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  1.  27
    Revisiting Ethical Guidelines for Research with Terminal Wean and Brain‐Dead Participants.Rebecca D. Pentz, Anne L. Flamm, Renata Pasqualini, Christopher J. Logothetis & Wadih Arap - 2003 - Hastings Center Report 33 (1):20-26.
    Some research is too risky to be conducted on anyone whose life expectancy is more than a few hours. Yet sometimes, the research can still be carried out using subjects who are brain dead or are soon to undergo a terminal wean, and who have articulated values that inclusion in the study can honor. So argues a team of ethicists and researchers at M.D. Anderson Cancer Center, where such research was recently undertaken.
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  2.  9
    Research involving the recently deceased: ethics questions that must be answered.Brendan Parent, Olivia S. Kates, Wadih Arap, Arthur Caplan, Brian Childs, Neal W. Dickert, Mary Homan, Kathy Kinlaw, Ayannah Lang, Stephen Latham, Macey L. Levan, Robert D. Truog, Adam Webb, Paul Root Wolpe & Rebecca D. Pentz - forthcoming - Journal of Medical Ethics.
    Research involving recently deceased humans that are physiologically maintained following declaration of death by neurologic criteria—or ‘research involving the recently deceased’—can fill a translational research gap while reducing harm to animals and living human subjects. It also creates new challenges for honouring the donor’s legacy, respecting the rights of donor loved ones, resource allocation and public health. As this research model gains traction, new empirical ethics questions must be answered to preserve public trust in all forms of tissue donation and (...)
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    Amphibian regeneration and mammalian cancer: Similarities and contrasts from an evolutionary biology perspective.Bruna Corradetti, Prashant Dogra, Simone Pisano, Zhihui Wang, Mauro Ferrari, Shu-Hsia Chen, Richard L. Sidman, Renata Pasqualini, Wadih Arap & Vittorio Cristini - 2021 - Bioessays 43 (7):2000339.
    Here we review and discuss the link between regeneration capacity and tumor suppression comparing mammals (embryos versus adults) with highly regenerative vertebrates. Similar to mammal embryo morphogenesis, in amphibians (essentially newts and salamanders) the reparative process relies on a precise molecular and cellular machinery capable of sensing abnormal signals and actively reprograming or eliminating them. As the embryo's evil twin, tumor also retains common functional attributes. The immune system plays a pivotal role in maintaining a physiological balance to provide surveillance (...)
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