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Tumor suppressor genes. Volume 223, Part 2, Regulation, function, and medicinal applications

Powerful new tools are now available to discover and understand tumor suppressor genes (TSGs) and the biochemical mechanisms by which they control cancer development and progression. In Tumor Suppressor Genes, Volume 2: Regulation, Function, and Medicinal Applications, leading physician scientists and researchers explore the cell biology and biochemical function of the tumor suppressor genes, as well as their physiological role in vivo. The authors detail the physical methods-NMR, microarray approaches, posttranslational structure analysis, analysis of regulation at the gene expression and protein signaling levels-used to understand the function of tumor suppressor genes. In vivo approaches discussed include studies in yeast, Drosophila, mice, and human tumors. The authors also discuss how one ultimately derives a "tumor progression model," the drug discovery process, and the weaknesses of cancers that allow drugs to selectively kill them. Other aspects reviewed include screening strategies, targeting the blood supply of tumors, and the replacement of defective cancer genes to achieve a therapeutic effect. The companion volume of this set, Tumor Suppressor Genes, Volume 1: Pathways and Isolation Strategies, covers all known tumor suppressor genes, describing their cellular signaling pathways, how they were discovered, how they can be analyzed, and how they can be optimally used in cancer therapeutics Comprehensive and authoritative, the two volumes of Tumor Suppressor Genes provide an unparalleled compilation of key data on all known tumor suppressor pathways and a treasury of techniques for their discovery, analysis, and uses in cancer therapeutics.

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  • "Regulation, function, and medicinal applications"@en

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  • "Powerful new tools are now available to discover and understand tumor suppressor genes (TSGs) and the biochemical mechanisms by which they control cancer development and progression. In Tumor Suppressor Genes, Volume 2: Regulation, Function, and Medicinal Applications, leading physician scientists and researchers explore the cell biology and biochemical function of the tumor suppressor genes, as well as their physiological role in vivo. The authors detail the physical methods-NMR, microarray approaches, posttranslational structure analysis, analysis of regulation at the gene expression and protein signaling levels-used to understand the function of tumor suppressor genes. In vivo approaches discussed include studies in yeast, Drosophila, mice, and human tumors. The authors also discuss how one ultimately derives a "tumor progression model," the drug discovery process, and the weaknesses of cancers that allow drugs to selectively kill them. Other aspects reviewed include screening strategies, targeting the blood supply of tumors, and the replacement of defective cancer genes to achieve a therapeutic effect. The companion volume of this set, Tumor Suppressor Genes, Volume 1: Pathways and Isolation Strategies, covers all known tumor suppressor genes, describing their cellular signaling pathways, how they were discovered, how they can be analyzed, and how they can be optimally used in cancer therapeutics Comprehensive and authoritative, the two volumes of Tumor Suppressor Genes provide an unparalleled compilation of key data on all known tumor suppressor pathways and a treasury of techniques for their discovery, analysis, and uses in cancer therapeutics."@en
  • "Powerful new tools are now available to discover and understand tumor suppressor genes (TSGs) and the biochemical mechanisms by which they control cancer development and progression. In Tumor Suppressor Genes, Volume 1: Pathways and Isolation Strategies, leading physician scientists and academic researchers review all the known tumor suppressor genes, explain how they work, and describe how they were discovered and isolated. In many cases, the authors discuss specific genes that are frequently involved in hereditary or sporadic cancers. They also provide a detailed guide to using powerful molecular genetic, cytogenetic, proteomic, and cell biological strategies to isolate and characterize novel tumor suppressor genes and their targets. The companion volume of this set, Tumor Suppressor Genes, Volume 2: Regulation, Function, and Medicinal Applications, demonstrates how best to explore the cell biology and biochemical function of such genes, and their encoded proteins, to study their physiological role in vivo, and to use information on TSGs to develop diagnostic and therapeutic strategies for cancer. Comprehensive and authoritative, the two volumes of Tumor Suppressor Genes provide an unparalleled compilation of key data on all known tumor suppressor pathways and a treasury of techniques for their discovery, analysis, and uses in cancer therapeutics."@en

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  • "Laboratory Manuals"
  • "Electronic books"@en
  • "Electronic books"
  • "Gidsen (vorm)"
  • "Aufsatzsammlung"
  • "Handbooks, manuals, etc"@en
  • "Handbooks, manuals, etc"
  • "Online-Publikation"
  • "Llibres electrònics"

http://schema.org/name

  • "Tumor suppressor genes Vol. 2, Regulation, function, and medicinal applications"
  • "Tumor suppressor genes. Volume 223, Part 2, Regulation, function, and medicinal applications"@en
  • "Tumor suppressor genes. Volume 1, Pathways and isolation strategies"@en
  • "Tumor suppressor genes Volume 1, Pathways and isolation strategies"
  • "Tumor suppressor genes : pathways and isolation strategies"
  • "Tumor suppressor genes. Vol. 2, Regulation, function and medicinal applications"
  • "Tumor suppressor genes regulation, function, and medicinal applications"@en
  • "Tumor Suppressor Genes Volume 2 Regulation, Function, and Medicinal Applications"
  • "Tumor suppressor genes / Vol. 2, Regulation, function, and medicinal applications"
  • "Tumor suppressor genes. Volume 2, Regulation, function, and medicinal application"
  • "Tumor suppressor genes"@en
  • "Tumor suppressor genes"
  • "Tumor suppressor genes Volume 2, Regulation, function, and medicinal applications"
  • "Tumor suppressor genes/ 2, Regulation, function, and medicinal applications"