Abstract
Introduction: Advancements in biomedical research depend on the quality and availability of biological samples. Despite their sophisticated storage capabilities, biobanks face significant challenges in sample management, with stored specimens often remaining unused and researchers struggling to access the required samples. Objectives: To analyze the challenges in biospecimen access and traceability, evaluate existing solutions, and propose a framework for integrated sample management in global research collaboration. Methods: A scoping review was conducted across PubMed, Scopus, and Web of Science databases, supplemented by grey literature (2004-2024). The analysis included an examination of Biobank Information Management Systems and an evaluation of sample management systems, tracking technologies, and governance frameworks. Results: The analysis revealed fragmented management systems, with at least 38 different biobanking software solutions offering limited interoperability. Proprietary systems and vendor lock-ins create significant barriers to data sharing. Sample tracking shows the evolution from manual to digital systems; however, cross-institutional tracking remains challenging. Reproducibility issues account for significant challenges in research, whereas inefficient resource utilization persists, with 67% of biobanks citing underutilization as a major concern. Conclusions: Addressing biobank sample access and traceability requires a shift from an institution-centric to an ecosystem-wide approach. Its success depends on integrating technological solutions such as Blockchain, the Internet of Things, and artificial intelligence with governance frameworks while ensuring alignment with stakeholder needs. Future developments should focus on implementing integrated traceability systems that support transparent and accountable sample management across the global research ecosystem.
| Original language | English |
|---|---|
| Journal | Biopreservation and Biobanking |
| DOIs | |
| Publication status | In press - 2025 |
!!!Keywords
- advanced technology
- biobank governance
- biospecimen management
- digital biobank infrastructure
- digital traceability
- global research infrastructure
- interoperability
- open science
- research integrity
- sample traceability
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