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'Reactive' nano-complex coated medical cotton: a facile avenue for tailored release of small molecules

机译:“活性”nano-complex涂布医学棉:a灵巧的大街小的定制版本分子

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Controlled and sustained release of drug-like small molecules in an aqueous medium still remains a challenging problem due to rapid infiltration of liquid water in most reported drug release systems. However, internal-superhydrophobicity with an antifouling property extending beyond the surface of a material recently has been recognized as a potential avenue for sustained and extended release of drug-like small molecules. Sluggish removal of metastable trapped air in a superhyrophobic material provides a basis to achieve extended release of encapsulated small molecules. In this article, naturally abundant medicalcotton- extensively used in wound management including control of bleeding, absorbance of secretions and protecting wounds from contamination-is strategically exploited in tailoring (from rapid to extended) the release of small molecules by appropriate modulation of liquid water wettability. Modulation included bio-mimicked adhesive and non-adhesive superhydrophobicity of the medical cotton without erosion of any polymeric material. In this process, amine 'reactive' nano-complexes (RNC) were prepared by just mixing branched poly(ethylenimine) (BPEI) with dipentaerythritol pentaacrylate (5Acl) in ethanol with appropriate compositions. Then they were covalently immobilized on fibrous medical-cotton through a facile and robust 1,4-conjugated addition reaction. Residual acrylate moieties in the immobilized RNC provide an opportunity to tailor water wettability through strategic and appropriate post-chemical modification of RNC-coated medical cotton with a primary amine containing various small molecules. This medical-cotton with tunable wettability was exploited further to control the release rate of small molecules from rapid (100 days) times. A volatile solvent induced transient and reversible switching of anti-fouling properties which allowed further varying the amount of post-loading small molecules into the medical cotton up to 2.36 wt% without compromising the embedded anti-wetting property. Thus, our current approach has immense potential to develop appropriate materials for a sustained and controlled release of small molecules from a clinically relevant substrate (i.e., medical-cotton) and may be useful in various bio-medical applications including improving wound management, preventing bacterial infections, better pain management, etc.
机译:控制和持续释放药物类小分子在水介质由于快速的仍然是一个具有挑战性的问题在大多数报道渗透的液态水药物释放系统。internal-superhydrophobicity与防污属性扩展超出了表面材料最近已被公认潜在的大道持续和延伸释放药物类小分子。消除亚稳态空气被困在一个superhyrophobic材料提供了基础实现延长释放封装小分子。medicalcotton——广泛用于伤口管理,包括控制出血,吸光度的分泌物和保护伤口从污染战略利用裁剪(从快速扩展)的释放小分子通过适当的调制液态水润湿。bio-mimicked胶粘剂和无粘着力的superhydrophobicity医疗的棉花聚合物材料的侵蚀。过程中,胺的活性nano-complexes (RNC)是由混合支聚(乙烯亚胺)与二季戊四醇(BPEI)pentaacrylate acl(5)与合适的乙醇的组成部分。固定化纤维medical-cotton通过温和的和健壮的1,4-conjugated加法的反应。固定化共和党全国委员会提供一个调整的机会通过战略和水润湿性适当post-chemical修改RNC-coated医疗与伯胺棉包含各种小分子。与可调medical-cotton润湿性进一步利用控制的释放率小分子从快速持续( 100天)。瞬态和可逆的交换这允许进一步防污属性post - loading数量不等的小分子医学棉花2.36 wt %在不影响嵌入式anti-wetting财产。潜在的发展适当的材料持续控释小从临床相关的底物分子(例如,medical-cotton)和可能是有用的各种生物医学应用程序包括改善伤口管理,防止细菌感染,更好的疼痛管理等。

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