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Heparinized Collagen Sutures for Sustained Delivery of PDGF-BB: Delivery Profile and Effects on Tendon-derived Cells In-Vitro

机译:PDGF-BB的持续输送的肝素胶原蛋白缝合线:输送概况和对肌腱来源的细胞的体外影响。

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摘要

Suturing is the standard of repair for lacerated flexor tendons. Past studies focused on delivering growth factors to the repair site by incorporating growth factors to nylon sutures which are commonly used in the repair procedure. However, conjugation of growth factors to nylon or other synthetic sutures is not straightforward. Collagen holds promise as a suture material by way of providing chemical sites for conjugation of growth factors. On the other hand, collagen also needs to be reconstituted as a mechanically robust thread that can be sutured. In this study, we reconstituted collagen solutions as suturable collagen threads by using linear electrochemical compaction. Prolonged release of PDGF-BB (Platelet derived growth factor-BB) was achieved by covalent bonding of heparin to the collagen sutures. Tensile mechanical tests of collagen sutures before and after chemical modification indicated that the strength of sutures following chemical conjugation stages was not compromised. Strength of lacerated tendons sutured with epitendinous collagen sutures (11.2 ± 0.7 N) converged to that of the standard nylon suture (14.9 ± 2.9 N). Heparin conjugation of collagen sutures didn’t affect viability and proliferation of tendon-derived cells and prolonged the PDGF-BB release up to 15 days. Proliferation of cells seeded on PDGF-BB incorporated collagen sutures was about 50% greater than those seeded on plain collagen sutures. Collagen that is released to the media by the cells increased by 120% under the effects of PDGF-BB and collagen production by cells was detectable by histology as of day 21. Addition of PDGF-BB to collagen sutures resulted in a moderate decline in the expression of the tendon-associated markers scleraxis, collagen I, tenomodulin, and COMP; however, expression levels were still greater than the cells seeded on collagen gel. The data indicate that the effects of PDGF-BB on tendon-derived cells mainly occur through increased cell proliferation and that longer term studies are needed to confirm associated genes.
机译:缝合是lace状屈肌腱修复的标准。过去的研究集中于通过将生长因子结合到通常在修复过程中使用的尼龙缝线中来将生长因子递送至修复部位。但是,将生长因子与尼龙或其他合成缝合线结合并不是一件容易的事。胶原蛋白通过为结合生长因子提供化学位点而有望作为缝合材料。另一方面,胶原蛋白也需要重建为可以缝合的机械牢固的线。在这项研究中,我们通过使用线性电化学压缩将胶原蛋白溶液重构为可缝合的胶原蛋白线。 PDGF-BB(血小板衍生生长因子-BB)的延长释放是通过肝素与胶原缝合线的共价键实现的。化学修饰前后的胶原缝合线的拉伸力学测试表明,化学偶联阶段之后的缝合线强度没有受到损害。用表皮胶原缝合线(11.2±0.7 N)缝合的撕裂肌腱的强度与标准尼龙缝合线(14.9±2.9 N)的强度一致。肝素结合胶原蛋白缝线不会影响肌腱衍生细胞的活力和增殖,并能延长PDGF-BB的释放长达15天。植入PDGF-BB的胶原蛋白缝线中播种的细胞比植入普通胶原蛋白缝线中的细胞增殖约50%。从第21天起,通过组织学检测到在PDGF-BB的作用下,由细胞释放到培养基中的胶原蛋白增加了120%,并且可以通过细胞学检测到细胞产生的胶原蛋白。肌腱相关标记的硬化,胶原蛋白I,张力调节蛋白和COMP的表达;然而,表达水平仍然大于播种在胶原蛋白凝胶上的细胞。数据表明,PDGF-BB对肌腱衍生细胞的作用主要是通过增加细胞增殖而发生的,需要长期研究来确认相关基因。

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