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Updated: Nov 26, 2025

Biobank for Translational Medicine: Standard Operating Procedures for Optimal Sample Management
Published on: November 30, 2022
Landscape of Pediatric Biobanking: Challenges and Current Efforts
1Department of Congenital Heart Surgery, Baylor College of Medicine, Texas Children's Hospital, Houston, Texas, USA.
Insights
Pediatric biobanks are crucial for advancing personalized medicine by collecting diverse tissue samples. Despite challenges, these networks are vital for understanding rare pediatric diseases and improving treatments.
Area of Science:
- Pediatric research
- Biobanking
- Personalized medicine
Background:
- Pediatric diseases present unique challenges due to rarity and diverse abnormalities.
- Small patient populations hinder progress in pediatric disorder treatment.
- Personalized therapies require extensive molecular data (proteomic, genomic, epigenomic, immune).
Purpose of the Study:
- Highlight the necessity of pediatric biobanks for personalized medicine.
- Examine the impact of current pediatric biobanking efforts on research.
- Identify obstacles hindering advancements in pediatric biobanking.
Main Methods:
- Review of existing pediatric biobanking networks and their outcomes.
- Analysis of the role of high-quality pediatric tissue collections.
- Discussion of data-driven approaches for personalized pediatric therapies.
Main Results:
- Pediatric biobanking networks aim to increase research power and sample availability.
- Multicenter collaborations have shown mixed results due to complexity and heterogeneity.
- Some biobanking efforts have positively impacted diagnosis, study, and treatment of specific pediatric diseases.
Conclusions:
- Accessible, high-quality pediatric tissue collections are essential for personalized medicine research.
- Biobanking networks are critical for overcoming sample size limitations in rare pediatric diseases.
- Addressing practical impediments is key to advancing pediatric biobanking and research.
Abstract:
Diseases that manifest themselves in the pediatric age group frequently have a more diverse spectrum of abnormalities and a greater rarity than diseases that are primarily seen in adults. The complexity and the relatively small populations with specific diseases are factors that have hindered progress in the treatment of pediatric disorders. Personalized medical therapies that are specifically tailored for individuals with unusual or unique problems have great potential to assist in overcoming these factors that have been a bottleneck to pediatric medical success. Personalization of therapies will necessarily be data driven and will require delineation of the proteomic, genomic, epigenomic, and immune characteristics of patients in comparison to the general population. It follows that there is a need to provide researchers with accessible high-quality pediatric tissue collections to facilitate the acquisition of the molecular information needed to support personalized medicine. Because of the unusual nature of many pediatric diseases, sample pools from individual institutions are often too small to adequately power definitive studies. Thus, etiological and translational research in this area are increasingly relying on biobanking networks to provide investigators with adequate numbers of tissue samples. Several pediatric biobanking networks have been formed, which are aimed at increasing the power of research studies and desired pools of high-quality samples. However, despite the concerted efforts, these multicenter networks and collaborations have met with mixed outcomes owing to increasing complexities and heterogeneity in the biobanking arena. While there have been challenges and roadblocks, there also have been some positive outcomes that have had paradigm impacts on diagnosis, study, and treatment of specific diseases. This article highlights the need for establishing pediatric biobanks, how current efforts in pediatric biobanking are influencing the pediatric research landscape, and attempts to identify practical impediments that continue to hamper advancements for the future.

