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• Biodegradable PLLA scaffolds with macro - and micro - scale interconnectivity were designed using a 3D-printed sacrificial template combined with the TIPS technique. • The properties of scaffolds fabricated by conventional TIPS, TIPS-SL, and the innovative 3D-template-assisted method were systematically compared. • While TIPS-SL scaffolds showed high porosity but low interconnectivity and weak mechanical strength, the 3D-template-based approach produced scaffolds with highly permeable interconnected channels and good mechanical integrity. • The developed method provides an effective strategy for fabricating resorbable PLLA scaffolds with enhanced biocompatibility and strong potential for advanced tissue regeneration.
Amukarimi et al. (2026) studied this question.
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