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1.
Public Health Genomics ; 22(1-2): 25-35, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31330524

RESUMEN

BACKGROUND/AIMS: Familial hypercholesterolaemia (FH) is a common genetic disorder that, if untreated, predisposes individuals to premature coronary heart disease. As most individuals with FH remain undiagnosed, new approaches to detection are needed and should be considered a priority in public health genomics. Universal screening of children for FH has been proposed, and this study explores public perspectives on the acceptability of this approach. METHODS: A one-day deliberative public forum was held in Perth, WA, Australia. Thirty randomly selected individuals were recruited, with self-reported sociodemographic characteristics used to obtain discursive representation. Participants were presented with information from a variety of perspectives and asked to discuss the information provided to identify points of consensus and disagreement. The data collected were analysed using thematic analysis. RESULTS: Of the 17 participants at the forum, 16 deemed universal screening of children for FH to be acceptable. Fifteen of these 16 believed this was best performed at the time of an immunisation. Participants proposed a number of conditions that should be met to reduce the likelihood of unintended harm resulting from the screening process. DISCUSSION/CONCLUSION: The outcomes of the forum suggest that establishing a universal screening programme for FH in childhood is acceptable to the general public in WA.


Asunto(s)
Comportamiento del Consumidor , Enfermedad Coronaria/prevención & control , Hiperlipoproteinemia Tipo I , Tamizaje Masivo , Percepción Social , Adulto , Australia , Niño , Femenino , Humanos , Hiperlipoproteinemia Tipo I/diagnóstico , Hiperlipoproteinemia Tipo I/epidemiología , Masculino , Tamizaje Masivo/métodos , Tamizaje Masivo/psicología , Prevención Primaria/métodos , Opinión Pública
2.
Front Public Health ; 7: 40, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30915323

RESUMEN

The expanding use of genomic technologies encompasses all phases of life, from the embryo to the elderly, and even the posthumous phase. In this paper, we present the spectrum of genomic healthcare applications, and describe their scope and challenges at different stages of the life cycle. The integration of genomic technology into healthcare presents unique ethical issues that challenge traditional aspects of healthcare delivery. These challenges include the different definitions of utility as applied to genomic information; the particular characteristics of genetic data that influence how it might be protected, used and shared; and the difficulties applying existing models of informed consent, and how new consent models might be needed.

3.
Front Public Health ; 7: 41, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30915324

RESUMEN

This paper examines key considerations for the successful integration of genomic technologies into healthcare systems. All healthcare systems strive to introduce new technologies that are effective and affordable, but genomics offers particular challenges, given the rapid evolution of the technology. In this context we frame internationally relevant discussion points relating to effective and sustainable implementation of genomic testing within the strategic priority areas of the recently endorsed Australian National Health Genomics Policy Framework. The priority areas are services, data, workforce, finances, and person-centred care. In addition, we outline recommendations from a government perspective through the lens of the Australian health system, and argue that resources should be allocated not to just genomic testing alone, but across the five strategic priority areas for full effectiveness.

4.
Front Public Health ; 6: 247, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30234091

RESUMEN

Public health genomics has evolved to responsibly integrate advancements in genomics into the fields of personalized medicine and public health. Appropriate, effective and sustainable integration of genomics into healthcare requires an organized approach. This paper outlines the history that led to the emergence of public health genomics as a distinguishable field. In addition, a range of activities are described that illustrate how genomics can be incorporated into public health practice. Finally, it presents the evolution of public health genomics into the new era of "precision public health."

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