Title of article
In vitro study on silk fibroin textile structure for Anterior Cruciate Ligament regeneration
Author/Authors
Farè، نويسنده , , Silvia and Torricelli، نويسنده , , Paola and Giavaresi، نويسنده , , Gianluca and Bertoldi، نويسنده , , Serena and Alessandrino، نويسنده , , Antonio R. Villa، نويسنده , , Tomaso and Fini، نويسنده , , Milena and Tanzi، نويسنده , , Maria Cristina and Freddi، نويسنده , , Giuliano، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
8
From page
3601
To page
3608
Abstract
A novel hierarchical textile structure made of silk fibroin from Bombyx mori capable of matching the mechanical performance requirements of anterior cruciate ligament (ACL) and in vitro cell ingrowth is described. This sericin-free, Silk Fibroin Knitted Sheath with Braided Core (SF-KSBC) structure was fabricated using available textile technologies. Micro-CT analysis confirmed that the core was highly porous and had a higher degree of interconnectivity than that observed for the sheath. The in vivo cell colonization of the scaffolds is thus expected to penetrate even the internal parts of the structure. Tensile mechanical tests demonstrated a maximum load of 1212.4 ± 56.4 N (under hydrated conditions), confirming the scaffoldʹs suitability for ACL reconstruction. The absence of cytotoxic substances in the extracts of the SF-KSBC structure in culture medium was verified by in vitro tests with L929 fibroblasts. In terms of extracellular matrix production, Human Periodontal Ligament Fibroblasts (HPdLFs) cultured in direct contact with SF-KSBC, compared to control samples, demonstrated an increased secretion of aggrecan (PG) and fibronectin (FBN) at 3 and 7 days of culture, and no change in IL-6 and TNF-α secretion. Altogether, the outcomes of this investigation confirm the significant utility of this novel scaffold for ACL tissue regeneration.
Keywords
Micro-CT , Cytocompatibility , Tensile mechanical properties , silk fibroin , ACL , Hierarchical textile structure
Journal title
Materials Science and Engineering C
Serial Year
2013
Journal title
Materials Science and Engineering C
Record number
2103366
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