INTRODUCTION:Sepsis has been identified as a risk factor for human cytomegalovirus (CMV) reactivation in critically ill patients. However, the contribution of CMV reactivation on morbidity and mortality is still controversial. Therefore, we analyzed the incidence and impact of CMV reactivation on outcome in patients with severe sepsis.METHODS:In a prospective longitudinal double-blinded observational study, 97 adult nonimmunosuppressed CMV-seropositive patients with new onset of severe sepsis were included. Leukocytes, plasma and tracheal secretions were examined weekly for CMV-DNA by PCR. Tracheal secretions were additionally tested for HSV (Herpes Simplex Virus)-DNA. The influence of CMV-reactivation on the endpoints was analysed by Cox proportional-hazard regression analysis. Time-dependency was evaluated by landmark analysis.RESULTS:Six out 97 died and five were discharged from the hospital within 72 hours and were excluded of the analysis. CMV reactivation occurred in 35 of the 86 (40.69%) analysed patients. HSV infection occurred in 23 of the 35 (65.7%) CMV reactivators. In 10 patients CMV-plasma-DNAemia appeared with a DNA-content below 600 copies/ml in four cases and a peak amount of 2,830 copies/ml on average. In patients with and without CMV reactivation mortality rates were similar (37.1% vs. 35.3%, P = 0.861), respectively. However, in the multivariate COX regression analyses CMV reactivation was independently associated with increased length of stay in the ICU (30.0, interquartile range 14 to 48 vs. 12.0, interquartile range 7 to 19 days; HR (hazard ratio) 3.365; 95% CI (confidence interval) 1.233 to 9.183, P = 0.018) and in the hospital (33.0, interquartile range 24 to 62 vs. 16.0, interquartile range 10 to 24 days, HR 3.3, 95% CI 1.78 to 6.25, P < 0.001) as well as prolonged mechanical ventilation (22.0, interquartile range 6 to 36 vs. 7.5, interquartile range 5 to 15.5 days; HR 2.6,CI 95% 1.39 to 4.94; P < 0.001) and impaired pulmonary gas exchange (six days, interquartile range 1 to 17, vs. three, interquartile range 1 to 7, days in reactivators vs. non-reactivators, P = 0.038). HSV reactivation proved not to be a risk factor for these adverse effects.CONCLUSIONS:These data indicate an independent correlation between CMV reactivation and increased morbidity in the well-defined group of nonimmunosuppressed patients with severe sepsis, but CMV reactivation had no impact on mortality in this group with low CMV-DNA plasma levels. Thus, the potential harms and benefits of antiviral treatment have to be weighed cautiously in patients with severe sepsis or septic shock.
Background The development of infections with ganci-clovir (GCV)-resistant human cytomegalovirus (HCMV) remains a serious problem in recipients of stem cell or organ transplants. Nearly all GCV-resistant clinical isolates have mutations in the viral UL97 gene. The rapid detection of GCV-resistant HCMV infections is necessary and the relative proportions of wild-type and mutant strains are predictive for the efficiency of antiviral therapy. To date, genotypical resistance screening has been limited to restriction fragment length polymorphism (RFLP) and sequencing analyses. Here, we present a comprehensive real-time PCR approach for the detection of most frequent mutations in the UL97 gene associated with GCV resistance. Methods The laboratory strains AD169 and Towne, different wild-type isolates and plasmids constructed by site-directed mutagenesis and overlap extension with specific point-mutations in the UL97 gene were analysed by LightCycler PCR and compared with UL97 RFLP and sequencing analyses. Results A new and comprehensive set of LightCycler PCRs was created using specific hybridization probes with melting-point analysis for the relevant codons 594, 595, 603 and 607. Different wild-type isolates and plasmids containing specific UL97 mutations conferring GCV resistance were investigated in the real-time PCR assay. Total processing time was 80 min per assay, whereas combinations of RFLP and sequencing needed at least 3–4 days. Proportions of co-existing wild-type and mutant strains in mixed viral populations can be obtained. Conclusions We established a rapid real-time PCR approach for the detection of most frequent HCMV UL97 mutations associated with GCV resistance. Moreover, the method allows semiquantitative differentiation of the proportions of co-existing wild-type and mutant strains. This approach represents a new alternative for laborious RFLP analysis.
Cytomegalovirus (CMV) infection is a major complication after allogeneic stem cell transplantation (SCT). Valganciclovir (V-GCV) is an oral prodrug hydrolyzed to the anti-CMV drug ganciclovir (GCV). A randomized, multicenter, crossover, open-label clinical trial compared exposure to GCV after V-GCV and intravenous GCV (IV-GCV) as preemptive therapy for CMV disease in SCT. The primary objective was to compare exposure to GCV in patients with CMV infection stratified for intestinal graft-versus-host disease (I-GVHD). Secondary objectives were the assessment of safety and efficacy. Patients without I-GVHD had a higher exposure to GCV after V-GCV when compared with IV-GCV (area under the concentration-time curve from drug administration to last observed concentration after 12 hours [AUC(0-12)] 53.8 +/- 17.97 microg/mL . h [mean +/- SD] vs 39.5 +/- 13.91; P < .001; ratio of V-GCV/IV-GCV was 1.4; 90% confidence interval [CI], 1.2-1.5). This was also true in patients with I-GVHD grades I-II (AUC(0-12) 52.9 +/- 21.75 vs 33.1 +/- 12.97 mug/mL . h; P = .018; ratio 1.6; 90% CI, 1.3-2.0). Absolute bioavailability of GCV after V-GCV was approximately 75% in individuals with or without I-GVHD grades I-II. No severe GCV-related toxicity was observed and efficacy and safety was comparable (84-day follow-up). This supports the use of V-GCV in SCT, even in patients with I-GVHD grades I-II. Due to higher exposure after V-GCV compared with IV-GCV, patients should be monitored carefully for safety reasons.
This study investigates proteomic analysis of urinary samples as a non-invasive method to detect acute rejection of renal allografts. Capillary electrophoresis coupled to mass spectrometry (CE-MS) was used to analyze urinary samples in 19 patients with different grades of subclinical or clinical acute rejection (BANFF Ia to IIb), 10 patients with urinary tract infection and 29 patients without evidence of rejection or infection. A distinct urinary polypeptide pattern identified 16 out of 17 cases of acute tubolointerstitial rejection, but was absent in two cases of vascular rejection. Urinary tract infection resulted in a different polypeptide pattern that allowed to differentiate between infection and acute rejection in all cases. Potentially confounding variables such as acute tubular lesions, tubular atrophy, tubulointerstitial fibrosis, calcineurin inhibitor toxicity, proteinuria, hematuria, allograft function and different immunosuppressive regimens did not interfere with test results. Blinded analysis of samples with and without rejection showed correct diagnosis by CE-MS in the majority of cases. Detection of acute rejection by CE-MS offers a promising non-invasive tool for the surveillance of renal allograft recipients. Further investigation is needed to establish polypeptide patterns in vascular rejection and to explore whether changes in the urinary proteome occur before the onset of histologically discernible rejection.
Background. In clinical organ transplantation monoclonal antibodies (mAb) to different surface molecules of immunocompetent cells become integral parts of the immunosuppressive therapy. In this study, a mAb against the rat leukocyte common antigen CD45 (RT7) was tested for its immunosuppressive potency after a single perioperative injection. Methods. Binding and depleting properties of the anti-RT7 mAb were investigated by flow cytometry. In the fully major histocompatibility complex–disparate heart and skin transplantation models (LEW [RT1l] → LEW.1W [RT1u]), a single dose of anti-RT7 mAb (10 mg/kg) was administered intravenously (day −1). To characterize the long-term acceptance of heart allografts second set skin transplantation (day 100), mixed lymphocyte reaction studies (day 100) and reverse transcriptase-polymerase chain reaction analysis for intragraft cytokine expression (day 200) were performed. Results. The anti-RT7 mAb bound to nearly all hematopoietic lineage cells, but particularly T and NK cells, and profoundly depleted these cells in circulation and lymphoid tissues. Anti-RT7 mAb-treated rats showed long-term acceptance of heart allografts (>200 days; n=12), whereas untreated recipients rejected allografts by day 8 (n=6). In contrast to hearts, primary skin allograft survival was only moderately prolonged. Animals with stable heart allograft acceptance showed normal in vitro lymphocyte proliferation responses to donor and third party antigen. These recipients also acutely rejected second set donor-strain skin grafts without inducing rejection of persisting heart allografts. Reverse transcriptase-polymerase chain reaction analysis of intragraft cytokines showed up-regulation of Fas-ligand and IL-4 mRNA in long-surviving heart allografts. Conclusions. The findings demonstrate that a single injection of an anti-RT7 mAb in the rat can induce stable long-term acceptance of heart allografts by transient but profound T-cell depletion. Local immunoregulatory mechanisms seem to play a role for maintenance of long-term graft acceptance.
BACKGROUND/AIMS:Quantification of alpha 1-fetoprotein (AFP) mRNA in the blood using reverse transcriptase polymerase chain reaction (RT-PCR) could be a useful tool in monitoring the dynamics of minimal residual disease in patients with hepatocellular carcinoma (HCC). Since all available assays do not take into account the efficiency of cell separation, RNA extraction and reverse transcription, a competitive RT-PCR assay for quantification of AFP mRNA in relation to the housekeeping gene glyceraldehyde phosphate dehydrogenase (GAPDH) was established.PATIENTS AND METHODS:Peripheral blood of 22 patients and bone marrow aspirates of 11 patients with hepatocellular carcinoma was monitored perioperatively. Eighteen patients with other hepatic tumours or non-malignant hepatic diseases and 26 healthy blood donors served as controls. Messenger RNA contents were calculated relative to the content of GAPDH mRNA as an indicator of total cell count.RESULTS:Among HCC patients, 6 of 22 (26%) were positive for AFP mRNA before operation with values ranging from 2 ag/100 fg to 36 ag/100 fg GAPDH mRNA (mean 14). Among bone marrow samples, AFP mRNA was detectable in 5 of 11 (45%) cases, with 4 ag/100 fg to 23 ag/100 fg GAPDH (mean 9). However, AFP mRNA was also detectable in 3 of 18 (17%) control patients and in 2 of 26 (8%) healthy blood donors. Perioperative findings were highly variable.CONCLUSION:AFP mRNA is not a specific marker for circulating malignant hepatocytes. Whether definition of a cut-off level or the use of a multimarker-PCR will provide more useful data remains to be established.
With an organ transplant, hematopoietic donor cells are transferred to the recipient. To study the relevance of the resulting microchimerism for allograft acceptance, we analyzed a rat model of cyclosporine-induced tolerance for strongly incompatible heart allografts. Using a monoclonal antibody that detects a donor-specific CD45 allotype (RT7(a)), we selectively depleted donor leukocytes at different times after transplantation (days 0 or 18). Depletion was similarly effective at both times. However, only depletion on day 0 prevented tolerance induction and was associated with severe acute or chronic graft rejection. This indicates that passenger leukocytes have an essential immunomodulatory effect on the induction phase of allograft acceptance.