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Biomedical subjects

D Re

Publications and source records attributed to D Re.

At least 19 recordsLinked to original sources

B19 virus infection in renal transplant recipients.

BACKGROUND: B19 virus infection with persistent anaemia has been reported in organ transplant recipients. Detection of B19 virus DNA in serum is the best direct marker of active infection. OBJECTIVE: The present study evaluated the incidence and clinical role of active B19 virus infection in renal transplant recipients presenting with anaemia. STUDY DESIGN: Forty-eight such recipients were investigated by nested PCR on serum samples. The controls were 21 recipients without anaemia. Active HCMV infection was also investigated as a marker of high immunosuppression. RESULTS AND CONCLUSIONS: In 11/48 (23%) patients B19 virus DNA was demonstrated in serum versus only 1/21 (5%) of the controls. Ten of these 11 patients had already been seropositive at transplantation and active infection occurred in eight of them during the first 3 months after transplantation. The remaining patient experienced a primary infection 9 months after transplantation. Eight (73%) of these 11 patients displayed a concomitant HCMV infection and four (36%) showed increasing serum creatinine levels but none developed glomerulopathy; 3/11 (27%) recovered spontaneously from anaemia whereas 8/11 (73%) needed therapy. In conclusion, the relatively high occurrence (23%) of B19 virus infection in patients presenting with anaemia, suggests that it should be considered in the differential diagnosis of persistent anaemia in renal transplant recipients. Presence of the viral DNA should be assessed early from transplantation and the viral load should be monitored to follow persistent infection and better understand the relation between active infection and occurrence of anaemia, and to assess the efficacy of IVIG therapy and/or immunosuppression reduction in clearing the virus.

Anemia↗

Preclinical evaluation of the antiproliferative potential of STI571 in Hodgkin's disease.

STI571 is a selective tyrosine kinase inhibitor with proven therapeutic potential in malignancies expressing c-kit. A strong c-kit and stem cell factor expression was detected in the Hodgkin and Reed Sternberg cell line L1236, but not in 20 primary cases of classical Hodgkin's disease. Proliferation of L1236 cells was neither affected by addition of stem cell factor nor by neutralising anti-stem cell factor antibodies or STI571. Results suggest that patients with Hodgkin's disease may not benefit from therapy with STI571.

Benzamides↗

Genetic instability in Hodgkin's lymphoma.

Genetic instability is a characteristic feature of the malignant Hodgkin and Reed-Sternberg (HRS) cells in classical Hodgkin's lymphoma and the lymphocytic and histiocytic (L&H) cells in lymphocyte predominant Hodgkin's lymphoma. Genetic instability can be classified into four major categories: distinct DNA mutations (microsatellite instability); numerical aberrations (chromosomal instability); structural aberrations (translocation instability); and gains and losses of chromosomal regions. In Hodgkin's lymphoma (HL), HRS cells and L&H cells show somatically mutated clonally rearranged immunoglobulin genes, thus characterizing these cells genetically as germinal center B cells. These cells furthermore show mutations of oncogenes and tumor suppressor genes in some cases (p53, IkappaBalpha, CD95/Fas). They do not, however, display microsatellite instability, as they have a proficient mismatch repair machinery. In contrast, HRS and L&H cells frequently harbor recurrent but not specific numerical and structural aberrations as detected by classical cytogenetics and fluorescence in situ hybridization analysis. Results from molecular genetic studies using comparative genomic hybridization and allelotyping (LOH) indicate typical genetic patterns in HL with gains and losses of distinct chromosomal regions. In some instances, candidate genes possibly involved in the malignant transformation of HRS cells and L&H cells have been characterized (JAK2, c-REL, MDM2). In summary, using molecular genetics it might be possible in the near future to elucidate some of the complex genetic instabilities observed in HL.

Chromosome Aberrations↗

Whole-body positron emission tomography using 18F-fluorodeoxyglucose for initial staging of patients with Hodgkin's disease.

An accurate initial staging of patients with Hodgkin's disease (HD) is important for the evaluation of clinical stage and risk factors, which are crucial for the choice of an appropriate treatment. 18F-fluorodeoxyglucose (FDG) positron emission tomography (PET) is useful for detecting active tumor tissue in patients with lymphoproliferative diseases and may contribute to conventional staging methods in patients with HD. Twenty-two patients who presented with newly diagnosed HD underwent conventional staging methods including computed tomography (CT) as well as FDG PET. Lesions apparent in FDG PET and CT were correlated to each other. Seventy-seven lesions were observed either in PET or CT or in both. In 48 (62%) lesions PET and CT were both positive. In 20 (26%) sites, PET was positive and CT negative. Of 22 patients (18%) 4 were upstaged due to these positive PET findings, and as a result one patient received a different therapeutic regimen. PET failed to detect nine (12%) CT-positive sites in six patients. Statistically, these data are reflected by a sensitivity for PET and CT of 88% and 74%, respectively. Specificity of both imaging modalities was 100%. PET can contribute valuable information as an additional staging examination and led to an upstaging in some patients with primary HD. However, PET should not be used as the only imaging modality as it failed to detect CT-positive, active tumor regions in some cases.

Adult↗

Thoracic positron emission tomography using 18F-fluorodeoxyglucose for the evaluation of residual mediastinal Hodgkin disease.

Residual mediastinal masses are frequently observed in patients with Hodgkin disease (HD) after completed therapy, and the discrimination between active tumor tissue and fibrotic residues remains a clinical challenge. We studied the diagnostic value of metabolic imaging by 18F-fluorodeoxyglucose (FDG) positron emission tomography (PET) in detecting active mediastinal disease and predicting relapse. Twenty-eight HD patients with a residual mediastinal mass of at least 2 cm after initial therapy or after salvage chemotherapy were prospectively assigned to 29 examinations with FDG PET and were evaluated as 29 "subjects." Patients were monitored for at least 1 year after examination and observed for signs of relapse. Median follow-up was 28 months (range, 16 to 68 months). A PET-negative mediastinal tumor was observed in 19 subjects, of whom 16 stayed in remission and 3 relapsed. Progression or relapse occurred in 6 of 10 subjects with a positive PET, whereas 4 subjects remained in remission. The negative predictive value (negative PET result and remission) at 1 year was 95%, and the positive predictive value (positive PET result and relapse) was 60%. The disease-free survival for PET-negative and PET-positive patients at 1 year was 95% and 40%, respectively. The difference was statistically significant. A negative FDG PET indicates that an HD patient with a residual mediastinal mass is unlikely to relapse before 1 year, if ever. On the other hand, a positive PET result indicates a significantly higher risk of relapse and demands further diagnostic procedures and a closer follow-up.

Antineoplastic Combined Chemotherapy Protocols↗

Resistance to CD95-mediated apoptosis in breast cancer is not due to somatic mutation of the CD95 gene.

Resistance to CD95 (Apo-1/Fas)-mediated apoptosis is a typical feature of breast cancer cells. Recent studies identified deleterious mutations of the CD95 gene not only in a variety of B cell lymphomas but also in a number of solid tumor entities. Therefore, we amplified and sequenced selected regions of the CD95 gene from 48 breast cancer cases and 10 cell lines but no mutation was found. In the presence of both polymorphic alleles, loss of heterozygosity was excluded in 27 informative cases. We conclude, that relevant somatic mutations of the CD95 gene occur, if at all, at a low frequency and are not the primary cause for resistance to CD95-mediated apoptosis in breast cancer.

Apoptosis↗

Oct-2 and Bob-1 deficiency in Hodgkin and Reed Sternberg cells.

Hodgkin and Reed Sternberg (H-RS) cells represent the malignant cells in classical Hodgkin's disease. Although derived from germinal center B cells, they do not express surface immunoglobulin. This has been explained by the presence of crippling mutations within the immunoglobulin genes in numerous cases of Hodgkin's disease. As immunoglobulin gene expression in B cells requires an interaction between octamer sites and the transactivating factors Oct-2 and Bob-1, this study addresses the expression of the transcription factors Oct-2 and Bob-1 in H-RS cells. In Hodgkin's disease-derived cell lines, low levels of Oct-2 transcripts but no Oct-2 protein were detected. Transcripts of Bob-1, a B-cell-specific co-factor of Oct-2, could not be observed in these cell lines. Absence of Oct-2 and Bob-1 protein expression in primary H-RS cells was demonstrated by performing immunohistochemistry in 20 cases of classical Hodgkin's disease. H-RS cells stained negative for both proteins in all of the cases analyzed. In conclusion, absence of functional Oct-2 and Bob-1 cells represents a novel mechanism for immunoglobulin gene deregulation in H-RS cells. Lack of Oct-2 and Bob-1 points to a defect in transcription machinery in H-RS cells and is associated with lack of immunoglobulin gene expression in these cells.

3T3 Cells↗

Cell fusion is not involved in the generation of giant cells in the Hodgkin-Reed Sternberg cell line L1236.

The mechanism of multinucleated cell formation in Hodgkin's disease has not yet been elucidated. We asked whether the giant multinucleated cells of the H-RS cell line L1236 develop via fusion of the predominant smaller cells. As a positive control for the fusion assay, human B cells from the B-cell lymphoma cell line BJA-B were split into two fractions, stained with the fluorochromes CMTMR and CMFDA, respectively, and fused using the polyethylene glycol 1500 cell hybridization protocol. Double-stained cells indicating fusion of BJA-B cells were detectable for up to 5 days. In parallel, L1236 cells were split into two fractions, stained with the fluorochromes, and mixed. No double-stained L1236 cells were detected. The same result was obtained when using FACS-sorted small mononuclear L1236 cells. It is thus concluded that the large multinucleated cells of the monoclonal H-RS cell line L1236 have emerged by endomitosis rather than by spontaneous cell fusion.

Cell Culture Techniques↗

Deregulation of immunoglobulin gene transcription in the Hodgkin-Reed Sternberg cell line L1236.

Hodgkin-Reed Sternberg (H-RS) cells harbour clonal immunoglobulin gene (Ig) rearrangements in almost all cases of classical Hodgkin's disease but lack Ig gene expression. In the H-RS cell line L1236, a somatic mutation of the Ig heavy-chain gene promoter octamer motif has been described as a putative reason for absence of Ig gene expression. We addressed transcriptional activity of this mutated promoter by performing reporter gene studies and gel retardation assays. The results showed that the mutation outside the coding region of the rearranged Ig gene in L1236 cells leads to downregulation of Ig gene expression in H-RS cells.

Gene Rearrangement↗

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↗

Somatic mutation of the CD95 gene in human B cells as a side-effect of the germinal center reaction.

Somatic hypermutation specifically modifies rearranged immunoglobulin (Ig) genes in germinal center (GC) B cells. However, the bcl-6 gene can also acquire somatic mutations during the GC reaction, indicating that certain non-Ig genes can be targeted by the somatic hypermutation machinery. The CD95 gene, implicated in negative selection of B lymphocytes in GCs, is specifically expressed by GC B cells and was recently identified as a tumor suppressor gene being frequently mutated in (post) GC B cell lymphomas. In this study, the 5' region (5'R) and/or the last exon coding for the death domain (DD) of the CD95 gene were investigated in naive, GC, and memory B cells from seven healthy donors. About 15% of GC and memory, but not naive, B cells carried mutations within the 5'R (mutation frequency 2.5 x 10(-4) per basepair). Mutations within the DD were very rare but could be efficiently selected by inducing CD95-mediated apoptosis: in 22 apoptosis-resistant cells, 12 DD mutations were found. These results indicate that human B cells can acquire somatic mutations of the CD95 gene during the GC reaction, which potentially confers apoptosis resistance and may counteract negative selection through the CD95 pathway.

Apoptosis↗

Somatic mutations of the CD95 gene in Hodgkin and Reed-Sternberg cells.

Hodgkin and Reed-Sternberg (H/RS) cells in classical Hodgkin's disease (cHD) are thought to be derived from preapoptotic germinal center B cells. However, little is known about the transforming events rescuing the precursor of the H/RS cells from apoptosis. Given the importance of CD95 (Apo-1/Fas)-mediated apoptosis for negative selection within the germinal center, single micromanipulated H/RS cells from 10 cases of cHD were analyzed for somatic mutations within the CD95 gene. Three clonal mutations within the 5' regions were amplified from single H/RS cells in one case. From H/RS cells of another case, two mutations within the last exon coding for the death domain were detected. About half of these H/RS cells carried a monoallelic stop-codon; the remaining tumor cells harbored a monoallelic replacement mutation. Both mutations likely impair CD95 function. Because all these H/RS cells also bear clonal mutations inactivating the IkappaB alpha gene, the IkappaB alpha mutations occurred earlier than those of the CD95 gene in the sequence of transforming events leading to cHD. In conclusion, somatic mutations of the CD95 gene occur in a fraction of cHD cases and may favor the escape of the precursor of the H/RS clone from apoptosis.

Adult↗

Cultivated H-RS cells are resistant to CD95L-mediated apoptosis despite expression of wild-type CD95.

OBJECTIVE: In most cases of classic Hodgkin's disease (HD), Hodgkin and Reed-Sternberg (H-RS) cells clonally derive from germinal-center B cells. Within their rearranged immunoglobulin genes, somatic mutations rendering potentially functional immunoglobulin gene rearrangements nonfunctional were detected, indicating that H-RS cells do not express a B-cell receptor. Under physiologic conditions, these cells would undergo apoptosis within the germinal center. However, H-RS cells clonally expand, disseminate, and lead to clonal relapse of HD, indicating their resistance to induced programmed cell death. The underlying mechanism remains to be elucidated. MATERIALS AND METHODS: [corrected] Analysis of receptor-ligand interactions in primary H-RS cells is difficult to perform due to their scarcity in vivo and their low proliferation rate in vitro. Therefore, two [corrected] B-cellular H-RS cell lines (L1236 and L428) were used to test for the expression of CD95 by flow cytometry and for the induction of apoptosis after incubation with CD95L obtained from retrovirally transduced murine myoblasts. Sequence analysis of CD95 cDNA obtained from these H-RS cell lines was performed. RESULTS: Expression of CD95 on the cell surface was detected in both cell lines. However, after incubation with CD95L, the cells did not undergo apoptosis. To test whether mutations within the CD95 cDNA sequence caused resistance to apoptosis in H-RS cells, sequence analysis of CD95 cDNA obtained from L1236 and L428 was performed. In both cell lines, CD95 was not affected by somatic mutations. CONCLUSIONS: Our results indicate that the two H-RS cell lines L1236 and L428 are resistant to CD95-mediated apoptosis induced via CD95L, although wild-type CD95 is expressed. For further characterization of the mechanisms leading to prevention of apoptotic cell death in H-RS cells, it is necessary to determine impairments within the signaling cascade following CD95 activation.

Apoptosis↗

Guillain-Barré syndrome in a patient with non-Hodgkin's lymphoma.

We describe a case of Guillain-Barré syndrome (GBS) in a patient with non-Hodgkin's lymphoma (NHL). A 21-year-old woman with a newly diagnosed stage IV high-grade lymphoma (precursor T-cell NHL according to the R.E.A.L. Classification) developed flaccid quadriparesis and bilateral facial diplegia after three weeks of treatment with vincristine, daunorubicin, L-asparaginase and prednisolone. The clinical course and neurological examination were consistent with GBS. Despite treatment with intravenous immunoglobulins her neurological symptoms progressed. Plasmapheresis was therefore initiated followed by intravenous immunoglobulins. After partial remission of neurologic symptoms, induction chemotherapy with cyclophosphamide and cytarabine was continued without any further complication. Three months later, the lymphoma was in complete remission. GBS has been described in Hodgkin's disease and after bone marrow transplantation but is rare in NHL. In patients with NHL who develop neurological symptoms, drug toxicity and nervous system infiltration are the leading cause of neuropathology, but GBS should be considered in the differential diagnosis.

Adult↗

Lack of BCL10 mutations in Hodgkin's disease-derived cell lines.

The pathogenetic events leading to the malignant transformation of Hodgkin-Reed-Sternberg cells are unknown. As Hodgkin-Reed-Sternberg cells are resistant to CD95-mediated apoptosis and chromosomal aberrations involving the 1p22 region harbouring the proapoptotic BCL10 gene represent a recurrent event in Hodgkin's disease-derived cell lines, analysis of the BCL10 gene and its transcripts was performed. As transcription of wild-type BCL10 was detected in all Hodgkin's disease-derived cell lines analysed, alterations of the coding sequence of the BCL10 gene are unlikely to contribute to the malignant transformation of the Hodgkin-Reed-Sternberg cell.

Adaptor Proteins, Signal Transducing↗

Two cases of toxoplasmic encephalitis in patients with acute T-cell leukaemia and lymphoma.

Two cases of opportunistic cerebral infections in HIV-negative cancer patients due to chemotherapy induced immunosuppression are reported. A 61-year-old patient with low grade lymphoma (immunocytoma as referred to the Kiel classification) developed stereotactical biopsy proven toxoplasmic encephalitis 6 months after initiation of fludarabine treatment. The lymphoma had been diagnosed 8 years earlier and had been treated with several different regimens. In the second case, a 55-year-old patient developed neurological symptoms while in complete remission from acute T-cell leukaemia. The patient had been treated with a multidrug chemotherapy regimen including radiotherapy of the brain and intrathecal chemotherapy. When toxoplasmic encephalitis was bioptically diagnosed the patient was on maintenance chemotherapy with methotrexate and mercaptopurine for 12 months. The patients' characteristics and outcome are reported and the potential pathogenesis is discussed.

Antineoplastic Combined Chemotherapy Protocols↗

Progressive multifocal leukoencephalopathy after autologous bone marrow transplantation and alpha-interferon immunotherapy.

A patient with a stage IV mantle cell lymphoma (according to the REAL classification) was treated with high-dose chemotherapy and autologous bone marrow transplantation. One year later while on alpha-interferon immunotherapy she suffered from progressive loss of short-term memory and reported difficulties in recognizing objects. Magnetic resonance imaging (MRI) showed a vast ring-enhancing lesion of the left postcentral parietal area. Serial stereotactic biopsies disclosed progressive multifocal leukoencephalopathy without JC-virus in the cerebrospinal fluid. Therapy with subcutaneous interleukin-2 (IL-2) every other day and intrathecal cytarabine once a week was started. After 4 weeks the patient refused further treatment. Nevertheless her condition improved over the next 8 months and MRI scans showed a marked improvement in the lesions.

Antineoplastic Combined Chemotherapy Protocols↗