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Biomedical subjects

R Cavallo

Publications and source records attributed to R Cavallo.

At least 19 recordsLinked to original sources

The hazardous burden of Herpesviridae in inflammatory bowel disease: the case of refractory severe ulcerative colitis.

BACKGROUND: Herpesviridae infection or spread may be a hazard in immunodepressed patients. In the field of inflammatory bowel disease, refractory severe ulcerative colitis is a challenging condition, closely associated to immunosuppression both for inanition due to the disease activity and for immunosuppressive treatments. Cytomegalovirus (CMV) has been proposed as a major cause of refractoriness, while other Herpesviridae may be a risk factor in the long-term follow-up. AIM OF THE STUDY: To evaluate the positivity rates of CMV, Epstein-Barr (EBV) and Human herpes virus-8 (HHV8) in a consecutive group of ulcerative colitis patients who underwent colectomy for refractoriness to medical treatment compared to a control group, using state of the art methods. PATIENTS AND METHODS: Colonic specimens from 24 consecutive patients with ulcerative colitis submitted to colectomy for refractoriness and from 20 controls (submitted to colectomy for colorectal cancer) were studied. Standard histology and immunohistochemistry (IHC) for CMV and specific polymerase chain-reaction (PCR) for CMV, EBV and HHV8 were carried out. RESULTS: Regarding CMV, 1 case (4%) was positive at histology and IHC, whereas 3 cases (13%) were positive at PCR, compared to none in the control group (p=0.239). For EBV 2 cases (8%) and 2 controls (10%) were positive at PCR. None of the cases or of controls was positive for HHV8. The only clinical characteristic independently associated to CMV positivity was the white blood cell count at admission, higher among CMV positive patients (p<0.001). At the end of the post-surgery follow-up (median 7.3 years) none of the CMV positive cases experienced pouchitis, compared to 3/21 (14%) of the CMV negative cases (p=1.000). DISCUSSION: Our data suggest that CMV is uncommon (13%), even though PCR techniques, considered to be the most sensitive tools, were used for virus detection and the study population is made by highly selected patients with definite refractoriness. EBV and HHV8 may represent a theoretical risk of immunosuppressive therapy because of their potential role as cancer triggers; however in our study, results seem to be reassuring that UC patients undergoing immunosuppressive therapy are not exposed to an excessive risk of viral infection.

Adolescent↗

Development and utilization of a quantitative polymerase chain reaction assay to evaluate human polyomavirus JC DNA load.

AIM: Quantitative polymerase chain reaction (PCR) analysis to evaluate virus load in comparison with the patient's base-line virus levels would be an optimal diagnostic approach to monitoring human polyomavirus infections and to investigate their possible involvement in the onset of nephropathy in this patient group. Studies on the correlation between viral burden and renal disease have pointed to the incidence of JC virus (JCV) related progressive multifocal leukoencephalopathy (PML) occurring in renal and haematopoietic stem cell transplant recipients. METHODS: We developed a reliable internally-controlled quantitative PCR assay to measure JCV-DNA in fluid samples of urine, serum and cerebrospinal fluid (CSF) by densitometric analysis of the amplification products. The assay was also used to evaluate the JCV load in CFS samples from patients with suspected demyelinating syndrome and in urine and serum samples from healthy subjects and renal transplant recipients. RESULTS: All CSF samples from the 51 patients with suspected demyelinating syndrome tested JCV-DNA negative: none of them had a diagnosed PML. Analysis of the prevalence of JCV-viruria and JCV-viraemia confirmed our previous data. JCV-viruria was detected in 17% of renal transplant recipients and 26.6% of healthy controls; JCV-viraemia was found in 3.4% of transplant patients and 0% in controls. Noteworthy was a lower prevalence of JCV-viraemia in the 116 (3.4%) renal transplant patients than the prevalence previously reported for the 51 (11.8%) patients with suspected demyelinating syndrome. The mean viral load of viruria was much higher in the healthy controls than in the transplant recipients [104020 DNA copies/mL (DS+/-62284) vs 4136 DNA copies/mL (DS+/-77371)]. CONCLUSIONS: The quantitative PCR assay developed in our lab offers in 2 h time a reliable true quantification of viral DNA by densitometric analysis of the amplification product. To check for the possible presence of potential Taq polymerase inhibitors an internal control (the homemade pJCV-C plasmid) is used. The relation between polyomavirus infections and their possible involvement in post-transplant pathologies need further investigation. It would be useful to monitor the JCV-DNA load in urine and serum from more renal transplant recipients, including patients with nephropathy or active graft rejection over a longer period of time.

Base Sequence↗

Development of a quantitative-competitive PCR for quantification of human cytomegalovirus load and comparison with antigenaemia, viraemia and pp67 RNA detection by nucleic acid sequence-based amplification.

AIM: The human cytomegalovirus (HCMV) is an important pathogen in immunocompromised patients, such as transplant recipients. The use of sensitive and rapid diagnostic assays can have a great impact on antiviral prophylaxis and therapy monitoring and diagnosing active disease. Quantification of HCMV DNA may additionally have prognostic value and guide routine management. The aim of this study was to develop a reliable internally-controlled quantitative-competitive PCR (QC-PCR) for the detection and quantification of HCMV DNA viral load in peripheral blood and compare it with other methods: the HCMV pp65 antigenaemia assay in leukocyte fraction, the HCMV viraemia, both routinely employed in our laboratory, and the nucleic acid sequence-based amplification (NASBA) for detection of HCMV pp67-mRNA. METHODS: Quantitative-competitive PCR is a procedure for nucleic acid quantification based on co-amplification of competitive templates, the target DNA and a competitor functioning as internal standard. In particular, a standard curve is generated by amplifying 10(2) to 10(5) copies of target pCMV-435 plasmid with 10(4) copies of competitor pCMV-C plasmid. Clinical samples derived from 40 kidney transplant patients were tested by spiking 10(4) copies of pCMV-C into the PCR mix as internal control, and comparing results with the standard curve. RESULTS: Of the 40 patients studied, 39 (97.5%) were positive for HCMV DNA by QC-PCR. While the correlation between the number of pp65-positive cells and the number of HCMV DNA genome copies/mL and the former and the pp67mRNA-positivity were statistically significant, there was no significant correlation between HCMV DNA viral load assayed by QC-PCR and HCMV viraemia. CONCLUSIONS: The QC-PCR assay could detect from 10(2) to over 10(7) copies of HCMV DNA with a range of linearity between 10(2) and 10(5) genomes.

Adult↗

Co-detection and discrimination of JCV and BKV DNA by duplex nested-PCR in renal transplant recipients.

AIM: Several studies have disclosed a correlation between human polyomavirus BK (BKV) and interstitial nephritis in renal transplant recipients. It has recently been hypothesized that some cases of nephropathy may be associated with human polyomavirus JC (JCV). METHODS: In this paper we describe the development of duplex nested-PCR assay which allows the simultaneous detection and discrimination of genomic sequences of JCV and BKV ''large T antigen'', resulting in amplicons of 150 bp and 278 bp, respectively. Thus, the presence of JCV and BKV DNA in urine and serum samples from 51 renal transplant recipients and 29 healthy controls was investigated and related to immunosuppressive regimens and renal function. RESULTS: The comparison between the incidence of the of BKV and/or JCV infections (detected by viruria and/or viraemia) in renal transplant recipients and the control group revealed a highly significant increase of the incidence of BKV infection in immunosuppressed patients vs healthy subjects (62.7% vs 27.6%; p=0.005). In particular, we found a significant increase of BKV-DNA viruria in renal transplant recipients vs healthy subjects (49% vs 17.2%; p=0.01), in agreement with the BKV urinary shedding in renal transplant recipients of the literature (5-45%). CONCLUSION: The nested-PCR technique is a valid diagnostic tool to detect viral presence in urine and its systemic diffusion. Our assay links the high sensitivity of nested amplification with the simultaneous detection and discrimination of genomic sequences of JC and BK polyomaviruses and thus provides a handy, rapid and sensitive means for DNA analysis of large numbers of samples.

Adult↗

Epstein Barr viral load monitoring by quantitative PCR in renal transplant patients.

Post-transplant lymphoproliferative disorders (PTLD), ranging from lymphoid hyperplasia to clonal malignancy, are a severe complication arising in solid organ transplant patients. Their reported incidence ranges from 1 to 20%, according to factors such as type of transplanted organ and the age of recipients. A strong correlation between Epstein Barr virus (EBV) infection, the grade and type of immunosuppression and the development of PTLD has been recognized. The detection and quantification of EBV-DNA load in peripheral blood have been utilized as prognostic markers for the development of PTLD, showing a correlation between high levels of EBV-DNA in the blood and the development of PTLD. In this study, we monitored EBV viral load monthly in 15 renal transplant recipients for six months. The number of EBV-DNA copies was measured in peripheral blood mononuclear cells (PBMC) and serum samples by a quantitative PCR protocol developed in our laboratory that employes a previous screening of samples containing a significant number of viral DNA copies (> or =1000 copies/10(5) PBMC or 100 microl serum) by semi-quantitative PCR followed by a precise quantification of the only significant samples by quantitative-competitive (QC)-PCR. Our 15 renal transplant patients neither developed PTLD nor had recurrent acute illnesses or acute graft rejections during the study. The results obtained in the monthly follow up of EB viral load in PBMC samples confirmed its fluctuation in asymptomatic patients reported in literature. In particular, 5/14 (35.7%) of EBV seropositive patients had an EBV-DNA load equal to 1000 EBV copies /10(5) PBMC (roughly corresponding to 10.000 copies/microg PBMC DNA), and 1/14 (7.1%) reached 5000 EBV copies /10(5) PBMC (roughly corresponding to 50.000 copies/microg PBMC DNA), at least once in our study. In the EBV seronegative patient, EBV-DNA in PBMC samples was always undetectable (less than 100 DNA copies/10(5) PBMC). EBV-DNA load in all serum samples was less than threshold value of our quantification protocol (<100 DNA copies/100 microl serum), supporting the literature data. With regard to immunosuppressive treatment, 66.7% of the six patients in whom EBV load reached values equal to or higher than 1000 DNA copies/10(5) PBMC, were on FK506 whereas only 33.3% of them were on CyA. In conclusion, further investigations are needed to better understand the role of EBV infection in the pathogenesis of PTLD in immunosuppressed patients. Given the high positive predictive value of EB viral load in peripheral blood for diagnosis of PTLD reported by several authors, and the described absence of correlation between the serological evidence of EBV reactivation and EB viral load, EBV viral load measurement in PBMC and serum samples using quantitative PCR techniques is a powerful diagnostic tool to monitor transplanted patients at risk to develop PTLD.

Cells, Cultured↗

HCMV pp67-mRNA detection by nucleic acid sequence-based amplification in renal transplant patients.

CMV infection is a major cause of morbidity and mortality following renal transplantation. Clinical diagnosis is difficult, and rapid and sensitive diagnostic methods are needed since antiviral therapy is available. The determination of the presence of viral transcripts is considered a direct marker of HCMV replication in vivo. In particular, it seems that the expression of late transcripts might better reflect active HCMV replication, dissemination and disease, and should cease upon effective blockage of viral polymerase by antiviral agents, such as gancyclovir. The unspliced pp67-mRNA can be specifically amplified using nucleic acid sequence-based amplification (NASBA) in a background of DNA. In the present study blood samples of forty-two renal transplant patients with active HCMV infection, demonstrated by pp65-antigenaemia, were investigated to detect pp67-mRNA using the NASBA technique. Thirty-one pp65-antigenaemia positive patients resulted NASBA positive (73.8%) also in case of very low levels of antigenaemia; in 9/42 (21.4%) pp67-m-RNA was detected between 6 and 15 days before antigenaemia. Our results indicate that pp67-mRNA NASBA is a useful tool for the early diagnosis of active HCMV infection and for starting and modulating antiviral therapy, in addition to quantitative techniques such as antigenaemia, in renal transplant patients.

Cytomegalovirus↗

Human polyoma virus BK DNA detection by nested PCR in renal transplant recipients.

Several studies report a correlation between the human polyomavirus BK (BKV) and interstitial nephritis in renal transplant recipients in whom immunosuppressive treatment is thought to allow or induce reactivation of the virus. Furthermore, it is described that nephropathy may result from the use of newly introduced immunosuppressive drugs. In the present study, we evaluated the presence of BKV DNA by nested-PCR (n-PCR) in urine and serum samples from 35 renal transplant patients related to the immunosuppressive regimens and renal function.

BK Virus↗

DNA microarrays with stem-loop DNA probes: preparation and applications.

We have developed DNA microarrays containing stem-loop DNA probes with short single-stranded overhangs immobilized on a Packard HydroGel chip, a 3-dimensional porous gel substrate. Microarrays were fabricated by immobilizing self-complementary single-stranded oligonucleotides, which adopt a partially duplex structure upon denaturing and re-annealing. Hybridization of single-stranded DNA targets to such arrays is enhanced by contiguous stacking interactions with stem-loop probes and is highly sequence specific. Subsequent enzymatic ligation of the targets to the probes followed by stringent washing further enhances the mismatched base discrimination. We demonstrate here that these microarrays provide excellent specificity with signal-to-background ratios of from 10- to 300-fold. In a comparative study, we demonstrated that HydroGel arrays display 10-30 times higher hybridization signals than some solid surface DNA microarrays. Using Sanger sequencing reactions, we have also developed a method for preparing nested 3'-deletion sets from a target and evaluated the use of stem-loop DNA arrays for detecting p53 mutations in the deletion set. The stem-loop DNA array format is simple, robust and flexible in design, thus it is potentially useful in various DNA diagnostic tests.

DNA Mutational Analysis↗

Interaction of Bartonella henselae with the murine macrophage cell line J774: infection and proinflammatory response.

Bartonella henselae is the causative agent of cat scratch disease (CSD), a self-limiting condition characterized by a subacute regional lymphadenopathy that may develop into disseminated bartonellosis in immunocompromised subjects. Mice experimentally infected with B. henselae display typical liver and spleen granulomas rich in T cells and macrophages. So far there are no data on the interaction between bartonellae and macrophages. In order to clarify this topic, we investigated the interaction of B. henselae with J774, a mouse macrophage cell line. Analysis of bacterial uptake by functional assays and transmission electron microscopy indicates that bartonellae can enter and survive inside J774. Entry occurred within 30 min postinfection and reached a plateau at 160 min. Infection of J774 was followed by a dose-dependent release of the proinflammatory cytokines tumor necrosis factor alpha, interleukin 1beta (IL-1beta), and IL-6. Bartonellae persisted intracellularly without loss of viability for at least 8 h, and their number slightly decreased 24 h postinfection. Gamma interferon (IFN-gamma) treatment of J774 significantly decreased the number of recoverable bacteria at 8 and 24 h. This enhancement of macrophage bactericidal activity was associated with nitric oxide (NO) release and was prevented by the addition of the competitive inhibitor of NO synthesis N(G)-monomethyl L-arginine. These findings suggest that IFN-gamma-mediated activation of macrophages may be important for the clearing of B. henselae infection and that anti-B. henselae microbicidal activity of IFN-gamma-activated macrophages is mediated to a large extent by NO production.

Animals↗

Murine cytomegalovirus infection induces cellular folylpolyglutamate synthetase activity in quiescent cells.

Cytomegalovirus (CMV) infection stimulates the expression of cellular enzymes involved in the biosynthesis of DNA precursors. Among them, dihydrofolate reductase (DHFR) and thymidylate synthase (TS) require folate as coenzymes. In growing cells, folates are readily converted to polyglutamated forms by the cellular enzyme folylpolyglutamate synthetase (FPGS). Polyglutamated folates are selectively retained within the cell and have an increased affinity for DHFR and TS. Here we report that murine CMV (MCMV) increases the levels of the FPGS mRNAs as well as the enzymatically active FPGS protein through a mechanism that requires viral gene expression. FPGS induction by MCMV would provide the necessary supply of polyglutamated folates to the cellular enzymes involved in the biosynthesis of deoxyribonucleotides, enabling viral DNA replication to take place in quiescent cells.

3T3 Cells↗

Quantitative PCR in EBV-infected renal transplant patients.

In this study we investigated the levels of Epstein Barr virus (EBV) DNA by quantitative polymerase chain reaction (Q-PCR) in serum, whole blood and peripheral blood mononuclear cells (PBMC) from anti-EA IgG seropositive or anti-EA IgG seronegative EBV infected renal transplant recipients. We compared serological data with the viral load to monitor the risk of developing post-transplant lymphoproliferative disorders (PTLD). All patients were asymptomatic and none of them developed PTLD at the time of the study. EBV DNA quantitation for each patient varied in whole blood and PBMC samples probably due to different numbers of mononuclear cells present in samples from which DNA was extracted (whole blood vs. purified PBMC). In 92% of the serum samples EBV DNA was undetectable probably due to absence of free genomes since the number of DNA copies detected in samples from whole blood and PBMC does not reach very high levels. The correlation between the presence of EA-antibody, considered serological evidence of EBV reactivation, and the viral load showed that 60% of EA-positive patients had quantifiable EBV DNA, whereas in 40% of EA-positive patients EBV DNA was undetectable, showing serological reactivity but no viral replication. Of the remaining EA-negative patients, EBV DNA could be detected in 71% of them, whereas 29% did not show EBV DNA, indicating no EBV replication. In conclusion, our results confirm that the presence of serum IgG anti-EA antibody is not a reliable marker of active EBV infection whereas the evaluation of the viral load in blood samples is a useful diagnostic tool to monitor and to better understand the course of EBV infection in immunocompromised renal transplant patients at risk of developing PTLD.

Adult↗

The thymidylate synthase inhibitor ZD1694 potently inhibits murine and human cytomegalovirus replication in quiescent fibroblasts.

Tomudex (ZD1694) is a quinazoline-based folate analog and a powerful inhibitor of cellular thymidylate synthase and is approved in Europe for use in oncology. Here the first evidence of its activity against murine and human cytomegalovirus (MCMV and HCMV) is reported. ZD1694 irreversibly inhibited the replication and DNA synthesis of both viruses in quiescent fibroblasts. The corresponding 50% effective concentrations were 0.006 and 0.002 microM respectively, whereas the 50% cytotoxic concentration was >10 microM for both murine and human quiescent fibroblasts. A similar antiviral effect was observed against two ganciclovir-resistant HCMV strains isolated from AIDS patients. Taken as a whole these results demonstrate that cellular thymidylate synthase plays an essential role in viral replication and that ZD1694 merits further investigation as anticytomegaloviral agent.

Animals↗

delta-catenin, an adhesive junction-associated protein which promotes cell scattering.

The classical adherens junction that holds epithelial cells together consists of a protein complex in which members of the cadherin family linked to various catenins are the principal components. delta-catenin is a mammalian brain protein in the Armadillo repeat superfamily with sequence similarity to the adherens junction protein p120(ctn). We found that delta-catenin can be immunoprecipitated as a complex with other components of the adherens junction, including cadherin and beta-catenin, from transfected cells and brain. The interaction with cadherin involves direct contact within the highly conserved juxtamembrane region of the COOH terminus, where p120(ctn) also binds. In developing mouse brain, staining with delta-catenin antibodies is prominent towards the apical boundary of the neuroepithelial cells in the ventricular zone. When transfected into Madin-Darby canine kidney (MDCK) epithelial cells delta-catenin colocalized with cadherin, p120(ctn), and beta-catenin. The Arm domain alone was sufficient for achieving localization and coimmunoprecipitation with cadherin. The ectopic expression of delta-catenin in MDCK cells altered their morphology, induced the elaboration of lamellipodia, interfered with monolayer formation, and increased scattering in response to hepatocyte growth factor treatment. We propose that delta-catenin can regulate adhesion molecules to implement the organization of large cellular arrays necessary for tissue morphogenesis.

Animals↗

Overexpression of cellular dihydrofolate reductase abolishes the anticytomegaloviral activity of methotrexate.

Cytomegalovirus (CMV) stimulates numerous cellular pathways upon infection. One of these pathways involves activation of dihydrofolate reductase (DHFR), an essential enzyme in the biosynthesis of purines and thymidylate. Here we report that methotrexate (MTX), an inhibitor of DHFR, suppresses murine CMV replication at the level of DNA synthesis in quiescent NIH 3T3 cells. However, MTX has no antiviral activity in NIH 3T3 sublines resistant to MTX due to DHFR overexpression. These results directly link MTX antiviral activity to DHFR and demonstrate that DHFR plays an essential role for CMV replication in quiescent cells.

3T3 Cells↗

Human cytomegalovirus stimulates cellular dihydrofolate reductase activity in quiescent cells.

Human cytomegalovirus (HCMV) productively infects quiescent fibroblasts in which the levels of deoxynucleotide triphosphates (dNTPs) and cell functions involved in DNA metabolism are very low. Since sufficient dNTPs levels are essential for human HCMV replication, host cell enzymes involved in the biosynthesis of dNTPs might be expected to be stimulated by viral infection in quiescent cells. We report that HCMV infection of quiescent fibroblasts stimulates the activity of cellular dihydrofolate reductase (DHFR), a key enzyme in DNA precursor synthesis. We also demonstrate that suppression of DHFR activity by the specific inhibitor methotrexate prevents HCMV replication and DNA synthesis. These observations indicate that induction of DHFR activity by HCMV is required for efficient viral replication in quiescent fibroblasts.

Cells, Cultured↗

Correlation between cytomegalovirus infection and Raynaud's phenomenon in lupus nephritis.

Relationships between viruses and autoimmune diseases such as systemic lupus erythematosus (SLE) are still elusive. Recent reports demonstrated the association of some viral infections with peculiar clinical events in the general population, such as cytomegalovirus (CMV) with arterial damage and Parvovirus B19 (PV-B19) with hematologic abnormalities. We planned to look for this kind of viral imprinting in SLE, hypothesizing that traces of specific features of some viral infections might be found in some subsets of seropositive SLE patients. In 60 SLE patients recruited at our nephrologic center, serology for CMV, PV-B19, Epstein-Barr virus viral capsid antigen (EBV-VCA), Epstein-Barr nuclear antigen (EBNA) and Epstein-Barr virus early antigen (EBV-EA) was performed. chi2 and ANOVA were employed to compare the frequency and titers of antiviral antibodies in SLE patients with groups of transplant, hemodialysis and blood donor subjects. chi2, Fisher's test, Bonferroni and Scheffe's test were employed to compare the different biochemical/clinical features between seropositive and seronegative SLE patients. Univariate and multivariate analysis (logistic regression models) were employed to evaluate the odds ratio (OR) of different risk factors for vascular events (including Raynaud's phenomenon, deep venous thrombosis) and hematologic abnormalities (including severe anemia, leukopenia and thrombocytopenia). Anti-CMV (82%), anti-PV-B19 (60%), anti-EBV-VCA (92%) and EBV-EA (45%) IgG antibodies were frequent in SLE, with higher prevalence in comparison with the blood donor group and higher titers in comparison with transplant and hemodialysis groups. CMV seropositivity was a highly significant risk factor for Raynaud's phenomenon (OR +alpha in univariate and multivariate analysis = 13.51 using a correction of 0.5 in case of a zero event), but not for venous vascular events (OR = 1.31). An increased though not significant risk factor was found for antiphospholipid antibodies (OR = 2.71, p = 0.19), while the presence of nephrotic syndrome during the follow-up was a significant protective factor (OR = 0.15, p = 0.035). There was no significantly increased OR for PV-B19 seropositivity in cases with severe anemia (OR = 2.09, p = 0. 29). No significant associations were found with the status of EBV reactivation. In conclusion, our results support the hypothesis that viral infection may imprint the course of SLE leading to specific clinical subsets (i.e. CMV and 'vascular' SLE, with more frequent Raynaud's phenomenon and a less frequent typical histological renal picture responsible for nephrotic syndrome). Further prospective studies are justified to validate these correlations, mainly dealing with associations between acute viral infections and vascular events, thus eventually leading to a better understanding of mutual relationships between viruses and SLE.

Adult↗