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N-羟基亚磺酰基琥珀酰亚胺酯类与硫醚类:关于黏附性的比较研究。

N-Hydroxysulfosuccinimide Esters versus Thiomers: A Comparative Study Regarding Mucoadhesiveness.

出版信息

Mol Pharm. 2019 Mar 4;16(3):1211-1219. doi: 10.1021/acs.molpharmaceut.8b01183. Epub 2019 Feb 18.

Abstract

The objective of the study was to compare poly(acrylic acid)- N-hydroxysulfosuccinimide reactive esters (PAA-Sulfo-NHS) and poly(acrylic acid)-cysteine conjugates (PAA-Cys) regarding their mucoadhesiveness. Polymer conjugates were synthesized in a water free environment and characterized by UV-vis spectroscopy and FTIR. Water uptake studies were performed, and the polymers were further examined for their mucoadhesive properties and cohesiveness using the rotating cylinder method. Tensile force measurements were conducted to define the strength of adhesion to porcine intestinal mucosa. Additionally, polymer-mucus mixtures were assessed for rheological synergism by measuring the increase in dynamic viscosity. Both modifications led to a prolonged adhesion time compared to unmodified PAA. Fast dissolution of PAA-Sulfo-NHS derivatives was monitored, whereas PAA-Cys tended to extensively swell while exhibiting high cohesive properties. Measurements of tensile force revealed up to 2.7-fold (PAA-Sulfo-NHS) and 2.3-fold (PAA-Cys) enhancement of the maximum detachment force and 7.6-fold (PAA-Sulfo-NHS) and 3.6-fold (PAA-Cys) increase in the total work of adhesion. Formation of a gel network between polymer and mucus was confirmed by a 10.8-fold (PAA-Sulfo-NHS) and 20.8-fold (PAA-Cys) increase in viscosity. Both types of polymers show high mucoadhesive properties due to the formation of covalent bonds with the mucus. As thiolated polymers are capable of forming stabilizing disulfide bonds within their polymeric network, they are advantageous over PAA-Sulfo-NHS.

摘要

本研究旨在比较聚(丙烯酸)-N-羟基琥珀酰亚胺反应性酯(PAA-Sulfo-NHS)和聚(丙烯酸)-半胱氨酸缀合物(PAA-Cys)的黏附性。在无水环境下合成聚合物缀合物,并通过紫外可见光谱和傅里叶变换红外光谱进行表征。进行了吸水率研究,并进一步使用旋转圆筒法研究了聚合物的黏附性能和内聚性。进行了拉伸力测量,以确定对猪肠黏膜的附着强度。此外,通过测量动态粘度的增加来评估聚合物-黏液混合物的流变协同作用。与未修饰的 PAA 相比,两种修饰均导致黏附时间延长。监测了 PAA-Sulfo-NHS 衍生物的快速溶解,而 PAA-Cys 则倾向于广泛溶胀,同时表现出高内聚性。拉伸力测量表明,最大分离力提高了 2.7 倍(PAA-Sulfo-NHS)和 2.3 倍(PAA-Cys),粘附总功提高了 7.6 倍(PAA-Sulfo-NHS)和 3.6 倍(PAA-Cys)。通过聚合物和黏液之间形成凝胶网络得到了证实,黏度分别提高了 10.8 倍(PAA-Sulfo-NHS)和 20.8 倍(PAA-Cys)。由于与黏液形成共价键,这两种类型的聚合物都表现出很高的黏附性。由于巯基化聚合物能够在其聚合物网络内形成稳定的二硫键,因此它们比 PAA-Sulfo-NHS 更具优势。

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