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辐射灭菌明胶-水-甘油三元凝胶作为骨组织工程的可注射载体。

Irradiation Sterilized Gelatin-Water-Glycerol Ternary Gel as an Injectable Carrier for Bone Tissue Engineering.

机构信息

Beijing Engineering Research Center of Orthopaedic Implants, First Affiliated Hospital of CPLA General Hospital, Beijing, 100048, P. R. China.

School of Stomatology, Fourth Military Medical University, Xi'an, 710032, P. R. China.

出版信息

Adv Healthc Mater. 2017 Jan;6(2). doi: 10.1002/adhm.201600749. Epub 2016 Nov 8.

Abstract

Injectable gelatin gels offer an attractive option for filling bone defects. The challenge is to fabricate gelatin gels with optimal gelation properties, which can be irradiation sterilized. Here, a gelatin-water-glycerol (GWG) gel is reported for use as a broad-spectrum injectable carrier. This ternary gel is high in glycerol and low in water, and remains stable after gamma irradiation at doses (25 kGy). As an injectable gel, it remains a viscous solution at gelatin concentrations ≤2.0%, at room temperature. Its storage modulus increases dramatically and eventually exceeds the loss modulus around 46-50 °C, indicating a transition from a liquid-like state to an elastic gel-like state. This ternary gel ranges significantly in terms of storage modulus (12-1700 Pa) while demonstrating a narrow pH range (5.58-5.66), depending on the gelatin concentration. Therefore, it can be loaded with a variety of materials. It is highly cytocompatible compared with saline in vivo and culture media in vitro. When loaded with demineralized bone matrix, the composites show favorable injectability, and excellent osteogenesis performance, after irradiation. These features can be attributed to high hydrophilicity and fast degradability. These findings justify that this ternary gel is promising as an irradiation-sterilized and universal injectable delivery system.

摘要

可注射明胶凝胶为填充骨缺损提供了一种有吸引力的选择。挑战在于制造具有最佳胶凝性能的明胶凝胶,这种凝胶可以通过辐照进行灭菌。在这里,报告了一种明胶-水-甘油(GWG)凝胶,用作广谱可注射载体。这种三元凝胶甘油含量高,水含量低,在 25 kGy 的辐照剂量下保持稳定。作为一种可注射凝胶,其在明胶浓度≤2.0%、室温下仍保持为粘性溶液。其储能模量显著增加,最终在 46-50°C 左右超过损耗模量,表明从液态向弹性凝胶态转变。这种三元凝胶的储能模量范围很广(12-1700 Pa),同时表现出较窄的 pH 值范围(5.58-5.66),取决于明胶浓度。因此,它可以负载各种材料。与体内生理盐水和体外培养基相比,它具有高度的细胞相容性。当负载脱矿质骨基质时,复合材料在辐照后表现出良好的可注射性和优异的成骨性能。这些特性可归因于高亲水性和快速降解性。这些发现证明了这种三元凝胶作为一种辐照灭菌的通用可注射递送系统具有很大的应用潜力。

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