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Metastasis Research Protocols Volume 2 Analysis of Cell Behavior In Vitro and in Vivo (Methods in Molecular Medicine)

معرفی کتاب «Metastasis Research Protocols Volume 2 Analysis of Cell Behavior In Vitro and in Vivo (Methods in Molecular Medicine)» نوشتهٔ edited by Susan A. Brooks and Udo Schumacher، منتشرشده توسط نشر Humana Press : Imprint : Humana در سال 2001. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Metastasis Research Protocols describes in detail all the methods needed to investigate why and how metastasis occurs. Volume I presents a comprehensive collection of established and leading-edge techniques for analyzing the expression of key molecules and for examining their production at the genetic level. Volume I focuses on the analysis and mapping of molecules produced by cells and tissues, and on the molecular biology underlying their expression. The traditional methods range from the histopathological and the immunocytochemical to SDS-PAGE, Western blotting, and enzyme zymography. Newer and more specialized techniques for analyzing the genetic aspects of metastasis include in situ hybridization to localize mRNAs, FISH, CGH, methylation analysis of CpG islands, RT-PCR, differential display. Volume II presents a comprehensive collection of established and leading-edge techniques for examining metastatic behavior in vitro and whole animal models. Methods are provided for the separation of cell lines with high and low metastatic potential, along with assay systems to test defined aspects of the metastatic cascade. These systems include cell migration assays, assays for matrix degradation enzymes, basement membrane degradation assays, adhesion assays, and assays of angiogenesis. The detailed descriptions of animal models for metastasis cover the use of immunodeficient animals, syngenic and transgenic models, and orthotopic models of metastasis. Although ninety percent of fatal cancer cases involve the spread of a primary tumor, the formation of metastases is still a poorly understood, complex process and a significant problem in the treatment of cancer patients. In Metastasis Research Protocols, leading international investigators describe the key methods needed to investigate why and how metastasis occurs. Volume I of this two-volume set, Analysis of Cells and Tissues, presents a comprehensive collection of established and leading-edge techniques for analyzing the expression of key molecules and for examining their production at the genetic level. The work focuses on the analysis and mapping of molecules produced by cells and tissues, and on the molecular biology underlying their expression. The traditional methods range from the histopathological and the immunocytochemical to SDS-PAGE, Western blotting, and enzyme zymography. Newer and more specialized techniques for analyzing the genetic aspects of metastasis include in situ hybridization to localize mRNAs, FISH, CGH, methylation analysis of CpG islands, RT-PCR, and differential display. The second volume of this set, Analysis of Cell Behavior In Vitro and In Vivo, moves to the level of living cells and tissues to present methodologies applicable to examining metastatic behavior in vitro and in the whole animal. Comprehensive and authoritative, the two volumes of Metastasis Research Protocols constitute a gold-standard collection of readily reproducible methods for understanding the metastatic cascade-first at the cellular and molecular levels, then at the level of the whole organism-responsible for the spread of cancer and for developing novel strategies to combat its spread Although ninety percent of fatal cancer cases involve the spread of a primary tumor, the formation of metastases is still a poorly understood, complex process and a significant problem in the treatment of cancer patients. In Metastasis Research Protocols, leading international investigators describe in detail the key methods needed to investigate why and how metastasis occurs. Volume II of this two-volume set, Analysis of Cell Behavior In Vitro and In Vivo, presents a comprehensive collection of established and leading-edge techniques for examining metastatic behavior in vitro and in whole animal models. Methods are provided for the separation of cell lines with high and low metastatic potential, along with assay systems to test defined aspects of the metastatic cascade. These systems include cell migration assays, assays for matrix degradation enzymes, basement membrane degradation assays, adhesion assays, and assays of angiogenesis. The detailed descriptions of animal models for metastasis cover the use of immunodeficient animals, syngenic and transgenic models, and orthotopic models of metastasis. The first volume of this set, Analysis of Cells and Tissues, focuses on the analysis and mapping of molecules produced by cells and tissues, and on the molecular biology underlying their expression. Comprehensive and authoritative, the two volumes of Metastasis Research Protocols constitute a gold-standard collection of readily reproducible methods for understanding the metastatic cascade-first at the cellular and molecular levels, then at the level of the whole organism-responsible for the spread of cancer and for developing novel strategies to combat its spread. Cancer specialists from a wide range of disciplines seek to encompass the entire spectrum of cancer biology in the two volumes that can serve as stand-along references for both new and experienced researchers. Volume two focuses sharply on determining cell behavior, combining established and familiar techniques such as SDS-PAGE and Western blotting with newer and more specialized approaches and specific examples of their application. The general themes are selecting and segregating cell populations for in-vitro and in-vivo assays of metastatic behavior, in-vitro assays of metastatic behavior, and animal models. c. Book News Inc V. 1. (57) Analysis Of Cells And Tissues -- V. 2. (58) Analysis Of Cell Behavior In Vitro And In Vivo. Edited By Susan A. Brooks And Udo Schumacher. Includes Bibliographical References And Index. Flow cytometry is a means of measuring the physical and chemical characteristics of particles in a fluid stream as they pass one by one past a sensing point.
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