Results for ' genomic research'

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  1.  61
    Ethical Guidelines for Human Embryonic Stem Cell Research (A Recommended Manuscript).Chinese National Human Genome Center at Shanghai Ethics Committee - 2004 - Kennedy Institute of Ethics Journal 14 (1):47-54.
    In lieu of an abstract, here is a brief excerpt of the content:Kennedy Institute of Ethics Journal 14.1 (2004) 47-54 [Access article in PDF] Ethical Guidelines for Human Embryonic Stem Cell Research*(A Recommended Manuscript) Adopted on 16 October 2001Revised on 20 August 2002 Ethics Committee of the Chinese National Human Genome Center at Shanghai, Shanghai 201203 Human embryonic stem cell (ES) research is a great project in the frontier of biomedical science for the twenty-first century. Be- cause the (...)
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  2.  47
    Addressing the Ethical Challenges in Genetic Testing and Sequencing of Children.Ellen Wright Clayton, Laurence B. McCullough, Leslie G. Biesecker, Steven Joffe, Lainie Friedman Ross, Susan M. Wolf & For the Clinical Sequencing Exploratory Research Group - 2014 - American Journal of Bioethics 14 (3):3-9.
    American Academy of Pediatrics (AAP) and American College of Medical Genetics (ACMG) recently provided two recommendations about predictive genetic testing of children. The Clinical Sequencing Exploratory Research Consortium's Pediatrics Working Group compared these recommendations, focusing on operational and ethical issues specific to decision making for children. Content analysis of the statements addresses two issues: (1) how these recommendations characterize and analyze locus of decision making, as well as the risks and benefits of testing, and (2) whether the guidelines conflict (...)
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  3. Ethical issues in genomics research on neurodevelopmental disorders: a critical interpretive review.Signe Mezinska, L. Gallagher, M. Verbrugge & E. M. Bunnik - 2021 - Human Genomics 16 (15).
    Background Genomic research on neurodevelopmental disorders (NDDs), particularly involving minors, combines and amplifies existing research ethics issues for biomedical research. We performed a review of the literature on the ethical issues associated with genomic research involving children affected by NDDs as an aid to researchers to better anticipate and address ethical concerns. Results Qualitative thematic analysis of the included articles revealed themes in three main areas: research design and ethics review, inclusion of (...) participants, and communication of research results. Ethical issues known to be associated with genomic research in general, such as privacy risks and informed consent/assent, seem especially pressing for NDD participants because of their potentially decreased cognitive abilities, increased vulnerability, and stigma associated with mental health problems. Additionally, there are informational risks: learning genetic information about NDD may have psychological and social impact, not only for the research participant but also for family members. However, there are potential benefits associated with research participation, too: by enrolling in research, the participants may access genetic testing and thus increase their chances of receiving a (genetic) diagnosis for their neurodevelopmental symptoms, prognostic or predictive information about disease progression or the risk of concurrent future disorders. Based on the results of our review, we developed an ethics checklist for genomic research involving children affected by NDDs. Conclusions In setting up and designing genomic research efforts in NDD, researchers should partner with communities of persons with NDDs. Particular attention should be paid to preventing disproportional burdens of research participation of children with NDDs and their siblings, parents and other family members. Researchers should carefully tailor the information and informed consent procedures to avoid therapeutic and diagnostic misconception in NDD research. To better anticipate and address ethical issues in specific NDD studies, we suggest researchers to use the ethics checklist for genomic research involving children affected by NDDs presented in this paper. (shrink)
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  4.  70
    Obtaining informed consent for genomics research in Africa: analysis of H3Africa consent documents.Nchangwi Syntia Munung, Patricia Marshall, Megan Campbell, Katherine Littler, Francis Masiye, Odile Ouwe-Missi-Oukem-Boyer, Janet Seeley, D. J. Stein, Paulina Tindana & Jantina de Vries - 2016 - Journal of Medical Ethics 42 (2):132-137.
    Background The rise in genomic and biobanking research worldwide has led to the development of different informed consent models for use in such research. This study analyses consent documents used by investigators in the H3Africa (Human Heredity and Health in Africa) Consortium. Methods A qualitative method for text analysis was used to analyse consent documents used in the collection of samples and data in H3Africa projects. Thematic domains included type of consent model, explanations of genetics/genomics, data sharing (...)
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  5.  99
    Genomic research and data-mining technology: Implications for personal privacy and informed consent.Herman T. Tavani - 2004 - Ethics and Information Technology 6 (1):15-28.
    This essay examines issues involving personal privacy and informed consent that arise at the intersection of information and communication technology and population genomics research. I begin by briefly examining the ethical, legal, and social implications program requirements that were established to guide researchers working on the Human Genome Project. Next I consider a case illustration involving deCODE Genetics, a privately owned genetics company in Iceland, which raises some ethical concerns that are not clearly addressed in the current ELSI guidelines. (...)
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  6.  18
    Why genomics researchers are sometimes morally required to hunt for secondary findings.Julian J. Koplin, Julian Savulescu & Danya F. Vears - 2020 - BMC Medical Ethics 21 (1):1-11.
    Genomic research can reveal ‘unsolicited’ or ‘incidental’ findings that are of potential health or reproductive significance to participants. It is widely thought that researchers have a moral obligation, grounded in the duty of easy rescue, to return certain kinds of unsolicited findings to research participants. It is less widely thought that researchers have a moral obligation to actively look for health-related findings. This paper examines whether there is a moral obligation, grounded in the duty of easy rescue, (...)
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  7.  30
    Biobank/Genomic Research in Nigeria: Examining Relevant Privacy and Confidentiality Frameworks.Obiajulu Nnamuchi - 2015 - Journal of Law, Medicine and Ethics 43 (4):776-786.
    Health research raises profound concerns of an ethical and legal nature — concerns primarily centered on how to balance researchers’ quest for scientific discovery against societal interest in protecting individuals whose participation makes the discovery possible. Particularly in a country such as Nigeria, which, not too long ago, suffered major abuse of research subjects, deploying a robust ethicolegal regime capable of curbing excesses and protecting research participants whilst contemporaneously not frustrating scientific progress is not an easy task. (...)
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  8.  11
    Genomic Research with the Newly Dead: A Crossroads for Ethics and Policy.Rebecca L. Walker, Eric T. Juengst, Warren Whipple & Arlene M. Davis - 2014 - Journal of Law, Medicine and Ethics 42 (2):220-231.
    Research uses of human bodies maintained by mechanical ventilation after being declared dead by neurological criteria, were first published in the early 1980s with a renewed interest in research on the newly or nearly dead occurring in about last decade. While this type of research may take many different forms, recent technologic advances in genomic sequencing along with high hopes for genomic medicine, have inspired interest in genomic research with the newly dead. For (...)
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  9.  14
    Genomic research data: open vs. restricted access.David B. Resnik - 2010 - IRB: Ethics & Human Research 32 (1):1.
    Openness is one of science’s fundamental ethical norms, but it should not take precedence over the obligation to protect the confidentiality of data. Deidentifying the data obtained from human genomic research as a condition of providing open access to research data is a strategy to promote scientific openness while protecting research participants’ confidentiality interests. However, given recent advances in methods of reidentifying individuals whose deidentified data are in genomic databases, the best way to balance scientific (...)
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  10.  16
    Genomic Research with the Newly Dead: A Crossroads for Ethics and Policy.Rebecca L. Walker, Eric T. Juengst, Warren Whipple & Arlene M. Davis - 2014 - Journal of Law, Medicine and Ethics 42 (2):220-231.
    Recent advances in next generation sequencing along with high hopes for genomic medicine have inspired interest in genomic research with the newly dead. However, applicable law does not adequately determine ethical or policy responses to such research. In this paper we propose that such research stands at a crossroads between other more established biomedical clinical and research practices. In addressing the ethical and policy issues raised by a particular research project within our institution (...)
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  11.  14
    Genomic Research and Incidental Findings.Brian Van Ness - 2008 - Journal of Law, Medicine and Ethics 36 (2):292-297.
    The Human Genome Project showed that there is signifcant genetic variation within the population. Current research is accumulating large databases that may reveal genetic variations associated with disease or health risks, even if not intended as part of the study design. These incidental fnd-ings create legal, ethical, and fnancial challenges for researchers. Current federal and international guidelines are not adequate. Plans for dealing with incidental fndings need to be established in the study design and reviewed and approved by the (...)
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  12. Human Genome Research in an Interdependent World.Alexander Morgan Capron - 1991 - Kennedy Institute of Ethics Journal 1 (3):247-251.
    In lieu of an abstract, here is a brief excerpt of the content:Human Genome Research in an Interdependent WorldAlexander Morgan Capron (bio)This has been the year of agenda-setting conferences for the ambitious ELSI (ethical, legal and social issues) program of the Human Genome Project (HGP). But of the dozen or more major meetings of this sort held across the country, the one held at the National Institutes of Heakh (NIH) in Bethesda, MD, June 2-4, 1991, was distinctive in several (...)
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  13.  17
    Genomic Research and Incidental Findings.Brian Van Ness - 2008 - Journal of Law, Medicine and Ethics 36 (2):292-297.
    Medical practice is poised to incorporate genomescale testing into treatment decisions. However, broad genome testing in laboratories may lead to discoveries not anticipated, yet highly significant to the health of the patient. Understanding the complexity of our genome and its relationship to our health is an overwhelming task. Currently, much of the effort to unravel this complexity is in the realm of research. However, researchers are often neither qualified nor prepared to deal with incidental findings of genetic abnormalities that (...)
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  14.  50
    Understandings of genomic research in developing countries: a qualitative study of the views of MalariaGEN participants in Mali.Karim Traore, Susan Bull, Alassane Niare, Salimata Konate, Mahamadou A. Thera, Dominic Kwiatkowski, Michael Parker & Ogobara K. Doumbo - 2015 - BMC Medical Ethics 16 (1):1-10.
    BackgroundObtaining informed consent for participation in genomic research in low-income settings presents specific ethical issues requiring attention. These include the challenges that arise when providing information about unfamiliar and technical research methods, the implications of complicated infrastructure and data sharing requirements, and the potential consequences of future research with samples and data. This study investigated researchers’ and participants’ parents’ experiences of a consent process and understandings of a genome-wide association study of malaria involving children aged five (...)
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  15.  56
    Ethical issues in human genomics research in developing countries.Jantina de Vries, Susan J. Bull, Ogobara Doumbo, Muntaser Ibrahim, Odile Mercereau-Puijalon, Dominic Kwiatkowski & Michael Parker - 2011 - BMC Medical Ethics 12 (1):5.
    BackgroundGenome-wide association studies (GWAS) provide a powerful means of identifying genetic variants that play a role in common diseases. Such studies present important ethical challenges. An increasing number of GWAS is taking place in lower income countries and there is a pressing need to identify the particular ethical challenges arising in such contexts. In this paper, we draw upon the experiences of the MalariaGEN Consortium to identify specific ethical issues raised by such research in Africa, Asia and Oceania.DiscussionWe explore (...)
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  16.  35
    Understanding risk: psychosis and genomics research in Singapore.Ayesha Ahmad, Tamara Lysaght, Liu Jianjun, Mythily Subramaniam, Tan Say Beng & Benjamin Capps - 2012 - Genomics, Society and Policy 8 (2):1-14.
    This is an exploratory paper of the ethical implications for genomic research and mental illness with specific reference to Singapore. Singapore has a unique context due to its social and political systems, and although it is a relatively small country, its population is religiously and culturally diverse. The issues that we identify here, therefore, will offer new perspectives and will also shed light on the existing literature on psychiatric genomics in society. We contextualise issues such as risk and (...)
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  17.  19
    Informed consent in genomic research and biobanking: taking feedback of findings seriously.Paulina Tindana, Cornelius Depuur, Jantina de Vries, Janet Seeley & Michael Parker - 2020 - Global Bioethics 31 (1):200-215.
    ABSTRACT Genomic research and biobanking present several ethical, social and cultural challenges, particularly when conducted in settings with limited scientific research capacity. One of these challenges is determining the model of consent that should support the sharing of human biological samples and data in the context of international collaborative research. In this paper, we report on the views of key research stakeholders in Ghana on what should count as good ethical practice when seeking consent for (...)
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  18.  25
    Informed consent in genomic research and biobanking: taking feedback of findings seriously.Paulina Tindana, Cornelius Depuur, Jantina de Vries, Janet Seeley & Michael Parker - 2020 - Global Bioethics 31 (1):200-215.
    Genomic research and biobanking present several ethical, social and cultural challenges, particularly when conducted in settings with limited scientific research capacity. One of these challenges is determining the model of consent that should support the sharing of human biological samples and data in the context of international collaborative research. In this paper, we report on the views of key research stakeholders in Ghana on what should count as good ethical practice when seeking consent for (...) research and biobanking in Africa. This study was part of a multi-country qualitative case study conducted in three African countries: Ghana, Uganda and Zambia under the auspices of the Human Heredity and Health in Africa initiative. Our study suggests that while participants are willing to give consent for their samples and associated data to be used for future research purposes, they expect to receive feedback about the progress of the research and about the kinds of research being undertaken on their samples and data. These expectations need to be anticipated and discussed during the consent process which should be seen as part of an ongoing communication process throughout the research process. (shrink)
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  19.  13
    Ethics of ‘Counting Me In’: framing the implications of direct-to-patient genomics research.Tenny R. Zhang - 2024 - Journal of Medical Ethics 50 (1):45-49.
    Count Me In (CMI) was launched in 2015 as a patient-driven research initiative aimed at accelerating the study of cancer genomics through direct participant engagement, electronic consent and open-access data sharing. It is an example of a large-scale direct-to-patient (DTP) research project which has since enrolled thousands of individuals. Within the broad scope of ‘citizen science’, DTP genomics research is defined here as a specific form of ‘top-down’ research endeavour developed and overseen by institutions within the (...)
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  20. When Should Genome Researchers Disclose Misattributed Pahentage?Amulya Mandava, Joseph Millum & Benjamin E. Berkman - 2015 - Hastings Center Report 45 (4):28-36.
    Research studies increasingly use genomic sequencing to draw inferences based on comparisons between the genetic data of a set of purportedly related individuals. As use of this method progresses, it will become much more common to discover that the assumed biological relationships between the individuals are mistaken. Consequently, researchers will have to grapple with decisions about whether to return incidental findings of misattributed parentage on a much larger scale than ever before. In this paper we provide an extended (...)
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  21. Human Genome Research And The Law: The Ethical Basis Of International Regulation.Eike-Henner Kluge - 1999 - Jahrbuch für Recht Und Ethik 7.
    Dieser Beitrag geht von dem Standpunkt aus, daß das menschliche Genom nicht als Privateigentum der jeweils betroffenen Person, sondern als Gemeingut der Menschheit anzusehen ist. Es wird weiter dargestellt, daß die Genomforschung selbst sowie die Anwendung der durch sie entwickelten Handlungsmöglichkeiten sowohl positive als auch negative Aspekte hat. Angesichts ihres Potentials zum Guten wäre es jedoch verfehlt, aufgrund von meist religiös basierten oder kurzsichtigen tutioristischen Bedenken, die nur auf die Möglichkeit eines Mißbrauchs des so erworbenen Wissens ausgerichtet sind, die Forschung (...)
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  22.  24
    Genome research in the mid-1990s: Selections from updates to scope notes on genetic topics.Pat Milmoe McCarrick & Tina Darragh - 1997 - Kennedy Institute of Ethics Journal 7 (3):299-318.
  23.  23
    Human genome research and the challenge of contingent future persons: Toward an impersonal theocentric approach Jan Christian Heller.David Heyd - 1998 - Bioethics 12 (2):173–176.
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  24.  69
    Sequence Matters: Genomic Research and the Gene Concept.Laura Perini - 2011 - Philosophy of Science 78 (5):752-762.
    Analysis of two key ways of characterizing genes—as causes of phenotypic effects and as genomic DNA sequences—has yielded widespread pessimism that they can be united in a coherent gene concept. This raises important questions about the epistemology of genomic research: If analysis of a genome sequence cannot yield information about genes defined both in terms of their products and their DNA sequence, then what could we learn from it? I investigate basic tools of genomic analysis, argue (...)
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  25.  19
    Community engagement in genomic research: Proposing a strategic model for effective participation of indigenous communities.Olubunmi Ogunrin, Mark Gabbay, Kerry Woolfall & Lucy Frith - 2021 - Developing World Bioethics 22 (4):189-202.
    Community engagement (CE) contributes to successful research. There is, however, a lack of literature on the effectiveness of different models of CE and, specifically, on CE strategies for the conduct of genomic research in sub-Saharan Africa. There is also a need for models of CE that transcend the recruitment stage of engaging prospective individuals and communities and embed CE throughout the research process and after the research has concluded. The qualitative study reported here was designed (...)
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  26.  9
    Community engagement in genomic research: Proposing a strategic model for effective participation of indigenous communities.Olubunmi Ogunrin, Mark Gabbay, Kerry Woolfall, Lucy Frith & ogu - 2021 - Developing World Bioethics 22 (4):189-202.
    Community engagement (CE) contributes to successful research. There is, however, a lack of literature on the effectiveness of different models of CE and, specifically, on CE strategies for the conduct of genomic research in sub-Saharan Africa. There is also a need for models of CE that transcend the recruitment stage of engaging prospective individuals and communities and embed CE throughout the research process and after the research has concluded. The qualitative study reported here was designed (...)
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  27.  14
    Community engagement in genomic research: Proposing a strategic model for effective participation of indigenous communities.Olubunmi Ogunrin, Mark Gabbay, Kerry Woolfall & Lucy Frith - 2021 - Developing World Bioethics 22 (4):189-202.
    Community engagement (CE) contributes to successful research. There is, however, a lack of literature on the effectiveness of different models of CE and, specifically, on CE strategies for the conduct of genomic research in sub-Saharan Africa. There is also a need for models of CE that transcend the recruitment stage of engaging prospective individuals and communities and embed CE throughout the research process and after the research has concluded. The qualitative study reported here was designed (...)
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  28.  10
    Community engagement in genomic research: Proposing a strategic model for effective participation of indigenous communities.Olubunmi Ogunrin, Mark Gabbay, Kerry Woolfall & Lucy Frith - 2021 - Developing World Bioethics 22 (4):189-202.
    Community engagement (CE) contributes to successful research. There is, however, a lack of literature on the effectiveness of different models of CE and, specifically, on CE strategies for the conduct of genomic research in sub-Saharan Africa. There is also a need for models of CE that transcend the recruitment stage of engaging prospective individuals and communities and embed CE throughout the research process and after the research has concluded. The qualitative study reported here was designed (...)
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  29.  47
    Groups as gatekeepers to genomic research: Conceptually confusing, morally hazardous, and practically useless.Eric T. Juengst - 1998 - Kennedy Institute of Ethics Journal 8 (2):183-200.
    : Some argue that human groups have a stake in the outcome of population-genomics research and that the decision to participate in such research should therefore be subject to group permission. It is not possible, however, to obtain prior group permission, because the actual human groups under study, human demes, are unidentifiable before research begins. Moreover, they lack moral standing. If identifiable social groups with moral standing are used as proxies for demes, group approval could be sought, (...)
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  30.  40
    Pragmatic Tools for Sharing Genomic Research Results with the Relatives of Living and Deceased Research Participants.Susan M. Wolf, Emily Scholtes, Barbara A. Koenig, Gloria M. Petersen, Susan A. Berry, Laura M. Beskow, Mary B. Daly, Conrad V. Fernandez, Robert C. Green, Bonnie S. LeRoy, Noralane M. Lindor, P. Pearl O'Rourke, Carmen Radecki Breitkopf, Mark A. Rothstein, Brian Van Ness & Benjamin S. Wilfond - 2018 - Journal of Law, Medicine and Ethics 46 (1):87-109.
    Returning genomic research results to family members raises complex questions. Genomic research on life-limiting conditions such as cancer, and research involving storage and reanalysis of data and specimens long into the future, makes these questions pressing. This author group, funded by an NIH grant, published consensus recommendations presenting a framework. This follow-up paper offers concrete guidance and tools for implementation. The group collected and analyzed relevant documents and guidance, including tools from the Clinical Sequencing Exploratory (...)
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  31. Integrating Rules for Genomic Research, Clinical Care, Public Health Screening and DTC Testing: Creating Translational Law for Translational Genomics.Susan M. Wolf, Pilar N. Ossorio, Susan A. Berry, Henry T. Greely, Amy L. McGuire, Michelle A. Penny & Sharon F. Terry - 2020 - Journal of Law, Medicine and Ethics 48 (1):69-86.
    Human genomics is a translational field spanning research, clinical care, public health, and direct-to-consumer testing. However, law differs across these domains on issues including liability, consent, promoting quality of analysis and interpretation, and safeguarding privacy. Genomic activities crossing domains can thus encounter confusion and conflicts among these approaches. This paper suggests how to resolve these conflicts while protecting the rights and interests of individuals sequenced. Translational genomics requires this more translational approach to law.
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  32. Individual genetic and genomic research results and the tradition of informed consent: exploring US review board guidance.Christian Simon, Laura A. Shinkunas, Debra Brandt & Janet K. Williams - 2012 - Journal of Medical Ethics 38 (7):417-422.
    Background Genomic research is challenging the tradition of informed consent. Genomic researchers in the USA, Canada and parts of Europe are encouraged to use informed consent to address the prospect of disclosing individual research results (IRRs) to study participants. In the USA, no national policy exists to direct this use of informed consent, and it is unclear how local institutional review boards (IRBs) may want researchers to respond. Objective and methods To explore publicly accessible IRB websites (...)
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  33.  32
    Ethical issues in genomic research: Proposing guiding principles co-produced with stakeholders.D. Carrieri, L. Jackson, C. Bewshea, B. Prainsack, J. Mansfield, T. Ahmad, N. Hawkins & S. Kelly - 2018 - Clinical Ethics 13 (4):194-198.
    Ethical guidance for genomic research is increasingly sought and perceived to be necessary. Although there are pressing ethical issues in genomic research – concerning for example the recruitment of patients/participants; the process of taking consent; data sharing; and returning results to patients/participants – there is still limited useful guidance available for researchers/clinicians or for the research ethics committees who review such projects. This report outlines the ethical principles and guidance for genomic research co-produced (...)
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  34.  86
    Protecting Participants in Genomic Research: Understanding the “Web of Protections” Afforded by Federal and State Law.Leslie E. Wolf, Catherine M. Hammack, Erin Fuse Brown, Kathleen M. Brelsford & Laura M. Beskow - 2020 - Journal of Law, Medicine and Ethics 48 (1):126-141.
    Researchers now commonly collect biospecimens for genomic analysis together with information from mobile devices and electronic health records. This rich combination of data creates new opportunities for understanding and addressing important health issues, but also intensifies challenges to privacy and confidentiality. Here, we elucidate the “web” of legal protections for precision medicine research by integrating findings from qualitative interviews with structured legal research and applying them to realistic research scenarios involving various privacy threats.
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  35.  17
    The Need to Standardize the Reanalysis of Genomic Sequencing Results: Findings from Interviews with Underserved Families in Genomic Research.Simon M. Outram, Shannon Rego, Matthew Norstad & Sara Ackerman - 2024 - Journal of Bioethical Inquiry 21 (1):95-104.
    The reanalysis of genomic sequencing results has the potential to provide results that are of considerable medical and personal importance to recipients. Employing interviews with forty-seven predominantly medically underserved families and ethnographic observations we argue that there is pressing need to standardize the approach taken to reanalysis. Our findings highlight that study participants were unclear as to the likelihood of reanalysis happening, the process of initiating reanalysis, and whether they would receive revised results. Their reflections mirror the lack a (...)
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  36.  19
    Alternative IP Mechanisms in Genomic Research.Cheryl Power, Ed Levy, Emily Marden & Ben Warren - 2008 - Studies in Ethics, Law, and Technology 2 (2).
    This research is conducted by the Intellectual Property and Policy Research Group at the W. Maurice Young Centre for Applied Ethics at the University of British Columbia. It is part of the GE3LS component of the Genome Canada Project "Dissecting Gene Expression Networks in Mammalian Organogenesis," MORGEN, which is located principally at the British Columbia Cancer Agency, Vancouver, British Columbia, Canada. The project is involved in upstream, basic genomic research. Part of this work includes the characterization (...)
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  37.  24
    Automatic Placement of Genomic Research Results in Medical Records: Do Researchers Have a Duty? Should Participants Have a Choice?Anya E. R. Prince, John M. Conley, Arlene M. Davis, Gabriel Lázaro-Muñoz & R. Jean Cadigan - 2015 - Journal of Law, Medicine and Ethics 43 (4):827-842.
    The growing practice of returning individual results to research participants has revealed a variety of interpretations of the multiple and sometimes conflicting duties that researchers may owe to participants. One particularly difficult question is the nature and extent of a researcher’s duty to facilitate a participant’s follow-up clinical care by placing research results in the participant’s medical record. The question is especially difficult in the context of genomic research. Some recent genomic research studies — (...)
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  38.  9
    Informed consent, genomic research and mental health: A integrative review.Nina Kilkku & Arja Halkoaho - 2022 - Nursing Ethics 29 (4):973-987.
    BackgroundResearch on genomics has increased while the biobank activities are becoming more common in different countries. In the mental health field, the questions concerning the potential participants’ vulnerability as well as capacity to give the informed consent can cause reluctancy in recruiting persons with mental health problems, although the knowledge and understanding of mental health problems has remarkable changed, and practice is guided with inclusive approaches, such as recovery approach.AimThe aim of this study was to describe the current knowledge of (...)
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  39.  16
    Understanding risk: psychosis and genomics research in Singapore.Benjamin Capps, Tan Say Beng, Mythily Subramaniam, Liu Jianjun, Tamra Lysaght & Ayesha Ahmad - 2012 - Genomics, Society and Policy 8 (2):1-14.
    This is an exploratory paper of the ethical implications for genomic research and mental illness with specific reference to Singapore. Singapore has a unique context due to its social and political systems, and although it is a relatively small country, its population is religiously and culturally diverse. The issues that we identify here, therefore, will offer new perspectives and will also shed light on the existing literature on psychiatric genomics in society. We contextualise issues such as risk and (...)
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  40.  17
    Biobank and Genomic Research in Uganda: Are Extant Privacy and Confidentiality Regimes Adequate?Obiajulu Nnamuchi - 2016 - Journal of Law, Medicine and Ethics 44 (1):85-95.
    Not many African countries have been able to develop a robust system for regulating health research within their respective jurisdictions, particularly in the realm of biobanking and genomics. This is not without reason. Aside from underdevelopment and all that it entails or perhaps in consequence thereof, countries in the region have been unable to make significant strides in medical research. But there are exceptions. Amongst the few seeming success stories is Uganda. Nonetheless, although the country has developed what (...)
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  41.  35
    Disclosing Results to Genomic Research Participants: Differences That Matter.Alessandro Blasimme, Alexandra Soulier, Sophie Julia, Samantha Leonard & Anne Cambon-Thomsen - 2012 - American Journal of Bioethics 12 (10):20-22.
    The American Journal of Bioethics, Volume 12, Issue 10, Page 20-22, October 2012.
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  42.  18
    Automatic Placement of Genomic Research Results in Medical Records: Do Researchers Have a Duty? Should Participants Have a Choice?Anya E. R. Prince, John M. Conley, Arlene M. Davis, Gabriel Lázaro-Muñoz & R. Jean Cadigan - 2015 - Journal of Law, Medicine and Ethics 43 (4):827-842.
    The growing practice of returning individual results to research participants has revealed a variety of interpretations of the multiple and sometimes conflicting duties that researchers may owe to participants. One particularly difficult question is the nature and extent of a researcher’s duty to facilitate a participant’s follow-up clinical care by placing research results in the participant’s medical record. The question is especially difficult in the context of genomic research. Some recent genomic research studies — (...)
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  43.  27
    Solidarity and justice as guiding principles in genomic research.Rogeer Hoedemaekers, Bert Gordijn & Martien Pijnenburg - 2007 - Bioethics 21 (6):342–350.
    ABSTRACT In genomic research the ideal standard of free, informed, prior and explicit consent is sometimes difficult to apply. This has raised concern that important genomic research will be restricted. Different consent procedures have therefore been proposed. This paper explicitly examines the question how, in genomic research, the principles of solidarity and justice can be used to justify forms of diminished individual control over personal data and bio‐samples. After a discussion of the notions of (...)
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  44.  16
    Do solidarity and reciprocity obligations compel African researchers to feedback individual genetic results in genomics research?Dimpho Ralefala, Mary Kasule, Ambroise Wonkam, Mogomotsi Matshaba & Jantina de Vries - 2020 - BMC Medical Ethics 21 (1):1-11.
    BackgroundA key ethical question in genomics research relates to whether individual genetic research results should be disclosed to research participants and if so, which results are to be disclosed, by whom and when. Whilst this issue has received only scarce attention in African bioethics discourse, the extension of genomics research to the African continent has brought it into sharp focus.MethodsIn this qualitative study, we examined the views of adolescents, parents and caregivers participating in a paediatric and (...)
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  45.  15
    International Policies on Sharing Genomic Research Results with Relatives: Approaches to Balancing Privacy with Access.Rebecca Branum & Susan M. Wolf - 2015 - Journal of Law, Medicine and Ethics 43 (3):576-593.
    Returning genetic research results to relatives raises complex issues. In order to inform the U.S. debate, this paper analyzes international law and policies governing the sharing of genetic research results with relatives and identifies key themes and lessons. The laws and policies from other countries demonstrate a range of approaches to balancing individual privacy and autonomy with family access for health benefit, offering important lessons for further development of approaches in the United States.
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  46.  89
    Does an appeal to the common good justify individual sacrifices for genomic research?Rogeer Hoedemaekers, Bert Gordijn & Martien Pijnenburg - 2006 - Theoretical Medicine and Bioethics 27 (5):415-431.
    In genomic research the ideal standard of free, informed, prior, and explicit consent is believed to restrict important research studies. For certain types of genomic research other forms of consent are therefore proposed which are ethically justified by an appeal to the common good. This notion is often used in a general sense and this forms a weak basis for the use of weaker forms of consent. Here we examine how the notion of the common (...)
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  47.  23
    Ubuntu philosophy and the consensus regarding incidental findings in genomic research: a heuristic approach.Cornelius Ewuoso - 2020 - Medicine, Health Care and Philosophy 23 (3):433-444.
    This study adopts a heuristic technique to argue the thesis that a set of norms rooted in the African philosophy of Ubuntu can usefully supplement current research guidelines for dealing with incidental findings discovered in genomic research. The consensus regarding incidental findings is that there is an ethical obligation to return individual genetic incidental findings that meet the threshold of analytic and clinical validity, have clinical utility, and are actionable, provided that research contributors have not opted (...)
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  48.  7
    Ethical issues in human genome research.Thomas H. Murray - 1997 - In Kristin Shrader-Frechette & Laura Westra (eds.), Technology and Values. Rowman & Littlefield. pp. 415.
  49.  23
    Epistemic justice, African values and feedback of findings in African genomics research.Cornelius Ewuoso, Ambroise Wonkam & Jantina de Vries - 2022 - Global Bioethics 33 (1):122-132.
    This article draws on key normative principles grounded in important values – solidarity, partiality and friendliness – in African philosophy to think critically and deeply about the ethical challenges around returning individual genetic research findings in African genomics research. Precisely, we propose that the normative implication of solidarity, partiality and friendliness is that returning findings should be considered as a gesture of goodwill to participants to the extent that it constitutes acting for their well-being. Concretely, the value of (...)
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    Risks to Relatives in Genomic Research: A Duty to Warn?Yvonne Bombard, Kenneth Offit & Mark E. Robson - 2012 - American Journal of Bioethics 12 (10):12-14.
    The American Journal of Bioethics, Volume 12, Issue 10, Page 12-14, October 2012.
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