Results for 'organoids'

90 found
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  1.  66
    Cerebral organoids: ethical issues and consciousness assessment.Andrea Lavazza & Marcello Massimini - 2018 - Journal of Medical Ethics 44 (9):606-610.
    Organoids are three-dimensional biological structures grown in vitro from different kinds of stem cells that self-organise mimicking real organs with organ-specific cell types. Recently, researchers have managed to produce human organoids which have structural and functional properties very similar to those of different organs, such as the retina, the intestines, the kidneys, the pancreas, the liver and the inner ear. Organoids are considered a great resource for biomedical research, as they allow for a detailed study of the (...)
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  2. Organoid Biobanking, Autonomy and the Limits of Consent.Jonathan Lewis & Søren Holm - 2022 - Bioethics 36 (7):742-756.
    In the debates regarding the ethics of human organoid biobanking, the locus of donor autonomy has been identified in processes of consent. The problem is that, by focusing on consent, biobanking processes preclude adequate engagement with donor autonomy because they are unable to adequately recognise or respond to factors that determine authentic choice. This is particularly problematic in biobanking contexts associated with organoid research or the clinical application of organoids because, given the probability of unforeseen and varying purposes for (...)
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  3. Neural Organoids and the Precautionary Principle.Jonathan Birch & Heather Browning - 2021 - American Journal of Bioethics 21 (1):56-58.
    Human neural organoid research is advancing rapidly. As Greely notes in the target article, this progress presents an “onrushing ethical dilemma.” We can’t rule out the possibility that suff...
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  4.  15
    Cardiac organoids do not warrant additional moral scrutiny.Jannieke N. Simons, Rieke van der Graaf & Johannes J. M. van Delden - 2024 - BMC Medical Ethics 25 (1):1-5.
    Certain organoid subtypes are particularly sensitive. We explore whether moral intuitions about the heartbeat warrant unique moral consideration for newly advanced contracting cardiac organoids. Despite the heartbeat’s moral significance in organ procurement and abortion discussions, we argue that this significance should not translate into moral implications for cardiac organoids.
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  5.  12
    Cerebral Organoid Research Ethics and Pinning the Tail on the Donkey.Alex McKeown - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):542-554.
    The risk of creating cerebral organoids/assembloids conscious enough to suffer is a recurrent concern in organoid research ethics. On one hand, we should, apparently, avoid discovering how to distinguish between organoids that it would be permissible (non-conscious) and impermissible (conscious) to use in research, since if successful we would create organoids that suffer. On the other, if we do not, the risk persists that research might inadvertently continue to cause organoids to suffer. Moreover, since modeling some (...)
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  6.  59
    Cerebral organoids and consciousness: how far are we willing to go?Andrea Lavazza & Marcello Massimini - 2018 - Journal of Medical Ethics 44 (9):613-614.
    In his interesting commentary, Joshua Shepherd raises two points—one related to epistemology, the other to ethics—about our article on human cerebral organoids.1 2 From the epistemological standpoint, he calls into question the need for a theory of consciousness. A theory of consciousness, for him, is not necessary because of the lack of consensus about the very nature of consciousness. Shepherd suggests that ‘given widespread disagreement, applying a theory of consciousness may not be helpful when attempting to diagnose the presence (...)
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  7.  35
    Organoids and the genetically encoded self‐assembly of embryonic stem cells.David A. Turner, Peter Baillie-Johnson & Alfonso Martinez Arias - 2016 - Bioessays 38 (2):181-191.
    Understanding the mechanisms of early embryonic patterning and the timely allocation of specific cells to embryonic regions and fates as well as their development into tissues and organs, is a fundamental problem in Developmental Biology. The classical explanation for this process had been built around the notion of positional information. Accordingly the programmed appearance of sources of Morphogens at localized positions within a field of cells directs their differentiation. Recently, the development of organs and tissues from unpatterned and initially identical (...)
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  8. When Is a Brain Organoid a Sentience Candidate?Jonathan Birch - forthcoming - Molecular Psychology.
    It would be unwise to dismiss the possibility of human brain organoids developing sentience. However, scepticism about this idea is appropriate when considering current organoids. It is a point of consensus that a brainstem-dead human is not sentient, and current organoids lack a functioning brainstem. There are nonetheless troubling early warning signs, suggesting organoid research may create forms of sentience in the near future. To err on the side of caution, researchers with very different views about the (...)
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  9.  43
    Organoids as hybrids: ethical implications for the exchange of human tissues.Sarah N. Boers, Johannes J. M. van Delden & Annelien L. Bredenoord - 2019 - Journal of Medical Ethics 45 (2):131-139.
    Recent developments in biotechnology allow for the generation of increasingly complex products out of human tissues, for example, human stem cell lines, synthetic embryo-like structures and organoids. These developments are coupled with growing commercial interests. Although commercialisation can spark the scientific and clinical promises, profit-making out of human tissues is ethically contentious and known to raise public concern. The traditional bioethical frames of gift versus market are inapt to capture the resulting practical and ethical complexities. Therefore, we propose an (...)
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  10.  5
    Organoid transduction using recombinant adeno‐associated viral vectors: Challenges and opportunities.Lyubava Belova, Alexander Lavrov & Svetlana Smirnikhina - 2022 - Bioessays 44 (9):2200055.
    Cellular 3D structures, for example, organoids, are an excellent model for studying and developing treatments for various diseases, including hereditary ones. Therefore, they are increasingly being used in biomedical research. From the point of view of safety and efficacy, recombinant adeno‐associated viral (rAAV) vectors are currently most in demand for the delivery of various transgenes for gene replacement therapy or other applications. The delivery of transgenes using rAAV vectors to various types of organoids is an urgent task, however, (...)
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  11.  22
    Patentability of Brain Organoids derived from iPSC– A Legal Evaluation with Interdisciplinary Aspects.Hannes Wolff - 2024 - Neuroethics 17 (1):1-15.
    Brain Organoids in their current state of development are patentable. Future brain organoids may face some challenges in this regard, which I address in this contribution. Brain organoids unproblematically fulfil the general prerequisites of patentability set forth in Art. 3 (1) EU-Directive 98/44/ec (invention, novelty, inventive step and susceptibility of industrial application). Patentability is excluded if an invention makes use of human embryos or constitutes a stage of the human body in the individual phases of its formation (...)
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  12.  52
    Moral Limits of Brain Organoid Research.Julian J. Koplin & Julian Savulescu - 2019 - Journal of Law, Medicine and Ethics 47 (4):760-767.
    Brain organoid research raises ethical challenges not seen in other forms of stem cell research. Given that brain organoids partially recapitulate the development of the human brain, it is plausible that brain organoids could one day attain consciousness and perhaps even higher cognitive abilities. Brain organoid research therefore raises difficult questions about these organoids' moral status – questions that currently fall outside the scope of existing regulations and guidelines. This paper shows how these gaps can be addressed. (...)
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  13.  44
    Human cerebral organoids and consciousness: a double-edged sword.Andrea Lavazza - 2020 - Monash Bioethics Review 38 (2):105-128.
    Human cerebral organoids (HCOs) are three-dimensional in vitro cell cultures that mimic the developmental process and organization of the developing human brain. In just a few years this technique has produced brain models that are already being used to study diseases of the nervous system and to test treatments and drugs. Currently, HCOs consist of tens of millions of cells and have a size of a few millimeters. The greatest limitation to further development is due to their lack of (...)
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  14.  67
    Human Brain Organoids and Consciousness.Takuya Niikawa, Yoshiyuki Hayashi, Joshua Shepherd & Tsutomu Sawai - 2022 - Neuroethics 15 (1):1-16.
    This article proposes a methodological schema for engaging in a productive discussion of ethical issues regarding human brain organoids, which are three-dimensional cortical neural tissues created using human pluripotent stem cells. Although moral consideration of HBOs significantly involves the possibility that they have consciousness, there is no widely accepted procedure to determine whether HBOs are conscious. Given that this is the case, it has been argued that we should adopt a precautionary principle about consciousness according to which, if we (...)
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  15.  20
    Cerebral Organoids and Biological Hybrids as New Entities in the Moral Landscape.Alice Andrea Chinaia & Andrea Lavazza - 2022 - American Journal of Bioethics Neuroscience 13 (2):117-119.
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  16.  44
    Consciousness in a Rotor? Science and Ethics of Potentially Conscious Human Cerebral Organoids.Federico Zilio & Andrea Lavazza - 2023 - American Journal of Bioethics Neuroscience 14 (2):178-196.
    Human cerebral organoids are three-dimensional biological cultures grown in the laboratory to mimic as closely as possible the cellular composition, structure, and function of the corresponding organ, the brain. For now, cerebral organoids lack blood vessels and other characteristics of the human brain, but are also capable of having coordinated electrical activity. They have been usefully employed for the study of several diseases and the development of the nervous system in unprecedented ways. Research on human cerebral organoids (...)
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  17.  30
    Human Brain Organoids: Why There Can Be Moral Concerns If They Grow Up in the Lab and Are Transplanted or Destroyed.Andrea Lavazza & Massimo Reichlin - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):582-596.
    Human brain organoids (HBOs) are three-dimensional biological entities grown in the laboratory in order to recapitulate the structure and functions of the adult human brain. They can be taken to be novel living entities for their specific features and uses. As a contribution to the ongoing discussion on the use of HBOs, the authors identify three sets of reasons for moral concern. The first set of reasons regards the potential emergence of sentience/consciousness in HBOs that would endow them with (...)
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  18.  47
    The Case Against Organoid Consciousness.Tim Bayne & James Croxford - 2024 - Neuroethics 17 (1):1-15.
    Neural organoids are laboratory-generated entities that replicate certain structural and functional features of the human brain. Most neural organoids are disembodied—completely decoupled from sensory input and motor output. As such, questions about their potential capacity for consciousness are exceptionally difficult to answer. While not disputing the need for caution regarding certain neural organoid types, this paper appeals to two broad constraints on any adequate theory of consciousness—the first involving the dependence of consciousness on embodiment; the second involving the (...)
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  19.  49
    Theoretical Neurobiology of Consciousness Applied to Human Cerebral Organoids.Matthew Owen, Zirui Huang, Catherine Duclos, Andrea Lavazza, Matteo Grasso & Anthony G. Hudetz - forthcoming - Cambridge Quarterly of Healthcare Ethics:1-21.
    Organoids and specifically human cerebral organoids (HCOs) are one of the most relevant novelties in the field of biomedical research. Grown either from embryonic or induced pluripotent stem cells, HCOs can be used as in vitro three-dimensional models, mimicking the developmental process and organization of the developing human brain. Based on that, and despite their current limitations, it cannot be assumed that they will never at any stage of development manifest some rudimentary form of consciousness. In the absence (...)
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  20.  13
    Brain Organoids and Consciousness: Late Night Musings Inspired by Lewis Thomas.Joseph J. Fins - 2021 - Cambridge Quarterly of Healthcare Ethics 30 (4):557-560.
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  21.  17
    Symbolic Value of Brain Organoids: Shifting the Focus from Consciousness to Sociocultural Perspectives on Resemblance.Sietske A. L. van Till & Eline M. Bunnik - 2023 - American Journal of Bioethics Neuroscience 14 (2):210-212.
    Recent scientific and technological developments enable the generation of increasingly sophisticated organoids: three-dimensional, lab-grown stem cell-based entities that model human organs anatomi...
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  22.  19
    Consciousness and the Ethics of Human Brain Organoid Research.Karola Kreitmair - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):518-528.
    The possibility of consciousness in human brain organoids is sometimes viewed as determinative in terms of the moral status such entities possess, and, in turn, in terms of the research protections such entities are due. This commonsense view aligns with a prominent stance in neurology and neuroscience that consciousness admits of degrees. My paper outlines these views and provides an argument for why this picture of correlating degrees of consciousness with moral status and research protections is mistaken. I then (...)
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  23.  18
    Ethical Implications in Making Use of Human Cerebral Organoids for Investigating Stress—Related Mechanisms and Disorders.Katherine Bassil & Dorothee Horstkötter - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):529-541.
    The generation of three-dimensional cerebral organoids from human-induced pluripotent stem cells (hPSC) has facilitated the investigation of mechanisms underlying several neuropsychiatric disorders, including stress-related disorders, namely major depressive disorder and post-traumatic stress disorder. Generating hPSC-derived neurons, cerebral organoids, and even assembloids (or multi-organoid complexes) can facilitate research into biomarkers for stress susceptibility or resilience and may even bring about advances in personalized medicine and biomarker research for stress-related psychiatric disorders. Nevertheless, cerebral organoid research does not come without its (...)
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  24.  14
    A Tale of Two Chimeras: Applying the Six Principles to Human Brain Organoid Xenotransplantation.Andrew J. Barnhart & Kris Dierickx - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):555-571.
    Cerebral organoid models in-of-themselves are considered as an alternative to research animal models. But their developmental and biological limitations currently inhibit the probability that organoids can fully replace animal models. Furthermore, these organoid limitations have, somewhat ironically, brought researchers back to the animal model via xenotransplantation, thus creating hybrids and chimeras. In addition to attempting to study and overcome cerebral organoid limitations, transplanting cerebral organoids into animal models brings an opportunity to observe behavioral changes in the animal itself. (...)
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  25.  11
    Human Cerebral Organoids: Implications of Ontological considerations.Hassan Khuram, Parker Maddox, Aria Elahi, Rahim Hirani & Ali Issani - 2023 - American Journal of Bioethics Neuroscience 14 (2):213-214.
    The article “Consciousness in a Bioreactor? Science and Ethics of Potentially Conscious Human Cerebral Organoids” (Zillo and Lavazza 2023) presents a thoughtful discussion on the potential ethical...
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  26.  29
    The Future of Human Cerebral Organoids: A Reply to Commentaries.Andrea Lavazza & Federico Zilio - 2023 - American Journal of Bioethics Neuroscience 14 (4):W1-W4.
    Human brain organoids (HCOs) are laboratory-grown biological entities that have been added to the catalog of living entities for just over a decade. How they are formed and may continue to develop for some time is not irrelevant, given their peculiarity, which is that they mimic the human brain with a high degree of similarity. Revolving around this key issue is the discussion on our target article (Zilio and Lavazza 2023), for which we are grateful to all the commentators.
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  27.  23
    The Emergence of Stem Cell‐Based Brain Organoids: Trends and Challenges.Jay Gopalakrishnan - 2019 - Bioessays 41 (8):1900011.
    Recent developments in 3D cultures exploiting the self‐organization ability of pluripotent stem cells have enabled the generation of powerful in vitro systems termed brain organoids. These 3D tissues recapitulate many aspects of human brain development and disorders occurring in vivo. When combined with improved differentiation methods, these in vitro systems allow the generation of more complex “assembloids,” which are able to reveal cell diversities, microcircuits, and cell–cell interactions within their 3D organization. Here, the ways in which human brain (...) have contributed to demystifying the complexities of brain development and modeling of developmental disorders is reviewed and discussed. Furthermore, challenging questions that are yet to be addressed by emerging brain organoid research are discussed. (shrink)
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  28.  21
    The Many Moral Matters of Organoid Models: A systematic review of reasons.Andrew J. Barnhart & Kris Dierickx - 2022 - Medicine, Health Care and Philosophy 25 (3):545-560.
    ObjectiveTo present the ethical issues, moral arguments, and reasons found in the ethical literature on organoid models.DesignIn this systematic review of reasons in ethical literature, we selected sources based on predefined criteria: The publication mentions moral reasons or arguments directly relating to the creation and/or use of organoid models in biomedical research; These moral reasons and arguments are significantly addressed, not as mere passing mentions, or comprise a large portion of the body of work; The publication is peer-reviewed and published (...)
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  29.  24
    Moving beyond the moral status of organoid‐entities.Andrew J. Barnhart & Kris Dierickx - 2023 - Bioethics 37 (2):103-110.
    Ethical deliberations are unfolding for potentially controversial organoid‐entities such as brain organoids and embryoids. Much of the ethical deliberation centers on the questionable moral status of such organoid‐entities. However, while such work is important and appropriate, ethical deliberations may become too exclusively rooted in moral status and potentially overshadow other relevant moral dilemmas. The ethical discussion on organoid models can benefit from insights brought forth by both Judith Jarvis Thomson and Don Marquis in how they attempted to advance the (...)
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  30.  23
    Should Cerebral Organoids be Used for Research if they Have the Capacity for Consciousness?Henry T. “Hank” Greely & Karola V. Kreitmair - 2021 - Cambridge Quarterly of Healthcare Ethics 30 (4):575-584.
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  31.  8
    Human Brain Organoid Transplantation: Testing the Foundations of Animal Research Ethics.Alexandre Erler - 2024 - Neuroethics 17 (2):1-14.
    Alongside in vitro studies, researchers are increasingly exploring the transplantation of human brain organoids (HBOs) into non-human animals to study brain development, disease, and repair. This paper focuses on ethical issues raised by such transplantation studies. In particular, it investigates the possibility that they might yield enhanced brain function in recipient animals (especially non-human primates), thereby fundamentally altering their moral status. I assess the critique, raised by major voices in the bioethics and science communities, according to which such concerns (...)
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  32.  14
    On the Legal Status of Human Cerebral Organoids: Lessons from Animal Law.Joshua Jowitt - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):572-581.
    This paper will ask whether the legal status presently afforded to nonhuman animals ought to influence regulatory debates concerning human cerebral organoids. The New York Courts recently refused to grant a writ of habeas corpus to Happy the Elephant as she was property rather than a legal person while at the same time accepting that she is a moral patient deserving of rights protection. An undesirable situation has therefore arisen in which the law holds a being with moral status (...)
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  33.  25
    Public Engagement With Brain Organoid Research and Application: Lessons From Genome Editing.Corinna Klingler, Lara Wiese, Gardar Arnason & Robert Ranisch - 2022 - American Journal of Bioethics Neuroscience 13 (2):98-100.
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  34.  21
    Dimensions of Consciousness and the Moral Status of Brain Organoids.J. Lomax Boyd & Nethanel Lipshitz - 2023 - Neuroethics 17 (1):1-15.
    Human brain organoids (HBOs) are novel entities that may exhibit unique forms of cognitive potential. What moral status, if any, do they have? Several authors propose that consciousness may hold the answer to this question. Others identify various _kinds of_ consciousness as crucially important for moral consideration, while leaving open the challenge of determining whether HBOs have them. This paper aims to make progress on these questions in two ways. First, it proposes a framework for thinking about the moral (...)
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  35.  25
    Media portrayal of ethical and social issues in brain organoid research.Abigail Presley, Leigh Ann Samsa & Veljko Dubljević - 2022 - Philosophy, Ethics, and Humanities in Medicine 17 (1):1-14.
    Background Human brain organoids are a valuable research tool for studying brain development, physiology, and pathology. Yet, a host of potential ethical concerns are inherent in their creation. There is a growing group of bioethicists who acknowledge the moral imperative to develop brain organoid technologies and call for caution in this research. Although a relatively new technology, brain organoids and their uses are already being discussed in media literature. Media literature informs the public and policymakers but has the (...)
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  36.  80
    Ethical (and epistemological) issues regarding consciousness in cerebral organoids.Joshua Shepherd - 2018 - Journal of Medical Ethics 44 (9):611-612.
    In this interesting paper, Lavazza and Massimini draw attention to a subset of the ethical issues surrounding the development and potential uses of cerebral organoids. This subset concerns the possibility that cerebral organoids may one day develop phenomenal consciousness, and thereby qualify as conscious subjects—that there may one day be something it is like to be an advanced cerebral organoid. This possibility may feel outlandish. But as Lavazza and Massimini demonstrate, the science of organoids is moving fast, (...)
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  37.  20
    What Brain Organoid Research Can Gain From Engaging Biospecimen Donors.Katherine E. MacDuffie - 2022 - American Journal of Bioethics Neuroscience 13 (2):95-97.
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  38.  36
    Cultures and cures: neurodiversity and brain organoids.Kris Dierickx & Andrew J. Barnhart - 2021 - BMC Medical Ethics 22 (1):1-6.
    BackgroundResearch with cerebral organoids is beginning to make significant progress in understanding the etiology of autism spectrum disorder (ASD). Brain organoid models can be grown from the cells of donors with ASD. Researchers can explore the genetic, developmental, and other factors that may give rise to the varieties of autism. Researchers could study all of these factors together with brain organoids grown from cells originating from ASD individuals. This makes brain organoids unique from other forms of ASD (...)
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  39.  21
    Ethical Issues of Brain Organoids: Well Beyond “Consciousness”?Henri-Corto Stoeklé, Achille Ivasilevitch, Geneviève Marignac & Christian Hervé - 2022 - American Journal of Bioethics Neuroscience 13 (2):109-111.
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  40.  15
    Regulating Possibly Sentient Human Cerebral Organoids.Heather Browning & Walter Veit - 2023 - American Journal of Bioethics Neuroscience 14 (2):197-199.
    Due to their contested ethical and legal status, human cerebral organoids (HCOs) have become the subject of one of the most rapidly expanding debates in the recent bioethics literature. There is no...
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  41.  9
    Macro-bio-ethical Versus Micro-bio-ethical Issues Concerning Human Brain Organoids.Henri-Corto Stoeklé, Geneviève Marignac & Christian Hervé - 2023 - American Journal of Bioethics Neuroscience 14 (2):199-202.
    Organoids, in general, have become an established theme in bioethics. However, brain organoids are almost unique due to the vital and symbolic nature of the organ they reproduce, albeit partially,...
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  42.  12
    Weighing the moral status of brain organoids and research animals.Julian J. Koplin - 2024 - Bioethics 38 (5):410-418.
    Recent advances in human brain organoid systems have raised serious worries about the possibility that these in vitro ‘mini‐brains’ could develop sentience, and thus, moral status. This article considers the relative moral status of sentient human brain organoids and research animals, examining whether we have moral reasons to prefer using one over the other. It argues that, contrary to common intuitions, the wellbeing of sentient human brain organoids should not be granted greater moral consideration than the wellbeing of (...)
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  43.  22
    The Ethics of Human Brain Organoid Transplantation in Animals.Tsutomu Sawai, Julian Savulescu, Christopher Gyngell & Masanori Kataoka - 2023 - Neuroethics 16 (3):1-15.
    In this paper, we outline how one might conduct a comprehensive ethical evaluation of human brain organoid transplantation in animals. Thus far, ethical concerns regarding this type of research have been assumed to be similar to those associated with other transplants of human cells in animals, and have therefore not received significant attention. The focus has been only on the welfare, moral status, or mental capacities of the host animal. However, the transplantation of human brain organoids introduces several new (...)
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  44.  18
    The Donation of Human Biological Material for Brain Organoid Research: The Problems of Consciousness and Consent.Masanori Kataoka, Christopher Gyngell, Julian Savulescu & Tsutomu Sawai - 2024 - Science and Engineering Ethics 30 (1):1-15.
    Human brain organoids are three-dimensional masses of tissues derived from human stem cells that partially recapitulate the characteristics of the human brain. They have promising applications in many fields, from basic research to applied medicine. However, ethical concerns have been raised regarding the use of human brain organoids. These concerns primarily relate to the possibility that brain organoids may become conscious in the future. This possibility is associated with uncertainties about whether and in what sense brain (...) could have consciousness and what the moral significance of that would be. These uncertainties raise further concerns regarding consent from stem cell donors who may not be sufficiently informed to provide valid consent to the use of their donated cells in human brain organoid research. Furthermore, the possibility of harm to the brain organoids raises question about the scope of the donor’s autonomy in consenting to research involving these entities. Donor consent does not establish the reasonableness of the risk and harms to the organoids, which ethical oversight must ensure by establishing some measures to mitigate them. To address these concerns, we provide three proposals for the consent procedure for human brain organoid research. First, it is vital to obtain project-specific consent rather than broad consent. Second, donors should be assured that appropriate measures will be taken to protect human brain organoids during research. Lastly, these assurances should be fulfilled through the implementation of precautionary measures. These proposals aim to enhance the ethical framework surrounding human brain organoid research. (shrink)
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  45.  22
    Potential Consciousness of Human Cerebral Organoids: on Similarity-Based Views in Precautionary Discourse.Sarah Diner - 2023 - Neuroethics 16 (3):1-8.
    Advances in research on human cerebral organoids (HCOs) call for a critical review of current research policies. A challenge for the evaluation of necessary research regulations lies in the severe uncertainty about future trajectories the currently very rudimentary stages of neural cell cultures might take as the technology progresses. To gain insights into organotypic cultures, ethicists, legal scholars, and neuroscientists rely on resemblances to the human brain. They refer to similarities in structural or functional terms that have been established (...)
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  46.  15
    Thinking in 3 dimensions: philosophies of the microenvironment in organoids and organs-on-chip.Silvia Caianiello, Marta Bertolaso & Guglielmo Militello - 2023 - History and Philosophy of the Life Sciences 45 (2):1-35.
    Organoids and organs-on-a-chip are currently the two major families of 3D advanced organotypic in vitro culture systems, aimed at reconstituting miniaturized models of physiological and pathological states of human organs. Both share the tenets of the so-called “three-dimensional thinking”, a Systems Physiology approach focused on recapitulating the dynamic interactions between cells and their microenvironment. We first review the arguments underlying the “paradigm shift” toward three-dimensional thinking in the in vitro culture community. Then, through a historically informed account of the (...)
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  47.  58
    What (or sometimes who) are organoids? And whose are they?Andrea Lavazza - 2019 - Journal of Medical Ethics 45 (2):144-145.
    In terms of ethical implications, Boers, van Delden and Bredenoord have made an interesting step forward with their model of organoids as hybrids, which seeks to find a balance between subject-like value and object-like value. Their framework aims to introduce effective procedures not to exploit donors and to increase their engagement, but it does not seem to take sufficient account of how organoids are used and how donors and society as a whole may want to act about such (...)
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  48.  14
    Rebutting the Ethical Considerations regarding Consciousness in Human Cerebral Organoids: Challenging the Premature Assumptions.Aníbal M. Astobiza - 2023 - American Journal of Bioethics Neuroscience 14 (2):207-210.
    In their latest target article, Zilio and Lavazza (2023) major claim is that research on human cerebral organoids (HCOs) must take into account whether they can acquire sentience or a primitive for...
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    A Teleological Approach to the Ontological Status of Human Cerebral Organoids.Takuya Niikawa, Yoshiyuki Hayashi & Tsutomu Sawai - 2023 - American Journal of Bioethics Neuroscience 14 (2):204-206.
    In the target article, Zilio and Lavazza (2023) persuasively argue that an ontological analysis of human cerebral organoids (HCOs) is necessary to identify their moral status. Although they also pr...
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    Beyond the Personhood: An In-Depth Analysis of Moral Considerations in Human Brain Organoid Research.Tsutomu Sawai & Shu Ishida - 2024 - American Journal of Bioethics 24 (1):54-56.
    Human brain organoids (HBOs), three-dimensional neural tissues derived from human pluripotent stem cells, are at the forefront of biomedical research, provoking intricate ethical quandaries (Sawai...
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