Development of tissue-engineered tracheal scaffold with refined mechanical properties and vascularisation for tracheal regeneration

开发具有精细机械性能和血管化的组织工程气管支架用于气管再生

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作者:Tehreem Khalid, Luis Soriano, Mark Lemoine, Sally-Ann Cryan, Fergal J O'Brien, Cian O'Leary

Discussion

By addressing both the mechanical and physiological requirements of tracheal scaffolds, this work has begun to pave the way for a new therapeutic option for large tracheal defects.

Methods

A biodegradable thermoplastic polymer was 3D-printed into different designs and underwent multi-modal mechanical assessment. The 3D-printed constructs were incorporated into the CHyA-B scaffolds and subjected to in vitro and ex vivo vascularisation.

Results

The polymeric backbone provided sufficient strength to the CHyA-B scaffold, with yield loads of 1.31-5.17 N/mm and flexural moduli of 0.13-0.26 MPa. Angiogenic growth factor release (VEGF and bFGF) and angiogenic gene upregulation (KDR, TEK-2 and ANG-1) was detected in composite scaffolds and remained sustainable up to 14 days. Confocal microscopy and histological sectioning confirmed the presence of infiltrating blood vessel throughout composite scaffolds both in vitro and ex vivo.

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