Department of Pharmaceutical Technology, Center for Chemistry and Biomedicine, Institute of Pharmacy, University of Innsbruck, Innrain 80-82, 4th floor, Innsbruck A-6020, Austria; Department of Pharmaceutical Technology, Faculty of Pharmacy, Universitas Ahmad Dahlan, Jl. Prof. Dr. Soepomo, S.H., Janturan, Warungboto, Umbulharjo, Yogyakarta 55164, Indonesia.
Department of Pharmaceutical Technology, Center for Chemistry and Biomedicine, Institute of Pharmacy, University of Innsbruck, Innrain 80-82, 4th floor, Innsbruck A-6020, Austria.
Eur J Pharm Sci. 2023 Jan 1;180:106313. doi: 10.1016/j.ejps.2022.106313. Epub 2022 Oct 25.
The aim of this study was to improve the mucoadhesive properties of hydroxyethyl cellulose (HEC) via the covalent attachment of betaine. Synthesis was carried out through esterification of HEC utilizing N-chlorobetainyl chloride. Betaine-modified HEC was characterized via FTIR and NMR analyses, ester quantification and zeta potential measurements. Enzymatic degradation and cell viability were also investigated. Moreover, rheological and mucoadhesive properties were evaluated. FTIR and NMR analyses confirmed the covalent attachment of betaine to HEC. Betaine-modified HEC contained 228.45±11.63 µmol/g ester bonds and its zeta potential was 0.37±0.19 mV. Enzymatic degradation studies showed the ability of lipase to cleave off betaine from HEC. Cytotoxicity studies demonstrated that betaine-modified HEC is up to a concentration of 0.3% not toxic. In comparison to unmodified HEC, betaine-modified HEC showed with mucus a 2.3- and 4-fold higher viscosity within 3 h and 6 h, respectively. Furthermore, betaine-modified HEC exhibited 23.5-fold higher mucoadhesive properties on porcine intestinal mucosa compared to unmodified HEC. In conclusion, betaine-modified HEC might be a useful biodegradable mucoadhesive polymer.
本研究旨在通过甜菜碱的共价键合来提高羟乙基纤维素(HEC)的黏附性能。通过利用 N-氯代甜菜碱酰氯对 HEC 的酯化反应进行合成。通过傅里叶变换红外光谱(FTIR)和核磁共振(NMR)分析、酯定量和zeta 电位测量对甜菜碱修饰的 HEC 进行了表征。还研究了酶降解和细胞活力。此外,还评估了流变学和黏膜黏附性能。FTIR 和 NMR 分析证实了甜菜碱与 HEC 的共价键合。甜菜碱修饰的 HEC 含有 228.45±11.63 µmol/g 酯键,其 zeta 电位为 0.37±0.19 mV。酶降解研究表明脂肪酶能够从 HEC 上切割掉甜菜碱。细胞毒性研究表明,甜菜碱修饰的 HEC 在浓度高达 0.3%时没有毒性。与未修饰的 HEC 相比,甜菜碱修饰的 HEC 在 3 小时和 6 小时内与黏液的黏附性分别提高了 2.3 倍和 4 倍。此外,与未修饰的 HEC 相比,甜菜碱修饰的 HEC 在猪肠黏膜上的黏膜黏附性能提高了 23.5 倍。总之,甜菜碱修饰的 HEC 可能是一种有用的可生物降解的黏膜黏附性聚合物。