disease. Moreover, the nucleotide sequences of EV nested RT-PCR products showed greatest similarity to group B Coxsackieviruses [CVB3 (n = 12) or CVB5 (n = 3)], but also to group A Coxsackieviruses (CVA21 (n = 1) or CVA9 ( n= 3)]. The described RT-PCR and microwell capture hybridisation assay can be applied to the virological diagnosis of human enteroviral cardiac infections. Moreover our findings suggest that group B and group A Coxsackieviruses can persist in heart tissue from patients with end-stage chronic cardiomyopathy, supporting the hypothesis that these viruses could be implicated in the etiology of idiopathic dilated cardiomyopathy.

Adult↗

Increased levels of antiviral MxA protein in peripheral blood of patients with a chronic disease of unknown etiology.

Interferon alpha (IFN-alpha) is synthesized in response to viral infections. MxA protein, induced specifically by IFN-alpha and beta, expressed in peripheral blood cells, is detected more consistently than circulating IFN-alpha in serum of patients with viral infections. Thus, activation of the IFN-alpha/MxA system can be used as additional marker of the presence of a virus in patients. Therefore MxA protein and IFN-alpha levels were measured in patients with multiple sclerosis (MS), a chronic neurological disease of unknown etiology, in order to investigate the possible role of viruses in the expression of this disease. The means of MxA values obtained by using an immunochemiluminescent assay were significantly higher in blood of patients with remitting (n = 197) or relapsing (n = 39) multiple sclerosis (MS) patients and in patients with viral infections than in blood from healthy controls (n = 25) and from patients with bacterial infections (n = 12). Intra-individual variance in MxA levels in seven clinically stable remitting patients with MS was observed in the course of a follow-up, and high MxA levels were detected in three of them in blood samples collected consecutively over several months. By using an ultra sensitive assay, a higher MxA-inducer activity was obtained with sera from MS patients (n = 39) than with those from healthy controls (n = 12). Experiments with neutralizing antibodies proved that this activity in serum from patients was due to IFN-alpha, whereas IFN-alpha could not be detected by other methods. Altogether these results demonstrate that there is an activation of the IFN-alpha/MxA system in MS patients, which is consistent with the hypothesis that a viral infection may be associated with MS.

Adult↗

Enteroviruses can persist with or without active viral replication in cardiac tissue of patients with end-stage ischemic or dilated cardiomyopathy.

To investigate enterovirus replication versus persistence in end-stage cardiac diseases, endomyocardial biopsies from explanted hearts of 70 patients with idiopathic dilated cardiomyopathy (IDCM), 64 patients with chronic coronary disease (CCD), and 45 donors of healthy hearts (controls) were examined by reverse transcriptase-polymerase chain reaction for genomic and antigenomic enterovirus RNA and by VP1 antigen immunohistochemistry. Enterovirus genome was detected in 25 of 70 patients with IDCM and in 21 of 64 patients with CCDs (35.7 vs. 32.8%, respectively; P=.12). Of the 46 patients positive for genomic RNA, only 3 exhibited antigenomic RNA and VP1 antigen that demonstrated active viral replication, whereas 43 had latent infection characterized by the absence of antigenomic RNA associated with or not with VP1 antigen expression. No viral component was detected in control subjects. The findings demonstrate that a small percentage of patients with end-stage chronic cardiac diseases had active enterovirus replication in their myocardium.

Adult↗

Increased level of interferon-alpha in blood of patients with insulin-dependent diabetes mellitus: relationship with coxsackievirus B infection.

The activation of the interferon (IFN)-alpha system and its relationship with coxsackievirus B (CVB) infection has been analyzed in 56 patients with insulin-dependent diabetes mellitus (IDDM; 25 children and 31 adults). Elevated levels of IFN-alpha were found in plasma of 70% of patients (39/56), and a positive detection of IFN-alpha mRNA in blood cells by reverse transcriptase-polymerase chain reaction (RT-PCR) was observed in 75% of patients (42/56). Enterovirus (EV) RNA assayed by seminested RT-PCR was detected in the blood of 50% of IFN-alpha-positive patients but not in any IFN-alpha-negative patients. The results of genotype analysis of amplified EV RNA sequences (5 CVB2, 8 CVB3, and 8 CVB4) were concordant with the results of CVB-neutralization tests. The comparison between IFN-alpha, EV RNA, and serology suggested that the proportion of CVB infection associated with IFN-alpha positivity might be higher than is predicted from the investigation of EV RNA. Together, the results suggest that, in a majority of cases, a CVB infection is associated with clinical IDDM.

Adolescent↗

Differential detection of rhinoviruses and enteroviruses RNA sequences associated with classical immunofluorescence assay detection of respiratory virus antigens in nasopharyngeal swabs from infants with bronchiolitis.

To define the role of enteroviruses and human rhinoviruses as etiological agents in childhood bronchiolitis, clinical aspirates from 84 infants admitted to hospital with symptoms of obstructive bronchiolitis were tested by picornavirus RT-PCR assay, adenovirus PCR assay and classical immunofluorescence antigen detection of common respiratory viral agents. Respiratory syncytial viruses (A&B) were detectable in 45 of 84 (53.6%) nasopharyngeal aspirates from infants with bronchiolitis, whereas coronaviruses, influenza viruses, and parainfluenza viruses were not detectable in the same samples. Adenoviruses were detectable by PCR in 11 of 84 (13.1%) nasopharyngeal swabs. By using a picornavirus RT-PCR assay followed by a differential molecular hybridisation, rhinovirus and enterovirus RNA sequences were detected in 16 of 84 (19%) and in 10 of 84 (11.9%) of the nasopharyngeal swabs tested. Positive human rhinovirus or enterovirus RT-PCR assay, however, was the only evidence of respiratory infection in 8 of 84 (9.5%) and in 7 of 84 (8.33%) of the studied patients. Respiratory syncytial viruses, human rhinoviruses, adenoviruses, and enteroviruses occur in dual infections detected in 18 of 84 (21.4%) respiratory samples tested. The median duration of stay in hospital was not significantly different between the patients demonstrating a single viral infection and those with a dual viral infection (6.22 +/- 2.07 vs. 5. 04 +/- 0.95 days; P > 0.05). In summary, combination of molecular and classical detection assays of common viruses can be used to demonstrate enterovirus and human rhinovirus respiratory infection in childhood bronchiolitis, and provides an improved approach to obtain new insights into concomitant viral respiratory tract infection in infants.

Antigens, Viral↗

In HIV-1-infected patients, plasma levels of HIV-1 RNA are inversely correlated with IFN-alpha responsiveness of whole-blood cultures to sendai virus.

BACKGROUND: A diminished or totally blocked IFN-alpha production in cells from HIV-1-infected patients has been reported. OBJECTIVE: To investigate the relationship between the decreased in vitro production of IFN-alpha and the plasma level of HIV-1 RNA. STUDY DESIGN: Whole blood samples of 39 healthy subjects and 44 HIV-1-infected patients were incubated in the presence of Sendai virus for 24 h. IFN-alpha contained in supernatants was assayed by using an immunochemical method (DELFIA) and by using an antiviral assay. Plasma HIV-1 RNA was measured by the Amplicor HIV-1 monitor test. RESULTS: The levels of IFN-alpha obtained were significantly lower in cultures from HIV-1 infected patients than in control subjects (P<0.0001). The antiviral activity in supernatants of Sendai virus-activated whole-blood cultures, assayed by protection of MDBK cells against vesicular stomatitis virus (VSV), was significantly lower in cultures from HIV-1 infected patients than in corresponding controls (P<0.0001). IFN-alpha values determined by DELFIA and those determined by bioassay were significantly correlated. In vitro production of IFN-alpha by whole-blood cultures correlated well with the plasma levels of HIV-1 RNA (P<0.001). CONCLUSIONS: In HIV-infected patients an increased rate of HIV-1 replication is associated with reduced responsiveness to induction of IFN-alpha by indicator virus, suggesting that HIV-1 replication causes impaired production of IFN-alpha by blood cells or vice-versa.

Animals↗

Ex vivo interferon-gamma response to human immunodefiency virus-1 derived peptides in human immunodeficiency virus-1 infected patients.

The pattern of human immunodeficiency virus (HIV)-1 antigen-activated production of interferon (IFN)-gamma by immunocompetent cells of HIV-1 infected patients has been studied using a simplified assay combining a small volume (25 microliter) of whole blood stimulation with various HIV-1 antigens, and cytokine measurement in the same wells of microtitre plates (enzyme-linked immunotrapping assay, ELITA). The levels of IFN-gamma were higher using this assay than in the supernatant from stimulated whole blood cultures, therefore ELITA was used in the rest of the study. Specific immune responses to HIV-1 proteins (gp120, p24) and synthetic peptides derived from these proteins and from gp41 were detected in patients, but not in healthy controls. Decreased levels of IFN-gamma were observed in CDC class B (n = 5) and C (n = 4), compared with CDC class A (n = 5), following HIV-1 antigen-specific challenge. The positive response of cells from different patients to overlapping peptides of p25 (amino acids 329-344 and 335-351) was suggestive of a new epitope of HIV-1 gag recognized by T cells in the overlap region. In conclusion, the difference in in vitro antigen-specific T-cell responses of HIV-1-infected patients was shown using the ELITA method. Our results raise the possibility of using this method in screening specific antigens in HIV-1 infection.

Amino Acid Sequence↗

Persistent infection of human pancreatic islets by coxsackievirus B is associated with alpha interferon synthesis in beta cells.

The interactions of coxsackievirus B3 (CVB3), CVB4E2 (diabetogenic), and CVB4JBV (nondiabetogenic) strains with human pancreatic islets from eight adult brain-dead donors were investigated. Persistent replication of viruses in human islets was proved by detection of viral RNA by in situ hybridization, VP1 capsid protein by immunofluorescence (IF) staining, negative-strand viral RNA by reverse transcription-PCR in extracted RNA from islets, and release of infectious particles up to 30 days after infection without obvious cytolysis. By double IF staining, glucagon-containing alpha cells and insulin-containing beta cells were shown to be susceptible to CVB. The persistence of CVB3 and CVB4 in islet cells was associated with the chronic synthesis of alpha interferon (IFN-alpha), as evidenced by the detection of IFN-alpha mRNA and immunoreactive IFN-alpha with antiviral activity. By double IF staining, IFN-alpha was detected in insulin-producing beta cells only. Experiments with neutralizing anti-coxsackievirus and adenovirus receptor (CAR) antibodies provided evidence that CAR was expressed by alpha and beta cells and that it played a role in the infection of these cells with CVB and the consecutive IFN-alpha expression in beta cells. The viral replication and the expression of IFN-alpha in islets were not restricted to the CVB4E2 diabetogenic strain and did not depend on the genetic background of the host. The neutralization of endogenous IFN-alpha significantly enhanced the CVB replication in islet cells and resulted in rapid destruction of islets. Thus, human beta cells can harbor a persistent CVB infection, and CVB-induced IFN-alpha plays a role in the initiation and/or maintenance of chronic CVB infection in human islets.

Adult↗

Human polyomavirus JC latency and reactivation status in blood of HIV-1-positive immunocompromised patients with and without progressive multifocal leukoencephalopathy.

BACKGROUND: Human polyomavirus JC (JCV) induces human progressive multifocal leukoencephalopathy (PML) in patients with AIDS. Peripheral blood mononuclear cells (PBMC) of HIV-1-positive immunocompetent and immunocompromised patients can harbour JCV genome, but their precise role in JCV latency or reactivation status before the onset of PML remains hypothetical. OBJECTIVES: To assess JCV latency or reactivation status in PBMC of HIV-1-positive immunocompromised patients without PML. DESIGN: A group of 82 HIV-1-positive immunocompromised patients who did not have PML were compared with 10 patients with AIDS and PML and with 69 HIV-1-positive immunocompetent patients without PML. METHODS: DNA and total RNA were extracted from PBMC. The presence of JCV DNA was demonstrated by a semi-nested polymerase chain reaction (PCR). By using primer pairs specific for an early gene,T, and a late gene, VP1, the expression of both early and late gene mRNA in PBMC could be identified using reverse transcriptase (RT) PCR. RESULTS: JCV DNA was detected by PCR in 17.4% of 69 HIV-1-positive immunocompetent patients, in 23.2% of 82 HIV-1-positive immunocompromised patients, and in 60% of 10 patients with AIDS and PML. No correlation could be drawn between the detection of JCV DNA in the PBMC and the clinical or biological status of the HIV-1-positive patients. By using RT-PCR procedures, no expression of JCV early and late mRNA in PBMC was found in any patients. CONCLUSIONS: JCV DNA is detectable in the PBMC of 20.5% of 151 HIV-1-infected patients independently of the CDC (Centers for Disease Control and Prevention) stages of the infection. Moreover, our results suggest that active replication of JCV in PBMC appears to be absent or at least a very rare event in HIV-1-positive immunocompromised patients with and without PML.

Acquired Immunodeficiency Syndrome↗

Soluble tumor necrosis factor receptor type II (sTNFRII) in HIV-infected patients: relationship with the plasma level of HIV-1 RNA.

The value of soluble receptor for tumor necrosis factor type II (sTNFRII) as a strong and early predictor of HIV disease progression was suggested. Recently it has been reported that sTNFRII may provide an indication of the HIV load. In this work we focused on the relationship between sTNFRII and HIV burden in 95 HIV-1+ patients without AIDS grouped according to the 1993 classification of the CDC as group A, n = 55, and group B, n = 40. Compared with healthy controls, higher values of sTNFRII were obtained in all groups of HIV-1 infected patients (P < 0.001), but we found no inverse correlation between sTNFRII and CD4+ lymphocyte counts in CDC group A and B of the disease, and no correlation with log RNA copy number in patients with CD4 T-cell counts > 499/microl. A correlation was obtained between sTNFRII and the viral load in patients with CD4 T-cell counts ranging from 200 to 499/microl, but only in CDC group B patients (P < 0.01, n = 26). There was no correlation between the variations of sTNFRII and HIV-1 RNA levels in 19 CDC group A and 15 CDC group B clinically stable patients in the course of a short follow up. The plasma level of sTNFRII do not appear as a valuable surrogate marker of the plasma level of HIV-1 RNA in patients. Further investigations are needed to define the mechanism of the raised level of sTNFRII in HIV-1 infected patients.

Adult↗

Biological properties of interferon-alpha produced Ex vivo by whole blood of patients infected by human immunodeficiency virus-1.

We investigated the biological properties of interferon (IFN)-alpha produced by Sendai virus (SV)-activated whole blood cultures in 20 patients infected with human immunodeficiency virus (HIV)-1 and 24 healthy controls. Supernatants of cultures were assayed for IFN-alpha by using an immunological method (DELFIA), biological methods and an in-vitro MxA induction assay. The levels of intracellular MxA protein were detected by an immunochemiluminescence assay. The levels of IFN-alpha in patients measured by DELFIA were significantly lower than those in healthy controls (P < 0.0001), but the antiviral activity of IFN-alpha in patients infected with HIV-1 was lower than predicted from DELFIA. The IFN-alpha produced by cells of patients infected with HIV-1 was able to induce MxA protein in human amnions WISH cells but was unable to protect these cells against Vesicular Stomatitis Virus (VSV)-induced cytopathic effects. A relative increased capability to induce the production of MxA protein in vitro was observed with the IFN-alpha contained in culture supernatant of virus-activated whole blood of HIV-1-infected patients with increased levels of MxA in their peripheral blood. These data suggest that biological properties of IFN-alpha produced in the course of HIV-1 infection are different from those observed with IFN-alpha of healthy subjects.

Acquired Immunodeficiency Syndrome↗

Specific immune response to human immunodeficiency virus (HIV)-1 in patients assessed through the production of interferon-gamma and interleukin-4 in HIV-1 p24-activated whole blood cultures: relationship with the viral load in plasma.

We studied the in vitro HIV-1 antigen-stimulated production of IFN-gamma and IL-4 in HIV-1-infected patients and its relationship with viral replication as assessed through the plasma level of HIV-1 RNA. The levels of IFN-gamma and IL-4 were higher in supernatants of stimulated whole blood cultures than in stimulated peripheral blood mononuclear cell cultures, therefore whole blood cultures were used in the rest of the study. Specific IFN-gamma and IL-4 responses to HIV-1 p24 antigen were observed in HIV-1-infected patients but not in healthy controls (n = 23). A lower proportion of individuals with a positive IFN-gamma response to HIV-1 p24 was observed in patients at a declining clinical stage: 62% in asymptomatic patients (CDC group A, n = 16) versus 19% in symptomatic patients (CDC groups B and C, n = 21; P = 0.007, chi2 testing), whereas the proportion of individuals with a positive IL-4 response to HIV-1 p24 was almost similar in both groups of patients (25% versus 23.8%). Increased IL-4 production by HIV-1 p24-activated immunocompetent cells of patients and a predominant IL-4 response to HIV-1 p24 (with IL-4/IFN-gamma > 1) were positively correlated with an increased viral load. In contrast, there was no correlation between the mitogen-stimulated production of IL-4 and IFN-gamma and the viral load in plasma. The CD8 T cells from whole blood of patients, but not from controls played a significant role in the HIV-1 p24-activated production of IFN-gamma and IL-4. In conclusion, HIV-1-antigen-stimulated whole blood appears to be a valuable tool to study the production of IL-4 in HIV-1-infected patients. The cytokine profile pattern in response to epitopes of HIV-1 gag p24 may play an important role in the host immune response to HIV-1.

Adult↗

Tumor necrosis factor alpha levels in plasma and whole-blood culture in dengue-infected patients: relationship between virus detection and pre-existing specific antibodies.

The pathogenesis of dengue hemorrhagic fever (DHF) is not well known, but the role of host factors has been suggested. The level of immunoreactive circulating and cell-generated tumor necrosis factor alpha (TNF alpha) was studied in 35 patients with DHF; its relationship with virus isolation and/or genome detection by reverse transcription polymerase chain reaction (RT-PCR) and specific antibodies were detected by hemagglutination inhibition (HI). Large variation of TNF alpha plasma levels was obtained in dengue-infected patients at the same stage of the disease and at the same day after infection. Most of the patients (14 out of 17 patients) who displayed augmented spontaneous in vitro production of TNF alpha by heparinized whole-blood culture compared with controls also had elevated levels of TNF alpha in the plasma. The TNF alpha values in lipopolysaccharide and phytohemagglutinin heparinized whole-blood cultures were not higher in patients than in controls, but low TNF alpha levels were obtained in three out of 30 patients. An inverse correlation was observed between spontaneous in vitro TNF alpha production and viral replication, which raises the issue of the antiviral effect of TNF alpha in dengue infection. The results do not support the hypothesis of the role of antibody-dependent enhancement giving rise to increased viremic titers and production of TNF alpha in patients. The present study demonstrates the activation of the TNF alpha-producing cells in dengue-infected patients and suggests further investigation to define the mechanism and the role of TNF alpha in the pathogenesis of dengue virus infection.

Adolescent↗

A decreased production of IL12 in vitro is associated with isolation of cytopathic HIV-1 strains in HIV-1-infected patients.

The changes in type 1 (IL12, IFN gamma, IL2) and type 2(IL4, IL10) cytokine profiles may be associated with virological parameters of progression of the disease in HIV-1-infected patients. The production of cytokines was studied in LPS + PHA-activated whole-blood culture in HIV-1-infected individuals at different stages of the disease. The association was investigated between IL12p40 and IL12p70 profiles and other cytokines (IFN gamma, IL4, IL10), as well as the isolation of cytopathogenic HIV-1 strains. The phenotype of HIV strains was studied by a micromethod based on P4 cell line, allowing detection of cytopathic effects of HIV-1 isolates (syncytium-induction and cell-killing without syncytium induction). The individual variations in IL12p40 and IL12p70 production were limited in the healthy controls. Low values were observed in HIV-1-infected patients. The production of IL12 (p40 and p70) and the IL12p70/IL4 ratio and the IFN gamma/IL4 ratio were significantly lower in patients with cytopathic isolates compared with patients with noncytopathic isolates, and a correlation was obtained between the values of IL12 (IL12p40 and IL12p70) and those of IFN gamma/IL4 ratio. There was no increase in the secretion of IL4 and IL10 in patients with cytopathic strains compared with other patients. The results indicate a decreased production of type 1 cytokines (IL12, IFN gamma) in the presence of a relatively preserved production of type 2 cytokines (IL4, IL10) in HIV-1-infected patients. In conclusion, the defect of production of IL12 by whole blood is associated with virological correlates of progression of HIV-1 disease.

Cell Line↗

The MxA protein levels in whole blood lysates of patients with various viral infections.

Interferon alpha (IFNalpha), a type I interferon, can be considered as a viral infection marker because this cytokine is induced during many viral infections. However, it is quite difficult to detect IFNalpha in sera. Investigations are interested in various intra-cellular IFNalpha-induced proteins as viral infection markers. However the activity of these enzymes increased not only in response to type I IFNs but also to type II IFN. MxA protein can be detected in the cytoplasm of IFNalpha/beta-treated cells, whereas other cytokines, including IFNgamma, are poor inducers. Using an immunochemiluminescent assay, we studied MxA protein in whole blood of 34 patients with various viral infections. The whole blood was drawn into sterile vacuum tubes containing heparin or EDTA. MxA values were relatively similar in heparin-treated samples and EDTA-treated samples, with differences not exceeding 1 ng/ml. The levels of MxA protein were compared in whole blood obtained by using two different lysis procedures. A correlation was found between the MxA levels obtained by using procedure I and procedure II, but higher amounts of MxA protein were found with procedure II. The second procedure is rapid and more convenient than the other and it is carried out in one step which reduce technical problems. High levels of MxA protein were found in peripheral blood cells of patients with acute viral infections (Rotavirus, Adenovirus, RSV, CMV), but MxA protein was not elevated in bacterial infections. The MxA levels were also studied in peripheral blood of 32 HCV positive patients. MxA protein was not found in most of IFNalpha-untreated patients, even those with high viral load. In contrast, high levels of MxA protein were found in IFNalpha-treated patients. MxA quantitation can be considered as a specific marker of acute viral infections, and could be useful in the management of treatment with IFNalpha.

GTP-Binding Proteins↗

Combination of whole blood culture and a rapid and sensitive cell assay for the determination of the cytopathogenicity of human immunodeficiency virus type-1 isolates.

It has been reported that in vitro biological properties of human immunodeficiency virus type 1 (HIV-1) isolates from patients are correlated with the prognosis of HIV-1 infection. A rapid assay was developed to study the phenotype of HIV-1 isolates. The P4 cell line is a HIV-1 infectible Hela CD4 cell carrying the bacterial LacZ gene under the control of the HIV-1 LTR (long terminal repeat). Conventional peripheral blood mononuclear cells (PBMCs) co-culture and heparinized whole blood (HWB) co-culture with normal PBMCs were used for HIV-1 isolated strains from 17 HIV-1-infected patients. The sensitivity of P4 cells was higher than that of MT-2 cells for detecting syncytia induced by HIV-1LAI (lymphadenopathy-associated virus). Like MT-2 cells, P4 cells enable the detection of syncytium inducing strains isolated in peripheral blood mononuclear cells (PBMCs) and HWB cultures. HIV-1 isolates with both culture methods from certain patients induced cytolysis without syncytium in P4 cells but had no cytopathic effect on MT-2 cells. The experiments are in favour of the direct effect of HIV-1 isolates of these patients in the lysis of P4 cells but its mechanism has not been elucidated. It was shown that the combination of whole blood culture for HIV-1 isolation and phenotype study with P4 cell assay is rapid and sensitive and could be used to monitor HIV-1-infected patients.

Biological Assay↗