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Updated: Jan 28, 2026

In Vitro Model of Human Cutaneous Hypertrophic Scarring using Macromolecular Crowding
Published on: May 1, 2020
Comparative analysis of different macromolecular crowding agents in human tenocyte cultures
Andrea Rossoni1, Giovanni Lauretta1, Stephen Kearns2
1Regenerative, Modular & Developmental Engineering Laboratory (REMODEL), Charles Institute of Dermatology, Conway Institute of Biomolecular & Biomedical Research and School of Mechanical & Materials Engineering, University College Dublin (UCD), Dublin, Ireland.
None:
Tendon engineered substitutes remain clinically unavailable, largely due to the need for prolonged culture periods to allow for sufficient extracellular matrix deposition. Although macromolecular crowding allows for accelerated extracellular matrix deposition, the optimal macromolecular crowding agent in human tenocyte cultures is still unknown. Here, we measured the physicochemical properties of six macromolecules (κλ carrageenan, λ carrageenan, polysucrose, polyacrylic acid, hyaluronic acid and polyvinylpyrrolidone) and assessed their effect in human tenocyte basic function, collagen type I deposition and gene expression. The κλ carrageenan exhibited the highest polydispersity index. None of the macromolecules impaired cell viability and metabolic activity. The κλ carrageenan and the λ carrageenan significantly enhanced collagen type I deposition. A macromolecular crowding agent dependent gene expression was observed, with the κλ carrageenan appearing to induce a more mature phenotype. This study provides a framework for selecting an appropriate macromolecular crowding agent to enhance and accelerate extracellular matrix deposition, whilst maintaining acceptable cell function.
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