Search PubMed⌕ Search

Biomedical subjects

J P Dales

Publications and source records attributed to J P Dales.

5 recordsLinked to original sources

Correlation between apoptosis microarray gene expression profiling and histopathological lymph node lesions.

AIMS: Microarray technology has recently led to the identification of molecular prognostic subgroups in non-Hodgkin's lymphomas. To determine the usefulness of ready made macroarrays as routine diagnostic tools in haematopathology, lymph node biopsies were analysed using a cDNA macroarray containing genes involved in apoptosis, including caspases. METHODS: Nine biopsy specimens were analysed using total frozen tissues: four samples of B cell follicular lymphoma, two of B cell diffuse large cell lymphoma, and three of non-neoplastic lymph nodes from benign lymphadenitis. Nine cell populations were sorted from fresh tissues: malignant B cells from two patients with follicular lymphoma and two with diffuse large cell lymphoma, reactive B cells from two benign lymph nodes, reactive T cells from one benign lymph node, and virgin (mantle zone) B cells and germinal centre B cells from benign tonsils. Immunohistochemistry (IHC) on paraffin wax sections was performed for the localisation of caspases 2, 3, 4, 7, 8, and 9. RESULTS: In the clustered array data, sorted cells from samples sharing common histological lesions were grouped together, whereas the array/histology correlation was less satisfactory for tissues. The expression profiles of both the array and IHC methods correlated for most caspases and samples. CONCLUSIONS: Variations in array profiles of sorted cell populations can be associated with specific histological features, suggesting a possible diagnostic application of ready made apoptosis macroarrays in haematopathology.

Apoptosis↗

Caspases: conductors of the cell death machinery in lymphoma cells.

The present review focuses on recent insights into the regulation of caspases by other components of the apoptotic pathway, including the mechanisms by which caspase activation influence the death of lymphoma cells. In the light of our recent findings and similar observations of other investigators, it is likely that lymphoma cells possess the complete caspase machinery required for the apoptotic process. Inhibition of caspases activation appears as a potential mechanism to explain apoptotic defects of malignant B-cells, and thus may constitute the basis for new cancer therapies.

Apoptosis↗

[DNA-array analysis of the expression profile of apoptosis gene regulators in malignant lymphoma].

Microarray technology has recently led to the identification of molecular prognostic subgroups in non Hodgkin's lymphomas. In order to determine the usefulness of ready-made macroarrays as routine diagnosis tools in haemato-pathology, we have analysed lymph node biopsies using a cDNA macroarray containing genes involved in apoptosis, including caspases. Nine biopsy specimens were analysed on total frozen tissues: 4 samples of B-cell follicular lymphoma (FL), two of B-cell diffuse large cell lymphoma (DLCL), and three of non-neoplastic lymph nodes from benign lymphadenitis. Eight cell populations were sorted from fresh tissues: malignant B-cells from 2 FL cases and 2 DLCL cases, reactive B-cells from 1 benign lymph nodes, reactive T-cells from 1 benign lymph node, virgin (mantle zone) B-cells and germinal center (GC) B-cells from benign tonsils. Immunohistochemistry (IHC) on paraffin sections was performed for localization of caspases 2, 3, 4, 7, 8, and 9. In the clustered array data, sorted cells from samples sharing common histological lesions grouped together, whereas the array/histology correlation was less satisfactory for tissues. The expression profiles of both array and IHC methods were correlated for most caspases and samples. Variations in array profiles of sorted cell populations can be statistically associated with specific histological features, suggesting a possible diagnostic application of ready-made "Apoptosis macroarrays" in haematopathology.

Apoptosis↗

[Use of high-density filters ("DNA arrays") for gene expression analysis in human tissues].

Most technical strategies for the analysis of gene expression in tissues are able to study only one protein or RNA product at the same time. A new recent method referred to as < > or < > is able to analyze simultaneously several hundreds of different genes. The DNA array is a nylon membrane on which are spotted equal amounts of cDNAs corresponding to different genes. This filter is hybridized with a < > probe synthesized with mRNA derived from the tissue analyzed. The result gives a global profile of gene expression within the tissue and allows quantitative and comparative analysis between different tissues or cell types.

DNA, Complementary↗