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Biomedical subjects

P Rautenberg

Publications and source records attributed to P Rautenberg.

At least 19 recordsLinked to original sources

New LightCycler PCR for rapid and sensitive quantification of parvovirus B19 DNA guides therapeutic decision-making in relapsing infections.

Detection of parvovirus B19 DNA offers diagnostic advantages over serology, particularly in persistent infections of immunocompromised patients. A rapid, novel method of B19 DNA detection and quantification is introduced. This method, a quantitative PCR assay, is based on real-time glass capillary thermocycling (LightCycler [LC]) and fluorescence resonance energy transfer (FRET). The PCR assay allowed quantification over a dynamic range of over 7 logs and could quantify as little as 250 B19 genome equivalents (geq) per ml as calculated for plasmid DNA (i.e., theoretically >or=5 geq per assay). Interrater agreement analysis demonstrated equivalence of LC-FRET PCR and conventional nested PCR in the diagnosis of an active B19 infection (kappa coefficient = 0.83). The benefit of the new method was demonstrated in an immunocompromised child with a relapsing infection, who required an attenuation of the immunosuppressive therapy in addition to repeated doses of immunoglobulin to eliminate the virus.

Child↗

A prospective study of positive/negative ex vivo B-cell depletion in patients with chronic lymphocytic leukemia.

OBJECTIVE: Autologous peripheral blood stem cell (PBSC) transplantation is increasingly being used in patients with chronic lymphocytic leukemia (CLL). As the autografts are frequently contaminated with large numbers of tumor cells, we have prospectively investigated the feasibility and efficacy of ex vivo double purging of PBSC grafts in an open, nonrandomized, single-center phase I/II clinical study. MATERIALS AND METHODS: Twenty consecutive patients with poor-risk CLL underwent uniform stem cell mobilization with chemotherapy and granulocyte colony-stimulating factor (G-CSF). Double B-cell depletion of the harvested PBSC products was performed using immunomagnetic CD34(+) cell selection (Isolex300i Nexell, Irvine, CA) followed by a negative step with anti-CD19/20/23/37-labeled immunomagnetic beads. The purified PBSC were reinfused after myeloablative treatment with TBI/CY. RESULTS: A total of 25 separation runs was accomplished using collection products containing 3.4% (1.1-8.1) CD34(+) cells and 1.2% (0.1-42) CD19(+)CD5(+) CLL cells. After double selection, 33% (15-67) CD34(+) cells were recovered with a purity of 98.8% (89.1-99. 8). CLL cells were undetectable by high-resolution flow cytometry in 15 of 25 final products; median purging efficacy was 5 (4.1-6) log. The CD34(+) content of the 20 final grafts was 4.6 (2.2-6.5) x 10(6)/kg. Rapid and durable engraftment developed in all cases. With a median follow-up of 20 (6-29) months, 17 patients live in complete clinical remission, two have recurrent disease, and one patient died due to pulmonary embolism five months after transplant. Persistence of the leukemic clone on the molecular level was demonstrated by dot blotting with clone-specific CDR3 probes in an additional five patients. Serious or unexpected infectious complications did not occur. CONCLUSIONS: Positive/negative purging with the Isolex system allows preparation of highly purified CD34(+) fractions and up to six log of tumor cell depletion in patients with B-CLL and can be safety reinfused after myeloablative therapy without affecting hematopoietic engraftment.

Adult↗

Detection of CMV pneumonitis after lung transplantation using PCR of DNA from bronchoalveolar lavage cells.

BACKGROUND: Cytomegalovirus (CMV) is known as a common pathogen causing infections after lung transplantation. Rapid diagnosis of CMV infection is important for the initiation of a specific treatment. OBJECTIVE: Evaluation of methods for the rapid diagnosis of CMV pneumonitis. METHODS: The detection rates of CMV DNA in bronchoalveolar lavage (BAL) and bronchial brushes by polymerase chain reaction (PCR), of viral antigens (p52 and IE1) in BAL and of pp65 antigen in peripheral blood leukocytes were compared to the clinical status after lung transplantation. In 28 patients, 105 BAL, 96 blood samples and 14 brushes were analyzed. RESULTS: In 6 patients, a total of eight episodes of CMV pneumonitis occurred. Five of the 6 with positive CMV antigens in BAL (p52 or IE1) showed signs of CMV pneumonitis. All episodes of CMV pneumonitis were detected by the PCR of BAL cells. Fourteen samples positive for CMV pp65 antigen in blood were negative in BAL PCR. In these cases, no clinical signs of pulmonary CMV infection occurred. Overall sensitivity, specificity, and positive and negative predictive values for the detection of CMV pneumonitis by PCR of BAL cells were 100, 98.9, 88.9 and 100%, respectively. In brush samples, PCR did not provide additional information to the results of the PCR of BAL cells. CONCLUSIONS: PCR of DNA from BAL cells is suitable for reliable and rapid detection of CMV pneumonitis.

Adolescent↗

Rapid detection by reverse hybridization of mutations in the UL97 gene of human cytomegalovirus conferring resistance to ganciclovir.

UNLABELLED: BACKGROUND OF STUDY: Diseases due to human cytomegalovirus (HCMV) infection constitute a major threat in marrow and solid organ transplant recipients. Ganciclovir (GCV) is widely used in prophylaxis and pre-emptive therapy of active HCMV infection. Resistance to ganciclovir (GCV) may arise at variable frequency under GCV therapy and is conferred by mutations (i) in the UL97 gene (codons 460, 520, and 591-607) encoding a phosphotransferase which is essential for monophosphorylation of GCV and, to a lesser extent, (ii) in the UL54 gene coding for the DNA polymerase of HCMV. OBJECTIVE: The purpose was to develop a rapid assay to screen for emerging GCV resistance mutations in the UL97 gene of HCMV whereby avoiding virus isolation and nucleotide sequencing procedures. STUDY DESIGN: A nested PCR (nPCR) amplifying UL97 codons 450-672 was developed. Nested amplicons were subsequently sequenced directly. Oligonucleotides for use in a reverse hybridization assay were designed to detect relevant non-synonymous mutations at codons UL97 460, 520, 603 and 607. Strain AD169 served as a wild-type control. RESULTS: UL97-specific nPCR amplicons were obtained from 18 EDTA blood samples of ten transplant recipients receiving GCV for more than 30 days. In three consecutive samples from a single patient a GCV resistance mutation at codon 603 (C-->W) was detected. In addition, two out of four cell culture-adapted HCMV isolates known to exhibit GCV resistance in vitro revealed mutations at codons 460 (M-->V) and 607 (C-->Y), respectively. By reverse hybridization a discrimination of single nucleotide changes at codons 460, 520, 603 and 607 was possible whereby matching exactly the results of the nucleotide sequence analysis for all 23 amplicons examined. CONCLUSIONS: Reverse hybridization appeared to be a rapid and convenient alternative to nucleotide sequencing when screening the UL97 gene of HCMV for selected markers of GCV resistance.

Antiviral Agents↗

Evaluation of the AmpliSensor PCR and the SHARP signal detection system for the early prediction of symptomatic CMV infection in solid transplant recipients.

BACKGROUND: Cytomegalovirus (CMV) is associated with high morbidity and mortality in transplant patients. Specific antiviral treatment at an early stage of CMV infection may effectively ameliorate, but not eliminate CMV disease in these patients. Presently, the pp65 antigenemia test on peripheral leukocytes is the method most widely used for predicting and monitoring transplant patients for active CMV infection. Nucleic acid amplification methods are less well defined since they lack standardisation. OBJECTIVE: A seminested fluorometric PCR assay (AmpliSensor-CMV, BAG, Germany) and a one-step PCR with a signal-amplification step (SHARP, Abbott, Germany) specific for the fragments of the CMV UL 122 and UL 123 genes, respectively, were evaluated for the early diagnosis of CMV infection. DESIGN: A total of 26 recipients of heterogeneous solid organs were monitored prospectively for a median of 99 days after transplantation. By testing 371 clinical samples parallel with the pp65-antigen assay and IgM and IgG EIA assays the sensitivity, specificity, correlation and quantitation potential of both PCRs was evaluated. RESULTS: Eight out of 26 patients developed active CMV infection. A total of 48 samples of these patients exceeded a CMV-DNA load threshold of 15 genome equivalents/10(5) leukocytes (AmpliSensor-CMV) and 41 samples exceeded the critical cut-off for the SHARP system. The AmpliSensor PCR exceeded its threshold consistently before the clinical onset of CMV disease (median 8 days). There was very good agreement between symptomatic CMV infection in patients and AmpliSensor-PCR, SHARP PCR, and pp65-antigen results (kappa-coefficient > 0.900). IgM and IgG EIA showed moderate agreement (kappa-coefficient = 0.591 and 0.552, respectively). CONCLUSION: Both PCRs and pp65 antigen assay correlated significantly better with CMV disease than serodiagnosis. The AmpliSensor PCR allowed more precisely than the SHARP system a quantitative determination of viral load and an early and reliable prediction of active CMV infection. The use of AmpliSensor PCR may improve the diagnosis and management of active CMV infection in organ transplant recipients.

Adult↗

Autografting of highly purified peripheral blood progenitor cells following myeloablative therapy in patients with lymphoma: a prospective study of the long-term effects on tumor eradication, reconstitution of hematopoiesis and immune recovery.

In a prospective study, we have investigated CD34+ selection of peripheral blood progenitor cells (PBPC) for autotransplantation in patients with lymphoma. Twenty-six consecutive patients (10 follicular lymphomas, seven mantle cell lymphomas, seven B-CLL, two immunocytomas) were mobilized using chemotherapy plus G-CSF. Sufficient numbers of PBPC could be collected from 24 patients and were immunoselected with the semiautomated Isolex 300 (n = 17) or the fully integrated Isolex 300i (n = 7) devices. The selection products were assayed by PCR amplification of clonal CDRIII or t(14;18) rearrangements for residual tumor cell content. Residual disease and long-term hematopoietic and immune recovery were studied by assessing the following parameters at 3, 6, and 12 months post-transplant: CDRIII or t(14;18) PCR, platelet count, lymphocyte subsets, serum IgG, serum IgA, and measles titer. With the Isolex 300 device 26% (10-65) of input CD34+ cells were recovered with a median purity of 89.2% (49.4-98.9) after CD34+ selection. The Isolex 300i device allowed significantly better recoveries (46% (22-86)) and purities of CD34+ cells (98.8% (92.2-99.2)). The overall purging efficacy was 3.2 (0.6-5.1) log. Twenty patients have been reinfused with CD34+ selected grafts after myeloablative preparation. Rapid engraftment occurred in all patients. With a median follow-up of 28 (19-42) months, 14 patients are alive without clinical or molecular evidence of disease recurrence, whereas five have relapsed and one additional patient shows persistent presence of the disease-specific molecular marker without clinical progression. Cellular and serological parameters of hematopoietic and immune functions were largely normal at 12 months post-transplant including the measles titer which was present in all patients. Kinetics of immunohematopoietic recovery were similar to those of 12 control patients who had received unmanipulated PBPC during the same time period except for the recovery of CD4+ CD45RA+ T cells which was significantly delayed in the CD34+ group. During the first year post-transplant, transient monoclonal or oligoclonal gammopathies were observed in seven of 16 study patients. We conclude that CD34+ selection with the Isolex system allows preparation of highly purified CD34+ fractions and effective tumor cell depletion. The CD34+ products can be reinfused safely after myeloablative treatment and result in sustained hematopoietic and immune recovery. The fact that all patients retained their specific measles immunity suggests that myeloablative treatment with reinfusion of highly purified CD34+ PBPC is not immunoablative.

Adult↗

Rapid and sensitive detection of immunoglobulin M (IgM) and IgG antibodies against canine distemper virus by a new recombinant nucleocapsid protein-based enzyme-linked immunosorbent assay.

Canine distemper morbillivirus (CDV) infection causes a frequently fatal systemic disease in a broad range of carnivore species, including domestic dogs. In CDV infection, classical serology provides data of diagnostic and prognostic values (kinetics of seroconversion) and is also used to predict the optimal vaccination age of pups. Routine CDV serology is still based on time- and cost-intensive virus neutralization assays (V-NA). Here, we describe a new capture-sandwich enzyme-linked immunosorbent assay (ELISA) that uses recombinant baculovirus-expressed nucleocapsid (N) protein of a recent CDV wild-type isolate (2544/Han95) for the detection of CDV-specific antibodies in canine sera. Recombinant antigen was produced with high efficacy in Heliothis virescens larvae. The capture-sandwich ELISA enabled a clear-cut qualitative evaluation of the CDV-specific immunoglobulin G (IgG) and IgM serostatuses of 196 and 35 dog sera, respectively. Inter-rater agreement analysis (kappa = 0.988) indicated that the ELISA can be used unrestrictedly as a substitute for the V-NA for the qualitative determination of CDV-specific IgG serostatus. In an attempt to semiquantify N-specific antibodies, a one-step-dilution (alpha method) IgG-specific ELISA was implemented. Alpha values of >/=50% showed very good inter-rater agreement (kappa = 0.968) with V-NA titers of >/=1/100 50% neutralizing dose (ND50) as measured against the central European CDV wild-type isolate 2544/Han95 in canine sera originating from northern Germany. An ND50 titer of 1/100 is considered a threshold, and titers of >/=1/100 indicate a resilient, protective immunity. CDV N-specific antibodies of the IgM class were detected by the newly developed ELISA in 9 of 15 sera obtained from dogs with symptoms of acute distemper. In leucocytes of 5 of the 15 dogs (all of which were also IgM positive) CDV RNA was detected by reverse transcription (RT)-PCR. The recombinant capture-sandwich ELISA detecting N-specific antibodies of the IgG class provided superior sensitivity and specificity and thus represents a rapid and cost-effective alternative to classical CDV V-NA. By detection of specific IgM antibodies, the ELISA will be complementary to RT-PCR and V-NA in the diagnosis of acute distemper infections.

Animals↗

Evaluation of a novel immunoglobulin A capture enzyme immunoassay for diagnosis of cytomegalovirus infection in renal and heart transplant recipients.

In a retrospective cohort study of 68 organ transplant patients, the usefulness of a new commercial immunoglobulin A (IgA) antibody capture enzyme immunoassay (EIA) specific to human cytomegalovirus (CMV) for the early diagnosis of CMV disease was investigated. The results were compared with those obtained with the CMV pp65 antigen assay in peripheral blood leukocytes, an IgM immunoblot assay, and six other commercial EIAs. In 21 of 28 patients with CMV disease, the pp65 antigen assay and the immunoblot assay identified patients before the onset of disease more frequently than any other serological test method (17 and 13 patients, respectively; p = 0.0029). In patients at risk for primary CMV infection, the pp65 antigen assay was the only method that identified all patients prior to the onset of CMV disease (p = 0.008). For the other patients who were at risk for CMV infection, the pp65 antigen assay and the immunoblot assay detected infection before CMV disease more frequently than any other test system (p = 0.026). With respect to CMV disease, both immunoblotting and the pp65 antigen assay showed excellent sensitivity (100% and 89%, respectively). However, the specificity of the immunoblot was poor (41%), while the specificity of the pp65 antigen assay was reasonably good (68%). The IgA capture EIA showed moderate sensitivity (61%) and reasonable specificity (76%). In conclusion, the pp65 antigen assay, which detects pp65 antigen in leukocytes, is the method of choice for diagnosis of either primary or recurrent CMV infection. The specificity of the pp65 antigen assay was improved by additional testing for specific IgA and IgM antibodies (95% vs. 68%). The IgA assay is of limited value in renal and heart transplant patients, since it detected IgA antibodies only sporadically, and even then, too late for a timely therapy.

Adult↗

Molecular mechanisms of action of bacterial exotoxins.

Toxins are one of the inventive strategies that bacteria have developed in order to survive. As virulence factors, they play a major role in the pathogenesis of infectious diseases. Recent discoveries have once more highlighted the effectiveness of these precisely adjusted bacterial weapons. Furthermore, toxins have become an invaluable tool in the investigation of fundamental cell processes, including regulation of cellular functions by various G proteins, cytoskeletal dynamics and neural transmission. In this review, the bacterial toxins are presented in a rational classification based on the molecular mechanisms of action.

Animals↗

Human monoclonal antibodies recognize early and late viral proteins of human cytomegalovirus.

Human monoclonal antibodies directed against human cytomegalovirus were generated by fusion of in vitro stimulated human spleen lymphocytes from an HCMV-seropositive 53-year-old organ donor with the mouse myeloma cell line Ag8.653. Fourteen human/mouse hybridomas producing anti-cytomegalovirus IgG were screened by an ELISA technique and four selected clones have been established since March 1988, generating about 5-40 micrograms/24 h IgG per ml culture supernatant. Reference and local cytomegalovirus strains were stained by the antibodies without showing cross-reactivity to other herpes viruses. Three monoclonal antibodies, A4B4 (IgG11), A6B3 (IgG1k) and A6A2 (IgG1k), immunoprecipitated a 68 kDa early viral protein which appears during the infectious cycle, first in the nucleus (18-24 h) and then also in the cytoplasm (24-96 h) of infected cells. Inhibition of DNA replication restricted the detection of the 68 kDa viral protein to the nucleus of infected cells. Staining of unfixed infected cells showed that two of the antibodies bound at the surface of a few cells. The fourth monoclonal antibody A3C5 (IgG11) immunoprecipitated a 34/38 kDa late viral protein which appears in the nucleus (48-72 h) of infected cells. These antibodies enable us to study the human host response to human cytomegalovirus and to elucidate the functions of human antibodies especially in their interaction with the T-cell response.

Animals↗

Antigenemia, immunoblotting, and enzyme immunoassay for early diagnosis of cytomegalovirus infection in renal transplant patients.

Timely and rapid diagnosis of cytomegalovirus (CMV) infection is important for the management of transplant patients. We compared three serological assays, IgM immunoblot and IgG/IgM enzyme immunoassay (EIA), as well as the detection of CMV antigens in polymorphonuclear blood leukocytes (antigenemia), for their value in the early diagnosis of CMV infection. Thirty-one patients were monitored longitudinally for 3 months after renal transplantation. Laboratory documented CMV infection occurred in 20 patients. All of these cases showed a positive IgM immunoblot result that was confirmed by at least one of the other test assays (IgG EIA 19/20, antigenemia assay 13/20, and IgM EIA 12/20). All of the ten patients whose clinical picture was compatible with symptomatic CMV disease were positive for CMV infection according to IgM immunoblot and IgG EIA, nine were positive according to the antigenemia assay, and seven were positive according to IgM EIA. With reference to the temporal pattern, the antigenemia assay indicated CMV infection significantly earlier than the serological tests (P < or = 0.05). In symptomatic patients CMV antigen-positive leukocytes were, on the average, detected on the day of onset of symptoms, whereas detection by IgM immunoblot, IgG EIA, and IgM EIA followed 8, 13, and 14 days later, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Viral↗

Temporal patterns of immunoblot-reactive antibodies to cytomegalovirus in transplant recipients.

A total of 234 sera from 44 allograft recipients were compared with 12 sera from 9 immunocompetent patients with symptomatic cytomegalovirus (CMV) infection and with 20 sera of 20 healthy individuals with latent CMV infection. The presence of immunoreactive proteins was not associated with a specific transplant group or with different immunosuppressive regimens but rather with the kinetics of the immune response. Acute phase sera demonstrated early antibodies to proteins p38 and p48, followed by high or still rising antibodies to high molecular weight proteins, particularly p150, and their later decline to persistent lower levels. Convalescent phase sera were identified serologically by the transient appearance of IgG antibodies directed to 22-26 kDa polypeptides. Immunoreactive p44 was present in 85% of all patients with mild disease and in 40% of all patients with severe CMV disease. When tested in parallel, the immunoblot analysis was shown to be a more sensitive indicator of early CMV antibodies in allograft recipients than the ELISA technique.

Antibodies, Viral↗

Luminography--a new, highly sensitive visualization method for electrophoresis.

A highly sensitive method for protein visualization following electrophoresis and protein blotting was developed. The method is based on the light-emitting reaction of luminol and hydrogen peroxide catalyzed by horseradish peroxidase. The luminescent assay can be applied either to the native gel or after protein blotting, and it has a sensitivity two orders of magnitude higher than that achieved with chromogenic detection systems. Analogous to autoradiography the luminescent signal is recorded on an X-ray film with similar sensitivity. We present several examples of application emphasizing the general versatility of this innovative method.

Animals↗

Discrepant results of different tests for antibodies to hepatitis C in children with malignant diseases and in patients on renal replacement therapy.

The serostatus of hepatitis C in pediatric oncological patients and in individuals on renal replacement therapy was tested for circulating antibodies to the c100-3 recombinant antigen of hepatitis C. Upon prescreening, 12 of 82 patients in the pediatric oncological group, 6 of 108 renal transplant recipients, and 17 of 150 patients on chronic intermittent hemodialysis were repeatedly positive. Further testing of these 35 sera by supplemental test assays revealed conflicting data, mostly in the pediatric oncological group and in renal transplant recipients. Only in 10 sera were identical results obtained, suggesting that positive test results in some groups at risk have only a low predictive value.

Antigens, Viral↗

Inhibition of Clostridium difficile toxin A and B by 1,2-cyclohexanedione modification of an arginine residue.

Toxin A (enterotoxin) and toxin B (cytotoxin) of Clostridium difficile were both inactivated by the arginine specific reagent 1,2-cyclohexanedione. Molecular stability during the inactivation process was demonstrated by SDS-PAGE analysis showing the same migration rates for modified and unmodified forms of the 230 kDa toxin A and of the 250 kDa toxin B. Cytotoxicity of both toxins as well as mouse lethality of the enterotoxin were drastically decreased as a result of the arginine modification. The reaction followed pseudo-first-order kinetics. Analysis of the data suggested that modification of a single arginine residue was sufficient to abolish the activity of both toxins.

Animals↗

Influenza subtype-specific immunoglobulin A and G responses after booster versus one double-dose vaccination in hemodialysis patients.

The antibody response in hemodialysis patients was studied after one double dose of influenza vaccine versus one conventional dose plus a booster dose five weeks later. The influenza virus subtype specific IgA and IgG responses were recorded by means of an indirect immunofluorescence assay over a period of 20 weeks. Higher antibody titers, higher response rates and a higher rate of development of protective titers after the single double-dose vaccine indicated it was superior to the single dose/booster dose regimen. It is therefore suggested that hemodialysis patients are immunized with a higher dosage of influenza vaccine to achieve better protection rates.

Adult↗

Influenza subtype-specific IgA, IgM and IgG responses in patients on hemodialysis after influenza vaccination.

The isotype-specific antibody response to influenza vaccination in 36 patients undergoing chronic intermittent hemodialysis was analyzed by an influenza subtype-specific immunofluorescence test. The immune response was recorded at regular intervals over five months. On the basis of fourfold IgG titer rises as the classical parameter protection from infection was assumed to occur in more than 85% of healthy adults to each of the influenza antigens. In contrast, about 70% of the patients on hemodialysis had responded to influenza A H1N1 and H3N2 vaccines while only 50% of the patients on hemodialysis had responded to influenza B antigen. However, patients showed decreased rates and lower peak responses in IgA, IgM and IgG antibodies to influenza A and B antigens. Probably as a result of the underlying renal disease the different kinetics of antibody responses and the lower influenza specific immunoglobulin levels resulted in lower seroconversion rates in hemodialysis patients compared to those in healthy volunteers.

Adult↗