Abstract
The effective replication of microtubular structures in tissue engineering remains a great challenge. In this study, the temperature-responsive characteristics of poly(N-isopropylacrylamide) (pNIPAM) to create intricate, high-resolution tubular structures through a shrinking mechanism is investigated by exploring 2 thermosensitive hydrogels–gelatin methacryloyl (gelMA) and silk fibroin methacryloyl (silkMA)–combined with pNIPAM. Systematic investigations
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