Results for 'Mesenchymal stem cell'

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  1.  24
    Mesenchymal stem cells for systemic therapy: shotgun approach or magic bullets?Susan M. Millard & Nicholas M. Fisk - 2013 - Bioessays 35 (3):173-182.
    Given their heterogeneity and lack of defining markers, it is surprising that multipotent mesenchymal stem/stromal cells (MSCs) have attracted so much translational attention, especially as increasing evidence points to their predominant effect being not by donor differentiation but via paracrine mediators and exosomes. Achieving long-term MSC donor chimerism for treatment of chronic disease remains a challenge, requiring enhanced MSC homing/engraftment properties and manipulation of niches to direct MSC behaviour. Meanwhile advances in nanoparticle technology are furthering the development of (...)
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  2.  10
    Epidural fat mesenchymal stem cells: Important microenvironmental regulators in health, disease, and regeneration.Sophia Shah, Sathvika Mudigonda, Alim P. Mitha, Paul Salo & Roman J. Krawetz - 2021 - Bioessays 43 (2):2000215.
    Mesenchymal stem cells (MSCs) are present in fat tissues throughout the body, yet little is known regarding their biological role within epidural fat. We hypothesize that debridement of epidural fat and/or subsequent loss of MSCs within this tissue, disrupts homeostasis in the vertebral environment resulting in increased inflammation, fibrosis, and decreased neovascularization leading to poorer functional outcomes post‐injury/operatively. Clinically, epidural fat is commonly considered a space‐filling tissue with limited functionality and therefore typically discarded during surgery. However, the presence (...)
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  3.  32
    Extracellular Vesicles from Mesenchymal Stem Cells Exert Pleiotropic Effects on Amyloid‐β, Inflammation, and Regeneration: A Spark of Hope for Alzheimer's Disease from Tiny Structures?Chiara A. Elia, Morris Losurdo, Maria L. Malosio & Silvia Coco - 2019 - Bioessays 41 (4):1800199.
    No cure yet exists for devastating Alzheimer's disease (AD), despite many years and humongous efforts to find efficacious pharmacological treatments. So far, neither designing drugs to disaggregate amyloid plaques nor tackling solely inflammation turned out to be decisive. Mesenchymal stem cells (MSCs) and, in particular, extracellular vesicles (EVs) originating from them could be proposed as an alternative, strategic approach to attack the pathology. Indeed, MSC‐EVs—owing to their ability to deliver lipids/proteins/enzymes/microRNAs endowed with anti‐inflammatory, amyloid‐β degrading, and neurotrophic activities—may (...)
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  4.  19
    Epithelial to mesenchymal transition as a portal to stem cell characters embedded in gene networks.Naisana S. Asli & Richard P. Harvey - 2013 - Bioessays 35 (3):191-200.
    Cells can transit between a range of stable epithelial and mesenchymal states and this has allowed the evolution of complex body forms. Epithelial to mesenchymal transition (EMT) and its reverse, mesenchymal to epithelial transition (MET), occur sequentially in development and organogenesis. EMT often accompanies transitions between stem‐like cells and their more differentiated progeny, as occurs at gastrulation, although the relevance of this had not been clarified. New findings from the cancer and cell reprogramming fields suggest (...)
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  5.  35
    The promise and challenges of stem cell‐based therapies for skeletal diseases.Solvig Diederichs, Kristy M. Shine & Rocky S. Tuan - 2013 - Bioessays 35 (3):220-230.
    Despite decades of research, remaining safety concerns regarding disease transmission, heterotopic tissue formation, and tumorigenicity have kept stem cell‐based therapies largely outside the standard‐of‐care for musculoskeletal medicine. Recent insights into trophic and immune regulatory activities of mesenchymal stem cells (MSCs), although incomplete, have stimulated a plethora of new clinical trials for indications far beyond simply supplying progenitors to replenish or re‐build lost/damaged tissues. Cell banks are being established and cell‐based products are in active clinical (...)
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  6. Stem Cells and the Microenvironment: Reciprocity with Asymmetry in Regenerative Medicine.Militello Guglielmo & Bertolaso Marta - 2022 - Acta Biotheoretica 70 (4):1-27.
    Much of the current research in regenerative medicine concentrates on stem-cell therapy that exploits the regenerative capacities of stem cells when injected into different types of human tissues. Although new therapeutic paths have been opened up by induced pluripotent cells and human mesenchymal cells, the rate of success is still low and mainly due to the difficulties of managing cell proliferation and differentiation, giving rise to non-controlled stem cell differentiation that ultimately leads to (...)
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  7.  15
    Moral obligations in conducting stem cell-based therapy trials for autism spectrum disorder.Nicole Shu Ling Yeo-Teh & Bor Luen Tang - forthcoming - Journal of Medical Ethics.
    Unregulated patient treatments and approved clinical trials have been conducted with haematopoietic stem cells and mesenchymal stem cells for children with autism spectrum disorder. While the former direct-to-consumer practice is usually considered rogue and should be legally constrained, regulated clinical trials could also be ethically questionable. Here, we outline principal objections against these trials as they are currently conducted. Notably, these often lack a clear rationale for how transplanted cells may confer a therapeutic benefit in ASD, and (...)
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  8.  31
    Adult neural stem cells: Long‐term self‐renewal, replenishment by the immune system, or both?Barbara S. Beltz, Emily L. Cockey, Jingjing Li, Jody F. Platto, Kristina A. Ramos & Jeanne L. Benton - 2015 - Bioessays 37 (5):495-501.
    The current model of adult neurogenesis in mammals suggests that adult‐born neurons are generated by stem cells that undergo long‐term self‐renewal, and that a lifetime supply of stem cells resides in the brain. In contrast, it has recently been demonstrated that adult‐born neurons in crayfish are generated by precursors originating in the immune system. This is particularly interesting because studies done many years ago suggest that a similar mechanism might exist in rodents and humans, with bone marrow providing (...)
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  9.  15
    A new bone to pick: osteoblasts and the haematopoietic stemcell niche.Jiang Zhu & Stephen G. Emerson - 2004 - Bioessays 26 (6):595-599.
    Two recent publications highlight the role of bone‐forming cells, the osteoblasts, in controlling the development of neighboring haematopoietic stem cells (HSCs).1,2 Using two distinct transgenic mouse models, one using the conditional deletion of the Bone Morphogenetic Protein Receptor 1A (BMPR1A) gene, the other using over‐expression of an active PTH/PTHrP receptor (PPR) mutant within osteoblasts, the authors show parallel, concordant increases in the generation of trabecular osteoblasts and the number of HSCs. In situ staining showed that rarely cycling HSCs sporadically (...)
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  10.  8
    Metabolism and chromatin: A dynamic duo that regulates development and ageing.Andromachi Pouikli & Peter Tessarz - 2021 - Bioessays 43 (5):2000273.
    Bone‐marrow mesenchymal stem cell (BM‐MSC) proliferation and lineage commitment are under the coordinated control of metabolism and epigenetics; the MSC niche contains low oxygen, which is an important determinant of the cellular metabolic state. In turn, metabolism drives stem cell fate decisions via alterations of the chromatin landscape. Due to the fundamental role of BM‐MSCs in the development of adipose tissue, bones and cartilage, age‐associated changes in metabolism and the epigenome perturb the balance between (...) cell proliferation and differentiation leading to stem cell depletion, fat accumulation and bone‐quality related diseases. Therefore, understanding the dynamics of the metabolism‐chromatin interplay is crucial for maintaining the stem cell pool and delaying the development and progression of ageing. This review summarizes the current knowledge on the role of metabolism in stem cell identity and highlights the impact of the metabolic inputs on the epigenome, with regards to stemness and pluripotency. (shrink)
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  11.  23
    Bone regeneration via skeletal cell lineage plasticity: All hands mobilized for emergencies.Yuki Matsushita, Wanida Ono & Noriaki Ono - 2021 - Bioessays 43 (1):2000202.
    An emerging concept is that quiescent mature skeletal cells provide an important cellular source for bone regeneration. It has long been considered that a small number of resident skeletal stem cells are solely responsible for the remarkable regenerative capacity of adult bones. However, recent in vivo lineage‐tracing studies suggest that all stages of skeletal lineage cells, including dormant pre‐adipocyte‐like stromal cells in the marrow, osteoblast precursor cells on the bone surface and other stem and progenitor cells, are concomitantly (...)
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  12.  5
    Deep into the niche: Deciphering local endoderm‐microenvironment interactions in development, homeostasis, and disease of pancreas and intestine.Wojciech J. Szlachcic, Katherine C. Letai, Marissa A. Scavuzzo & Malgorzata Borowiak - 2023 - Bioessays 45 (4):2200186.
    Unraveling molecular and functional heterogeneity of niche cells within the developing endoderm could resolve mechanisms of tissue formation and maturation. Here, we discuss current unknowns in molecular mechanisms underlying key developmental events in pancreatic islet and intestinal epithelial formation. Recent breakthroughs in single‐cell and spatial transcriptomics, paralleled with functional studies in vitro, reveal that specialized mesenchymal subtypes drive the formation and maturation of pancreatic endocrine cells and islets via local interactions with epithelium, neurons, and microvessels. Analogous to this, (...)
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  13.  13
    Il caso Stamina e la prova dei fatti: riflessioni sull'etica di cura e di ascolto.Paola Binetti - 2014 - Roma: Edizioni Magi. Edited by Francesca Lozito.
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  14.  23
    Endosteal stem cells at the bone‐blood interface: A double‐edged sword for rapid bone formation.Yuki Matsushita, Jialin Liu, Angel Ka Yan Chu, Wanida Ono, Joshua D. Welch & Noriaki Ono - 2024 - Bioessays 46 (3):2300173.
    Endosteal stem cells are a subclass of bone marrow skeletal stem cell populations that are particularly important for rapid bone formation occurring in growth and regeneration. These stem cells are strategically located near the bone surface in a specialized microenvironment of the endosteal niche. These stem cells are abundant in young stages but eventually depleted and replaced by other stem cell types residing in a non‐endosteal perisinusoidal niche. Single‐cell molecular profiling and in (...)
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  15.  57
    Cancer Stem Cells: Philosophy and Therapies.Lucie Laplane - 2016 - Cambridge (Massachusetts): Harvard University Press.
    A new therapeutic strategy could break the stalemate in the war on cancer by targeting not all cancerous cells but the small fraction that lie at the root of cancers. Lucie Laplane offers a comprehensive analysis of cancer stem cell theory, based on an original interdisciplinary approach that combines biology, biomedical history, and philosophy.
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  16.  12
    Stem Cell Tourism and Future Stem Cell Tourists: Policy and Ethical Implications.Hannah Adamson Edna F. Einsiedel - 2012 - Developing World Bioethics 12 (1):35-44.
    Stem cell tourism is a small but growing part of the thriving global medical tourism marketplace. Much stem cell research remains at the experimental stage, with clinical trials still uncommon. However, there are over 700 clinics estimated to be operating in mostly developing countries – from Costa Rica and Argentina to China, India and Russia – that have lured many patients, mostly from industrialized countries, driven by desperation and hope, which in turn continue to fuel the (...)
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  17.  54
    Stem cells and systems models: clashing views of explanation.Melinda Bonnie Fagan - 2016 - Synthese 193 (3):873-907.
    This paper examines a case of failed interdisciplinary collaboration, between experimental stem cell research and theoretical systems biology. Recently, two groups of theoretical biologists have proposed dynamical systems models as a basis for understanding stem cells and their distinctive capacities. Experimental stem cell biologists, whose work focuses on manipulation of concrete cells, tissues and organisms, have largely ignored these proposals. I argue that ‘failure to communicate’ in this case is rooted in divergent views of explanation: (...)
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  18.  18
    Stem cell-derived gametes, iterated in vitro reproduction, and genetic parenthood.Thomas Douglas - 2014 - Journal of Medical Ethics 40 (11):723-724.
    Robert Sparrow has recently raised the possibility that stem cell technology could in the future be used to create multiple generations of embryos in the laboratory before transferring one embryo to a woman’s womb to create a pregnancy. Sparrow argues that any children produced in this way would be genetic orphans—they would lack living genetic parents—and explores the possible moral implications of this. A number of other authors have raised objections to Sparrow’s moral claims, but his descriptive claim (...)
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  19.  97
    Public Stem Cell Banks: Considerations of Justice in Stem Cell Research and Therapy.Ruth R. Faden, Liza Dawson, Alison S. Bateman-House, Dawn Mueller Agnew, Hilary Bok, Dan W. Brock, Aravinda Chakravarti, Xiao-Jiang Gao, Mark Greene, John A. Hansen, Patricia A. King, Stephen J. O'Brien, David H. Sachs, Kathryn E. Schill, Andrew Siegel, Davor Solter, Sonia M. Suter, Catherine M. Verfaillie, LeRoy B. Walters & John D. Gearhart - 2003 - Hastings Center Report 33 (6):13-27.
    If stem cell-based therapies are developed, we will likely confront a difficult problem of justice: for biological reasons alone, the new therapies might benefit only a limited range of patients. In fact, they might benefit primarily white Americans, thereby exacerbating long-standing differences in health and health care.
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  20.  74
    The Stem Cell Uncertainty Principle.Melinda Bonnie Fagan - 2013 - Philosophy of Science 80 (5):945-957.
    Stem cells are defined as having capacities for both self-renewal and differentiation. Many different entities satisfy this working definition. I show that this general stem cell concept is relative to a cell lineage, temporal duration, and characters of interest. Experiments specify values for these variables. So claims about stem cells must be understood in terms of experimental methods used to identify them. Furthermore, the stem cell concept imposes evidential constraints on interpretation of experimental (...)
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  21.  59
    Stem Cells Therapy and Research. Benefits and Ethical Challences.Nicolae Ovidiu Grad, Ionel Ciprian Pop & Ion Aurel Mironiuc - 2012 - Journal for the Study of Religions and Ideologies 11 (32):190-205.
    The research on stem cell-based therapies has greatly expanded in recent years. Our text attempts to seek those religious and ethical challenges that stem cell therapy and research bring into debate. Our thesis is that bioethics can defend its principle without a religious background. We will develop our argumentation on three major points: firstly, a comparison between secular ethics and religious views will clarify why stem cell therapy and research are important from a scientific (...)
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  22. Hematopoietic Stem Cell Transplantation: Legal and Ethical Issues in the UK.David Shaw - forthcoming - In Jörg P. Halter Peter Bürkli (ed.), The Legal and Ethical Challenges of Present and Future Stem-Cell Transplantation. Schwabe Verlag.
    Hematopoietic stem cell transplantation is a widely accepted practice in the United Kingdom (UK). The relatively liberal UK law permits donation both within families and from strangers, and even allows the creation of “saviour siblings” who are brought into being with the specific intent of having them donate stem cells to save other members of their family. This chapter describes the regulation of HSCT in the UK and highlights some ethical issues related to discrimination against some categories (...)
     
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  23. Stem Cell Research and Same Sex Reproduction.Thomas Douglas, Catherine Harding, Hannah Bourne & Julian Savulescu - 2012 - In Muireann Quigley, Sarah Chan & John Harris (eds.), Stem Cells: New Frontiers in Science and Ethics. World Scientific.
    Recent advances in stem cell research suggest that in the future it may be possible to create eggs and sperm from human stem cells through a process that we term in vitro gametogenesis (IVG). IVG would allow treatment of some currently untreatable forms of infertility. It may also allow same-sex couples to have genetically-related children. For example, cells taken from one man could potentially be used to create an egg, which could then be fertilised using naturally produced (...)
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  24.  62
    Stem Cell-Based Therapies: Promises, Obstacles, Discordance, and the Agora.Kathleen K. Eggleson - 2012 - Perspectives in Biology and Medicine 55 (1):1-25.
    Stem cell research has entered the public consciousness through the media. Proponents and opponents of all such research, or of human embryonic stem cell research specifically, engage in heated exchanges in the modern public forum where stakeholders negotiate, the agora. One common claim that emerges from the fray is that a particular type of stem cell research should be pursued as the most promising path toward the reduction of suffering and untimely death for all (...)
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  25.  40
    Stem Cell Regulation in Mexico: Current Debates and Future Challenges.Maria de Jesús Medina-Arellano - 2011 - Studies in Ethics, Law, and Technology 5 (1):Article 2.
    The closely related debates concerning abortion, the protection of the embryo and stem cell science have captured the legislative agenda in Mexico in recent years. This paper examines some contemporary debates related to stem cell science and the legal and political action that has followed in the wake of the latest Supreme Court judgment on abortion, which debates are directly linked to the degrees of protection of the embryo stipulated in the Mexican Constitution. While some Mexican (...)
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  26.  14
    Neural stem cell pools in the vertebrate adult brain: Homeostasis from cell‐autonomous decisions or community rules?Nicolas Dray, Emmanuel Than-Trong & Laure Bally-Cuif - 2021 - Bioessays 43 (3):2000228.
    Adult stem cell populations must coordinate their own maintenance with the generation of differentiated cell types to sustain organ physiology, in a spatially controlled manner and over long periods. Quantitative analyses of clonal dynamics have revealed that, in epithelia, homeostasis is achieved at the population rather than at the single stem cell level, suggesting that feedback mechanisms coordinate stem cell maintenance and progeny generation. In the central nervous system, however, little is known of (...)
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  27.  11
    Philosophy of stem cell biology: knowledge in flesh and blood.Melinda Bonnie Fagan - 2013 - Houndmills, Basingstoke, Hampshire: Palgrave-Macmillan.
    Examining stem cell biology from a philosophy of science perspective, this book clarifies the field's central concept, the stem cell, as well as its aims, methods, models, explanations and evidential challenges. The first chapters discuss what stem cells are, how experiments identify them, and why these two issues cannot be completely separated. The basic concepts, methods and structure of the field are set out, as well as key limitations and challenges. The second part of the (...)
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  28.  21
    Stem Cell Tourism and Doctors' Duties to Minors—A View From Canada.Amy Zarzeczny & Timothy Caulfield - 2010 - American Journal of Bioethics 10 (5):3-15.
    While the clinical promise of much stem cell research remains largely theoretical, patients are nonetheless pursuing unproven stem cell therapies in jurisdictions around the world—a phenomenon referred to as “stem cell tourism.” These treatments are generally advertised on a direct-to-consumer basis via the Internet. Research shows portrayals of stem cell medicine on such websites are overly optimistic and the claims made are unsubstantiated by published evidence. However, anecdotal evidence suggests that parents are (...)
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  29. Stem Cell Lineages: Between Cell and Organism.Melinda Bonnie Fagan - 2017 - Philosophy, Theory, and Practice in Biology 9 (6).
    Ontologies of living things are increasingly grounded on the concepts and practices of current life science. Biological development is a process, undergone by living things, which begins with a single cell and (in an important class of cases) ends with formation of a multicellular organism. The process of development is thus prima facie central for ideas about biological individuality and organismality. However, recent accounts of these concepts do not engage developmental biology. This paper aims to fill the gap, proposing (...)
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  30.  56
    Embryo Stem Cell Research: Ten Years of Controversy.John A. Robertson - 2010 - Journal of Law, Medicine and Ethics 38 (2):191-203.
    Embryonic stem cell research has been a source of ethical, legal, and social controversy since the first successful culturing of human ESCs in the laboratory in 1998. The controversy has slowed the pace of stem cell science and shaped many aspects of its subsequent development. This paper assesses the main issues that have bedeviled stem cell progress and identifies the ethical fault lines that are likely to continue.The time is appropriate for such an assessment (...)
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  31.  66
    Embryonic Stem Cell Patents and Human Dignity.David B. Resnik - 2007 - Health Care Analysis 15 (3):211-222.
    This article examines the assertion that human embryonic stem cells patents are immoral because they violate human dignity. After analyzing the concept of human dignity and its role in bioethics debates, this article argues that patents on human embryos or totipotent embryonic stem cells violate human dignity, but that patents on pluripotent or multipotent stem cells do not. Since patents on pluripotent or multipotent stem cells may still threaten human dignity by encouraging people to treat embryos (...)
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  32.  30
    Chaperoning stem cells: a role for heat shock proteins in the modulation of stem cell self‐renewal and differentiation?Earl Prinsloo, Mokgadi M. Setati, Victoria M. Longshaw & Gregory L. Blatch - 2009 - Bioessays 31 (4):370-377.
    Self‐renewal and differentiation of stem cells are tightly regulated processes subject to intrinsic and extrinsic signals. Molecular chaperones and co‐chaperones, especially heat shock proteins (Hsp), are ubiquitous molecules involved in the modulation of protein conformational and complexation states. The function of Hsp, which are typically associated with stress response and tolerance, is well characterized in differentiated cells, while their role in stem cells remains unclear. It appears that embryonic stem cells exhibit increased stress tolerance and concomitant high (...)
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  33.  32
    Unproven stem cell–based interventions and achieving a compromise policy among the multiple stakeholders.Kirstin R. W. Matthews & Ana S. Iltis - 2015 - BMC Medical Ethics 16 (1):1-11.
    BackgroundIn 2004, patient advocate groups were major players in helping pass and implement significant public policy and funding initiatives in stem cells and regenerative medicine. In the following years, advocates were also actively engaged in Washington DC, encouraging policy makers to broaden embryonic stem cell research funding, which was ultimately passed after President Barack Obama came into office. Many advocates did this because they were told stem cell research would lead to cures. After waiting more (...)
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  34.  31
    Stem Cells, Biotechnology, and Human Rights: Implications for a Posthuman Future.Paul Lauritzen - 2005 - Hastings Center Report 35 (2):25.
    : Successful stem cell therapies might change the natural contours of human life. If that happened, it would unsettle our ethical commitments and encourage us to see the entire natural world merely as material to be manipulated.
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  35.  37
    Stem cell tourism and future stem cell tourists: Policy and ethical implications.Edna F. Einsiedel & Hannah Adamson - 2012 - Developing World Bioethics 12 (1):35-44.
    Stem cell tourism is a small but growing part of the thriving global medical tourism marketplace. Much stem cell research remains at the experimental stage, with clinical trials still uncommon. However, there are over 700 clinics estimated to be operating in mostly developing countries – from Costa Rica and Argentina to China, India and Russia – that have lured many patients, mostly from industrialized countries, driven by desperation and hope, which in turn continue to fuel the (...)
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  36.  17
    Unproven stem cell-based interventions & physicians’ professional obligations; a qualitative study with medical regulatory authorities in Canada.Amy Zarzeczny & Marianne Clark - 2014 - BMC Medical Ethics 15 (1):75.
    The pursuit of unproven stem cell-based interventions is an emerging issue that raises various concerns. Physicians play different roles in this market, many of which engage their legal, ethical and professional obligations. In Canada, physicians are members of a self-regulated profession and their professional regulatory bodies are responsible for regulating the practice of medicine and protecting the public interest. They also provide policy guidance to their members and discipline members for unprofessional conduct.
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  37.  34
    Moral status of embryonic stem cells: Perspective of an african villager.Godfrey B. Tangwa - 2007 - Bioethics 21 (8):449–457.
    ABSTRACT One of the most important as well as most awesome achievements of modern biotechnology is the possibility of cloning human embryonic stem cells, if not human beings themselves. The possible revolutionary role of such stem cells in curative, preventive and enhancement medicine has been voiced and chorused around the globe. However, the question of the moral status of embryonic stem cells has not been clearly and unequivocally answered. Taking inspiration from the African adage that ‘the hand (...)
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  38.  20
    Stem cell stories: from bedside to bench.S. Woods - 2008 - Journal of Medical Ethics 34 (12):845-848.
    The stem cell story is not a simple story but a complex narrative: one that requires careful analysis in order to identify major themes and plots. This paper offers an analysis of the ethics of the clinical application of stem cells and argues that even quite risky therapies can be ethical. These arguments cannot be used to justify all aspects of contemporary stem cell science, including human embryonic stem cell science, which remains theoretical (...)
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  39.  50
    Stem cells and aging from a quasi‐immortal point of view.Anna‐Marei Boehm, Philip Rosenstiel & Thomas Cg Bosch - 2013 - Bioessays 35 (11):994-1003.
    Understanding aging and how it affects an organism's lifespan is a fundamental problem in biology. A hallmark of aging is stem cell senescence, the decline of functionality, and number of somatic stem cells, resulting in an impaired regenerative capacity and reduced tissue function. In addition, aging is characterized by profound remodeling of the immune system and a quantitative decline of adequate immune responses, a phenomenon referred to as immune‐senescence. Yet, what is causing stem cell and (...)
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  40. Stem Cell Research as Innovation: Expanding the Ethical and Policy Conversation.Rebecca Dresser - 2010 - Journal of Law, Medicine and Ethics 38 (2):332-341.
    Research using human embryonic stem cells raises an array of complex ethical issues, including, but by no means limited to, the moral status of developing human life. Unfortunately much of the public discussion fails to take into account this complexity. Advocacy for liberal and conservative positions on human embryonic stem cell research can be simplistic and misleading. Ethical concepts such as truth-telling, scientific integrity, and social justice should be part of the debate over federal support for human (...)
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  41.  33
    Embryonic Stem Cell–Derived Gametes and Genetic Parenthood: A Problematic Relationship.Heidi Mertes & Guido Pennings - 2008 - Cambridge Quarterly of Healthcare Ethics 17 (1):7-14.
    The recent success in generating live offspring from embryonic stem cell –derived gametes in mice sparked visions of growing tailor-made sperm for men faced with infertility. However, although this development will almost certainly lead to new insights into the processes underlying spermatogenesis and thus in the possible causes of male infertility, it is less certain if deriving sperm from ES cells, which are in turn derived from a sterile man, can make someone a genetic parent. As the gap (...)
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  42.  10
    Stem Cell Tourism and the Power of Hope.Charles E. Murdoch - 2010 - American Journal of Bioethics 10 (5):16-23.
    This paper explores the notions of hope and how individual patient autonomy can trump carefully reasoned ethical concerns and policies intended to regulate stem cell transplants. We argue that the same limits of knowledge that inform arguments to restrain and regulate unproven treatments might also undermine our ability to comprehensively dismiss or condemn them. Incautiously or indiscriminately reasoned policies and attitudes may drive critical information and data underground, impel patients away from working with clinical researchers, and tread needlessly (...)
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  43.  62
    Stem Cell Research and Economic Promises.Timothy Caulfield - 2010 - Journal of Law, Medicine and Ethics 38 (2):303-313.
    In the context of stem cell research, the promise of economic growth has become a common policy argument for adoption of permissive policies and increased government funding. However, declarations of economic and commercial benefit, which can be found in policy reports, the scientific literature, public funding policies, and the popular press, have arguably created a great deal of expectation. Can stem cell research deliver on the economic promise? And what are the implications of this economic ethos (...)
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  44. The Stem Cell Debate Continues: The Buying and Selling of Eggs for Research.Françoise Baylis & Carolyn McLeod - 2007 - Journal of Medical Ethics 33 (12):726-731.
    Now that stem cell scientists are clamouring for human eggs for cloning-based stem cell research, there is vigorous debate about the ethics of paying women for their eggs. Generally speaking, some claim that women should be paid a fair wage for their reproductive labour or tissues, while others argue against the further commodification of reproductive labour or tissues and worry about voluntariness among potential egg providers. Siding mainly with those who believe that women should be financially (...)
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  45. Stem Cell Research and the Problem of Embryonic Identity.Phillip Montague - 2011 - The Journal of Ethics 15 (4):307-319.
    A basic component of moral objections to embryonic stem cell research is the claim that human embryos have the same moral status as typical adult human beings. There is no reason to accept this claim, however, unless adult humans once existed as embryos—that is, unless the developmental history of adult humans contains embryos to which the adults are numerically identical. The purpose of this paper is to argue that there are no such identities, and hence that no adult (...)
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  46.  28
    Stem Cell Research as Innovation: Expanding the Ethical and Policy Conversation.Rebecca Dresser - 2010 - Journal of Law, Medicine and Ethics 38 (2):332-341.
    In 1998, researchers established the first human embryonic stem cell line. Their scientific triumph triggered an ethics and policy argument that persists today. Bioethicists, religious leaders, government officials, patient advocates, and scientists continue to debate whether this research poses a promise, a threat, or a mixed ethical picture for society.Scientists are understandably excited about the knowledge that could come from studying human embryonic stem cells. Most of them believe these cells offer a precious opportunity to learn more (...)
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  47.  12
    Stem Cells.Melinda Bonnie Fagan - 2021 - Cambridge University Press.
    What is a stem cell? The answer is seemingly obvious: a cell that is also a stem, or point of origin, for something else. Upon closer examination, however, this combination of ideas leads directly to fundamental questions about biological development. A cell is a basic category of living thing; a fundamental 'unit of life.' A stem is a site of growth; an active source that supports or gives rise to something else. Both concepts are (...)
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  48.  6
    Muscle stem cells get a new look: Dynamic cellular projections as sensors of the stem cell niche.Robert S. Krauss & Allison P. Kann - 2023 - Bioessays 45 (5):2200249.
    Cellular mechanisms whereby quiescent stem cells sense tissue injury and transition to an activated state are largely unknown. Quiescent skeletal muscle stem cells (MuSCs, also called satellite cells) have elaborate, heterogeneous projections that rapidly retract in response to muscle injury. They may therefore act as direct sensors of their niche environment. Retraction is driven by a Rac‐to‐Rho GTPase activity switch that promotes downstream MuSC activation events. These and other observations lead to several hypotheses: (1) projections are morphologically dynamic (...)
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    Resuscitations: Stem Cells and the Crisis of Old Age.Melinda Cooper - 2006 - Body and Society 12 (1):1-23.
    This article looks at the history of the stem cell as an experimental life-form and situates it within the context of biological theories of cellular ageing which emerged in the 1960s, under the banner of ‘biogerontology’. The field of biogerontology, I argue, is crucially concerned not only with the internal limits to a cell's lifespan, but also with the possibility of overcoming limits. Hence, the sense of ‘revolution’ that has surrounded the isolation of human embryonic stem (...)
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  50.  16
    Embryonic Stem Cell Research and Therapy: The Need for a Common European Legal Framework.Carlos M. Romeo&Ndashcasabona - 2002 - Bioethics 16 (6):557-567.
    The possibility of obtaining stem cells from human embryos has given rise to an intensive legal and ethical debate. In this paper, attention is paid to the normative disparity and ambiguity in Europe. An argument for the need for a minimal legal harmonization is made; and a prudent and flexible way to reach this successfully is suggested. Establishing a common legal framework seems to be the only way to guarantee true competitiveness for the European scientific community.
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