2023
DOI: 10.3389/fbioe.2023.1139649
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Preparation and characterization of a novel triple composite scaffold containing silk fibroin, chitosan, extracellular matrix and the mechanism of Akt/FoxO signaling pathway in colonic cancer cells cultured in 3D

Abstract: This work examined the physical and chemical properties and biocompatibility in vivo and in vitro of a unique triple composite scaffold incorporating silk fibroin, chitosan, and extracellular matrix. The materials were blended, cross-linked, and freeze-dried to create a composite scaffold of silk fibroin/chitosan/colon extracellular matrix (SF/CTS/CEM) with varying CEM contents. The SF/CTS/CEM (1:1:1) scaffold demonstrated the preferable shape, outstanding porosity, favorable connectivity, good moisture absorp… Show more

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“… 89 In TE applications, casting commonly involves tailored hydrogel blends, providing a high degree of customization in terms of biochemical compositions, architectural features, and mechanical properties. 90 Notably, hydrogels have demonstrated their efficacy in promoting cellular infiltration and vascularization, showcasing successful applications in diverse areas such as skin wound healing, 91 bone regeneration, 92 and abdominal wall reconstruction. 93 …”
Section: Te Strategymentioning
confidence: 99%
“… 89 In TE applications, casting commonly involves tailored hydrogel blends, providing a high degree of customization in terms of biochemical compositions, architectural features, and mechanical properties. 90 Notably, hydrogels have demonstrated their efficacy in promoting cellular infiltration and vascularization, showcasing successful applications in diverse areas such as skin wound healing, 91 bone regeneration, 92 and abdominal wall reconstruction. 93 …”
Section: Te Strategymentioning
confidence: 99%