You may have to Search all our reviewed books and magazines, click the sign up button below to create a free account.
The cloning of Dolly in 1996 from the cell of an adult sheep was a pivotal moment in history. For the first time, a team of scientists, led by Ian Wilmut and Keith Campbell, was able to clone a whole mammal using a single cultured adult body cell, a breakthrough that revolutionized three technologies--genetic engineering, genomics, and cloning by nuclear transfer from adult cells—and brought science ever closer to the possibility of human cloning. In this definitive account, the scientists who accomplished this stunning feat explain their hypotheses and experiments, their conclusions, and the ethical and scientific ramifications of their work. Written with award-winning science writer Colin Tudge, The Second Creation is a landmark work that details the most exciting and challenging scientific discovery of the twentieth century.
Gene Targeting and Embryonic Stem Cells is a practical guide designed for the rapidly growing number of researchers who are moving into this field. Provides details on how to culture, transfect and differentiate established cell lines, and how to isolate new cell lines. Gene targeting experiments are described for a number of cell types, including ungulate fetal fibroblasts, murine ES cells, human embryonal carinoma cells and human ES cells, and include protocols for gene-targeting vectors, DNA transfection and RNA interference. The recent isolation of human embryonic stem cells and the potential of these cells for therapeutic applications has generated an entirely new methodology. Similarly, gene targeting methodology has recently been extended to nuclear donor cells in ungulate species. This volume will be invaluable for both new and established researchers in the field of human embryonic stem cells, and to biotech companies engaged in the production of transgenic proteins in livestock, xenotransplantation and the development of animal models.
The past decade has witnessed a spectacular explosion in both the devel- ment and use of transgenic technologies. Not only have these been used to aid our fundamental understanding of biologic mechanisms, but they have also faci- tated the development of a range of disease models that are now truly beginning to impact upon our approach to human disease. Some of the most exciting model systems relate to neurodegenerative disease and cancer, where the availability of appropriate models is at last allowing radically new therapies to be developed and tested. This latter point is of particular significance given the current concerns of the wider public over both the use of animal models and the merits of using genetically modified organisms. Arguably, advances of the greatest significance have been made using mammalian systems—driven by the advent of embryonic stem-cell–based strategies and, more recently, by cloning through nuclear transfer. For this reason, this new edition of Transgenesis Techniques focuses much more heavily on manipulation of the mammalian genome, both in the general discussions and in the provision of specific protocols.
These essays grew out of an effort at the EMBL to promote a new form of science communication on the social, ethical, and political issues that surround rapid change in the life sciences. Published in the Journal of Molecular Biology, these eighteen essays address the main topics of the future of the biosciences, biosciences and basic values, genomics and the globalization of biology, science miscommunication, and reproductive technologies. Hot topics such as cloning, genomics, reproductive technologies, heatlh care costs are addressed. Key Features * Significant to those in the life sciences and social sciences * Features an Introduction by Halldór Stefánsson * Published in conjunction with the prestigious European Molecular Biology Laboratory (EMBL)
A comprehensive collection of diverse techniques for the molecular and cellular manipulation of human embryonic stem (hES) cells. These readily reproducible methods have been optimized for the derivation, characterization, and differentiation of hES cells, with special attention given to regenerative medicine applications. A companion CD provides color versions of all illustrations in the book. The protocols follow the successful Methods in Molecular BiologyTM series format, each offering step-by-step laboratory instructions, an introduction outlining the principles behind the technique, lists of the necessary equipment and reagents, and tips on troubleshooting and avoiding known pitfalls.
From Dawn till Dusk embraces the conceptual challenges often associated with Bioethics by taking the reader on a journey that embodies the circle of life and what it means to be human. The beginning and the end of life have always been an impossible riddle to humans. Bioethics does not aspire to unveil utter truths regarding the purpose of our existence; on the contrary, its task is to settle controversial issues that arise within this finite, very fragile and vulnerable life, yet a life we still have to live. This book discusses thorny ethical issues that transcend time and are related to the dawn and the dusk of life: abortion and infanticide, genetic engineering, human reproductive clonin...
The Handbook of Bioethical Decisions is aimed at addressing and analyzing the most important ethical concerns and moral quandaries arisen in biomedical and scientific research. As such, it identifies and problematizes on a comprehensive range of ethical issues researchers must deal with in different critical contexts. Thus, the Handbook, Vol. I, may be helpful for them to make decisions and deliberate in complex practical scenarios. In this fashion, the volume reunites different points of view to give readers room enough to get a better knowledge and take their own position on pressing bioethical issues of the day. Consequently, this work seeks to engender dense ethical epistemology scientis...
Human embryos, it has been said, "have no muscles, nerves, digestive system, feet, hands, face, or brain; they have nothing to distinguish them as a human being, and if one of them died, no one would mourn as they would for one of us." Consequently, early human embryos are being dismembered in laboratories around the world to produce embryonic stem cells, which, we are told, are the tools that will lead to the next quantum leap in medicine. Should Christians support such small sacrifices for something that might potentially relieve the suffering of millions, or should we vigorously oppose it? Developmental biologist and professor of biochemistry Michael Buratovich was asked such a question (...
The Human Genome Project, discoveries in molecular biology, and new reproductive technologies have advanced our understanding of how genetic science may be used to treat persons with genetic disorders. Greater knowledge may also make possible genetic interventions to "enhance" normal human characteristics, such as height, hair or eye color, strength, or memory, as well as the transmittal of such modifications to future generations. The prospect of inheritable genetic modifications, or IGMs, whether for therapeutic or enhancement purposes, raises complex scientific, ethical, and regulatory issues. Designing Our Descendants presents twenty essays by physicians, scientists, philosophers, theolo...
Bodies and body parts of the dead have long been considered valuable material for use in medical science. Over time and in different places, they have been dissected, autopsied, investigated, harvested for research and therapeutic purposes, collected to turn into museum and other specimens, and then displayed, disposed of, and exchanged. This book examines the history of such activities, from the early nineteenth century through to the present, as they took place in hospitals, universities, workhouses, asylums and museums in England, Australia and elsewhere. Through a series of case studies, the volume reveals the changing scientific, economic and emotional value of corpses and their contested place in medical science.