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STEM CELL BIOLOGY AND GENE THERAPY Edited by Peter J. Quesenberry, Gary S. Stein, Bernard Forget, and Sherman Weissman Advances in molecular genetics and recombinant DNA technology have ushered in a new era in medical therapeutic research. New insights into the molecular basis of human disease and the role played by biological regulatory mechanisms have precipitated tremendous drug development efforts backed by intensive research into human gene therapy worldwide. Stem Cell Biology and Gene Therapy is the first book to thoroughly cover major advances in the field and their applications to novel molecular therapies. This self-contained volume integrates biological and clinical components of s...
As many as 250,000 people in the United States have dystonia, making it the third most common movement disorder following essential tremor and Parkinson's disease. This authoritative reader-friendly resource provides a wide-ranging overview of the latest research and developments regarding the pathogenesis, evaluation, and management of the disease
This essential volume comprehensively discusses redox-active therapeutics, focusing particularly on their molecular design, mechanistic, pharmacological and medicinal aspects. The first section of the book describes the basic aspects of the chemistry and biology of redox-active drugs and includes a brief overview of the redox-based pathways involved in cancer and the medical aspects of redox-active drugs, assuming little in the way of prior knowledge. Subsequent sections and chapters describe more specialized aspects of central nervous system injuries, neurodegenerative diseases, pain, radiation injury and radioprotection (such as of brain, lungs, head and neck and erectile function) and neg...
During the first half century of genetics, coinciding with the first half of this cen tury, geneticists dreamt of the repair of genetic disease by altering or replacing defective genes. H. J. Muller wrote of the great advantages of mutations, "nanoneedles" in his apt term, for delicately probing physiological and chemical processes. In the same spirit, genes could be used to provide treatments of needle point delicacy. Yet, during this period no realistic possibility appeared; it remained but a dream. The situation changed abruptly at the half century. Microbial genetics and its offshoot, cell culture genetics, provided the route. Pneumococcus transformation showed that exogenous DNA could b...
Biochemical and Clinical Aspects of Neuropeptides: Synthesis, Processing, and Gene Structure covers the proceedings of the Fifth Conference on Macromolecular Synthesis: Biochemical and Clinical Aspects of Neuropeptides, held in Blankenese, Hamburg, Germany. This book is composed of seven parts encompassing 23 chapters, and begins with an introduction of the proteolytic mechanisms involved in proprotein processing, their intracellular localization, and their roles in generating a diverse assortment of secreted products in a variety of neuroendocrine cells. Part I describes the structure, synthesis, biochemical aspects, gene expression, and receptor selectivity of opioid peptides. Parts II and III focus on the isolation, structure, function, and genetic linkage of neuropeptides. The remaining parts explore the posttranslational processing, regulation, metabolism, biosynthesis, and gene expression of these neuropeptides, with a particular emphasis on their triggering mechanism and the control of release. Biochemists, neurologists, geneticists, and clinicians will greatly appreciate this book.
Each issue lists papers published during the preceding year.
As human gene therapy becomes a clinical reality, a new era in medicine dawns. Novel and innovative developments in molecular genetics now provide opportunities to treat the genetic bases of diseases often untreatable before. Somatic Gene Therapy documents these historical clinical trials, reviews current advances in the field, evaluates the use of the many different cell types and organs amenable to gene transfer, and examines the prospects of various exciting strategies for gene therapy.