Results for 'biobanks'

494 found
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  1.  10
    Governing biobanks: understanding the interplay between law and practice.Jane Kaye (ed.) - 2012 - Portland, Or.: Hart.
    Biobanks are proliferating rapidly worldwide because they are powerful tools and organisational structures for undertaking medical research. By linking samples to data on the health of individuals, it is anticipated that biobanks will be used to explore the relationship between genes, environment and lifestyle for many diseases, as well as the potential of individually-tailored drug treatments based on genetic predisposition. However, they also raise considerable challenges for existing legal frameworks and research governance structures. This book critically examines 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 which (...)
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  3.  3
    Biobanks: patents or open science?Antonella De Robbio - 2012 - Oxford: Woodhead Publishing.
    Biobanks represent an invaluable research tool and, as a result of their intrinsic and extrinsic nature, may be looked upon as archives or repositories largely made up of libraries, or collections of content where the content is the biological material derived from different individuals or species, representing valuable tangible assets. Biobanks analyses aspects of the commons and common intellectual property relating to the concepts of private property, not only concerning data but biological materials as well, and the advantages (...)
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  4.  38
    The biobank consent debate: why ‘meta-consent’ is still the solution!Thomas Ploug & Soren Holm - 2019 - Journal of Medical Ethics 45 (5):295-297.
    In a recent article in the Journal of Medical Ethics, Neil Manson sets out to show that the meta-consent model of informed consent is not the solution to perennial debate on the ethics of biobank participation. In this response, we shall argue that Manson’s considerations on the costs of a meta-consent model are incomplete and therefore misleading; his view that a model of broad consent passes a threshold of moral acceptability rests on an analogy that misconstrues how biobank research is (...)
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  5. Biobanking Legislation in Spain: Advancing or Undermining Its Ethical Values?Inmaculada de Melo-Martin & Eva Ortega-Paíno - forthcoming - Biopreserv Biobank.
    Biobanks are important resources for improving public health and individual care. Some legal frameworks can be more or less conducive to advancing the potential benefits of biobanks. The purpose of this article is to assess biobanking legislation and practices in Spain to determine how well they fare in such a regard. We focus here on some of the primary ethical values that ground relevant legislation and that we believe are consistent with promoting biobanking benefits: the value of scientific (...)
     
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  6. Biobank research and the right to privacy.Lars Øystein Ursin - 2008 - Theoretical Medicine and Bioethics 29 (4):267-285.
    What is privacy? What does privacy mean in relation to biobanking, in what way do the participants have an interest in privacy, (why) is there a right to privacy, and how should the privacy issue be regulated when it comes to biobank research? A relational view of privacy is argued for in this article, which takes as its basis a general discussion of several concepts of privacy and attempts at grounding privacy rights. In promoting and protecting the rights that participants (...)
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  7.  13
    Biobanking.John Harris & Louise Irving - 2007 - In Bonnie Steinbock (ed.), The Oxford handbook of bioethics. New York: Oxford University Press.
    This article looks at some of the chance discoveries and elegant ideas that were borne out through the availability of archived tissue samples. It then discusses some of the planned changes to the method and purpose of tissue storage and collection. The changes are in the form of new types of tissue bank, or biobank as they are conceived. These banks are part of a trend to move towards a preventative approach to public health rather than the current costly interventionist (...)
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  8.  18
    Biobanking Research and Privacy Laws in the United States.Heather L. Harrell & Mark A. Rothstein - 2016 - Journal of Law, Medicine and Ethics 44 (1):106-127.
    Privacy is protected in biobank-based research in the US primarily by the Health Insurance Portability and Accountability Act Privacy Rule and the Federal Policy for Protection of Human Subjects. Neither rule, however, was created to function in the unique context of biobank research, and therefore neither applies to all biobank-based research. Not only is it challenging to determine when the HIPAA Privacy Rule or the Common Rule apply, but these laws apply different standards to protect privacy. In addition, many other (...)
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  9. The Biobank as an Ethical Subject.Sean Cordell - 2011 - Health Care Analysis 19 (3):282-294.
    This paper argues that a certain way of thinking about the function of the biobank—about what it does and is constructed for as a social institution aimed at ‘some good’—can and should play a substantial role in an effective biobanking ethic. It first exemplifies an ‘institution shaped gap’ in the current field of biobanking ethics. Next the biobank is conceptualized as a social institution that is apt for a certain kind of purposive functional definition such that we know it by (...)
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  10.  20
    The ethics of biobanking: Assessing the right to control problem for broad consent.Neil C. Manson - 2019 - Bioethics 33 (5):540-549.
    The biobank consent debate is one with deeply held convictions on both the ‘broad’ and ‘specific’ side with little sign of resolution. Recently, Thomas Ploug and Soren Holm have developed an alternative to both specific and broad consent: a meta‐consent framework. The aim here is to consider whether meta‐consent provides a ‘solution’ to the biobank consent debate. We clarify what ‘meta‐consent’ actually is (arguing that the label is a misnomer and ‘consent à la carte’ is more accurate). We identify problems (...)
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  11.  22
    National Biobanks: Clinical Labor, Risk Production, and the Creation of Biovalue.Catherine Waldby & Robert Mitchell - 2010 - Science, Technology, and Human Values 35 (3):330-355.
    The development of genomics has dramatically expanded the scope of genetic research, and collections of genetic biosamples have proliferated in countries with active genomics research programs. In this essay, we consider a particular kind of collection, national biobanks. National biobanks are often presented by advocates as an economic ‘‘resource’’ that will be used by both basic researchers and academic biologists, as well as by pharmaceutical diagnostic and clinical genomics companies. Although national biobanks have been the subject of (...)
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  12.  19
    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 appears to (...)
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  13.  14
    Biobanks and human health research: Balancing progress and protections.A. Dhai, S. Mahomed & I. Sanne - 2015 - South African Journal of Bioethics and Law 8 (2):55.
    Biobanks are repositories that store human biological materials and their associated data. They are rapidly becoming part of national and international networks and give rise to unique ethico-regulatory issues. Whether consent is informed and whether this term should be used when specimens are collected for biobank research is questionable. Where risks occur, they are usually social and relate to identifiability. Public trust and confidence are important for the success of this type of research. Consensus is growing that governance of (...)
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  14.  43
    Biobanks for non-clinical purposes and the new law on forensic biobanks: does the Italian context protect the rights of minors?Pamela Tozzo, Renzo Pegoraro & Luciana Caenazzo - 2010 - Journal of Medical Ethics 36 (12):775-778.
    Biobanks are an important resource for medical research. Genetic research on biological material from minors can yield valuable information that can improve our understanding of genetic–environmental interactions and the genesis and development of early onset genetic disorders. The major ethical concerns relating to biobanks concern consent, privacy, confidentiality, commercialisation, and the right to know or not to know. However, research on paediatric data raises specific governance and ethical questions with regard to consent and privacy. We have considered the (...)
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  15.  27
    Biobanks in the low- and middle-income countries of the Arab Middle East region: challenges, ethical issues, and governance arrangements—a qualitative study involving biobank managers.Henry Silverman, Rania Labib, Ehsan Gamel, Alya Elgamri, Maha Emad Ibrahim, Mamoun Ahram & Ahmed Samir Abdelhafiz - 2022 - BMC Medical Ethics 23 (1):1-16.
    BackgroundBiobanks have recently been established in several low- and middle-income countries in the Arab region of the Middle East. We aimed to explore the views of biobank managers regarding the challenges, ethical issues, and governance arrangements of their biobanks.MethodsIn-depth semi-structured qualitative interviews were conducted with a purposive sample of eight biobank managers from Egypt, Jordan, and Sudan. Interviews were performed either face-to-face, by phone, or via Zoom and lasted approximately 45–75 min. After verbal consent, interviews were recorded and then (...)
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  16. Biobanking and risk assessment: a comprehensive typology of risks for an adaptive risk governance.Kaya Akyüz, Olga Tzortzatou, Łukasz Kozera, Melanie Goisauf, Signe Mezinska, Gauthier Chassang & Michaela Th Mayrhofer - 2021 - Life Sciences, Society and Policy 17 (1):1-28.
    Biobanks act as the custodians for the access to and responsible use of human biological samples and related data that have been generously donated by individuals to serve the public interest and scientific advances in the health research realm. Risk assessment has become a daily practice for biobanks and has been discussed from different perspectives. This paper aims to provide a literature review on risk assessment in order to put together a comprehensive typology of diverse risks biobanks (...)
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  17.  34
    Incorporating Biobank Consent into a Healthcare Setting: Challenges for Patient Understanding.T. J. Kasperbauer, Karen K. Schmidt, Ariane Thomas, Susan M. Perkins & Peter H. Schwartz - 2021 - AJOB Empirical Bioethics 12 (2):113-122.
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  18.  26
    Biobanks, Data Sharing, and the Drive for a Global Privacy Governance Framework.Edward S. Dove - 2015 - Journal of Law, Medicine and Ethics 43 (4):675-689.
    Spurred by a confluence of factors, most notably the decreasing cost of high-throughput technologies and advances in information technologies, a number of population research initiatives have emerged in recent years. These include large-scale, internationally collaborative genomic projects and biobanks, the latter of which can be defined as an organized collection of human biological material and associated data stored for one or more research purposes. Biobanks are a key emerging research infrastructure, and those established as prospective research resources comprising (...)
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  19.  46
    The moral concerns of biobank donors: the effect of non-welfare interests on willingness to donate.Raymond G. De Vries, Tom Tomlinson, H. Myra Kim, Chris D. Krenz, Kerry A. Ryan, Nicole Lehpamer & Scott Y. H. Kim - 2016 - Life Sciences, Society and Policy 12 (1):1-15.
    Donors to biobanks are typically asked to give blanket consent, allowing their donation to be used in any research authorized by the biobank. This type of consent ignores the evidence that some donors have moral, religious, or cultural concerns about the future uses of their donations – concerns we call “non-welfare interests”. The nature of non-welfare interests and their effect on willingness to donate to a biobank is not well understood. In order to better undersand the influence of non-welfare (...)
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  20.  15
    Biobanking: International Norms.Bartha Maria Knoppers - 2005 - Journal of Law, Medicine and Ethics 33 (1):7-14.
    While the socio-ethical and legal issues surrounding clinical genetics have long been the subject of international interest, the thorny questions of genetic research and biobanking are more recent. Add to this the fact that national guidelines and laws usually precede international policymaking, and the delay in international approaches is understandable. In that regard, the United Nations Educational, Scientific and Cultural Organization’s 1997 Universal Declaration on the Human Genome and Human Rights is unique in its prospective guidance on genetic research. Also, (...)
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  21.  28
    Biobanking: International Norms.Bartha Maria Knoppers - 2005 - Journal of Law, Medicine and Ethics 33 (1):7-14.
    While the socio-ethical and legal issues surrounding clinical genetics have long been the subject of international interest, the thorny questions of genetic research and biobanking are more recent. Add to this the fact that national guidelines and laws usually precede international policymaking, and the delay in international approaches is understandable. In that regard, the United Nations Educational, Scientific and Cultural Organization’s 1997 Universal Declaration on the Human Genome and Human Rights is unique in its prospective guidance on genetic research. Also, (...)
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  22.  22
    Biobanking in Israel 2016–17; expressed perceptions versus real life enrollment.Gideon Koren, Daniella Beller, Daphna Laifenfeld, Iris Grossman & Varda Shalev - 2017 - BMC Medical Ethics 18 (1):63.
    As part of the preparations to establish a population-based biobank in a large Israeli health organization, we aimed to investigate through focus groups the knowledge, perceptions and attitudes of insured Israelis, toward biobanking, and then, after input from focus groups’ participants, to empirically assess the impact of a revised recruitment process on recruitment rates. 1) Six Focus group discussions were conducted with individuals who had routine blood laboratory tests taken in the last 2 years. 2) After addressing the issues raised (...)
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  23.  43
    The biobank consent debate: Why ‘meta-consent’ is not the solution?Neil C. Manson - 2019 - Journal of Medical Ethics 45 (5):291-294.
    Over the past couple of decades, there has been an ongoing, often fierce, debate about the ethics of biobank participation. One central element of that debate has concerned the nature of informed consent, must specific reconsent be gained for each new use, or user, or is broad consent ethically adequate? Recently, Thomas Ploug and Søren Holm have developed an alternative to both specific and broad consent: what they call a meta-consent framework. On a meta-consent framework, participants can choose the type (...)
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  24.  22
    Biobanking and consenting to research: a qualitative thematic analysis of young people’s perspectives in the North East of England.Momodou Ndure, Isatou Sarr, Anna Roca, Kalifa Bojang, Effua Usuf, Fiona Cresswell, Elizabeth Fitchett, David Bath, Manuel Dewez, Shunmay Yeung, Sebastian Schroepf, Carola Schoen, Karl Reiter, Esther Maier, Eberhard Lurz, Matthias Kappler, Sabrina Juranek, Tobias Feuchtinger, Matthias Griese, Florian Hoffmann, Niklaus Haas, Katharina Danhauser, Irene Alba-Alejandre, Ioanna Mavridi, Patricia Schmied, Laura Kolberg, Ulrich von Both, Maike K. Tauchert, Elmar Wallner, Volker Strenger, Andrea Skrabl-Baumgartner, Siegfried Rödl, Klaus Pfurtscheller, Andreas Pfleger, Heidemarie Pilch, Tobias Niedrist, Sabine Löffler, Markus Keldorfer, Andreas Kapper, Christa Hude, Almuthe Hauer, Harald Haidl, Siegfried Gallistl, Ernst Eber, Astrid Ceolotto, Martin Benesch, Sebastian Bauchinger, Manfred G. Sagmeister, Martina Strempfl, Bianca Stoiser, Glorija Rajic, Alexandra Rusu, Lena Pölz, Manuel Leitner, Susanne Hösele, Christoph Zurl, Nina A. Schweintzger, Daniel S. Kohlfürst, Benno Kohlmaier & Ale Binder - 2023 - BMC Medical Ethics 24 (1):1-11.
    BackgroundBiobanking biospecimens and consent are common practice in paediatric research. We need to explore children and young people’s (CYP) knowledge and perspectives around the use of and consent to biobanking. This will ensure meaningful informed consent can be obtained and improve current consent procedures.MethodsWe designed a survey, in co-production with CYP, collecting demographic data, views on biobanking, and consent using three scenarios: 1) prospective consent, 2) deferred consent, and 3) reconsent and assent at age of capacity. The survey was disseminated (...)
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  25.  7
    Human Biobanking in Developed and Developing Countries: An Ethico-Legal Comparative Analysis of the Frameworks in the United Kingdom, Australia, Uganda, and South Africa.Safia Mahomed - 2021 - Cambridge Quarterly of Healthcare Ethics 30 (1):146-160.
    Although the concept of biobanking is not new, the open and evolving nature of biobanks has created profound ethical, legal, and social implications, including issues around informed consent, community engagement, secondary uses of materials over time, ownership of materials, data sharing, and privacy. Complexities also emerge because of increasing international collaborations and differing national positions. In addition, the degrees and topics of concern vary as legislative, ethical, and social frameworks differ across developed and developing countries. Implementing national laws in (...)
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  26.  42
    A biobank management model applicable to biomedical research.Christiane Auray-Blais & Johane Patenaude - 2006 - BMC Medical Ethics 7 (1):1-9.
    Background The work of Research Ethics Boards (REBs), especially when involving genetics research and biobanks, has become more challenging with the growth of biotechnology and biomedical research. Some REBs have even rejected research projects where the use of a biobank with coded samples was an integral part of the study, the greatest fear being the lack of participant protection and uncontrolled use of biological samples or related genetic data. The risks of discrimination and stigmatization are a recurrent issue. In (...)
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  27.  9
    Locating Biobanks in the Canadian Privacy Maze.Katie M. Saulnier & Yann Joly - 2016 - Journal of Law, Medicine and Ethics 44 (1):7-19.
    Although Canada has not yet enacted any biobanking-specific privacy law, guidance and oversight are provided via various federal and provincial health and privacy-related laws as well as via ethics and policy documents. The primary policy document governing health research, the Tri-Council Policy Statement: Ethical Conduct for Research Involving Humans, provides the framework for the strong role of Research Ethics Boards in Canada, and limits research funding from Canada's three main federal funding agencies to those who agree to adhere to its (...)
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  28.  4
    Biobanking in Global Health & Research.J. W. Ashcroft & C. C. Macpherson - 2023 - In Erick Valdés & Juan Alberto Lecaros (eds.), Handbook of Bioethical Decisions. Volume I: Decisions at the Bench. Springer Verlag. pp. 325-343.
    Biobanking of patient-derived materials is routine in health care, research, and public health emergencies. Ethical guidelines for biobanking address concerns including some about genetic materials, informed consent, confidentiality, regulatory environments, and standards of governance. This chapter identifies some limitations of existing guidelines that were apparent to one author during an Ebola outbreak, and specifies five ethical concerns about biobanking that warrant additional attention: misconceptions about biobanking, unknown consequences for donors, socioeconomic inequities that compound vulnerabilities, lasting and proportional benefits in North-South (...)
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  29.  6
    Biobanks' "engagements": engendering trust or engineering consent?Alan Petersen - 2007 - Genomics, Society and Policy 3 (1):1-13.
    The rapid development of biobanks internationally reflects the considerable expectations attached to the exploitation of genetics knowledge. However, establishing consent and legitimacy for the new generation of biobanks is not without its challenges because they tend to be prospective in nature, involving the collection of DNA, personal medical and lifestyle data generally held over a very long period of time for unspecified research purposes. Thus far, biobanks have tended to be established ahead of wide-ranging debate about their (...)
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  30.  26
    Public’s attitudes on participation in a biobank for research: an Italian survey.Corinna Porteri, Patrizio Pasqualetti, Elena Togni & Michael Parker - 2014 - BMC Medical Ethics 15 (1):81.
    The creation of biobanks depends upon people’s willingness to donate their samples for research purposes and to agree to sample storage. Moreover, biobanks are a public good that requires active participation by all interested stakeholders at every stage of development. Therefore, knowing public’s attitudes towards participation in a biobank and biobank management is important and deserves investigation.
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  31.  38
    Biobanking for human microbiome research: promise, risks, and ethics.Yonghui Ma, Hua Chen, Ruipeng Lei & Jianlin Ren - 2017 - Asian Bioethics Review 9 (4):311-324.
    With the advancement of human microbiome research, it is inevitable that a growing number of biobanks will include a collection of microbiota specimens to characterize the microbial communities that inhabit the human body and explore the relationships between the microbiota and their human hosts. Biobanks of human microbiota and their associated genetic information may become a valuable health resource. But, this area of research also presents ethical and social problems, some of which are distinct from those faced by (...)
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  32.  32
    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. This is even (...)
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  33.  24
    Biobank Economics and the “Commercialization Problem”.Andrew Turner, Clara Dallaire-Fortier & Madeleine J. Murtagh - 2013 - Spontaneous Generations 7 (1):69-80.
    The economic aspects of biobanking are intertwined with the social and scientific aspects. We describe two problems that structure the discussion about the economics of biobanking and which illustrate this intertwining. First, there is a ‘sustainability problem’ about how to maintain biobanks in the long term. Second, and representing a partial response to the first problem, there is a ‘commercialisation problem’ about how to deal with the voluntary altruistic relationship between participants and biobanks, and the potential commercial relationships (...)
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  34.  11
    Your Biobank, Your Doctor?: The right to full disclosure of population biobank findings.J. K. M. Gevers, E. M. Smets, T. Meulenkamp & J. A. Bovenberg - 2009 - Genomics, Society and Policy 5 (1):1-25.
    The advent of personal genomics companies offering direct translation of scientific data into personal health information, calls into question traditional policies to refuse disclosure of such scientific data to research participants. This seems especially true for population biobanks, as they collect not only genotype information but also associated phenotype information, and thus may be in a unique position to translate their scientific findings into personal health information for their participants. Disclosure of such information seems mandated by the expectations raised (...)
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  35.  89
    Clinical biobanks in Italy and Liguria: Ethical and social issues, initiatives at the national, regional and local level.Barbara Parodi - 2013 - Research Ethics 9 (2):78-85.
    This article aims to revise the ethical and social implications for clinical biobanks and their application in Italy, in the Liguria Region and in a comprehensive cancer centre in Genoa. The policies already in place in the regional network and in the IST National Institute for Cancer Research in terms of involvement of the community of patients and citizens are described, as well as the future development of initiatives aimed at improving the active participation of the community. The author (...)
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  36.  21
    Challenges to biobanking in LMICs during COVID-19: time to reconceptualise research ethics guidance for pandemics and public health emergencies?Shenuka Singh, Rosemary Jean Cadigan & Keymanthri Moodley - 2022 - Journal of Medical Ethics 48 (7):466-471.
    Biobanking can promote valuable health research that may lead to significant societal benefits. However, collecting, storing and sharing human samples and data for research purposes present numerous ethical challenges. These challenges are exacerbated when the biobanking efforts aim to facilitate research on public health emergencies and include the sharing of samples and data between low/middle-income countries (LMICs) and high-income countries (HICs). In this article, we explore ethical challenges for COVID-19 biobanking, offering examples from two past infectious disease outbreaks in LMICs (...)
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  37.  55
    An empirical survey on biobanking of human genetic material and data in six EU countries.Isabelle Hirtzlin, Christine Dubreuil, Nathalie Préaubert, Jenny Duchier, Brigitte Jansen, Jürgen Simon, Paula Lobatao De Faria, Anna Perez-Lezaun, Bert Visser, Garrath D. Williams, Anne Cambon-Thomsen & The Eurogenbank Consortium - 2003 - European Journal of Human Genetics 11:475–488.
    Biobanks correspond to different situations: research and technological development, medical diagnosis or therapeutic activities. Their status is not clearly defined. We aimed to investigate human biobanking in Europe, particularly in relation to organisational, economic and ethical issues in various national contexts. Data from a survey in six EU countries were collected as part of a European Research Project examining human and non-human biobanking. A total of 147 institutions concerned with biobanking of human samples and data were investigated by questionnaires (...)
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  38.  14
    Broad consent for biobank research in South Africa - Towards an enabling ethico-legal framework.Mantombi Maseme, Jillian Gardner & Safia Mahomed - 2024 - Global Bioethics 35 (1).
    Broad consent is permitted by the South African National Department of Health Ethics Guidelines but appears to be prohibited by section 13(1) of the Protection of Personal Information Act 4 of 2013. Additionally, the Act mandates that all personal data (including biobank sample data) be collected for lawful, explicit, and clearly defined purposes. There is possibility for ambiguity in interpretation because of this discrepancy between the two instruments. Given the association between the transfer of samples and data, the long-term nature (...)
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  39.  28
    Taiwan Regulation of Biobanks.Chien-Te Fan, Tzu-Hsun Hung & Chan-Kun Yeh - 2015 - Journal of Law, Medicine and Ethics 43 (4):816-826.
    Taiwan is an island country situated in the northwest Pacific, close to the southeast of China. The land area is about 36,000 square kilometers. The population of Taiwan is about 23 million, and it consists of the majority Han ethnic groups and dozens of minority groups who are collectively called “Formosan,” an appellation for indigenous peoples in Taiwan. Formosans can be divided into Pingpu and Gaoshan by their living area. In recent years, marriages between Taiwanese, Mainland Chinese, and Southeast Asians (...)
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  40.  12
    Biobank Economics and the “Commercialization Problem”.Andrew Turner, Clara Dallaire-Fortier & Madeleine J. - 2013 - Spontaneous Generations 7 (1).
    The economic aspects of biobanking are intertwined with the social and scientific aspects. We describe two problems that structure the discussion about the economics of biobanking and which illustrate this intertwining. First, there is a ‘sustainability problem’ about how to maintain biobanks in the long term. Second, and representing a partial response to the first problem, there is a ‘commercialisation problem’ about how to deal with the voluntary altruistic relationship between participants and biobanks, and the potential commercial relationships (...)
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  41.  57
    Biobanks--When is Re-consent Necessary?K. S. Steinsbekk & B. Solberg - 2011 - Public Health Ethics 4 (3):236-250.
    The unknown nature of tomorrow’s research makes informed consent in biobank research a challenge. Whether the consent given by biobank participants is ‘broad’ or ‘narrow’, the ever present question remains the same: are new activities covered by the original consent? In this article, we focus on the meaning of, and the relation between, broad consent and re-consent in biobank research. We argue that broad consent should be understood as consenting to a framework—a framework which covers aims, core conditions for acceptable (...)
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  42. “Conferring Authorship”: Biobank stakeholders’ experiences with publication credit in collaborative research.Flora Colledge, Bernice Elger & David Shaw - 2013 - PLoS ONE 8:e76686.
    Background: Multi-collaborator research is increasingly becoming the norm in the field of biomedicine. With this trend comes the imperative to award recognition to all those who contribute to a study; however, there is a gap in the current “gold standard” in authorship guidelines with regards to the efforts of those who provide high quality biosamples and data, yet do not play a role in the intellectual development of the final publication. -/- Methods and findings: We carried out interviews with 36 (...)
     
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  43.  30
    Broad consent for biobanks is best – provided it is also deep.Rasmus Bjerregaard Mikkelsen, Mickey Gjerris, Gunhild Waldemar & Peter Sandøe - 2019 - BMC Medical Ethics 20 (1):1-12.
    As biobank research has become increasingly widespread within biomedical research, study-specific consent to each study, a model derived from research involving traditional interventions on human subjects, has for the sake of feasibility gradually given way to alternative consent models which do not require consent for every new study. Besides broad consent these models include tiered, dynamic, and meta-consent. However, critics have pointed out that it is normally not known at the time of enrolment in what ways samples deposited in a (...)
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  44.  34
    ‚Mirroring‘ the Ethics of Biobanking: What Analysis of Consent Documents Can Tell Us?Serepkaite Jurate, Valuckiene Zivile & Gefenas Eugenijus - 2014 - Science and Engineering Ethics 20 (4):1-15.
    Biobanks have been recognized as a key research infrastructure and how to approach ethical questions has been a topic of discussion for at least a decade by now. This article explores the characteristics of donors’ participation in European biobanks as reflected in the consent documents of a selection of different biobanks from various European countries. The primary aim of this study is to understand how donors are informed about their participation in biobanking. Also the paper discusses what (...)
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  45.  6
    Promising waste: biobanking, embryo research, and infrastructures of ethical efficiency.J. Benjamin Hurlbut - 2015 - Monash Bioethics Review 33 (4):301-324.
    Biobanks are custodial institutions that enhance the utility and value of biological materials by collecting and curating them. Their custodial functions tend to include ethical oversight and governance. This paper explores how biobanks increase the value of biological materials by standardizing routines of governance in order to engender “ethical efficiency.” Focusing in particular upon banking of human embryos for research, the article offers an historical account of how human embryos came to be “waste” available for use by researchers (...)
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  46.  8
    Biobanks as a Central Part of the Finnish Growth and Genomic Strategies: How to Balance Privacy in an Innovation Ecosystem?Sirpa Soini - 2016 - Journal of Law, Medicine and Ethics 44 (1):24-34.
    Finland has aimed to make itself an international leader in genomic research and related business and, in working towards that goal, has enacted biobank legislation. The Biobank Act requires biobanks to gain approval, be supervised, and register at the national level. Numerous other laws may also apply in any given research setting, such as the Personal Data Act, the Medical Research Act, and the Act on Medical Use of Human Organs and Tissues. In terms of privacy protection, anonymization is (...)
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  47. What is a biobank? Differing definitions among biobank stakeholders.David Shaw, Bernice Elger & Flora Colledge - 2014 - Clinical Genetics 85 (3):223-7.
    Aim: While there is widespread agreement on the broad aspects of what constitutes a biobank, there is much disagreement regarding the precise definition. This research aimed to describe and analyse the definitions of the term biobank offered by various stakeholders in biobanking. Methods: Interviews were conducted with 36 biobanking stakeholders with international experience currently working in Switzerland. Results: The results show that, in addition to the core concepts of biological samples and linked data, the planned use of samples (including sharing) (...)
     
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  48.  6
    Biobanking in Estonia.Aime Keis - 2016 - Journal of Law, Medicine and Ethics 44 (1):20-23.
    Estonia is a democratic, parliamentary republic with a health care system that is built on the principle of compulsory, solidarity-based insurance and the all-round availability of services of private service providers. Estonia has specific biobank legislation as well as oversight via data protection laws. Its population-based biobank, the Estonian Genome Center, established in 2001, is one of the largest biobanks in Europe, and its database may be used only for scientific research, public health research, and statistics. The EGCUT can (...)
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  49.  23
    Biobanking and Privacy in India.Sachin Chaturvedi, Krishna Ravi Srinivas & Vasantha Muthuswamy - 2016 - Journal of Law, Medicine and Ethics 44 (1):45-57.
    Biobank-based research is not specifically addressed in Indian statutory law and therefore Indian Council for Medical Research guidelines are the primary regulators of biobank research in India. The guidelines allow for broad consent and for any level of identification of specimens. Although privacy is a fundamental right under the Indian Constitution, courts have limited this right when it conflicts with other rights or with the public interest. Furthermore, there is no established privacy test or actionable privacy right in the common (...)
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  50.  13
    Biobanks and Individual Health Related Findings: from an Obstacle to an Incentive.Jurate Lekstutiene, Søren Holm & Eugenijus Gefenas - 2021 - Science and Engineering Ethics 27 (4):1-16.
    Despite the benefits biobanks are expected to bring, there have recently been concerns raised that the public and private non-profit biobanks still prevailing in Europe often fail to reach their initial objectives due to a variety of reasons, including a shortage of funding and insufficient utilization of collections. The necessity to find new ways to manage biobanks has been clearly recognized and one way to do this is to follow the success of some commercial direct-to-consumer genetic testing (...)
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