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Synthesis and physicochemical characterization of chitin dihexanoate -A new biocompatible chitin derivative - In comparison to chitin dibutyrate

机译:己二酸几丁酸酯的合成和理化特性-一种新型的生物相容性几丁质衍生物-与二丁酸几丁质相比

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摘要

Chitin dihexanoate (DHCH) is the novel biocompatible and technologically friendly highly substituted chitin di-ester. Here we described optimization of DHCH and chitin dibutyrate (dibutyryl chitin, DBC) synthesis conditions (temperature and reaction time) to obtain desired polymers with high reaction yield, high substitution degree (close to 2) and appropriately high molecular weights. A two-step procedure, employing acidic anhydrides (hexanoic or butyric anhydride) as the acylation agent and methanesulfonic acid both as the catalyst and the reaction medium, was applied. Chemical structures of DBC and DHCH were confirmed by NMR (~1H and ~(13)C) and IR investigations. Mechanical properties, thermogravimetric analysis, differential scanning calorimetry and biocom-patibility (Neutral red uptake assay, Skin Sensitization and Irritation Tests) were assessed. Both polymers proved highly biocompatible (non-cytotoxic in vitro, non-irritating and non-allergic to skin) and soluble in several organic solvents (dimethylformamide, N,N-dimethylacetamide, dimethyl sulfoxide, acetone, ethanol and others). It is worth emphasizing that DHCH and DBC can be easily processed by solvent casting method and the salt-leaching method, what gives the opportunity to prepare highly porous structures, which can be further successfully applied as the material for wound dressings and scaffolds for tissue engineering.
机译:几丁质己二酸酯(DHCH)是新型的生物相容性和技术友好的高度取代的几丁质二酯。在这里,我们描述了DHCH和几丁质二丁酸酯(二丁酰几丁质,DBC)合成条件(温度和反应时间)的优化,以获得具有高反应收率,高取代度(接近2)和适当高分子量的所需聚合物。采用两步法,使用酸酐(己酸或丁酸酐)作为酰化剂,并使用甲磺酸作为催化剂和反应介质。 DBC和DHCH的化学结构已通过NMR(〜1H和〜(13)C)和IR研究证实。评估了机械性能,热重分析,差示扫描量热法和生物相容性(中性红吸收测定,皮肤敏化和刺激试验)。两种聚合物均具有高度的生物相容性(体外无细胞毒性,对皮肤无刺激性和非过敏性),并溶于多种有机溶剂(二甲基甲酰胺,N,N-二甲基乙酰胺,二甲基亚砜,丙酮,乙醇等)。值得强调的是,DHCH和DBC可以通过溶剂浇铸法和盐浸法轻松加工,这为制备高度多孔结构提供了机会,可以进一步成功地将其用作组织工程伤口敷料和支架的材料。

著录项

  • 来源
    《Materials science & engineering》 |2016年第3期|489-502|共14页
  • 作者单位

    Department of Research and Development, Celther Poland Sp. z o.o. ul. Ostrzykowizna 14A, 05-170 Zakroczym, Poland;

    Department of Research and Development, Celther Poland Sp. z o.o. ul. Ostrzykowizna 14A, 05-170 Zakroczym, Poland;

    Department of Research and Development, Celther Poland Sp. z o.o. ul. Ostrzykowizna 14A, 05-170 Zakroczym, Poland;

    Silesian University of Technology, Faculty of Chemistry, Department of Physical Chemistry and Technology of Polymers, ul. M. Strzody 9, 44-100 Gliwice, Poland;

    Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, 90-363 Lodz, Poland;

    Department of Research and Development, Celther Poland Sp. z o.o. ul. Ostrzykowizna 14A, 05-170 Zakroczym, Poland;

    Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, 90-363 Lodz, Poland;

    Department of Research and Development, Celther Poland Sp. z o.o. ul. Ostrzykowizna 14A, 05-170 Zakroczym, Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biopolymers; Polysaccharides; Chitin; Esterification; Biomaterial;

    机译:生物聚合物;多糖;甲壳素;酯化;生物材料;

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