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基于 α-壳聚糖和β-寡聚壳聚糖混合物的配方,用于体外评估黑素细胞反应。

α-Chitosan and β-Oligochitosan Mixtures-Based Formula for In Vitro Assessment of Melanocyte Cells Response.

机构信息

Departament of Cellular and Molecular Biology, Faculty of Pharmacy, Ovidius University of Constanta, 6 Capt. Aviator Al. Șerbănescu Street, Campus C, 900470 Constanta, Romania.

Institute of Biological Research Iasi, Branch of NIRDBS-National Institute of Research and Development of Biological Sciences Bucharest, 47 Lascar Catargi, 700107 Iasi, Romania.

出版信息

Int J Mol Sci. 2024 Jun 20;25(12):6768. doi: 10.3390/ijms25126768.

Abstract

Chitosan is a natural polymer with numerous biomedical applications. The cellular activity of chitosan has been studied in various types of cancer, including melanoma, and indicates that these molecules can open new perspectives on antiproliferative action and anticancer therapy. This study analyzes how different chitosan conformations, such as α-chitosan (CH) or β-oligochitosan (CO), with various degrees of deacetylation (DDA) and molar mass (MM), both in different concentrations and in CH-CO mixtures, influence the cellular processes of SK-MEL-28 melanocytes, to estimate the reactivity of these cells to the applied treatments. The in vitro evaluation was carried out, aiming at the cellular metabolism (MTT assay), cellular morphology, and chitinase-like glycoprotein YKL-40 expression. The in vitro effect of the CH-CO mixture application on melanocytes is obvious at low concentrations of α-chitosan/β-oligochitosan (1:2 ratio), with the cell's response supporting the hypothesis that β-oligo-chitosan amplifies the effect. This oligochitosan mixture, favored by the β conformation and its small size, penetrates faster into the cells, being more reactive when interacting with some cellular components. Morphological effects expressed by the loss of cell adhesion and the depletion of YKL-40 synthesis are significant responses of melanocytes. β-oligochitosan (1.5 kDa) induces an extension of cytophysiological effects and limits the cell viability compared to α-chitosan (400-900 kDa). Statistical analysis using multivariate techniques showed differences between the CH samples and CH-CO mixtures.

摘要

壳聚糖是一种具有多种生物医学应用的天然聚合物。壳聚糖的细胞活性已在各种类型的癌症中进行了研究,包括黑色素瘤,并表明这些分子可以为抗增殖作用和抗癌治疗开辟新的视角。本研究分析了不同壳聚糖构象(如α-壳聚糖(CH)或β-低聚壳聚糖(CO))、不同脱乙酰度(DDA)和分子量(MM)以及不同浓度和 CH-CO 混合物对 SK-MEL-28 黑色素细胞的细胞过程的影响,以评估这些细胞对应用处理的反应性。进行了体外评估,旨在评估细胞代谢(MTT 测定)、细胞形态和几丁质酶样糖蛋白 YKL-40 的表达。在低浓度的α-壳聚糖/β-低聚壳聚糖(1:2 比例)下,CH-CO 混合物对黑色素细胞的体外作用明显,细胞反应支持β-低聚壳聚糖放大作用的假设。这种低聚壳聚糖混合物有利于β构象和较小的尺寸,更快地渗透到细胞中,与某些细胞成分相互作用时更具反应性。细胞黏附丧失和 YKL-40 合成耗竭表达的形态学效应是黑色素细胞的重要反应。与α-壳聚糖(400-900 kDa)相比,β-低聚壳聚糖(1.5 kDa)诱导细胞生理效应的延长并限制细胞活力。使用多元技术的统计分析显示 CH 样品和 CH-CO 混合物之间存在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d80/11204147/e8d06d569e86/ijms-25-06768-g001.jpg

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