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Denise Avard

Publications and source records attributed to Denise Avard.

6 recordsLinked to original sources

Evaluation of BRCA1 and BRCA2 mutation prevalence, risk prediction models and a multistep testing approach in French-Canadian families with high risk of breast and ovarian cancer.

BACKGROUND AND OBJECTIVE: In clinical settings with fixed resources allocated to predictive genetic testing for high-risk cancer predisposition genes, optimal strategies for mutation screening programmes are critically important. These depend on the mutation spectrum found in the population under consideration and the frequency of mutations detected as a function of the personal and family history of cancer, which are both affected by the presence of founder mutations and demographic characteristics of the underlying population. The results of multistep genetic testing for mutations in BRCA1 or BRCA2 in a large series of families with breast cancer in the French-Canadian population of Quebec, Canada are reported. METHODS: A total of 256 high-risk families were ascertained from regional familial cancer clinics throughout the province of Quebec. Initially, families were tested for a panel of specific mutations known to occur in this population. Families in which no mutation was identified were then comprehensively tested. Three algorithms to predict the presence of mutations were evaluated, including the prevalence tables provided by Myriad Genetics Laboratories, the Manchester Scoring System and a logistic regression approach based on the data from this study. RESULTS: 8 of the 15 distinct mutations found in 62 BRCA1/BRCA2-positive families had never been previously reported in this population, whereas 82% carried 1 of the 4 mutations currently observed in > or =2 families. In the subset of 191 families in which at least 1 affected individual was tested, 29% carried a mutation. Of these 27 BRCA1-positive and 29 BRCA2-positive families, 48 (86%) were found to harbour a mutation detected by the initial test. Among the remaining 143 inconclusive families, all 8 families found to have a mutation after complete sequencing had Manchester Scores > or =18. The logistic regression and Manchester Scores provided equal predictive power, and both were significantly better than the Myriad Genetics Laboratories prevalence tables (p<0.001). A threshold of Manchester Score > or =18 provided an overall sensitivity of 86% and a specificity of 82%, with a positive predictive value of 66% in this population. CONCLUSION: In this population, a testing strategy with an initial test using a panel of reported recurrent mutations, followed by full sequencing in families with Manchester Scores > or =18, represents an efficient test in terms of overall cost and sensitivity.

Adolescent↗

Partnering in oncogenetic research--the INHERIT BRCAs experience: opportunities and challenges.

Today it is common to conduct research in collaboration with colleagues from different disciplines and institutions. The INterdisciplinary HEalth Research International Team on BReast CAncer susceptibility (INHERIT BRCAs), involves Canadian and international experts from diverse fields working with health service providers, patients and collaborators from the World Health Organization and other European networks. Evidence-based information and knowledge transfer drive our efforts to advance genomic research to understand the genetic basis of cancer susceptibility and treatment response. Several goals reveal the interdisciplinary team approach: (a) to estimate the prevalence and penetrance of BRCA1 and BRCA2 mutations and their deleterious impact upon different populations; (b) to pinpoint novel breast cancer susceptibility loci; (c) to assess the efficacy of clinical interventions; (d) to address changes in quality of life and health-related behaviour from the decision to undergo genetics testing and during follow-up; (e) to evaluate legal, social and ethical implications; and, finally; (f) to promote professional and public education by facilitating the transfer of research findings to clinical practice and informing policy makers. The lessons learned by the INHERIT research team and future challenges are presented.

Breast Neoplasms↗

Science and society: children and incompetent adults in genetic research: consent and safeguards.

Recent changes to the legal and ethical criteria that govern the inclusion of children and incompetent adults in genetic research are likely to lead to advances in research, but might leave the rights of the participants in this research in need of additional safeguards. Here, we discuss why this might be and propose policy considerations that could help to protect the rights of these particularly vulnerable groups of research participants.

Adolescent↗

Physicians and genetic malpractice.

Primary care physicians are unprepared for the increase in demands for prenatal genetic testing. Often, they do not possess the necessary knowledge, skills or attitudes to provide genetic counselling. Yet, since the demand for prenatal genetic services is growing faster than the number of genetic professionals, the responsibility of genetic counselling will fall to these physicians. Physicians who lack genetic literacy may find themselves the targets of lawsuits for wrongful birth and wrongful life. Wrongful birth and wrongful life claims (in the context of genetics) both assert that but for the physician's negligence, the handicapped child would not have been born. Such medical malpractice suits against physicians exist in the United States, the United Kingdom, Canada and Australia. This paper discusses the case law on wrongful birth/life cases in these four countries. The authors conclude that as the number and availability of prenatal genetic tests increases, so too will the number of genetic malpractice claims, unless the education of physicians and medical students in genetics is promoted, possibly with the Internet as the new educational paradigm.

Australia↗