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Term of the Day

Natural history study

A natural history study is a preplanned observational study intended to track the course of a disease over time, identifying demographic, genetic, environmental and other variables that correlate with its development and outcomes in the absence of intervention, or under standard of care. Designs may be retrospective (chart review of existing records) or prospective (longitudinal follow-up of a cohort or registry).

Natural history data is particularly important in rare and paediatric diseases, where randomised placebo-controlled trials may be infeasible or unethical. The FDA (guidance on rare disease natural history studies, 2019) and the EMA accept well-designed natural history studies to define endpoints and biomarkers, identify patient subgroups, estimate sample sizes and, in some cases, serve as external or historical control arms for single-arm trials supporting orphan products.

Because they are non-interventional, natural history studies fall outside the CTR and are governed by national law (for example France's MR-003 or MR-004 reference methodologies) and by the GDPR. They typically involve secondary use of medical records, long-term follow-up, genetic data and small populations in which anonymisation is rarely achievable, so pseudonymisation, a DPIA and a robust research legal basis under Art. 9(2)(j) are essential. Registries maintained by patient organisations or academic consortia raise additional questions of joint controllership and data access governance.

C

Central laboratory

A central laboratory is a single, specialised laboratory that analyses biological samples (blood, urine, tissue, biomarkers, genomics) collected at all investigator sites participating in a clinical trial, using harmonised methods, reference ranges and reporting formats. It contrasts with local laboratories at each hospital, whose results are harder to pool.

Central labs are selected by the sponsor or CRO and operate under accreditation (ISO 15189, CAP/CLIA) and GCP. They provide sample kits, logistics, chain-of-custody tracking, results transfer into the EDC system, and long-term biobanking of residual samples where consented.

Samples travel with a subject identifier, date of birth or age, sex and visit information, which makes the accompanying data pseudonymised health data; genomic analyses generate genetic data. The lab is usually a processor, but it may become a controller for its own quality or research purposes. Cross-border shipment of samples to a US or Asian central lab is an international data transfer and must be described in the informed consent form and covered by appropriate safeguards. Residual sample use requires a separate, specific or broad consent.