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Eggshell membrane as a bioactive agent in polymeric nanotopographic scaffolds for enhanced bone regeneration

机译:EggShell膜作为聚合物纳米复印机支架中的生物活性剂,用于增强骨再生

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A bone regeneration scaffold is typically designed as a platform to effectively heal a bone defect while preventing soft tissue infiltration. Despite the wide variety of scaffold materials currently available, such as collagen, critical problems in achieving bone regeneration remain, including a rapid absorption period and low tensile strength as well as high costs. Inspired by extracellular matrix protein and topographical cues, we developed a polycaprolactone-based scaffold for bone regeneration using a soluble eggshell membrane protein (SEP) coating and a nanotopography structure for enhancing the physical properties and bioactivity. The scaffold exhibited adequate flexibility and mechanical strength as a biomedical platform for bone regeneration. The highly aligned nanostructures and SEP coating were found to regulate and enhance cell morphology, adhesion, proliferation, and differentiation in vitro. In a calvaria bone defect mouse model, the scaffolds coated with SEP applied to the defect site promoted bone regeneration along the direction of the nanotopography in vivo. These findings demonstrate that bone-inspired nanostructures and SEP coatings have high potential to be applicable in the design and manipulation of scaffolds for bone regeneration.
机译:骨再生支架通常设计为平台,以有效地治愈骨缺损,同时防止软组织浸润。尽管目前可用的脚手架材料各种各样可用,如胶原蛋白,但在实现骨再生的关键问题仍然存在,包括快速吸收时期和低拉伸强度以及高成本。通过细胞外基质蛋白和地形提示的启发,我们开发了一种使用可溶性蛋壳膜蛋白(SEP)涂层和纳米复印件的骨再生的聚己内酯基支架,用于增强物理性质和生物活性。支架表现出足够的柔韧性和机械强度作为骨再生的生物医学平台。发现高度对齐的纳米结构和SEP涂层调节和增强细胞形态,粘附,增殖和体外分化。在Calvaria骨缺损小鼠模型中,涂有SEP的支架涂覆到缺陷部位沿体内纳米术的方向促进骨再生。这些研究结果表明,骨吸的纳米结构和SEP涂层具有很高的可能性,适用于用于骨再生支架的设计和操纵。

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