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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Enhancement of periodontal tissue regeneration by locally controlled delivery of insulin-like growth factor-I from dextran-co-gelatin microspheres
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Enhancement of periodontal tissue regeneration by locally controlled delivery of insulin-like growth factor-I from dextran-co-gelatin microspheres

机译:通过从葡聚糖-明胶微球中局部递送胰岛素样生长因子-I,增强牙周组织再生

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The present work focused on the design of novel hydrogel microspheres based on both dextran- and gelatin-derived biomaterials, and discussed whether locally controlled delivery of IGF-I from dextran-co-gelatin hydrogel microspheres (DG-MP) was useful for periodontal regeneration enhancement. Microspheres were synthesized when gelatin was cooperating with glycidyl methacrylate (GMA) derivatized dextrans (Dex-GMA) and the resultant DG-MP with a hydrogel character of which the cross-linking density could be controlled by the degree of substitution (DS, the number of methacrylates per 100 glucopyranose residues) of Dex-GMA. In this study, three types of DG-MP (DG-MP4.7, DG-MP6.3 and DG-MP7.8) obtained from gelatin and Dex-GMA (differing in DS: 4.7, 6.3 and 7.8 respectively) were prepared and characterized by swelling and degradation properties, drug release kinetics and biological capability in promoting tissue regeneration. By swelling in aqueous positively charged IGF-I solutions, the protein could be encapsulated in DG-MP by polyionic complexation with negatively charged acidic gelatin. No obvious influence of Dex-GMA's DS on DG-MP's configuration and size was observed, and the release and degraded properties showed no significant difference between three types of DG-MP in PBS buffer either. However, high DS of Dex-GMA could lower microsphere's swelling, prolong its degraded time and minimize IGF-I burst release markedly in dextranase-containing PBS, where IGF-I release from a slow release type of microspheres (DG-MP7.8) could be maintained more than 28 days, and an effective protein release kinetics without a significant burst but a relevantly constant release after the initial burst was achieved. IGF-I in DG-MP resulted in more new bone formation in the periodontal defects within 4 or 8 weeks than IGF-I in blood clot directly did (P < 0.01). The observed newly formation of periodontal tissues including the height and percentage of new bone and new cementum on the denuded root surfaces of the furcation area in DG-MP7.8 group were more than that in other groups (P < 0.05). The adequate width of regenerative periodontal ligament (PDL), regular Sharpey's fibers and alveolar bone reconstruction could be observed only in DG-MP7.8 group. These combined results demonstrate that effective release kinetics can be realized by adjusting the DS of Dex-GMA and followed cross-linking density of DG-MP, and that locally controlled delivery of IGF-I from slow release type of DG-MP may serve as a novel therapeutic strategy for periodontal tissue regeneration. (c) 2006 Elsevier B.V. All rights reserved.
机译:目前的工作集中于基于葡聚糖和明胶衍生的生物材料的新型水凝胶微球的设计,并讨论了从葡聚糖-明胶水凝胶微球(DG-MP)局部控制IGF-I的递送是否可用于牙周再生增强。当明胶与甲基丙烯酸缩水甘油酯(GMA)衍生的右旋糖酐(Dex-GMA)配合使用时,合成微球,所得的DG-MP具有水凝胶特性,其交联密度可通过取代度(DS,数(每100个吡喃葡萄糖残基中的甲基丙烯酸甲酯)。在这项研究中,制备了三种由明胶和Dex-GMA获得的DG-MP(DG-MP4.7,DG-MP6.3和DG-MP7.8)(在DS中分别为4.7、6.3和7.8)。具有膨胀和降解特性,药物释放动力学和促进组织再生的生物学能力。通过在带正电的IGF-I水溶液中溶胀,可以通过与带负电的酸性明胶进行多离子络合将蛋白质包裹在DG-MP中。没有观察到Dex-GMA的DS对DG-MP的构型和大小的明显影响,并且在PBS缓冲液中的三种类型的DG-MP的释放和降解特性也没有显着差异。但是,Dex-GMA的高DS可以降低微球的溶胀,延长其降解时间并最大程度地降低含葡聚糖酶的PBS中IGF-I爆发的释放,其中IGF-I从缓慢释放的微球中释放(DG-MP7.8)可以维持超过28天,并且有效的蛋白质释放动力学没有明显的爆发,但是在初始爆发后获得了相对恒定的释放。 DG-MP中的IGF-I比直接在血凝块中产生的IGF-I在牙周缺损中形成的新骨形成在4或8周内更多(P <0.01)。 DG-MP7.8组分叉区裸露牙根表面观察到的牙周组织新形成,包括新骨和新牙骨质的高度和百分比高于其他组(P <0.05)。仅在DG-MP7.8组中才能观察到足够的再生牙周膜宽度(PDL),正常的沙皮氏纤维和牙槽骨重建。这些综合结果表明,可以通过调节Dex-GMA的DS以及随后的DG-MP的交联密度来实现有效的释放动力学,并且从缓释型DG-MP局部控制IGF-I的传递可以用作牙周组织再生的新型治疗策略。 (c)2006 Elsevier B.V.保留所有权利。

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