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Benjamin Stoelcker

Publications and source records attributed to Benjamin Stoelcker.

5 recordsLinked to original sources

Multiparameter immunofluorescence on paraffin-embedded tissue sections.

Immunohistochemical techniques have gained increasing importance in diagnostics and research. While formalin-fixed, paraffin-embedded human tissue retains excellent morphology, the detection of antigens by immunofluorescence in its sections and especially the demonstration of multiple simultaneous antibodies have limitations. Double immunofluorescence labeling of routinely processed paraffin sections has been described previously. The signal intensity observed after triple labeling has been reported to be significantly inferior to that obtained by application of double fluorochromes. The authors show multicolor labeling of three and four primary antibodies in routinely processed paraffin-embedded tissue sections using a standardized immunofluorescence technique. In addition, procedures to reduce background staining and to avoid nonspecific double staining are described.

Antibodies↗

Multitarget FISH and LOH analyses at chromosome 3p in non-small cell lung cancer and adjacent bronchial epithelium.

Multitarget fluorescence in situ hybridization (FISH; LAVysion, Vysis, Downers Grove, IL) targeting chromosomes 6p11-q11, 7p12, 8q24, and 5p15.2 was compared with results of microsatellite studies at chromosome 3p to identify molecular changes associated with tobacco use and tumor development in non-small cell lung cancer (NSCLC). Analyses were performed on 26 NSCLCs and matched benign bronchial epithelium; samples from 10 patients without NSCLC served as control samples. Significant molecular differences between tumor tissue and corresponding benign bronchi were found using FISH (P = .001) and loss of heterozygosity (LOH) analysis (P = .031). Bronchial epithelium from patients with NSCLC was genetically different from epithelium from patients without NSCLC in FISH analysis (P = .025). Receiver operating characteristic curve analysis revealed an optimal cutoff value of 5% atypical cells for bronchial epithelium. There was no statistical correlation with the patient's smoking history, and LOH analysis of bronchi did not differentiate between patients with and without NSCLC. Multicolor FISH analysis is able to detect a tumor-associated molecular field effect in bronchi adjacent to NSCLC.

Adult↗

Regulation of EMAP II by hypoxia.

Endothelial-monocyte-activating polypeptide II (EMAP II) is a proinflammatory cytokine and a chemoattractant for monocytes and granulocytes. We have previously shown that EMAP II mRNA is strongly expressed at sites of apoptosis in the mouse embryo and that the mature protein is cleaved from its cellular precursor (proEMAP II/p43) by caspase activation to become released from cells. Here we demonstrate in vivo that EMAP II mRNA expression is strongly increased in tumor necrosis factor alpha (TNF)-treated murine meth A fibrosarcomas and in B16 melanomas, especially in close proximity to areas of tissue necrosis. Furthermore, by means of confocal microscopy, high level expression of proEMAP II/p43 protein correlated predominantly with hypoxic but also with apoptotic cells. In vitro, EMAP II mRNA levels were not increased by hypoxia. However, high amounts of mature EMAP II protein were detected in the supernatants of hypoxic tumor cells. Unlike in apoptotic cells, neither a broad-range caspase inhibitor nor an inhibitor specific for the internal cleavage site was able to inhibit processing of proEMAP II/p43 to the mature EMAP II protein. In conclusion, these data suggest that hypoxia and apoptosis provide two alternative mechanisms of EMAP II generation by tumor cells.

Animals↗

Lymphotoxin-beta receptor immune interaction promotes tumor growth by inducing angiogenesis.

Growth of solid fibrosarcoma tumors in mice was inhibited by the release of a solublelymphotoxin-beta receptor inhibitor (LTbetaR-immunoglobulin fusion protein) from the tumor cells. Tumor growth arrest in mice deficient in the ligand LTalpha1beta2 demonstrated the requirement for activation of the LTbetaR on the tumor cells by host cell-derived LTalpha1beta2. Activation of the LTbetaR resulted in enhanced release of macrophage inflammatory protein-2. Blocked angiogenesis was revealed in LTbetaR inhibitor-producing tumor nodules by immunohistochemistry and in vivo microscopy. The growth arrest of LTbetaR inhibitor-producing fibrosarcomas was overcome by forced MIP-2 expression in the tumor cells. Thus, LTbetaR activation on tumor cells by activated host lymphocytes can initiate a novel proangiogenic pathway leading to organized tumor tissue development.

Animals↗

Requirement for tumor necrosis factor receptor 2 expression on vascular cells to induce experimental cerebral malaria.

Using tumor necrosis factor receptor type 2 (TNFR2)-deficient mice and generating bone marrow chimeras which express TNFR2 on either hematopoietic or nonhematopoietic cells, we demonstrated the requirement for TNFR2 expression on tissue cells to induce lethal cerebral malaria. Thus, TNFR2 on the brain vasculature mediates tumor necrosis factor-induced neurovascular lesions in experimental cerebral malaria.

Animals↗