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含制霉菌素的壳聚糖水凝胶作为潜在双效生物活性修复材料的评价:体外研究方法

Evaluation of nystatin containing chitosan hydrogels as potential dual action bio-active restorative materials: in vitro approach.

作者信息

Perchyonok V Tamara, Reher Vanessa, Zhang Shengmiao, Basson Nicki, Grobler Sias

机构信息

Research and Development Department, VTPCHEM PTY LTD., Southport 4215, Australia.

School of Dentistry and Oral Health, Gold Coast campus, Griffith University, QLD 4222, Australia.

出版信息

J Funct Biomater. 2014 Nov 28;5(4):259-72. doi: 10.3390/jfb5040259.

Abstract

Healing is a specific biological process related to the general phenomenon of growth and tissue regeneration and is a process generally affected by several systemic conditions or as detrimental side-effects of chemotherapy- and radiotherapy-induced inflammation of the oral mucosa. The objectives of this study is to evaluate the novel chitosan based functional drug delivery systems, which can be successfully incorporated into "dual action bioactive restorative materials", capable of inducing in vitro improved wound healing prototype and containing an antibiotic, such as nystatin, krill oil as an antioxidant and hydroxyapatite as a molecular bone scaffold, which is naturally present in bone and is reported to be successfully used in promoting bone integration when implanted as well as promoting healing. The hydrogels were prepared using a protocol as previously reported by us. The physico-chemical features, including surface morphology (SEM), release behaviors, stability of the therapeutic agent-antioxidant-chitosan, were measured and compared to the earlier reported chitosan-antioxidant containing hydrogels. Structural investigations of the reactive surface of the hydrogel are reported. Release of nystatin was investigated for all newly prepared hydrogels. Bio-adhesive studies were performed in order to assess the suitability of these designer materials. Free radical defense capacity of the biomaterials was evaluated using established in vitro model. The bio-adhesive capacity of the materials in the in vitro system was tested and quantified. It was found that the favorable synergistic effect of free radical built-in defense mechanism of the new functional materials increased sustainable bio-adhesion and therefore acted as a functional multi-dimensional restorative material with potential application in wound healing in vitro.

摘要

愈合是一个与生长和组织再生这一普遍现象相关的特定生物学过程,并且是一个通常受多种全身状况影响的过程,或者是化疗和放疗引起的口腔黏膜炎症的有害副作用。本研究的目的是评估新型壳聚糖基功能性药物递送系统,该系统可成功整合到“双作用生物活性修复材料”中,能够在体外诱导改善伤口愈合原型,并且包含一种抗生素,如制霉菌素、作为抗氧化剂的磷虾油以及作为分子骨支架的羟基磷灰石,羟基磷灰石天然存在于骨骼中,据报道在植入时成功用于促进骨整合以及促进愈合。水凝胶按照我们之前报道的方案制备。测量了包括表面形态(扫描电子显微镜)、释放行为、治疗剂 - 抗氧化剂 - 壳聚糖稳定性在内的物理化学特征,并与早期报道的含壳聚糖 - 抗氧化剂的水凝胶进行比较。报道了水凝胶反应表面的结构研究。研究了所有新制备水凝胶中制霉菌素的释放情况。进行了生物粘附研究以评估这些设计材料的适用性。使用已建立的体外模型评估生物材料的自由基防御能力。测试并量化了材料在体外系统中的生物粘附能力。发现新型功能材料的自由基内置防御机制产生的有利协同效应增加了可持续生物粘附,因此作为一种功能性多维修复材料在体外伤口愈合中具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c060/4285406/617fe3a43be7/jfb-05-00259-g001.jpg

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