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Biomedical subjects

Florian Weissinger

Publications and source records attributed to Florian Weissinger.

11 recordsLinked to original sources

Parathyroid-hormone-related-protein-associated hypercalcemia in a patient with CLL-type low-grade leukemic B-cell lymphoma.

Humoral hypercalcemia of malignancy is a common metabolic disturbance associated with solid tumors, but it also occurs in lymphoma patients. Among these, low grade B-cell lymphoma accounts for only few cases, in which secretion of parathyroid hormone-related protein (PTHrP) remains even exceptional. We report the very rare case of a patient with a CLL type low grade leukemic B-cell lymphoma showing PTHrP-related hypercalcemia without evidence of bone lesions. Using immunohistochemistry, we demonstrate the cytoplasmic expression of PTHrP by the lymphoma cells in the bone marrow obtained at the onset of hypercalcemia. We postulate a pathogenetic role of leukemic cell production and secretion of PTHrP in hypercalcemia in low grade leukemic B-cell lymphoma.

Aged↗

Bacterial infection of human hematopoietic stem cells induces monocytic differentiation.

Differentiation of hematopoietic stem cells (HSCs) can be influenced by different stimuli, including cytotoxic agents, certain cytokines, and contact with pathogens. Infection may result in dysregulation of these important progenitor cells and therefore interfere with the availability of blood cells. In this study we analyzed the effect of bacterial infection on HSCs concerning surface marker expression and cytokine release. Listeria monocytogenes and Yersinia enterocolitica accelerated maturation of hematopoietic progenitor cells along the myeloid lineage, as demonstrated by the upregulation of CD13, CD14, and costimulatory signals. By screening cytokine secretion, granulocyte-macrophage colony-stimulating factor, interleukin (IL)-6, IL-8, IL-10, IL-12, and tumor necrosis factor-alpha were found to be induced by bacterial infection. These data indicate that infection of HSCs with L. monocytogenes and Y. enterocolitica affects the differentiation of CD34(+) hematopoietic progenitors in vitro and may lead to secretion of cytokines that can influence the HSC differentiation capacity and immune response.

Antigens, CD↗

Myeloablative radiochemotherapy followed by autologous peripheral blood stem cell transplantation as first-line therapy in peripheral T-cell lymphomas: first results of a prospective multicenter study.

Peripheral T-cell lymphomas (PTCL) show a poor outcome following conventional chemotherapy. However, the role of high-dose therapy is still unclear. We initiated a prospective multicenter phase II study to evaluate the feasibility and the efficacy of myeloablative radiochemotherapy followed by autologous peripheral blood stem cell transplantation (APBSCT) as first-line treatment in PTCL. After 4-6 courses CHOP (cyclophosphamide, doxorubicine, vincristine, and prednisone) chemotherapy, an induction therapy with either the DexaBEAM (dexamethasone, carmustine, melphalan, etoposide, and cytarabine) or the ESHAP (etoposide, methylprednisolone, cytarabine, and cisplatin) protocol was administered. If a complete (CR) or a partial remission (PR) was achieved, myeloablative radiochemotherapy (hyperfractionated total body irradiation and high-dose cyclophosphamide) with APBSCT was performed. From June 2000 to November 2002, 30 patients (pts) were enrolled into the study. The two main PTCL subgroups included were PTCL not specified and angioimmunoblastic T-cell lymphoma (each n=12). In all, 21 of the 30 pts (70%) were transplanted. The main toxicities were myelosuppression and infections. The overall response rate after myeloablative therapy was 100% (20 CR, one PR). In total, 16 of 21 transplanted pts (76%) remained in CR at a median follow-up of 15 months (range, 6-32 months) from treatment start. Nine pts received no APBSCT mainly due to progressive disease. In conclusion, this first prospective PTCL-restricted study of frontline myeloablative radiochemotherapy with APBSCT shows feasibility and high efficacy. Our data suggest a substantial impact on outcome, however, longer follow-up is necessary to confirm survival benefit.

Adult↗

Central venous catheter (CVC)-related infections in neutropenic patients--guidelines of the Infectious Diseases Working Party (AGIHO) of the German Society of Hematology and Oncology (DGHO).

Catheter-related infections cause considerable morbidity in hospitalised patients. The incidence does not seem to be higher in neutropenic patients than in non- neutropenic patients. Gram-positive bacteria (coagulase-negative staphylococci, Staphylococcus aureus) are the most frequently cultured pathogens, followed by Candida species. In contrast, Gram-negative bacteria play only a minor role in catheter-related infections. Positive blood cultures are the cornerstone in the diagnosis of catheter-related infections, while local signs of infection are only rarely present. However, a definite diagnosis generally requires the removal of the catheter and its microbiological examination. The role plate method with semiquantitative cultures (Maki) has been established as standard in most laboratories. Other standard procedures use quantitative techniques (Sherertz, Brun-Buisson) and are more sensitive. For therapy of catheter-related infections, antibiotics are administered according to the susceptibility of the cultured organism. Routine administration of gylcopepticed antibiotics is not indicated. Removal of the catheter has to be considered in any case of suspected catheter-related infection and is obligatory in Staphylococcus aureus and Candida infections. Tunnel or pocket infection of long-term catheters is always an indication for removal. In the future, the rate of catheter-related infections in neutropenic patients may be reduced by the use of catheters coated with antimicrobial agents.

Catheterization, Central Venous↗

Antimicrobial therapy of febrile complications after high-dose chemo-/radiotherapy and autologous hematopoietic stem cell transplantation--guidelines of the Infectious Diseases Working Party (AGIHO) of the German Society of Hematology and Oncology (DGHO).

Infectious complications occur in 60-100% of patients following high-dose chemotherapy (HDC) and autologous hematopoietic stem cell transplantation (HSCT), and are commonly caused by Gram-negative aerobic bacteria (such as Pseudomonas aeruginosa and enterobacteriacea e) and Gram-positive cocci (such as enterococci, streptococci and staphylococci), which should be covered by empiric first-line antibiotic therapy. Less frequently, infections are caused by fungi and anaerobic bacteria, and initial therapy does not necessarily have to cover coagulase-negative staphylococci, oxacillin-resistant S. aureus (MRSA), anaerobic bacteria and fungi. Patients who already receive antibiotics and develop pulmonary infiltrates should immediately be treated with systemic antifungals. Patients with fever and diarrhea or other signs and symptoms of gastrointestinal or perianal infection should be treated with antibiotics covering anaerobic bacteria and enterococci. Clinically stable patients with skin infections or central venous catheter-related infections can be treated with standard empiric antibiotic therapy including a beta-lactam active against Pseudomonas aeruginosa with or without an aminoglycoside, and should only receive glycopeptides if they do not respond to first-line therapy within 72 hours, become clinically unstable, have severe mucositis, or when resistance against the empiric antibiotics is demonstrated. Recombinant hematopoietic growth factors should not be added routinely but may be considered in life-threatening situations such as invasive pulmonary mycoses or sepsis.

Anti-Bacterial Agents↗

Gammadelta T cells for immune therapy of patients with lymphoid malignancies.

There is increasing evidence that gammadelta T cells have potent innate antitumor activity. We described previously that synthetic aminobisphosphonates are potent gammadelta T cell stimulatory compounds that induce cytokine secretion (ie, interferon gamma [IFN-gamma]) and cell-mediated cytotoxicity against lymphoma and myeloma cell lines in vitro. To evaluate the antitumor activity of gammadelta T cells in vivo, we initiated a pilot study of low-dose interleukin 2 (IL-2) in combination with pamidronate in 19 patients with relapsed/refractory low-grade non-Hodgkin lymphoma (NHL) or multiple myeloma (MM). The objectives of this trial were to determine toxicity, the most effective dose for in vivo activation/proliferation of gammadelta T cells, and antilymphoma efficacy of the combination of pamidronate and IL-2. The first 10 patients (cohort A) who entered the study received 90 mg pamidronate intravenously on day 1 followed by increasing dose levels of continuous 24-hour intravenous (IV) infusions of IL-2 (0.25 to 3 x 106 IU/m2) from day 3 to day 8. Even at the highest IL-2 dose level in vivo, gammadelta T-cell activation/proliferation and response to treatment were disappointing with only 1 patient achieving stable disease. Therefore, the next 9 patients were selected by positive in vitro proliferation of gammadelta T cells in response to pamidronate/IL-2 and received a modified treatment schedule (6-hour bolus IV IL-2 infusions from day 1-6). In this patient group (cohort B), significant in vivo activation/proliferation of gammadelta T cells was observed in 5 patients (55%), and objective responses (PR) were achieved in 3 patients (33%). Only patients with significant in vivo proliferation of gammadelta T cells responded to treatment, indicating that gammadelta T cells might contribute to this antilymphoma effect. Overall, administration of pamidronate and low-dose IL-2 was well tolerated. In conclusion, this clinical trial demonstrates, for the first time, that gammadelta T-cell-mediated immunotherapy is feasible and can induce objective tumor responses.

Adult↗

Gene transfer in purified human hematopoietic peripheral-blood stem cells by means of electroporation without prestimulation.

Gene transfer in hematopoietic stem cells (HSCs) is an important tool, exploring regulation of the hematopoietic system and understanding the development and expansion of malignant cell clones. It is also a mandatory step for gene therapy of hematopoietic disorders. Although retroviral transduction of HSCs is effective, prestimulation of cells is generally required, also inducing differentiation of HSCs. Furthermore, the risk of viral recombination and insertional mutagenesis cannot be ruled out. Potential advantages of nonviral transfection are biosafety and easy management. However, experience in nonviral methods for transfecting peripheral-blood stem cells (PBSCs) is limited. To avoid differentiation, we evaluated the efficiency of gene transfer by means of electroporation without cytokine prestimulation. Compared with prestimulated (stem-cell factor, granulocyte-colony-stimulating factor, granulocyte-macrophage colony-stimulating factor, interleukin-3, interleukin-6, erythropoietin, and monoclonal antibody to transforming growth factor-beta), transfection of thawed nonstimulated PBSCs was equally efficient, with a median transfection rate of 3.7%, transfection efficiency of 0.8%, and survival of 19.5% (n = 5). With freshly isolated HSCs, the rate of transfected cells could be increased to a median of 27.0% (range 8.3%-31.0%), transfection efficiency of 6.9% (range 4.5%-12.6%), and survival of 43% (range 22%-64%) (n = 5). However, the percentage of transfected cells declined with time; almost no cells were detectable by day 11. One cause for the lack of long-term expression of the heterologous gene in this system was induction of apoptosis in transgenic PBSCs, shown by up-regulation of CD95 (FAS antigen).

ADP-ribosyl Cyclase↗

Interaction of human hematopoietic stem cells with bacterial pathogens.

Primitive hematopoietic stem cells (HSCs) in the bone marrow are rare pluripotent cells with the capacity to give rise to all lineages of blood cells. During commitment, progenitor cells are composed mainly of cells with the potential for differentiation into 1 or 2 lineages. This commitment involves the acquisition of specific growth factor receptors and the loss of others. Viral and bacterial infections may lead to profound disturbance of hematopoiesis, which is possibly due to different susceptibility of HSCs to infectious agents. Here, we show that quiescent human HSCs are fully resistant to infection by the intracellular bacteria, Listeria monocytogenes and Salmonella enterica serovariation typhimurium, and the extracellular pathogen Yersinia enterocolitica. During myeloid/monocytic differentiation induced by incubation with stem cell factor, thrombopoietin, and flt-3 ligand, partially differentiated HSCs emerge, which readily take up these pathogens and also latex beads by macropinocytosis. After further monocytic differentiation, bacterial uptake by macropinocytosis still occurs but internalization of the pathogens is now mainly achieved by receptor-mediated phagocytosis. These results suggest that in the case of HSCs uptake mechanisms for bacteria develop sequentially.

Antigens, CD34↗

Intrinsic optical imaging reveals regionally different manifestation of spreading depression in hippocampal and entorhinal structures in vitro.

The spatiotemporal features of spreading depression (SD) were analyzed in vitro by using combined hippocampal-entorhinal cortex slices. SDs were induced by microinjection of 1 M KCl in the stratum radiatum of the CA1 region of the hippocampus. Measurements of extracellular field potentials, extracellular space (ECS) volume changes and intrinsic optical signal changes were combined to study SD features in different regions of the slice. Each SD was associated with a pronounced shrinkage of the extracellular space (ECS) volume and a decrease in light transmittance. The beginning of the optical signal change occurred simultaneously with the electrographic onset as measured with extracellular microelectrodes but outlasted the dc shift for tens of seconds. The amplitude of the intrinsic optical signal change displayed marked regional variations with greatest changes of 12% in cortical regions. The signal amplitudes were considerably lower in hippocampal regions. The analysis of spread patterns revealed two types of waves: fully propagated waves spreading from CA1 all the way to the temporal neocortex and abortive waves that ceased earlier. The spread velocities displayed pronounced regional differences with highest velocities of 5.4 +/- 0.3 mm/min in the area CA3 of the hippocampal formation and lowest velocities of 2.7 +/- 0.1 mm/min in cortical regions.

Animals↗

Seizure spread through the life cycle: optical imaging in combined brain slices from immature, adult, and senile rats in vitro.

The semiology of epileptic seizures changes during the lifetime. Hence, it can be assumed that age-related changes in brain plasticity influence the patterns of seizure onset, spread and propagation velocity. We employed the 4-aminopyridine model of epilepsy to study seizure-like events in vitro. Combined entorhinal cortex-hippocampus brain slices from juvenile (10-13 days), adult (2-3 months), and senile (24-27 months) rats were examined using electrophysiological recordings and imaging of intrinsic optical signals. In the juvenile group, seizure onset was multifocal in all slice regions including the hippocampus. Onset in adult animals was confined to the entorhinal cortex and to neocortical regions. In slices from senile animals, there was a preponderance of seizure onsets in the neocortex. Spread patterns were highly variable in the juvenile group and became gradually more monomorph with increasing age. Propagation velocities were highest in the adult group, with maximum values of 1.51 +/- 0.68 mm/s. In the juvenile group, they amounted to 0.97 +/- 0.39 mm/s, and to 1.18 +/- 0.42 mm/s in senile slices. The results of this study indicate that age-related changes in brain plasticity profoundly affect spread patterns, which may contribute to the clinically observed changes in seizure semiology during early childhood, adulthood and senescence.

Aging↗