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Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program

Ovarian cancer (OVCA) patients may carry genes conferring cancer risk to biological family; however, fewer than one-quarter of patients receive genetic testing. “Traceback” cascade testing —outreach to potential probands and relatives—is a possible solution. This paper outlines a funded study (U01 C...

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Autores principales: DiNucci, Anna, Henrikson, Nora B., Jonas, M. Cabell, Basra, Sundeep, Blasi, Paula, Brown, Jennifer, Esplin, Edward D., Hassen, Dina, Hao, Jing, Hu, Yirui, Klinger, Tracey, Ladd, Ilene, Leppig, Kathleen, Lewis, Meredith, Meyer, Michelle, Ney, Steven, Ramaprasan, Arvind, Romagnoli, Katrina, Salvati, Zachary, Scrol, Aaron, Schwiter, Rachel, Sheridan, Leigh, Somasundaram, Brinda, Suwannarat, Pim, Wagner, Jennifer K., Rahm, Alanna K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230764/
https://www.ncbi.nlm.nih.gov/pubmed/34208188
http://dx.doi.org/10.3390/jpm11060543
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author DiNucci, Anna
Henrikson, Nora B.
Jonas, M. Cabell
Basra, Sundeep
Blasi, Paula
Brown, Jennifer
Esplin, Edward D.
Hassen, Dina
Hao, Jing
Hu, Yirui
Klinger, Tracey
Ladd, Ilene
Leppig, Kathleen
Lewis, Meredith
Meyer, Michelle
Ney, Steven
Ramaprasan, Arvind
Romagnoli, Katrina
Salvati, Zachary
Scrol, Aaron
Schwiter, Rachel
Sheridan, Leigh
Somasundaram, Brinda
Suwannarat, Pim
Wagner, Jennifer K.
Rahm, Alanna K.
author_facet DiNucci, Anna
Henrikson, Nora B.
Jonas, M. Cabell
Basra, Sundeep
Blasi, Paula
Brown, Jennifer
Esplin, Edward D.
Hassen, Dina
Hao, Jing
Hu, Yirui
Klinger, Tracey
Ladd, Ilene
Leppig, Kathleen
Lewis, Meredith
Meyer, Michelle
Ney, Steven
Ramaprasan, Arvind
Romagnoli, Katrina
Salvati, Zachary
Scrol, Aaron
Schwiter, Rachel
Sheridan, Leigh
Somasundaram, Brinda
Suwannarat, Pim
Wagner, Jennifer K.
Rahm, Alanna K.
author_sort DiNucci, Anna
collection PubMed
description Ovarian cancer (OVCA) patients may carry genes conferring cancer risk to biological family; however, fewer than one-quarter of patients receive genetic testing. “Traceback” cascade testing —outreach to potential probands and relatives—is a possible solution. This paper outlines a funded study (U01 CA240747-01A1) seeking to determine a Traceback program’s feasibility, acceptability, effectiveness, and costs. This is a multisite prospective observational feasibility study across three integrated health systems. Informed by the Conceptual Model for Implementation Research, we will outline, implement, and evaluate the outcomes of an OVCA Traceback program. We will use standard legal research methodology to review genetic privacy statutes; engage key stakeholders in qualitative interviews to design communication strategies; employ descriptive statistics and regression analyses to evaluate the site differences in genetic testing and the OVCA Traceback testing; and assess program outcomes at the proband, family member, provider, system, and population levels. This study aims to determine a Traceback program’s feasibility and acceptability in a real-world context. It will account for the myriad factors affecting implementation, including legal issues, organizational- and individual-level barriers and facilitators, communication issues, and program costs. Project results will inform how health care providers and systems can develop effective, practical, and sustainable Traceback programs.
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spelling pubmed-82307642021-06-26 Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program DiNucci, Anna Henrikson, Nora B. Jonas, M. Cabell Basra, Sundeep Blasi, Paula Brown, Jennifer Esplin, Edward D. Hassen, Dina Hao, Jing Hu, Yirui Klinger, Tracey Ladd, Ilene Leppig, Kathleen Lewis, Meredith Meyer, Michelle Ney, Steven Ramaprasan, Arvind Romagnoli, Katrina Salvati, Zachary Scrol, Aaron Schwiter, Rachel Sheridan, Leigh Somasundaram, Brinda Suwannarat, Pim Wagner, Jennifer K. Rahm, Alanna K. J Pers Med Study Protocol Ovarian cancer (OVCA) patients may carry genes conferring cancer risk to biological family; however, fewer than one-quarter of patients receive genetic testing. “Traceback” cascade testing —outreach to potential probands and relatives—is a possible solution. This paper outlines a funded study (U01 CA240747-01A1) seeking to determine a Traceback program’s feasibility, acceptability, effectiveness, and costs. This is a multisite prospective observational feasibility study across three integrated health systems. Informed by the Conceptual Model for Implementation Research, we will outline, implement, and evaluate the outcomes of an OVCA Traceback program. We will use standard legal research methodology to review genetic privacy statutes; engage key stakeholders in qualitative interviews to design communication strategies; employ descriptive statistics and regression analyses to evaluate the site differences in genetic testing and the OVCA Traceback testing; and assess program outcomes at the proband, family member, provider, system, and population levels. This study aims to determine a Traceback program’s feasibility and acceptability in a real-world context. It will account for the myriad factors affecting implementation, including legal issues, organizational- and individual-level barriers and facilitators, communication issues, and program costs. Project results will inform how health care providers and systems can develop effective, practical, and sustainable Traceback programs. MDPI 2021-06-11 /pmc/articles/PMC8230764/ /pubmed/34208188 http://dx.doi.org/10.3390/jpm11060543 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Study Protocol
DiNucci, Anna
Henrikson, Nora B.
Jonas, M. Cabell
Basra, Sundeep
Blasi, Paula
Brown, Jennifer
Esplin, Edward D.
Hassen, Dina
Hao, Jing
Hu, Yirui
Klinger, Tracey
Ladd, Ilene
Leppig, Kathleen
Lewis, Meredith
Meyer, Michelle
Ney, Steven
Ramaprasan, Arvind
Romagnoli, Katrina
Salvati, Zachary
Scrol, Aaron
Schwiter, Rachel
Sheridan, Leigh
Somasundaram, Brinda
Suwannarat, Pim
Wagner, Jennifer K.
Rahm, Alanna K.
Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program
title Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program
title_full Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program
title_fullStr Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program
title_full_unstemmed Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program
title_short Feasibility and Assessment of a Cascade Traceback Screening Program (FACTS): Protocol for a Multisite Study to Implement and Assess an Ovarian Cancer Traceback Cascade Testing Program
title_sort feasibility and assessment of a cascade traceback screening program (facts): protocol for a multisite study to implement and assess an ovarian cancer traceback cascade testing program
topic Study Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230764/
https://www.ncbi.nlm.nih.gov/pubmed/34208188
http://dx.doi.org/10.3390/jpm11060543
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