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J Kaleta

Publications and source records attributed to J Kaleta.

At least 19 recordsLinked to original sources

Therapeutic effects of cysteine protease inhibition in allergic lung inflammation: inhibition of allergen-specific T lymphocyte migration.

OBJECTIVE AND DESIGN: We have evaluated the effects of the broad-spectrum cysteine protease inhibitor E64 on allergic lung inflammation in the mouse ovalbumin model of human asthma. We have also characterised membrane-associated cathepsin enzyme activity on a range of cell types. MATERIALS: Balb/C mice, E64 and CA074, various cell lines. TREATMENT: E64 was administered by subcutaneous minipump into ovalbumin-sensitised mice prior to intranasal ovalbumin challenge. The effect of E64 on ovalbumin-induced inflammation in vivo and ovalbumin-specific T cell proliferation in vitro and ex vivo was examined. Membrane-associated cathepsin activity on various cell types was measured. RESULTS: E64 treatment (0.36-0.48 mg/day) led to a significant reduction in eosinophil numbers and lung weights in the mouse model. Histological examination of lungs confirmed the anti-inflammatory effect. E64 greatly reduced ovalbumin-specific T cell numbers in the lymph nodes draining the lung following intranasal challenge whilst an accumulation of these T cells was found in the 'priming' lymph nodes. An analysis of various cells involved in lymphocyte priming and migration revealed that monocytes, dendritic cells and endothelial cells express high levels of membrane-associated cathepsin B activity. CONCLUSIONS: Since E64 is not cell permeable and does not inhibit antigen-induced T cell proliferation in vitro or in vivo, the data indicate that membrane-associated cysteine proteases, possibly cathepsin B, may regulate T lymphocyte migration in vivo.

Allergens↗

Chromosomal abnormalities in patients with Hodgkin's disease: evidence for frequent involvement of the 14q chromosomal region but infrequent bcl-2 gene rearrangement in Reed-Sternberg cells.

BACKGROUND: Rearrangements of the bcl-2 gene (also known as BCL2) have been detected in up to 40% of cases of Hodgkin's disease, and it has been speculated that such rearrangements may have a role in the pathogenesis of Hodgkin's disease. PURPOSE: The purposes of this study were (a) to assess the frequency of clonal chromosomal abnormalities in Hodgkin's disease, (b) to identify recurrent changes, (c) to determine whether the bcl-2 gene rearrangement was present in Reed-Sternberg cells (the neoplastic cells of Hodgkin's disease) and their variants, and (d) to analyze whether the presence of t(14;18) translocations in Reed-Sternberg cells explains the observed bcl-2 gene rearrangements in Hodgkin's disease. METHODS: A cytogenetic study was performed on biopsy specimens from 28 consecutive untreated patients with Hodgkin's disease. The same patients were analyzed for bcl-2 gene rearrangement by a polymerase chain reaction (PCR) technique. To ascertain whether the abnormal karyotypes were present in and restricted to Reed-Sternberg cells, we also performed in situ hybridization with chromosome-specific probes. RESULTS: Abnormal metaphases were identified in 23 of the 28 patients. In 11 patients, the chromosome 14q region was abnormal; in six of these patients, there was involvement of the 14q32 region that comprises the gene encoding for heavy-chain immunoglobulin. Only one patient had a t(14;18) translocation, whereas almost 40% of these 28 patients showed bcl-2 gene rearrangements by a PCR method. The in situ hybridization method showed that the abnormal karyotype was present in and restricted to Reed-Sternberg cells. CONCLUSIONS: We conclude that the majority of cases of Hodgkin's disease contain a clonal population with an abnormal karyotype, comprising the Reed-Sternberg cells. The q32 region of chromosome 14 is frequently involved, but a t(14;18) translocation is extremely infrequent. The occurrence of a bcl-2 gene rearrangement in Hodgkin's disease most likely results from the presence of sporadic, small bystander B lymphocytes that carry the translocation and that also can be frequently detected in reactive lymphoid tissue such as tonsils. Also, a range of different chromosomal translocations may provide growth or survival advantages to Reed-Sternberg cells.

Chromosomes, Human, Pair 14↗

Biology of Hodgkin's disease.

The biology of Hodgkin's disease is one of the most intriguing subjects in lymphoma research. The presence of only a small proportion of neoplastic cells and a vast majority of reactive cells reflects the presence of complex interactions between these cell types. In this paper we discuss findings indicating that Reed-Sternberg cells may be virally transformed cells that have evaded a cytotoxic immune response and induce an ineffective delayed type hypersensitivity reaction.

Cell Transformation, Viral↗