Results for 'dendritic cells'

675 found
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  1. An improved ontological representation of dendritic cells as a paradigm for all cell types.Masci Anna Maria, N. Arighi Cecilia, D. Diehl Alexander, E. Lieberman Anne, Mungall Chris, H. Scheuermann Richard, Barry Smith & G. Cowell Lindsay - 2009 - BMC Bioinformatics 10 (1):70.
    The Cell Ontology (CL) is designed to provide a standardized representation of cell types for data annotation. Currently, the CL employs multiple is_a relations, defining cell types in terms of histological, functional, and lineage properties, and the majority of definitions are written with sufficient generality to hold across multiple species. This approach limits the CL’s utility for cross-species data integration. To address this problem, we developed a method for the ontological representation of cells and applied this method to develop (...)
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  2. An improved ontological representation of dendritic cells as a paradigm for all cell types.Anna Maria Masci, Cecilia N. Arighi, Alexander D. Diehl, Anne E. Liebermann, Chris Mungall, Richard H. Scheuermann, Barry Smith & Lindsay Cowell - 2009 - BMC Bioinformatics 10 (1):70.
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  3. Challenging the Experimentalist Dogma: Empirical Incommensurability in early Neuroscience.Sergio Daniel Barberis, Santiago Ginnobili & Ariel Jonathan Roffé - 2025 - Estudios de Filosofía (Universidad de Antioquia) 72:208-232.
    In this article we scrutinize what can be called an "experimentalist dogma" presupposed in Pablo Melogno's analysis of empirical incommensurability in the chemical revolution. According to Melogno, the fact that experimental methods were preserved throughout the chemical revolution was an indication that there were no relevant perceptual differences between Joseph Priestley and Antoine Lavoisier. In order to refine Melogno's general analysis, we will present a taxonomy of varieties of empirical incommensurability and discuss their relationships. To exemplify this categorization, and to (...)
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  4. Apical amplification—a cellular mechanism of conscious perception?Tomas Marvan, Michal Polák, Talis Bachmann & William A. Phillips - 2021 - Neuroscience of Consciousness 7 (2):1-17.
    We present a theoretical view of the cellular foundations for network-level processes involved in producing our conscious experience. Inputs to apical synapses in layer 1 of a large subset of neocortical cells are summed at an integration zone near the top of their apical trunk. These inputs come from diverse sources and provide a context within which the transmission of information abstracted from sensory input to their basal and perisomatic synapses can be amplified when relevant. We argue that apical (...)
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  5. Cellular Mechanisms of Cooperative Context-Sensitive Predictive Inference.Tomas Marvan & William Alfred Phillips - 2024 - Current Research in Neurobiology 6.
    We argue that prediction success maximization is a basic objective of cognition and cortex, that it is compatible with but distinct from prediction error minimization, that neither objective requires subtractive coding, that there is clear neurobiological evidence for the amplification of predicted signals, and that we are unconvinced by evidence proposed in support of subtractive coding. We outline recent discoveries showing that pyramidal cells on which our cognitive capabilities depend usually transmit information about input to their basal dendrites and (...)
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  6. SNARE proteins as molecular masters of interneuronal communication.Danko D. Georgiev & James F. Glazebrook - 2010 - Biomedical Reviews 21:17-23.
    In the beginning of the 20th century the groundbreaking work of Ramon y Cajal firmly established the neuron doctrine, according to which neurons are the basic structural and functional units of the nervous system. Von Weldeyer coined the term “neuron” in 1891, but the huge leap forward in neuroscience was due to Cajal’s meticulous microscopic observations of brain sections stained with an improved version of Golgi’s la reazione nera (black reaction). The latter improvement of Golgi’s technique made it possible to (...)
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  7. Cell Types as Natural Kinds.Matthew H. Slater - 2013 - Biological Theory 7 (2):170-179.
    Talk of different types of cells is commonplace in the biological sciences. We know a great deal, for example, about human muscle cells by studying the same type of cells in mice. Information about cell type is apparently largely projectible across species boundaries. But what defines cell type? Do cells come pre-packaged into different natural kinds? Philosophical attention to these questions has been extremely limited [see e.g., Wilson (Species: New Interdisciplinary Essays, pp 187–207, 1999; Genes and (...)
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  8. The Cell and Protoplasm as Container, Object, and Substance, 1835–1861.Daniel Liu - 2017 - Journal of the History of Biology 50 (4):889-925.
    (Recipient of the 2020 Everett Mendelsohn Prize.) This article revisits the development of the protoplasm concept as it originally arose from critiques of the cell theory, and examines how the term “protoplasm” transformed from a botanical term of art in the 1840s to the so-called “living substance” and “the physical basis of life” two decades later. I show that there were two major shifts in biological materialism that needed to occur before protoplasm theory could be elevated to have equal status (...)
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  9. 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 the (...)
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  10. Stem Cell Research and Same Sex Reproduction.Thomas Douglas, Catherine Harding, Hannah Bourne & Julian Savulescu - 2012 - In Muireann Quigley, Sarah Chan & John Harris, 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 sperm (...)
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  11. Cell Fate: What’s Evolution Got to Do With It?Grant Ramsey & Pierre M. Durand - 2023 - Yale Journal of Biology and Medicine 96 (4):565–568.
    Theoretical frameworks concerning cell fate typically center on proximate causes to explain how cells know what type they are meant to become. While major advances in cell fate theory have been achieved by these mechanism-focused frameworks, there are some aspects of cell decision-making that require an evolutionary interpretation. While mechanistic biologists sometimes turn to evolutionary theory to gain insights about cell fate (cancer is a good example), it is not entirely clear in cell fate theory what insights evolutionary theory (...)
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  12. 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 cancer. Despite being still (...)
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  13. Cancer cells and adaptive explanations.Pierre-Luc Germain - 2012 - Biology and Philosophy 27 (6):785-810.
    The aim of this paper is to assess the relevance of somatic evolution by natural selection to our understanding of cancer development. I do so in two steps. In the first part of the paper, I ask to what extent cancer cells meet the formal requirements for evolution by natural selection, relying on Godfrey-Smith’s (2009) framework of Darwinian populations. I argue that although they meet the minimal requirements for natural selection, cancer cells are not paradigmatic Darwinian populations. In (...)
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  14.  85
    Artificial Cells that Reproduce Using Spatially Distributed Asynchronous Parallel Processes.Lance R. Williams - manuscript
    Replication time is among the most important components of a bacterial cell's reproductive fitness. Paradoxically, larger cells replicate in less time than smaller cells despite the fact that assembling a larger cell requires collecting and combining increased quantities of raw materials. This feat is accomplished through the prodigious use of parallel processing, chiefly the translation of mRNA into protein by tens of thousands of ribosomes acting in parallel. The massive over-expression of ribosomes permits protein synthesis, the limiting step (...)
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  15. The Artificial Cell, the Semipermeable Membrane, and the Life that Never Was, 1864–1901.Daniel Liu - 2019 - Historical Studies in the Natural Sciences 49 (5):504-555.
    Since the early nineteenth century a membrane or wall has been central to the cell’s identity as the elementary unit of life. Yet the literally and metaphorically marginal status of the cell membrane made it the site of clashes over the definition of life and the proper way to study it. In this article I show how the modern cell membrane was conceived of by analogy to the first “artificial cell,” invented in 1864 by the chemist Moritz Traube (1826–1894), and (...)
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  16. Fake cells and the aura of life: A philosophical diagnostic of synthetic life.Daphne Broeks, Yogi Hendlin & Hub Zwart - 2022 - Endeavour 46.
    Synthetic biology is often seen as the engineering turn in biology. Philosophically speaking, entities created by synthetic biology, from synthetic cells to xenobots, challenge the ontological divide between the organic and inorganic, as well as between the natural and the artificial. Entities such as synthetic cells can be seen as hybrid or transitory objects, or neo–things. However, what has remained philosophically underexplored so far is the impact these hybrid neo–things will have on (our phenomenological experience of) the living (...)
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  17. Biological atomism and cell theory.Daniel J. Nicholson - 2010 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 41 (3):202-211.
    Biological atomism postulates that all life is composed of elementary and indivisible vital units. The activity of a living organism is thus conceived as the result of the activities and interactions of its elementary constituents, each of which individually already exhibits all the attributes proper to life. This paper surveys some of the key episodes in the history of biological atomism, and situates cell theory within this tradition. The atomistic foundations of cell theory are subsequently dissected and discussed, together with (...)
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  18. Diagnosis of Blood Cells Using Deep Learning.Ahmed J. Khalil & Samy S. Abu-Naser - 2022 - Dissertation, University of Tehran
    In computer science, Artificial Intelligence (AI), sometimes called machine intelligence, is intelligence demonstrated by machines, in contrast to the natural intelligence displayed by humans and other animals. Computer science defines AI research as the study of "intelligent agents": any device that perceives its environment and takes actions that maximize its chance of successfully achieving its goals. Deep Learning is a new field of research. One of the branches of Artificial Intelligence Science deals with the creation of theories and algorithms that (...)
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  19. A Single-Cell Hypothesis for the Neural Correlates of Consciousness.John Howard - manuscript
    Despite decades of inquiry, the search for the Neural Correlates of Consciousness (NCC), both in the complex brains of humans and in animals with simpler neural architectures, has had limited success. This paper investigates the hypothesis that this lack of progress may stem from a flawed assumption that consciousness requires more than a single neural cell.
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  20. Stem Cells Dependently Arising and Empty.Sun Kyeong Yu - 2020 - In Buddhism and Culture (Buddhist magazine in Korea). Seoul, South Korea:
    “Stem Cells Dependently Arising and Empty” May 2021, Buddhism and Culture (a Korean-language Buddhist magazine sponsored by the Foundation for the Promotion of Korean Buddhism), Korea.
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  21. Is the Cell Really a Machine?Daniel J. Nicholson - 2019 - Journal of Theoretical Biology 477:108–126.
    It has become customary to conceptualize the living cell as an intricate piece of machinery, different to a man-made machine only in terms of its superior complexity. This familiar understanding grounds the conviction that a cell's organization can be explained reductionistically, as well as the idea that its molecular pathways can be construed as deterministic circuits. The machine conception of the cell owes a great deal of its success to the methods traditionally used in molecular biology. However, the recent introduction (...)
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  22. Manipulating Embryogenesis and Testing for Potential: Two Real Problems for the Regulation of Stem Cell-based Embryo Models.Jonathan Lewis & Søren Holm - 2025 - Journal of Medical Ethics.
    Stem cell-based human embryo models (SCBEMs), generated in vitro from stem cells, currently exist outside the scope of regulatory frameworks that govern in vitro embryo research in most jurisdictions. A widely discussed proposal suggests using a "Turing test" framework, whereby regulatory oversight is triggered if a SCBEM is found to be “equivalent” to a human embryo. In this paper, we argue that such a proposal faces two major complications. First, sophisticated laboratory techniques such as trophoblast replacement allow researchers to (...)
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  23. Stem Cell Research on Embryonic Persons Is Just.Aaron Rizzieri - 2012 - Journal of Bioethical Inquiry 9 (2):195-203.
    I argue that embryonic stem cell research is fair to the embryo, even on the assumption that the embryo has attained full personhood and an attendant right to life at conception. This is because the only feasible alternatives open to the embryo are to exist briefly in an unconscious state and be killed or to not exist at all. Hence, one is neither depriving the embryo of an enduring life it would otherwise have had nor is one causing the embryo (...)
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  24. Somatic Cell Therapy: A Genetic Rescue for a Tattered Immune System?Bryn Williams-Jones - 2012 - BioéthiqueOnline 1:4.
    The case of Andrew Gobea, the first child to receive experimental gene therapy for SCID, and a reflection on the associated ethical implications of gene therapy research.
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  25. The lady vanishes: what's missing from the stem cell debate.Donna Dickenson - 2006 - Journal of Bioethical Inquiry 3 (1-2):43-54.
    Most opponents of somatic cell nuclear transfer and embryonic stem cell technologies base their arguments on the twin assertions that the embryo is either a human being or a potential human being, and that it is wrong to destroy a human being or potential human being in order to produce stem cell lines. Proponents’ justifications of stem cell research are more varied, but not enough to escape the charge of obsession with the status of the embryo. What unites the two (...)
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  26. Do Somatic Cells Really Sacrifice Themselves? Why an Appeal to Coercion May be a Helpful Strategy in Explaining the Evolution of Multicellularity.Adrian Stencel & Javier Suárez - 2021 - Biological Theory 16 (2):102-113.
    An understanding of the factors behind the evolution of multicellularity is one of today’s frontiers in evolutionary biology. This is because multicellular organisms are made of one subset of cells with the capacity to transmit genes to the next generation and another subset responsible for maintaining the functionality of the organism, but incapable of transmitting genes to the next generation. The question arises: why do somatic cells sacrifice their lives for the sake of germline cells? How is (...)
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  27. Diagrams as locality aids for explanation and model construction in cell biology.Nicholaos Jones & Olaf Wolkenhauer - 2012 - Biology and Philosophy 27 (5):705-721.
    Using as case studies two early diagrams that represent mechanisms of the cell division cycle, we aim to extend prior philosophical analyses of the roles of diagrams in scientific reasoning, and specifically their role in biological reasoning. The diagrams we discuss are, in practice, integral and indispensible elements of reasoning from experimental data about the cell division cycle to mathematical models of the cycle’s molecular mechanisms. In accordance with prior analyses, the diagrams provide functional explanations of the cell cycle and (...)
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  28. Emerging Next Generation Solar Cells Route to High Efficiency and Low Cost.Md Samiul Islam Sadek, Dr M. Junaebur Rashid & Dr Zahid Hasan Mahmood - 2017 - International Journal of Trend in Scientific Research and Development 1 (4):140-152.
    Generation of clean energy is one of the main challenges of the 21st century. Solar energy is the most abundantly available renewable energy source which would be supplying more than 50 of the global electricity demand in 2100. Solar cells are used to convert light energy into electrical energy directly with an appeal that it does not generate any harmful bi products, like greenhouse gasses. The manufacturing of solar cells is actually based on the types of semiconducting or (...)
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  29. What is Mimicked by Biomimicry? Synthetic Cells as Exemplifications of the Threefold Biomimicry Paradox.Hub Zwart - 2019 - Environmental Values 28 (5):527-549.
    This article addresses three paradoxes of biomimicry. First of all: how can biomimicry be as old as technology as such and at the same time decidedly innovative and new? Secondly: how can biomimicry both entail a ‘naturalisation’ of technology and a ‘technification’ of nature? And finally: how can biomimicry be perceived as nature-friendly but at the same time (potentially at least) as a pervasive biotechnological assault on nature? Contemporary (technoscientific) biomimicry, I will argue, aims to mimic nature at the level (...)
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  30. Wall-Window-Screen: How the Cell Phone Mediates a Worldview for Us.Galit Wellner - 2011 - Humanities and Technology Review 30:87-103.
    The article proposes to model the phenomenon of the cell phone as a wall-window. This model aims at explicating some of the perceptions and experiences associated with cellular technology. The wall-window model means that the cell phone simultaneously separates the user from the physical surroundings (the wall), and connects the user to a remote space (the window). The remote space may be where the interlocutor resides or where information is stored (e.g. the Internet). Most cell phone usage patterns are modeled (...)
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  31. Electromagnetic Radiation, a Living Cell and the Soul: A Collated Hypothesis.Contzen Pereira - 2015 - Neuroquantology 13 (4).
    The soul is believed to be an immortal essence of living things in scores of philosophical and religious traditions but sparsely understood by science. The word ‘soul’ does not have a scientific definition but through this paper is hypothesized to be an indefinite, non-structured, massless energy made up of electromagnetic radiations that is confined in the cytoskeletal network of the biological cell. Electromagnetic radiations continually interact with the biological cell and propagate within the cell; by a pathway known as ‘Cell-Soul (...)
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  32. The Synthetic Cell as a Techno-scientific Mandala.H. A. E. Zwart - 2018 - International Journal of Jungian Studies 10.
    This paper analyses the technoscientific objective of building a synthetic cell from a Jungian perspective. After decades of fragmentation and specialisation, the synthetic cell symbolises a turn towards restored wholeness, both at the object pole and at the subject pole. From a Jungian perspective, it is no coincidence that visual representations of synthetic cells often reflect an archetypal, mandala-like structure. As a symbol of restored unity, the synthetic cell mandala compensates for technoscientific fragmentation via active imagination, providing a visual (...)
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  33. Stem cells: biopsy on frozen embryos.Peter Schwartz - 2007 - Hastings Center Report 37 (1):7.
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  34. Divergent Processing of Cell Stress Signals as the Basis of Cancer Progression: Licensing NFκB on Chromatin.Spiros A. Vlahopoulos - 2024 - IJMS 25 (16):8621.
    Inflammation is activated by diverse triggers that induce the expression of cytokines and adhesion molecules, which permit a succession of molecules and cells to deliver stimuli and functions that help the immune system clear the primary cause of tissue damage, whether this is an infection, a tumor, or a trauma. During inflammation, short-term changes in the expression and secretion of strong mediators of inflammation occur, while long-term changes occur to specific groups of cells. Long-term changes include cellular transdifferentiation (...)
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  35. Reconceptualizing the right to withdraw in stem cell research: Striking a balance between donor autonomy and scientific utility.Jonathan Lewis & Søren Holm - 2026 - Research Ethics:1-20.
    This paper seeks to address the challenges with applying a right to withdraw to pluripotent stem cell (PSC) research. PSC lines are unique in that they can be expanded indefinitely, disseminated globally, transformed into multiple derivatives, and employed as therapeutic products, rendering withdrawal not only logistically unfeasible, but also a substantive risk to research stability. Following an analysis of whether the classical right to withdraw can be suitably modified to address the tensions between donor freedoms and transformative biomedical research, we (...)
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  36. Strategies to improve the reliability of a theory: the experiment of bacterial invasion into cultured epithelial cells.Hubertus Nederbragt - 2003 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 34 (4):593-614.
    An analysis is presented of published methods that have been used by experimenters to justify the reliability of the theory of invasion of microorganisms into cultured cells. The results show that, to demonstrate this invasion, many experimenters used two or more methods that were based on independent technical and theoretical principles, and by doing so improved the reliability of the theory. Subsequently I compare this strategy of 'multiple derivability' with other strategies, discussed in the literature in relation to the (...)
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  37. From primal scenes to synthetic cells.Hub Zwart - 2019 - eLife 8.
    Synthetic cells spark intriguing questions about the nature of life. Projects such as BaSyC (‘Building a Synthetic Cell’) aim to build an entity that mimics how living cells work from basic components. But what kind of entity would a synthetic cell really be? I assess this question from a philosophical perspective, and show how early fictional narratives of artificial life – such as the laboratory scene in Goethe’s Faust – can help us to understand the challenges faced by (...)
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  38. Ethical issues of using umbilical cord blood stem cell therapy of John Stuart Mill perspective.Pattamawadee Sankheangaew - 2021 - Journal of Philosophy 1.
    This academic paper on Ethical issues of using umbilical cord blood stem cell therapy of John Stuart Mill perspective aim to investigate the new approaches in the treatment of diseases by using umbilical cord blood stem cells. And also to study ethical issues from the use of umbilical cord blood stem cells in the treatment of diseases considered by Mill’s utilitarianism. 21st century, the medical industry was interested in organ transplantation from stem cells especially stem cells (...)
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  39. Biopower, Styles of Reasoning, and What's Still Missing from the Stem Cell Debates.Shelley Tremain - 2010 - Hypatia 25 (3):577 - 609.
    Until now, philosophical debate about human embryonic stem cell (hESC) research has largely been limited to its ethical dimensions and implications. Although the importance and urgency of these ethical debates should not be underestimated, the almost undivided attention that mainstream and feminist philosophers have paid to the ethical dimensions of hESC research suggests that the only philosophically interesting questions and concerns about it are by and large ethical in nature. My argument goes some distance to challenge the assumption that ethical (...)
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  40. Human Inertia and Cell Phone Conversations.Rob van Gerwen - manuscript
    Cellular, or mobile phones are great: they allow people to communicate over long distances whenever and wherever they are, and instantaneously at that when the one called is wearing one too. Having said that, though, it must immediately be added that they, also, have a complex disadvantage, and it is one we are hard pushed to understand. In fact, due to its complexity people simply tend to neglect it, even though everyone in his right mind has had experience with it. (...)
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  41. The biological cell as a living symbol of an embodied natural kind: Bridging biological evolution and physical determination through formal semiotics.Timothy M. Rogers - manuscript
    This paper explores the foundational paradox between Newton’s classical mechanics and Darwin’s theory of evolution, focusing on their divergent conceptions of time—static determinism versus dynamic generation. Drawing on biosemiotics, a formal model of interacting biological cells is proposed that combines Newton’s formal determinism and Darwin’s agentic selection. In the model, individual cells are unified by genetic text into a community of mutual recognition through reciprocal signalling. The study introduces a relational ontology involving hypostatically mediated category differences, where genetic (...)
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  42. Organoid Ethical Typology: varieties of three-dimensional stem cell constructs and the many issues they raise in bioethics.Maxence Gaillard, Charles H. Pence & Mylène Botbol-Baum - 2025 - Biology of the Cell 117 (1):e2400093.
    The advancement of and prospects for stem cell research raise a number of specific ethical issues. While navigating the ethical landscape of stem cell research is often challenging for biology researchers and biotechnology innovators, it is also difficult for the public and other persons of concern (from ethicists to policy-makers) to grasp the technicalities of a burgeoning field that develops in many directions. Organoids are one of these new biotechnological constructs that are currently eliciting a rich debate in bioethics. In (...)
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  43. Struggle within: evolution and ecology of somatic cell populations.Bartlomiej Swiatczak - 2021 - Cellular and Molecular Life Sciences 78 (21):6797-6806.
    The extent to which normal (nonmalignant) cells of the body can evolve through mutation and selection during the lifetime of the organism has been a major unresolved issue in evolutionary and developmental studies. On the one hand, stable multicellular individuality seems to depend on genetic homogeneity and suppression of evolutionary conflicts at the cellular level. On the other hand, the example of clonal selection of lymphocytes indicates that certain forms of somatic mutation and selection are concordant with the organism-level (...)
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  44. Direct Reprogramming and Ethics in Stem Cell Research.W. Malcolm Byrnes - 2008 - The National Catholic Bioethics Quarterly 8 (2):277-290.
    The recent successful conversion of adult cells into induced pluripotent stem (iPS) cells through direct reprogramming opens a new chapter in the study of disease and the development of regenerative medicine. It also provides a historic opportunity to turn away from the ethically problematic use of embryonic stem cells isolated through the destruction of human embryos. Moreover, because iPS cells are patient specific, they render therapeutic cloning unnecessary. To maximize therapeutic benefit, adult stem cell research will (...)
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  45. Good science and good ethics: why we should discourage payment for eggs in stem cell researchonation.Donna Dickenson - 2009 - Nature Reviews Genetics 10 (11):743.
    Payment for eggs used in stem cell research puts women at unacceptable risk and encourages exploitative commodification of the female body. Thanks to the development of induced pluripotent stem cells, however, we no longer face a choice between good science and good ethics.
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  46. Cytotoxicity study of aqueous extract of Asam Gelugur (Garcinia cambogia) against Vero cell line: Implications for nutraceutical safety.Nor Akmalyati Sulong - 2025 - Mediterranean Journal of Pharmacy and Pharmaceutical Sciences 5 (2):36-42.
    Garcinia cambogia, commonly known as Asam Gelugur, has entrenched itself as a traditional herbal medicine, renowned for its applications in treating obesity and its integration into global nutraceutical formulations. The bioactive compounds within, particularly hydroxy citric acid, mediate various effects. This study aims to assess the in vitro cytotoxicity of Taxol, a cytotoxic drug used as a control, and the aqueous extract from Garcinia cambogia against the Vero cell line - a kidney-like cell. Cytotoxicity was evaluated using the 3-(4,5-dimetyl-2-2thiazolyl)-2, 5-diphenyl-2H-tetrazolium (...)
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  47. Skepticism About the “Convertibility” of Induced Pluripotent Stem Cells.Thomas V. Cunningham - 2013 - American Journal of Bioethics 13 (1):40-42.
    No abstract available. First paragraph: In this issue’s target article, Stier and Schoene-Siefert purport to ‘depotentialize’ the argument from potentiality based on their claim that any human cell may be “converted” into a morally significant entity, and consequently, the argument from potentiality finally succumbs to a reductio ad absurdum. I aim to convey two reasons for skepticism about the innocuousness of the notion of cell convertibility, and hence, the cogency of their argument.
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  48. A Critical Examination of the Question of Personhood in Stem Cell Research.Diana-Abasi Ibanga - 2016 - IOSR Journal of HumanitieS and Social Science 21 (8):6-13.
    Stem cell research programme has been celebrated world over as the most promising medical research in the 21st century. However, the method of stem cell research involves the use and unavoidable destruction of human embryo. As a result of this, many theologians, scholars and analysts have condemned the research programme. Their argument is that the embryo use in stem cell research is human person; hence it is immoral. This paper therefore aims at analyzing and examining the issue in order to (...)
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  49. ANT-OAR Fails on All Counts: Method of Harvesting Stem Cells Riddled with Scientific and Ethical Flaws.W. Malcolm Byrnes & Jose Granados - 2006 - Science and Theology News 1:23-25.
    The altered nuclear transfer-oocyte assisted reprogramming (ANT-OAR) proposal has serious scientific and philosophical flaws, and it is not a morally acceptable means of obtaining embryonic stem cells. Note that this is the final preprint of an article that was published in the newspaper Science and Theology News in June 2006.
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  50. The philosophy of stem cells: Melinda Bonnie Fagan: Philosophy of stem cell biology: Knowledge in flesh and blood. Basingstoke and New York: Palgrave Macmillan, 2013, xx+274pp, £66.00 HB. [REVIEW]Stavros Ioannidis - 2015 - Metascience 24 (2):285-288.
    Melinda Fagan’s book on the philosophy of stem cell biology is a superb discussion of this exciting field of contemporary science, and the first book-length philosophical treatment of the subject. It contains a detailed and insightful examination of stem cell science, its structure, methods, and challenges.The book does not require any previous knowledge of stem cell biology—all the relevant scientific details and concepts, the central experimental procedures and results, as well as the historical development of the field, are presented in (...)
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