PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Embryo Disposition”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 55 records · Page 3Linked to original sources

Stem cell research: a target article collection: Part I--Jordan's banks, a view from the first years of human embryonic stem cell research.

This essay will address the ethical issues that have emerged in the first considerations of the newly emerging stem cell technology. Many of us in the field of bioethics were deliberating related issues as we first learned of the new science and confronted the ethical issues it raised. In this essay, I will draw on the work of colleagues who were asked to reflect on the early stages of the research (members of the IRBs, the Geron Ethicist Advisory Board, and the National Bioethics Advisory Commission) as the field debated the issues of consent, moral status, use of animal tissues, abortion, use of fetal tissue, and the nature and goals of entrepreneurial research. In this new capacity, ethicists weighed the problem of privacy, the role of justice considerations, and the issues of the marketplace in science. At this point, it is clear that far more issues remain unresolved than are settled, that there is largely unexplored territory ahead, and that the single most important task that faces us as a field is a steady call for ongoing conversation and public debate.

Advisory Committees↗

Stem cell research: a target article collection: Part II--what's in a name: embryos, clones, and stem cells.

In 2001, the U.S. House of Representatives passed the "Human Cloning Prohibition Act" and President Bush announced his decision to allow only limited research on existing stem cell lines but not on "embryos." In contrast, the U.K. has explicitly authorized "therapeutic cloning." Much more will be said about bioethical, legal, and social implications, but subtleties of the science and careful definitions of terms have received much less consideration. Legislators and reporters struggle to discuss "cloning," "pluripotency," "stem cells," and "embryos," and whether "adult" are preferable to "embryonic" stem cells as research subjects. They profess to abhor "copying humans" or "killing embryos." Do they know what they are talking about? Do we? This paper explores the historical, philosophical, and scientific contexts that inform this heated discussion.

Animals↗

Ethics and policy in embryonic stem cell research.

Embryonic stem cells, which have the potential to save many lives, must be recovered from aborted fetuses or live embyros. Although tissue from aborted fetuses can be used without moral complicity in the underlying abortion, obtaining stem cells from embryos necessarily kills them, thus raising difficult questions about the use of embryonic human material to save others. This article draws on previous controversies over embryo research and distinctions between intrinsic and symbolic moral status to analyze these issues. It argues that stem cell research with spare embryos produced during infertility treatment, or even embryos created specifically for research or therapeutic purposes, is ethically acceptable and should receive federal funding.

Aborted Fetus↗

Contested commodities at both ends of life: buying and selling gametes, embryos, and body tissues.

This essay examines the increasing commodification of the body with respect to tissues, games, and embryos. Such commodifcation contributes to a diminishing sense of human personhood on an individual level, even as it erodes commitments to human flourishing at the societal level. After the case for social harm resulting from the increasing commodification of the body is made, the question becomes whether that harm is best remedied by following any of three approaches by which government traditionally seeks to promote the flourishing of its citizens. The author concludes that it is not, and that what is needed is a pragmatic and somewhat casuistic approach to the regulation of contested commodities--that which legal scholar Margaret Jane Radin calls "incomplete commodification."

Altruism↗

Reasonable magic and the nature of alchemy: Jewish reflections on human embryonic stem cell research.

The controversy about research on human embryonic stem cells both divides and defines us, raising fundamental ethical and religious questions about the nature of the self and the limits of science. This article uses Jewish sources to articulate fundamental concerns about the forbiddenness of knowledge in general and of knowledge thought of as magical creation. Alchemy, and the turning of elements into gold and into substances for longevity, and magic used for the creation of living beings was at stake in various Talmudic texts. Since contemporary discourse calls regenerative science magical, and makes claims about its restorative power, careful reflection on when magic is forbidden and when it is responsible allows a novel understanding of ethical questions in stem cell research.

Alchemy↗

Access to IVF.

Explore the source record for details and available documents.

Children with Disabilities↗

Human embryonic stem cell lines derived from discarded embryos.

Human pluripotent embryonic stem (ES) cells have important potential in regenerative medicine and as models for human preimplantation development; however, debate continues over whether embryos should be destroyed to produce human ES cells. We have derived four ES cell lines on mouse embryonic fibroblast cells in medium supplemented with basic fibroblast growth factor, human recombinant leukemia inhibitory factor, and fetal bovine serum. The source of these cell lines was poor-quality embryos that in the course of routine clinical practice would have been discarded. After continuous proliferation in vitro for more than 12 months, these ES cell lines maintained their developmental potential to form trophoblast and somatic cells, including cardiac muscle and neuronal tissue.

Animals↗