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Published on: January 6, 2012
Neonatal and carrier screening for rare diseases: how innovation challenges screening criteria worldwide
Martina C Cornel1, Tessel Rigter2, Marleen E Jansen2
1Clinical Genetics, Section Community Genetics, Amsterdam Public Health Research Institute, Amsterdam Reproduction and Development Research Institute, Vrije Universiteit Amsterdam, Amsterdam UMC, De Boelelaan 1117, Amsterdam, The Netherlands. mc.cornel@amsterdamumc.nl.
Insights
Neonatal bloodspot screening (NBS) and carrier screening have evolved, challenging traditional criteria. Shifting perspectives in these rare disease screening programs necessitate a unified approach for better decision-making.
Area of Science:
- Genetics and Public Health
- Rare Disease Screening
- Medical Ethics
Background:
- Neonatal bloodspot screening (NBS) and carrier screening for genetic disorders have existed for over 50 years.
- NBS traditionally focuses on child health, while carrier screening supports reproductive autonomy.
- Technological advancements have expanded both NBS and carrier screening programs.
Purpose of the Study:
- To analyze how technological and conceptual expansions in NBS and carrier screening challenge established screening criteria.
- To explore the converging debates and shifting perspectives in these distinct screening fields.
- To identify the need for interdisciplinary dialogue among stakeholders.
Main Methods:
- Comparative analysis of screening principles and criteria for NBS and carrier screening.
- Examination of historical development and current dynamics of both screening types.
- Identification of challenges to traditional criteria: treatment, test, target population, and program evaluation.
Main Results:
- Expansion of NBS and carrier screening has strained traditional decision-making criteria.
- Perspectives on beneficiaries (child, family, society) and screening drivers (health vs. autonomy) are converging.
- Stakeholder governance differs: NBS as public health, carrier screening via medical professionals.
Conclusions:
- Established screening criteria require re-evaluation in light of program expansions and evolving perspectives.
- Converging debates highlight the interconnectedness of NBS and carrier screening.
- A call for knowledge exchange among stakeholders is crucial to align screening program dynamics.
Abstract:
Screening for rare diseases first began more than 50 years ago with neonatal bloodspot screening (NBS) for phenylketonuria, and carrier screening for Tay-Sachs disease, sickle cell anaemia and β-thalassaemia. NBS's primary aim is health gain for children, while carrier screening enables autonomous reproductive choice. While screening can be beneficial, it also has the potential to cause harm and thus decisions are needed on whether a specific screening is worthwhile. These decisions are usually based on screening principles and criteria. Technological developments, both treatment driven and test driven, have led to expansions in neonatal screening and carrier screening. This article demonstrates how the dynamics and expansions in NBS and carrier screening have challenged four well-known screening criteria (treatment, test, target population and programme evaluation), and the decision-making based on them. We show that shifting perspectives on screening criteria for NBS as well as carrier screening lead to converging debates in these separate fields. For example, the child is traditionally considered to be the beneficiary in NBS, but the family and society can also benefit. Vice versa, carrier screening may be driven by disease prevention, rather than reproductive autonomy, raising cross-disciplinary questions regarding potential beneficiaries and which diseases to include. In addition, the stakeholders from these separate fields vary: Globally NBS is often governed as a public health programme while carrier screening is usually available via medical professionals. The article concludes with a call for an exchange of vision and knowledge among all stakeholders of both fields to attune the dynamics of screening.

