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壳聚糖-硫代乙脒共轭物的合成改进及体外表征

Improved synthesis and in vitro characterization of chitosan-thioethylamidine conjugate.

作者信息

Kafedjiiski Krum, Hoffer Martin, Werle Martin, Bernkop-Schnürch Andreas

机构信息

Department of Pharmaceutical Technology, Institute of Pharmacy, Leopold-Franzens-University Innsbruck, Innrain 52, Josef Möller Haus, A-6020 Innsbruck, Austria.

出版信息

Biomaterials. 2006 Jan;27(1):127-35. doi: 10.1016/j.biomaterials.2005.05.075.

Abstract

The aim of this study was to establish improved reaction conditions for the synthesis of chitosan-thioethylamidine (Ch-TEA) conjugate and to evaluate the properties of the obtained Ch-TEA conjugate. The influence of different factors on the coupling reaction, such as concentration of chitosan solution, employment of reducing agent and deprotection of S-acetyl groups, was evaluated. The cohesive properties and stability of the obtained conjugate were evaluated by disintegration test and by oxidation experiments, respectively. The adhesive properties of Ch-TEA conjugate were evaluated in vitro on freshly excised porcine mucosa via tensile studies and the rotating cylinder method. The permeation-enhancing effect of Ch-TEA conjugate was evaluated in Ussing-type chambers by using rhodamine 123 as model compound. The resulting conjugate displayed 225 micromol immobilized free thiol groups and 102 micromol disulfide bonds per gram polymer. The degree of modification depends mostly on the chitosan concentration employed and the deprotection of S-acetyl groups with hydroxylamine. During oxidation studies the amount of thiol groups decreased by 61%. Disintegration studies of tablets comprising Ch-TEA demonstrated stability for 48 h. In tensile studies, the total work of adhesion of the conjugate was determined to be 5.1-fold increased in comparison to unmodified chitosan. Results from the rotating cylinder method showed more than a 13-fold increase in the adhesion time of thiolated chitosan versus unmodified chitosan. The apparent permeability coefficient (Papp) of the system 0.5% (w/v) Ch-TEA conjugate with 5% (w/v) glutathione was calculated to be 5.35 x 10(-8)cm/s, while the Papp value of the system 0.5% (w/v) unmodified chitosan was 1.73 x 10(-8)cm/s. These features should render Ch-TEA useful as an excipient for various drug delivery systems.

摘要

本研究的目的是建立合成壳聚糖-硫代乙脒(Ch-TEA)偶联物的优化反应条件,并评估所得Ch-TEA偶联物的性质。评估了不同因素对偶联反应的影响,如壳聚糖溶液的浓度、还原剂的使用以及S-乙酰基的脱保护。分别通过崩解试验和氧化实验评估所得偶联物的内聚性能和稳定性。通过拉伸研究和旋转圆筒法在新鲜切除的猪黏膜上体外评估Ch-TEA偶联物的黏附性能。以罗丹明123为模型化合物,在Ussing型扩散池中评估Ch-TEA偶联物的渗透增强作用。所得偶联物每克聚合物显示225微摩尔固定的游离巯基和102微摩尔二硫键。修饰程度主要取决于所用壳聚糖的浓度以及用羟胺对S-乙酰基的脱保护。在氧化研究中,巯基的量减少了61%。对包含Ch-TEA的片剂进行的崩解研究表明其稳定性可达48小时。在拉伸研究中,确定偶联物的总黏附功相较于未修饰的壳聚糖增加了5.1倍。旋转圆筒法的结果显示,硫醇化壳聚糖的黏附时间相较于未修饰的壳聚糖增加了13倍以上。计算得出0.5%(w/v)Ch-TEA偶联物与5%(w/v)谷胱甘肽体系的表观渗透系数(Papp)为5.35×10⁻⁸cm/s,而0.5%(w/v)未修饰壳聚糖体系的Papp值为1.73×10⁻⁸cm/s。这些特性应使Ch-TEA作为各种药物递送系统的辅料具有实用性。

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