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P. Michael Conn

    Gene Expression in Neural Tissues
    Gene Probes
    Cell Culture
    Neurotoxins
    Principles of Molecular Regulation
    Essential Ion Channel Methods
    • Essential Ion Channel Methods

      • 632pages
      • 23 heures de lecture

      * Highlights top downloaded and cited chapters, authored by pioneers in the field and enhanced with tips, methods and graphics* Loaded with detailed protocols developed and used by leaders in the field.*Refines, organizes and updates popular methods from one of our top selling series, Methods in Enzymology

      Essential Ion Channel Methods
    • Principles of Molecular Regulation

      • 474pages
      • 17 heures de lecture

      Describes the process by which the brain acts as an endocrine organ to control hormonal functions, maintain homeostasis, and regulate behaviour. The text describes basic neuroendocrine processes and presents them in a manner relative to clinical settings.

      Principles of Molecular Regulation
    • Neurotoxins

      • 407pages
      • 15 heures de lecture

      This book presents a comprehensive compilation of techniques used for the preparation, handling and, particularly, for the use of neurotoxins.

      Neurotoxins
    • Cell Culture

      • 440pages
      • 16 heures de lecture

      The ability to assess the response of neural cells is an important goal of research in the neurosciences. The means to measure responses in a chemically defined medium is a positive feature of the use of cell culture and is the major reason its use is so important in this discipline. Techniques for the purification of cells for culture, for large-scale isolation, for assessing differentiated function, and for tracing lineage are included. Many of the methods can easily be adapted to other systems.

      Cell Culture
    • The study of gene expression in neural tissue brings to bear some of the newest and most productive scientific technology to one of the most exciting and fastest growing areas. This volume describes methods for the study of the expression of specific genes frequently found in very low abundance.Key Features* Convenient benchtop format* Methods presented for easy adaptation to new systems* Comprehensive protocols included for* In situ hybridization* Comparison of in situ and immunochemical methods for the study of regulatory molecules* Gene transfer* The study of the regulation of gene expression* The enhancer trap method* Quantifying rare mRNAs* Isolation and use of cell lines* The homology approach for receptor cloning* Trouble Shooting

      Gene Expression in Neural Tissues
    • Neuropeptide Technology

      Synthesis, Assay, Purification, and Processing

      • 410pages
      • 15 heures de lecture

      Methods in Neurosciences, Volume 6: Neuropeptide Synthesis, Assay, Purification, and Processing describes procedures and tools of assay useful for the identification, purification, and quantification of neuropeptides and their receptors. This volume is divided into four sections— chemical synthesis and biosynthesis; measurement of neuropeptides; purification and characterization; and neuropeptide degrading and processing enzymes. In these sections, this book specifically discusses the synthesis of peptide substrates for protein kinase C; synthesis of glycosyl neuropeptides; and ultrastructural localization of peptides. The measurement of neurokinin B by radioimmunoassay; purification and characterization of neuroendocrine peptides from rat brain; and preparation of glia maturation factor ß are also elaborated. This text likewise covers the assays for arginine/lysine carboxypeptidases and enzymes that metabolize atrial natriuretic peptide. This publication is beneficial to neuroscientists and students researching on the synthesis, assay, purification, and processing of neuropeptides.

      Neuropeptide Technology
    • This volume describes recent techniques used in neuropeptide technology, for example, in the identification and purification of neuropeptides, in neuropeptide synthesis, the identification of neuropeptide antiserum generation and in immunoassay and enzyme assay.

      Lesions and Transplantation