Isolation of Differentially Expressed Genes Through Subtractive Suppression Hybridization
Oliver Dorian von Stein
Abstract
Oliver Dorian von Stein
Abstract
Despite the fact that the genetic blueprint in every cell is identical, an organism is composed of a multitude of different cell types. This cell type complexity or phenotypic differences are the result of differential expression of identical genes. For example, a normal cell expresses a different repertoire of genes than a tumor cell derived from the same cell type. Moreover, to identify those genes would provide an entry point for understanding the biologic processes responsible for these phenotypic differences. This in turn could lead to the development of novel therapeutic strategies against cancer. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
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Despite the fact that the genetic blueprint in every cell is identical, an organism is composed of a multitude of different cell types. This cell type complexity or phenotypic differences are the result of differential expression of identical genes. For example, a normal cell expresses a different repertoire of genes than a tumor cell derived from the same cell type. Moreover, to identify those genes would provide an entry point for understanding the biologic processes responsible for these phenotypic differences. This in turn could lead to the development of novel therapeutic strategies against cancer. These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
Key concepts: Suppression subtractive hybridization, Biology, Gene, Cell type, Phenotype, Organism, Cell, Genetics