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一种芳基壳聚糖衍生物的合成及理化性质:体外抗菌、抗氧化、抗癌评价及计算机研究。

Synthesis and physicochemical properties of an aromatic chitosan derivative: In vitro antibacterial, antioxidant, and anticancer evaluations, and in silico studies.

机构信息

Polymer Materials Research Department, Advanced Technologies and New Materials Research Institute (ATNMRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab City, Alexandria 21934, Egypt.

Department of Neurology, Hospital of Sun Yat-sen University, Guangdong 510080, China.

出版信息

Int J Biol Macromol. 2023 Jun 15;240:124339. doi: 10.1016/j.ijbiomac.2023.124339. Epub 2023 Apr 6.

Abstract

This study was designed to synthesize a functionalized chitosan by coupling the amine groups of chitosan with 2,4,6-Trimethoxybenzaldehyde, producing a chitosan Schiff base (Cs-TMB). The development of Cs-TMB was verified employing FT-IR, H NMR, the electronic spectrum, and elemental analysis. Antioxidant assays exhibited significant ameliorations of Cs-TMB, reporting scavenging activities of 69.67 ± 3.48 % and 39.65 ± 1.98 % for ABTS and DPPH, respectively, while native chitosan showed scavenging ratios of 22.69 ± 1.13 % and 8.24 ± 0.4.1 % toward ABTS and DPPH, respectively. Besides, Cs-TMB exerted significant antibacterial activity up to 90 % with remarkable bactericidal capacity against virulent gram-negative and gram-positive bacteria compared to the original chitosan. Furthermore, Cs-TMB exhibited a safe profile against normal fibroblast cells (HFB4). Interestingly, flow cytometric analysis showed that Cs-TMB demonstrated prominent anticancer properties of 52.35 ± 2.99 % against human skin cancer cells (A375), compared to 10.66 ± 0.55 % for Cs-treated cells. Moreover, Python and PyMOL in-house scripts were used to predict the interaction of Cs-TMB with the adenosine A1 receptor and visualized as a protein-ligand system submerged in a lipid membrane. Overall, these findings accentuate that Cs-TMB could be a favorable representative for wound dressing formulations and skin cancer treatment.

摘要

本研究旨在通过将壳聚糖的氨基与 2,4,6-三甲氧基苯甲醛偶联,合成一种功能化的壳聚糖,得到壳聚糖席夫碱(Cs-TMB)。采用傅里叶变换红外光谱(FT-IR)、核磁共振氢谱(1H NMR)、电子光谱和元素分析对 Cs-TMB 的发展进行了验证。抗氧化试验表明,Cs-TMB 有显著的改善作用,其对 ABTS 和 DPPH 的清除活性分别为 69.67±3.48%和 39.65±1.98%,而天然壳聚糖对 ABTS 和 DPPH 的清除率分别为 22.69±1.13%和 8.24±0.41%。此外,Cs-TMB 表现出显著的抗菌活性,对革兰氏阴性和革兰氏阳性菌的杀菌能力比原始壳聚糖强,达到 90%。此外,Cs-TMB 对正常成纤维细胞(HFB4)表现出安全的特性。有趣的是,流式细胞术分析表明,Cs-TMB 对人皮肤癌细胞(A375)的抗癌活性显著,为 52.35±2.99%,而 Cs 处理的细胞为 10.66±0.55%。此外,还使用了 Python 和 PyMOL 内部脚本来预测 Cs-TMB 与腺苷 A1 受体的相互作用,并将其可视化作为一个蛋白-配体系统浸入脂质膜中。总的来说,这些发现强调了 Cs-TMB 可能成为伤口敷料配方和皮肤癌治疗的有前途的代表。

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