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Framework for Establishing a Specialized Biobank and Digital Information Platform for Skin-on-a-Chip Research in Plastic Surgery.

Created on 22 Aug 2026

Authors

Xiuhong Li, Tianxiao Wei, Yun Zhang, Shan Zhu, Ningbei Yin, Nuo Si

Published in

Biopreservation and biobanking. Pages 19475535261479035. Aug 21, 2026. Epub Aug 21, 2026.

Abstract

High-quality primary cells and well-annotated clinical data are essential for reproducible skin-on-a-chip (SoC) research. However, conventional biobanking workflows often lack SoC-oriented procedures for specimen acquisition, live-cell preservation, quality control, and traceability.
We established a specialized plastic surgery biobank incorporating standardized tissue procurement, cold-chain transport at 2°C-8°C with processing initiated within 2-6 hours, hierarchical preservation of tissues and live cells, and a unique identifier (UID)-linked multimodal digital platform. The biobank primarily archives skin tissue specimens, while a representative subset of specimens was processed for primary-cell isolation and quality-control evaluation. Post-thaw cell viability was assessed primarily by trypan blue exclusion, with flow cytometry used as an auxiliary method in representative batches. Passage-associated lineage-marker expression was evaluated by immunofluorescence.
The biobank currently archives 450 skin tissue specimens, of which samples from donors aged 0-14 years account for 63.8%. Among the representative cell-production batches evaluated, all available trypan blue image and counting records showed a mean post-thaw viability of 93.91 ± 3.37% (range, 88.24%-100.00%; coefficient of variation, 3.59%), with a cell count-weighted viability of 93.78%. P5 keratinocyte and fibroblast cultures showed near-complete K14 and vimentin positivity, respectively, whereas melanocyte melanocyte melan-A/melanoma antigen recognized by T-cells 1 (MLANA/MART-1) positivity was high at P1 (80.72 ± 11.67%) and decreased at P5 (38.41 ± 4.50%; Welch's t-test, p = 0.021). The operational digital platform supports UID-based sample management, sample-imaging association, storage management, and structured metadata export.
This study presents a framework for establishing a fit-for-purpose and traceable specialized biobank and digital information platform to support plastic surgery SoC research. The current findings provide preliminary quality-control evidence for viable keratinocyte and fibroblast preparations and support the preferential use of early passage, marker-guided melanocyte preparations. Comprehensive functional SoC validation, longitudinal assessment of cellular stability, and melanocyte-specific preservation and release criteria require further investigation.

PMID:
42629955
Bibliographic data and abstract were imported from PubMed on 22 Aug 2026.

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