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Biomedical subjects

L Amler

Publications and source records attributed to L Amler.

4 recordsLinked to original sources

Gene expression profiling for prognosis using Cox regression.

Given the promise of rich biological information in microarray data we will expect an increasing demand for a robust, practical and well-tested methodology to provide patient prognosis based on gene expression data. In standard settings, with few clinical predictors, such a methodology has been provided by the Cox proportional hazard model, but no corresponding methodology is available to deal with the full set of genes in microarray data. Furthermore, we want the procedure to be able to deal with the general survival data that include censored information. Conceptually such a procedure can be constructed quite easily, but its implementation will never be straightforward due to computational problems. We have developed an approach that relies on an extension of the Cox proportional likelihood that allows random effects parameters. In this approach, we use the full set of genes in the analysis and deal with survival data in the most general way. We describe the development of the model and the steps in the implementation, including a fast computational formula based on a subsampling of the risk set and the singular value decomposition. Finally, we illustrate the methodology using a data set obtained from a cohort of breast cancer patients.

Adult↗

Deletion mapping defines different regions in 1p34.2-pter that may harbor genetic information related to human colorectal cancer.

Cytogenetic and molecular analyses of colorectal cancer cells have revealed deletions at 1p as prominent alterations, suggesting that genetic information on the short arm of chromosome 1 has a role in tumorigenesis. In this study we have used 33 microsatellite markers to fine map deletions at 1p in primary colorectal carcinomas. We found 1p-deletions in 84% of the cases (31/37). High frequencies of loss of heterozygosity (LOH), often the result of small independent interstitial deletions in the same tumor, defined three regions, that may harbor genetic information relevant for colorectal cancer: (i) region A between D1S243 and D1S468 (7cM; 1p36.3); (ii) region B between D1S436 and D1S199 (7cM; 1p35.1-36.31) and (iii) region C between D1S496 and D1S255 (1cM; 1p34.2-35). In addition we identified seven cell lines with LOH at 1p, all of which have deletions that span at least from the distal border of region A to the proximal border of region C.

Chromosome Deletion↗

Non-syntenic amplification of MDM2 and MYCN in human neuroblastoma.

Amplification of the MYCN gene is a well documented genetic alteration of aggressively growing human neuroblastomas. Through cytogenetic studies we have identified neuroblastoma cell lines which, in addition to amplified MYCN, carry amplified DNA not harbouring MYCN. In situ hybridization of biotinylated total genomic DNA to metaphase chromosomes of normal human lymphocytes by reverse genomic hybridization revealed the amplified DNA to be derived from chromosome 12 band q13-14. Subsequent filter analyses showed a 20- to 40-fold amplification of the MDM2 gene, located at 12q13-14, both in three cell lines and in an original tumor, in addition to amplified MYCN. As the apparent consequence of amplification abundant MDM2 protein was present, a part of which was complexed with p53.

Chromosomes, Human, Pair 12↗

Cytogenetic evolution of MYCN and MDM2 amplification in the neuroblastoma LS tumour and its cell line.

Amplification of the MYCN gene is frequently seen either in extrachromosomal double minutes (DMs) or in homogeneously staining regions (HSRs) of aggressively growing neuroblastomas. Total genomic DNA from cell line LS, from early passages of the same line and from original tumour material was biotinylated and hybridised to metaphase chromosomes of normal human lymphocytes. The reverse genomic hybridisation revealed the amplified DNA to be derived both from chromosome 2p23-24, which is the position of MYCN, and from chromosome 12 band q13-14. The MDM2 gene, located at 12q13-14, was found amplified both in early and late passages of LS, in addition to amplified MYCN. Amplification units of MYCN and MDM2 appear first to develop within DMs, which then integrate into different chromosomes to develop to HSRs.

Chromosomes, Human, Pair 12↗