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Biomedical subjects

A Böhme

Publications and source records attributed to A Böhme.

At least 19 recordsLinked to original sources

Diagnosis of invasive aspergillosis and mucormycosis in immunocompromised patients by seminested PCR assay of tissue samples.

Aspergillosis and mucormycosis are the most common mold infections in patients with hematological malignancies. Infections caused by species of the genus Aspergillus and the order Mucorales require different antifungal treatments depending on the in vitro susceptibility of the causative strain. Cultures from biopsy specimens frequently do not grow fungal pathogens, even from histopathologically proven cases of invasive fungal infection. Two seminested PCR assays were evaluated by amplifying DNA of zygomycetes and Aspergillus spp. from organ biopsies of 21 immunocompromised patients. The PCR assays correctly identified five cases of invasive aspergillosis and six cases of mucormycosis. They showed evidence of double mold infection in two cases. Both assays were negative in five negative controls and in two patients with yeast infections. Sequencing of the PCR products was in accordance with culture results in all culture-positive cases. In six patients without positive cultures but with positive histopathology, sequencing suggested a causative organism. Detection of fungal DNA from biopsy specimens allows rapid identification of the causative organism of invasive aspergillosis and mucormycosis. The use of these PCR assays may allow guided antifungal treatment in patients with invasive mold infections.

Adult↗

Diagnosis of invasive fungal infections in hematology and oncology--guidelines of the Infectious Diseases Working Party (AGIHO) of the German Society of Hematology and Oncology (DGHO).

Invasive fungal infections are a primary cause of morbidity and mortality in patients with hematological malignancies. Establishing a definite diagnosis of invasive fungal infection in febrile neutropenic patients is particularly challenging and time-consuming, but a delay of antifungal treatment leads to higher mortality. This situation has lead to the strategy of initiation "empirical" antifungal therapy prior to the detection of fungi. Meanwhile, improvements in diagnostic procedures are achieved, especially with imaging techniques and non-culture based methods which include antigen-based assays, metabolite detection and molecular detection of fungal DNA from body fluid samples using conserved or specific genome sequences. The AGIHO presents recommendations for the diagnosis of invasive fungal infections with risk-adapted screening concepts for the neutropenic and febrile episodes of patients with hemato-oncological disorders.

Hematology↗

Antimicrobial therapy of unexplained fever in neutropenic patients--guidelines of the Infectious Diseases Working Party (AGIHO) of the German Society of Hematology and Oncology (DGHO), Study Group Interventional Therapy of Unexplained Fever, Arbeitsgemeinschaft Supportivmassnahmen in der Onkologie (ASO) of the Deutsche Krebsgesellschaft (DKG-German Cancer Society).

Cytostatic chemotherapy of hematological malignancies is often complicated by neutropenia, which increases the risk of infections, especially if the neutrophil count is below 500/microl. Frequently, fever is the first, and in most patients the only, sign of an infection. Unexplained fever is defined as follows: temperature of >/=38.3 degrees C or >/=38.0 degrees C for at least 1 h, or measured twice within 12 h, if the neutrophil count is <500/microl or <1000/microl with predicted decline to 500/microl. Different risk categories can be identified according to the duration of neutropenia: low risk </=5 days, intermediate risk 6-9 days, high risk >/=10 days. An empirical mono- or duotherapy with antipseudomonal and antistreptococcal agents should be initiated immediately. In the low risk patient group, oral therapy with cipro-, levo-, or ofloxacin combined with amoxicillin/clavulanic acid is permissible. For standard and high risk patients, monotherapy can be carried out with either ceftazidime, cefepime, piperacillin with tazobactam or a carbapenem. In duotherapy, a single dose of an aminoglycoside is combined with acylaminopenicillin or a cephalosporin of the third or fourth generation. The addition of glycopeptides in empirical therapy should only be considered in the presence of severe mucositis, or if a catheter-associated infection is suspected. If fever persists after 72-96 h of first-line therapy with antibiotics, the regimen should be modified (with the exception of e.g. coagulase-negative staphylococci infections, because these infections take longer to respond). Intermediate risk patients should additionally receive an aminoglycoside after monotherapy (penicillin or a cephalosporin). If a carbapenem was administered for monotherapy, this can be followed by a quinolone and/or a glycopeptide. In the high risk group, the same modifications should be made as in the intermediate risk group but with additional systemic antifungal treatment. In the presence of unexplained fever, fluconazole can be administered at first, but if this fails, amphotericin B (conventional or liposomal), itraconazole, voriconazole or caspofungin should be started. After defervescence to <38 degrees C, treatment should be continued for 7 days if the neutrophil count is <1000/microl, and for 2 days if the neutrophil count is >1000/microl.

Anti-Bacterial Agents↗

Effective treatment with rituximab in a patient with refractory prolymphocytoid transformed B-chronic lymphocytic leukemia and Evans syndrome.

A 65-year-old male who had been diagnosed as having chronic lymphocytic leukemia (CLL) stage Rai 0 three years previously presented in October 1998 with progressive disease (splenomegaly, increasing lymphocytosis: 30/nl) and 50% prolymphocytes in his peripheral blood. The patient was refractory to initial treatment with fludarabine and epirubicin, and 2-chlorodeoxyadenosine. Additionally, the patient developed Evans syndrome. Therapy with cyclophosphamide, vincristine, and prednisone lead to an improvement of hemolysis, but the patient remained thrombocytopenic. Subsequently, lymphocytes further increased to 135/nl, and cyclophosphamide 3 g/m2 was again given but without effect on the peripheral lymphocyte count. At this stage, therapy with rituximab 375 mg/m2 four times weekly was initiated. The platelet count normalized within 1 week after the first dose of rituximab, and the lymphocyte count dropped within 2 months to 1.1/nl. This case demonstrates that patients with prolymphocytoid transformed B-CLL refractory to purine analogs and alkylating agents and autoimmune-hemolytic disease can effectively and safely be treated with rituximab and indicates that an investigation of antibody therapy is warranted in this patient group.

Aged↗

Diagnosis of disseminated zygomycosis using a polymerase chain reaction assay.

Invasive pulmonary zygomycosis is an uncommon opportunistic infection in patients with haematological malignancies. Clinical manifestations are in distinguishable from the more frequent invasive aspergillosis. Standard diagnostic methods like culture and microscopy from respiratory secretions have a low diagnostic sensitivity. A case in which proven invasive pulmonary zygomycosis was confirmed using a panfungal polymerase chain reaction assay in blood is presented. Since zygomycosis requires more aggressive treatment than aspergillosis (high-dose amphotericin B and surgical intervention), the polymerase chain reaction assay may improve the outcome of these often fatal infections by guiding the therapeutic approach through an early, non-invasive diagnosis.

Adult↗

[Therapy of invasive organ mycoses in patients with systemic hematologic diseases].

Fungal infections have increased substantially in patients with acute leukemia as well as in patients receiving allogeneic stem cell transplantations. Most frequently Aspergillus ssp. and Candida ssp. are observed. Despite the recent introduction of new azoles and lipid-based formulations of amphotericin B, there are few randomized, controlled studies on the use of antifungal drugs in patients with proven invasive fungal infections. Conventional Amphotericin B is considered gold standard for the treatment of invasive fungal infections, however is limited by nephrotoxicity and infusion related adverse events. Treatment with azoles, e.g. fluconazole, itraconazole or voriconazole is generally well-tolerated. Fluconazole, however, has no activity against Aspergillus ssp. An additional serious problem is an emerging resistance of non-albicans species to fluconazole. Lipid-formulations of amphotericin B seem to be attractive alternative, but considerably higher medical costs limit broader application of lipid formulations of amphotericin B. The current strategies for the treatment of documented fungal infections as well as the role of new antifungal agents are discussed in this review.

Antifungal Agents↗

Cluster of pulmonary infections caused by Cunninghamella bertholletiae in immunocompromised patients.

Cunninghamella bertholletiae is a rare cause of pulmonary mucormycosis. We describe a cluster of invasive pulmonary infections caused by C. bertholletiae in 4 immunocompromised patients that occurred during a 2-year period at 1 center. Three of the patients were receiving antifungal prophylaxis with itraconazole. Presenting symptoms were fever unresponsive to antibacterial chemotherapy, hemoptysis, and infiltrates on chest radiograms. Three patients were treated with liposomal amphotericin B. Only 1 patient survived.

Aged↗

Early detection of aspergillus infection after allogeneic stem cell transplantation by polymerase chain reaction screening.

Invasive aspergillosis (IA) has become a major cause of mortality in patients after allogeneic stem cell transplantation. To assess the potential of prospective polymerase chain reaction (PCR) screening for early diagnosis of IA, 84 recipients of an allogeneic stem cell transplant were analyzed with the investigators blinded to clinical and microbiologic data. Of 1193 blood samples analyzed, 169 (14.2%) were positive by PCR. In patients with newly diagnosed IA (n=7), PCR positivity preceded the first clinical signs by a median of 2 days (range, 1-23 days) and preceded clinical diagnosis of IA by a median of 9 days (range, 2-34 days). Pretransplantation IA (relative risk [RR], 2.37), acute graft-versus-host disease (RR, 2.75), and corticosteroid treatment (RR, 6.5) were associated with PCR positivity. The PCR assay revealed a sensitivity of 100% (95% confidence interval [CI], 48%-100%) and a specificity of 65% (95% CI, 53%-75%). None of the PCR-negative patients developed IA during the study period. Thus, prospective PCR screening allows for identification of patients at high risk for subsequent onset of IA.

Adolescent↗

Treatment of Adult ALL according to protocols of the German Multicenter Study Group for Adult ALL (GMALL).

The German Multicenter Study Group for Adult Acute Lymphoblastic leukemia (GMALL) has conducted 5 consecutive trials with more than 3000 patients since 1981. This article provides an overview on aims, treatment concepts, and results of these studies. It includes brief summaries on the development of prognostic models within the GMALL group and on approaches for prophylaxis of CNS relapse, and it summarizes specific treatment concepts for mature B-lineage acute lymphocytic leukemia.

Adolescent↗

Prospective screening by a panfungal polymerase chain reaction assay in patients at risk for fungal infections: implications for the management of febrile neutropenia.

Invasive fungal infections are a major cause of mortality in neutropenic cancer patients. To determine whether a polymerase chain reaction (PCR)-based assay enabled the identification of patients at risk for invasive fungal infections, a prospective monitoring once per week was performed during 92 neutropenic episodes in patients receiving chemotherapy for acute leukaemia or high-dose therapy followed by allogeneic or autologous stem cell transplantation, with the investigators blinded to clinical and microbiological data. PCR positivity was documented in 34 out of 92 risk episodes. All patients developing proven invasive fungal infection were found PCR positive, and PCR was found to be the earliest indicator of invasive fungal infection preceding clinical evidence by a mean of 5.75 d (range 0-14 d). In febrile neutropenic patients without a prior history of invasive fungal infection, a sensitivity of 100% and a specificity of 73% of the PCR assay for the development of proven or probable invasive fungal infection was documented. In conclusion, panfungal PCR performed prospectively once a week enabled the identification of patients at high risk for invasive fungal infections.

Acute Disease↗