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环糊精与壳聚糖抗氧化剂形成的互穿聚合物网络:键合、生物粘附性、抗氧化能力及药物释放

IPNs from Cyclodextrin:Chitosan Antioxidants: Bonding, Bio-Adhesion, Antioxidant Capacity and Drug Release.

作者信息

Perchyonok V Tamara, Grobler Sias R, Zhang Shengmiao

机构信息

VTPCHEM PTY Ltd, Glenhuntly, Melbourne 3163, Australia.

Oral and Dental Research Institute, Faculty of Dentistry, University of the Western Cape, Private Bag X1, Tygerberg 7505, Cape Town, South Africa.

出版信息

J Funct Biomater. 2014 Sep 17;5(3):183-96. doi: 10.3390/jfb5030183.

Abstract

IPNs are unique "alloys" of cross-linked polymers in which at least one network is synthesized and/or cross-linked in the presence of the other. IPNs are also known as entanglements of polymer networks that are ideally held together only by permanent topological interactions. The objectives of this study are to evaluate novel chitosan-based functional drug delivery systems that can be successfully incorporated into "dual action bioactive tooth restorative materials". These materials should be capable of inducing an improved wound healing prototype. The novel hydrogels will be investigated with respect to the antioxidant capacity of conventional antioxidants, such as resveratrol, b-carotene and propolis, as a designer drug delivery system, with the use of SEM imaging for the characterization of the surfaces, bio-adhesive property, antioxidant capacity, free radical defence, antioxidant, active ingredient stability and reactive features of novel materials. The additional benefit of the site-specific "functional restorative material" for use in dressings to deliver antibiotics to wound sites can provide tissue compatibility and reduced interference with wound healing. The materials were tested using an effective in vitro free radical generation model as functional additive prototypes for further development of "dual function restorative wound healing materials". We quantified the effects of functional designer biomaterials on the dentin bond strength of a composite and evaluated the bio-adhesive capacity of the materials in the two separate "in vitro" systems. The added benefits of the chitosan/vitamin C/cyclodextrin (CD) host:guest complex-treated hydrogels involved a positive influence on the tetracycline release, increased dentin bond strength, as well as a demonstrated in vitro "built-in" free radical defence mechanism and, therefore, acting as a "proof of concept" for functional multi-dimensional restorative wound healing materials with a built-in free radical defence mechanism. Based on our results, we can conclude that the CD:chitosan-antioxidant-containing hydrogels are a suitable carrier for tetracycline to be slow-released. Within the limitations of the study design, chitosan-based hydrogels are suitable materials for functional restorative and wound healing applications in vitro. Cytotoxicity data are currently being evaluated in our laboratory.

摘要

互穿聚合物网络(IPN)是交联聚合物的独特“合金”,其中至少一种网络是在另一种网络存在的情况下合成和/或交联的。IPN也被称为聚合物网络的缠结,理想情况下仅通过永久的拓扑相互作用结合在一起。本研究的目的是评估新型壳聚糖基功能性药物递送系统,该系统可成功纳入“双作用生物活性牙齿修复材料”。这些材料应能够诱导改善的伤口愈合原型。将研究新型水凝胶作为一种设计药物递送系统,考察其与白藜芦醇、β-胡萝卜素和蜂胶等传统抗氧化剂的抗氧化能力,并使用扫描电子显微镜成像来表征新型材料的表面、生物粘附性、抗氧化能力、自由基防御、抗氧化剂、活性成分稳定性和反应特性。用于敷料的位点特异性“功能性修复材料”的额外好处是能够将抗生素递送至伤口部位,同时提供组织相容性并减少对伤口愈合的干扰。使用有效的体外自由基生成模型对这些材料进行测试,作为“双功能修复性伤口愈合材料”进一步开发的功能性添加剂原型。我们量化了功能性设计生物材料对复合材料牙本质粘结强度的影响,并在两个独立的“体外”系统中评估了材料的生物粘附能力。壳聚糖/维生素C/环糊精(CD)主客体复合物处理的水凝胶的额外好处包括对四环素释放有积极影响、提高牙本质粘结强度,以及证明了体外“内置”自由基防御机制,因此,作为具有内置自由基防御机制的功能性多维修复性伤口愈合材料的“概念验证”。基于我们的结果,我们可以得出结论,含CD:壳聚糖-抗氧化剂的水凝胶是四环素缓释的合适载体。在研究设计的限制范围内,壳聚糖基水凝胶是体外功能性修复和伤口愈合应用的合适材料。目前我们实验室正在评估细胞毒性数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54f6/4192612/4452eece446f/jfb-05-00183-g001.jpg

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