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  1. Four Faces of Fair Subject Selection.Katherine Witte Saylor & Douglas MacKay - 2020 - American Journal of Bioethics 20 (2):5-19.
    Although the principle of fair subject selection is a widely recognized requirement of ethical clinical research, it often yields conflicting imperatives, thus raising major ethical dilemmas regarding participant selection. In this paper, we diagnose the source of this problem, arguing that the principle of fair subject selection is best understood as a bundle of four distinct sub-principles, each with normative force and each yielding distinct imperatives: (1) fair inclusion; (2) fair burden sharing; (3) fair opportunity; and (4) fair distribution of (...)
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  • Defending and Defining Environmental Responsibilities for the Health Research Sector.Bridget Pratt - 2024 - Science and Engineering Ethics 30 (3):1-21.
    Six planetary boundaries have already been exceeded, including climate change, loss of biodiversity, chemical pollution, and land-system change. The health research sector contributes to the environmental crisis we are facing, though to a lesser extent than healthcare or agriculture sectors. It could take steps to reduce its environmental impact but generally has not done so, even as the planetary emergency worsens. So far, the normative case for why the health research sector should rectify that failure has not been made. This (...)
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  • The right to withdraw from controlled human infection studies: Justifications and avoidance.Holly Fernandez Lynch - 2020 - Bioethics 34 (8):833-848.
    The right to withdraw from research without penalty is well established around the world. However, it has been challenged in some corners of bioethics based on concerns about various harms—to participants, to scientific integrity, and to research bystanders—that may stem from withdrawal. These concerns have become particularly salient in emerging debates about the ethics of controlled human infection (CHI) studies in which participants are intentionally infected with pathogens, often in inpatient settings with extensive follow‐up. In this article, I provide support (...)
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  • Nanomedicine First-in-Human Research: Challenges for Informed Consent.Nancy M. P. King - 2012 - Journal of Law, Medicine and Ethics 40 (4):823-830.
    First-in-human research has several characteristics that require special attention with respect to ethics and human subjects protections. At least some nanomedical technologies may also have characteristics that merit special attention in clinical research, as other papers in this symposium show. This paper considers how to address these characteristics in the consent form and process for FIH nanomedicine research, focusing principally on experimental nanotherapeutic interventions but also considering nanodiagnostic interventions.It is essential, as a starting point, to recognize that the consent form (...)
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  • Beyond Human Subjects: Risk, Ethics, and Clinical Development of Nanomedicines.Jonathan Kimmelman - 2012 - Journal of Law, Medicine and Ethics 40 (4):841-847.
    Clinical testing of nanomedicines presents two challenges to prevailing, human subject-centered frameworks governing research ethics. First, some nanomedical applications may present risk to persons other than research subjects. Second, pressures encountered in testing nanomedicines may present threats to the kinds of collaborations and collective activities needed for supporting clinical translation and redeeming research risk. In this article, I describe how similar challenges were encountered and addressed in gene transfer, and sketch policy options that might be explored in the nanomedicine translation (...)
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  • Beyond Human Subjects: Risk, Ethics, and Clinical Development of Nanomedicines.Jonathan Kimmelman - 2012 - Journal of Law, Medicine and Ethics 40 (4):841-847.
    Like all policies, contemporary human research policies are the product of their history. The scandals and traumas motivating their creation — the Nazi doctors trials, Tuskegee, the Milgram experiment on obedience — however different in their particulars, all share a common narrative: a scientist, pursuing valued social ends, runs roughshod over the personal interests of disadvantaged human subjects. From the Nuremberg code through the latest revisions of the Declaration of Helsinki, research ethics policies have sought to erect a sphere of (...)
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  • Recommendations for Nanomedicine Human Subjects Research Oversight: An Evolutionary Approach for an Emerging Field.Leili Fatehi, Susan M. Wolf, Jeffrey McCullough, Ralph Hall, Frances Lawrenz, Jeffrey P. Kahn, Cortney Jones, Stephen A. Campbell, Rebecca S. Dresser, Arthur G. Erdman, Christy L. Haynes, Robert A. Hoerr, Linda F. Hogle, Moira A. Keane, George Khushf, Nancy M. P. King, Efrosini Kokkoli, Gary Marchant, Andrew D. Maynard, Martin Philbert, Gurumurthy Ramachandran, Ronald A. Siegel & Samuel Wickline - 2012 - Journal of Law, Medicine and Ethics 40 (4):716-750.
    Nanomedicine is yielding new and improved treatments and diagnostics for a range of diseases and disorders. Nanomedicine applications incorporate materials and components with nanoscale dimensions where novel physiochemical properties emerge as a result of size-dependent phenomena and high surface-to-mass ratio. Nanotherapeutics and in vivo nanodiagnostics are a subset of nanomedicine products that enter the human body. These include drugs, biological products, implantable medical devices, and combination products that are designed to function in the body in ways unachievable at larger scales. (...)
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