Fibroblast matrix implants—a better alternative for incisional hernia repair?

成纤维细胞 基质(化学分析) 材料科学 切口疝 体外 化学 生物医学工程 外科 医学 复合材料 生物化学
作者
Siufui Hendrawan,Jennifer Lheman,Ursula Weber,Christian E. Oberkofler,Astheria Eryani,René Vonlanthen,Hans U. Baer
出处
期刊:Biomedical Materials [IOP Publishing]
卷期号:19 (3): 035033-035033 被引量:2
标识
DOI:10.1088/1748-605x/ad3da4
摘要

Abstract The standard surgical procedure for abdominal hernia repair with conventional prosthetic mesh still results in a high recurrence rate. In the present study, we propose a fibroblast matrix implant (FMI), which is a three-dimensional (3D) poly-L-lactic acid scaffold coated with collagen (matrix) and seeded with fibroblasts, as an alternative mesh for hernia repair. The matrix was seeded with fibroblasts (cellularized) and treated with a conditioned medium (CM) of human Umbilical Cord Mesenchymal Stem Cells (hUC-MSC). Fibroblast proliferation and function were assessed and compared between treated with CM hUC-MSC and untreated group, 24 h after seeding onto the matrix ( n = 3). To study the matrices in vivo, the hernia was surgically created on male Sprague Dawley rats and repaired with four different grafts ( n = 3), including a commercial mesh (mesh group), a matrix without cells (cell-free group), a matrix seeded with fibroblasts (FMI group), and a matrix seeded with fibroblasts and cultured in medium treated with 1% CM hUC-MSC (FMI-CM group). In vitro examination showed that the fibroblasts’ proliferation on the matrices (treated group) did not differ significantly compared to the untreated group. CM hUC-MSC was able to promote the collagen synthesis of the fibroblasts, resulting in a higher collagen concentration compared to the untreated group. Furthermore, the in vivo study showed that the matrices allowed fibroblast growth and supported cell functionality for at least 1 month after implantation. The highest number of fibroblasts was observed in the FMI group at the 14 d endpoint, but at the 28 d endpoint, the FMI-CM group had the highest. Collagen deposition area and neovascularization at the implantation site were observed in all groups without any significant difference between the groups. FMI combined with CM hUC-MSC may serve as a better option for hernia repair, providing additional reinforcement which in turn should reduce hernia recurrence.
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