Bratskaya Svetlana, Skatova Anna, Privar Yuliya, Boroda Andrey, Kantemirova Ekaterina, Maiorova Mariya, Pestov Alexander
Institute of Chemistry, Far Eastern Branch of Russian Academy of Sciences, 159, prosp.100-letiya Vladivostoka, 690022 Vladivostok, Russia.
A.V. Zhirmunsky National Scientific Center of Marine Biology, Far Eastern Branch of Russian Academy of Sciences, 17, Palchevskogo Street, 690041 Vladivostok, Russia.
Gels. 2021 Oct 29;7(4):188. doi: 10.3390/gels7040188.
Here, we discuss the applicability of (methylenebis(salicylaldehyde)-MbSA) for the fabrication of the stimuli-responsive -carboxyethylchitosan (CEC) hydrogels with a tunable dissolution rate under physiological conditions. In comparison with non-covalent salicylimine hydrogels, MbSA cross-linking via covalent bis('imine clip') and non-covalent hydrophobic interactions allowed the fabrication of hydrogels with storage moduli > 1 kPa at ten-fold lower aldehyde/CEC molar ratio with the preservation of pH- and amino-acid responsive behavior. Although MbSA-cross-linked CEC hydrogels were stable at neutral and weakly alkaline pH, their disassembly in cell growth medium (Dulbecco's modified Eagle's medium, DMEM) under physiological conditions was feasible due to transimination reaction with amino acids contained in DMEM. Depending on the cross-linking density, the complete dissolution time of the fabricated hydrogels varied from 28 h to 11 days. The cytotoxicity of MbSA cross-linked CEC hydrogels toward a human colon carcinoma cell line (HCT 116) and primary human dermal fibroblasts (HDF) was remarkably lower in comparison with CEC-salicylimine hydrogels. Fast gelation, relatively low cytotoxicity, and tunable stimuli-induced disassembly under physiological conditions make MbSA cross-linked CEC hydrogels promising for drug encapsulation and release, 3D printing, cell culturing, and other biomedical applications.
在此,我们讨论了(亚甲基双(水杨醛)-MbSA)在制备生理条件下具有可调溶解速率的刺激响应性羧乙基壳聚糖(CEC)水凝胶方面的适用性。与非共价水杨基亚胺水凝胶相比,MbSA通过共价双(“亚胺夹子”)和非共价疏水相互作用交联,使得在醛/CEC摩尔比低十倍的情况下能够制备储能模量>1 kPa的水凝胶,同时保留了pH和氨基酸响应行为。尽管MbSA交联的CEC水凝胶在中性和弱碱性pH下稳定,但由于与DMEM中所含氨基酸的转亚胺化反应,它们在生理条件下于细胞生长培养基(杜氏改良伊格尔培养基,DMEM)中解体是可行的。根据交联密度的不同,制备的水凝胶的完全溶解时间从28小时到11天不等。与CEC-水杨基亚胺水凝胶相比,MbSA交联的CEC水凝胶对人结肠癌细胞系(HCT 116)和原代人皮肤成纤维细胞(HDF)的细胞毒性明显更低。快速凝胶化、相对较低的细胞毒性以及在生理条件下可调的刺激诱导解体使得MbSA交联的CEC水凝胶在药物包封与释放、3D打印、细胞培养及其他生物医学应用方面具有广阔前景。