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Holland-Frei Cancer Medicine, Ninth Edition, offers a balanced view of the most current knowledge of cancer science and clinical oncology practice. This all-new edition is the consummate reference source for medical oncologists, radiation oncologists, internists, surgical oncologists, and others who treat cancer patients. A translational perspective throughout, integrating cancer biology with cancer management providing an in depth understanding of the disease An emphasis on multidisciplinary, research-driven patient care to improve outcomes and optimal use of all appropriate therapies Cutting-edge coverage of personalized cancer care, including molecular diagnostics and therapeutics Concise, readable, clinically relevant text with algorithms, guidelines and insight into the use of both conventional and novel drugs Includes free access to the Wiley Digital Edition providing search across the book, the full reference list with web links, illustrations and photographs, and post-publication updates
Rapid advances in the study of the molecular basis of mammalian cell proliferation, differentiation, and apoptosis have made it possible to develop new screening systems for isolating from microbial metabolites specific inhibitors of mammalian cell functions. "Bioprobes" is the term used to describe these inhibitors, which are extremely useful agents in investigating the molecular and chemical regulation of eukaryotic cell function and apoptosis. Another area where bioprobes are playing an important role is research into immune cell function. This book is the first to present the groundbreaking applications of bioprobes as tools for biochemical research. A large appendix contains the chemical structure, origin, function, key references, and other essential data for more than 80 important bioprobes. The information for each bioprobe is shown in a two-page display, in an easy-to-use format for identifying specific bioprobes for investigation of cell function.
Cell proliferation is an increase in the number of cells as a result of cell growth and cell division. A series of growth disorders can occur at the cellular level, often causing cancer. This book examines and discusses recent developments in this field. In particular, the changes that occur in cell viability, cell proliferation and cytotoxicity following therapy and laser irradiation are studied. Furthermore, the effects that probiotic bacteria and gastrointestinal mucosa have on cell proliferation are looked at. Data from literature suggests a possible use for probiotics in the therapeutic management of different diseases. This book reviews the ways to estimate cell proliferation and a general view about the principal methods used to evaluate cell populations kinetics are given. Also, research has shown that reductions in cell proliferation by nutrition interventions may indicate a decrease in cancer risk. Thus, this book examines the ability of dietary restriction regiments to reduce cell proliferation rates and cancer risks in humans and animals.
Developmental Aspects of the Cell Cycle discusses the molecular, organelle, cellular, and organismal levels of cell cycle, cell proliferation, and cell differentiation. It addresses the possible antagonism between the ability of cells to proliferate and to differentiate. After brief historical, theoretical, and methodological background information for each cell system, this book concentrates on the mechanisms involved in the regulation of cell proliferation and differentiation. The book presents systems in which mass cultures of cells can be induced to undergo a synchronous transition from one cell state to another, enabling the amplification of cellular and biochemical events to be analyzed with the available morphological and biochemical techniques. Some chapters explain the possibility of cell state production by a microenvironment that occurs at the organismal level, in which a series of mitotic and growth steps causes cells proliferation. The concluding chapters discuss cell proliferation and differentiation in specific cell system, such as embryonic chick and male germ cell. This book will appeal to investigators in many disciplines, teachers, and life sciences students, particularly, to molecular, cellular, and developmental biologists.
Stem Cell Proliferation and Differentiation, Volume 138, the latest release in the Current Topics in Developmental Biology series, highlights new advances in the field, with this new volume presenting interesting chapters. Each chapter is written by an international board of authors. Provides the authority and expertise of leading contributors from an international board of authors Presents the latest release in the Current Topics in Developmental Biology series Includes the latest information on stem cell proliferation and differentiation
Nitric oxide has proven to be a molecule with wide biological significance. It is involved in myriad actions which range from physiology to pathophysiology. One of the fundamental questions in relation to its biological relevance concerns the paradoxical nature of some of its actions. For example, there is a whole range of effects related to cytoprotection, cell proliferation, differentiation, and cell death. The way in which nitric oxide becomes involved in pathophysiology is slowly being elucidated. This volume contains a summary of the discussions that took place at the Second International Paraelios Symposium on Nitric Oxide research, and will make a significant contribution to this very exciting subject. Originally published in 1998. The Princeton Legacy Library uses the latest print-on-demand technology to again make available previously out-of-print books from the distinguished backlist of Princeton University Press. These editions preserve the original texts of these important books while presenting them in durable paperback and hardcover editions. The goal of the Princeton Legacy Library is to vastly increase access to the rich scholarly heritage found in the thousands of books published by Princeton University Press since its founding in 1905.
The "Progress in Cell Cycle Research" series is dedicated to serve as a collection of reviews on various aspects of the cell division cycle, with special emphasis on less studied aspects. We hope this series will continue to be helpful to students, graduates and researchers interested in the cell cycle area and related fields. We hope that reading of these chapters will constitute a "point of entry" into specific aspects of this vast and fast moving field of research. As PCCR4 is being printed several other books on the cell cycle have appeared (ref. 1-3) which should complement our series. This fourth volume of PCCR starts with a review on RAS pathways and how they impinge on the cell cycle (chapter 1). In chapter 2, an overview is presented on the links between cell anchorage -cytoskeleton and cell cycle progression. A model of the Gl control in mammalian cells is provided in chapter 3. The role of histone acetylation and cell cycle contriol is described in chapter 4. Then follow a few reviews dedicated to specific cell cycle regulators: the 14-3-3 protein (chapter 5), the cdc7/Dbf4 protein kinase (chapter 6), the two products of the pI6/CDKN2A locus and their link with Rb and p53 (chapter 7), the Ph085 cyclin-dependent kinases in yeast (chapter 9), the cdc25 phophatase (chapter 10), RCCI and ran (chapter 13). The intriguing phosphorylation dependent prolyl-isomerization process and its function in cell cycle regulation are reviewed in chapter 8.