PubMed Health⌕ Search

Biomedical subjects

Robert Loewe

Publications and source records attributed to Robert Loewe.

6 recordsLinked to original sources

Dimethylfumarate impairs melanoma growth and metastasis.

Dimethylfumarate (DMF) inhibits signals transmitted by Rel proteins and is used for the treatment of inflammatory skin diseases such as psoriasis, but potential effects of DMF on tumor progression have yet not been analyzed. We show that DMF reduced melanoma growth and metastasis in severe combined immunodeficient mouse models. To identify targets of DMF action, we analyzed mRNA expression in DMF-treated melanomas by gene chip arrays. Using BiblioSphere software for data analysis, significantly regulated genes were mapped to Gene Ontology terms cell death, cell growth, and cell cycle. Indeed, we found that DMF inhibited proliferation of human melanoma cells A375 and M24met in vitro. The cell cycle was arrested at the G(2)-M boundary. Moreover, DMF was proapoptotic, as shown by cell cycle analysis and by Annexin V and Apo2.7 staining. These results were confirmed in vivo. DMF reduced proliferation rates of tumor cells as assessed by Ki-67 immunostaining and increased apoptosis as assessed by terminal deoxyribonucleotidyl transferase-mediated dUTP nick end labeling staining. In conclusion, DMF is antiproliferative and proapoptotic and reduces melanoma growth and metastasis in animal models.

Animals↗

EMPACT syndrome.

BACKGROUND: Seizure prophylaxis with phenytoin is a common measure in oncologic patients with brain metastases. In these patients, generalized severe adverse drug reactions such as erythema multiforme (EEM) may occur. However, in a subgroup of patients with brain radiation therapy, EEM-like lesions develop particularly in the radiation field. Most recently, the acronym EMPACT (Erythema Multiforme associated with Phenytoin And Cranial radiation Therapy) was proposed to specifically describe this syndrome. PATIENT/METHOD: Here, we report on EMPACT syndrome in a 46-year-old woman. Therapeutic measures included seizure prophylaxis with phenytoin and total brain radiation therapy of brain metastases from bronchial carcinoma. Three weeks after introduction of phenytoin, the patient presented with EEM-like skin lesions restricted to the original radiation field and facial mucocutaneous involvement. After a few days, the rash spread to the upper part of the body. She was also in poor general condition. RESULTS: The immediate cessation of phenytoin therapy, combined with administration of systemic corticosteroids and high dose immunoglobulins along with intensive local treatment and pain medications, resulted in complete resolution of the skin eruption. Patch testing to phenytoin was positive after 72 hours. CONCLUSION: EMPACT should be classified as an specific entity among the EEM-like drug reactions as it only appears after radiotherapy and seizure prophylaxis with the anticonvulsant phenytoin. We propose including specific type IV-sensitization to phenytoin into the definition of EMPACT.

Adrenal Cortex Hormones↗

The non-receptor-associated tyrosine kinase Syk is a regulator of metastatic behavior in human melanoma cells.

Melanoma is one of the most aggressive neoplastic transformations and characterized by a high metastatic potential. The current study was performed to assess the impact of "spleen tyrosine kinase" (Syk), a non-receptor-associated tyrosine kinase, on growth and metastatic behavior of melanoma cells in vitro and in a severe combined immunodeficient (SCID)-mouse/human-melanoma xenotransplantation model in vivo. Syk was expressed in melanocytes but was found to be downregulated in melanoma cells. Vector-driven expression of Syk in two different melanoma cell lines did not influence growth speed, but significantly reduced the invasive growth potential of both cell lines in a Matrigel assay in vitro. In a SCID-mouse/human melanoma xenotransplantation model, Syk expressing Mel-Juso cells exhibited delayed and reduced tumor growth. After intravenous as well as subcutaneous injection of tumor cells, Syk-transfected cells formed significantly fewer metastatic tumor lesions than control cells. The presented data define Syk as a novel regulator of metastatic behavior of melanoma cells.

Animals↗

IL-3 induces expression of lymphatic markers Prox-1 and podoplanin in human endothelial cells.

Factors determining lymphatic differentiation in the adult organism are not yet well characterized. We have made the observation that mixed primary cultures of dermal blood endothelial cells (BEC) and lymphatic endothelial cells (LEC) grown under standard conditions change expression of markers during subculture: After passage 6, they uniformly express LEC-specific markers Prox-1 and podoplanin. Using sorted cells, we show that LEC but not BEC constitutively express IL-3, which regulates Prox-1 and podoplanin expression in LEC. The addition of IL-3 to the medium of BEC cultures induces Prox-1 and podoplanin. Blocking IL-3 activity in LEC cultures results in a loss of Prox-1 and podoplanin expression. In conclusion, endogenous IL-3 is required to maintain the LEC phenotype in culture, and the addition of IL-3 to BEC appears to induce transdifferentiation of BEC into LEC.

Antibodies, Blocking↗

BRAF kinase gene V599E mutation in growing melanocytic lesions.

Mutations in the BRAF-gene are found in benign and malignant melanocytic lesions, >90% being a V599E mutation. This mutation results in constitutively active kinase function and increased colony formation in vitro. The biological impact of this mutation in vivo is still debated. To address this question, we used our digital epiluminescence image archive and retrospectively selected 49 melanocytic lesions, which did not meet the criteria of melanoma at the initial presentation. Mean 12 months later these lesions were excised because of increased size or changed structure and BRAF(V599E) mutations were analyzed. Among 36 growing lesions, BRAF(V599E) mutations were found in 16 (11 melanomas and 5 nevi). Among 13 lesions with structural changes, BRAF(V599E) mutations were found in 4 (3 melanomas and 1 nevus). Thirty-five randomly selected additional lesions with no changes during follow-up served as controls, all nevi by histology, and two of them showed a BRAF(V599E) mutation. Statistics revealed odds for the presence of the BRAF(V599E) mutation being seven times higher in lesions with structural changes and 13 times higher in growing lesions as compared with lesions without changes. This raises the question if the V599E mutation determines lesions at risk developing into melanoma and if not, what are the mechanisms controlling growth stop in benign lesions?

Adult↗

Dimethylfumarate inhibits TNF-induced nuclear entry of NF-kappa B/p65 in human endothelial cells.

Fumaric acid esters, mainly dimethylfumarate (DMF), have been successfully used to treat psoriasis. Based on previous observations that DMF inhibited expression of several TNF-induced genes in endothelial cells, we wished to explore the molecular basis of DMF function in greater detail. In first experiments we analyzed DMF effects on tissue factor expression in human endothelial cells in culture, because tissue factor is expressed by two independent sets of transcription factors, by NF-kappa B via TNF and by early gene response-1 transcription factor via vascular endothelial growth factor (VEGF). We show that DMF inhibits TNF-induced tissue factor mRNA and protein expression as well as TNF-induced DNA binding of NF-kappa B proteins, but not VEGF-induced tissue factor protein, mRNA expression, or VEGF-induced early gene response-1 transcription factor/DNA binding. To determine where DMF interferes with the TNF/NF-kappa B signaling cascade, we next analyzed DMF effects on I kappa B and on the subcellular distribution of NF-kappa B. DMF does not inhibit TNF-induced I kappa B alpha phosphorylation and I kappa B degradation; thus, NF-kappa B is properly released from I kappa B complexes even in the presence of DMF. Importantly, DMF inhibits the TNF-induced nuclear entry of NF-kappa B proteins, and this effect appears selective for NF-kappa B after the release from I kappa B, because the constitutive shuttling of inactive NF-kappa B/I kappa B complexes into and out from the nucleus is not blocked by DMF. Moreover, DMF does not block NF-kappa B/DNA binding. In conclusion, DMF appears to selectively prevent the nuclear entry of activated NF-kappa B, and this may be the basis of its beneficial effect in psoriasis.

Active Transport, Cell Nucleus↗