Department of Chemistry, Visva-Bharati University, Santiniketan 731235, India.
Department of Signal Transduction and Biogenic Amines, Chittaranjan National Cancer Institute, Kolkata 700026, India.
Langmuir. 2024 Sep 17;40(37):19816-19829. doi: 10.1021/acs.langmuir.4c02627. Epub 2024 Aug 30.
A self-assembly-directed thixotropic metallohydrogel (i.e., Mg-Tetrakis) of Mg(II)-metal salt and ,,','-tetrakis(2-hydroxy-ethyl)ethylenediamine (i.e., Tetrakis) was successfully achieved. The organic chemical component ,,','-tetrakis(2-hydroxy-ethyl)ethylenediamine was used as a low-molecular-weight gelator, and water was employed as the gel-forming solvent. The fabricated supramolecular metallohydrogel promisingly depicted viscoelastic and mechanoelastic behaviors, which are interpreted through various rheological parameters. The thixotropic behavior of the metallohydrogel is also well characterized through this rheological study. Field emission scanning electron microscopy microstructural analyses were performed to visualize the morphological arrangements of the metallohydrogel. The anticancer properties of the synthesized metallogels are investigated through this work. The cytotoxic potential of the metallohydrogel on the MCF-7 breast cancer cell line is critically examined. Reducing the growth of breast cancer cell line MCF-7 through the treatment of gel on the colony formation assay has been explored through the work. The antimigratory potential of the metallohydrogel on the MCF-7 cell was also scrutinized. The anticancer effect of the fabricated metallohydrogel is inspected through various assay formation strategies, like wound healing assay, tumor spheroid inhibition assay, nuclear fragmentation assay, and so on. Quantitative reactive oxygen species analysis of the cancer cells by treatment with the metallohydrogel was also conducted through this study. The mechanistic apoptosis study was executed by studying the expression of various apoptotic markers like BAX, BCL2, PUMA, and NOXA.
成功地实现了一种由 Mg(II)-金属盐和,,','-四(2-羟乙基)乙二胺(即 Tetrakis)自组装导向的触变金属水凝胶(即 Mg-Tetrakis)。有机化学组分,,','-四(2-羟乙基)乙二胺被用作低分子量凝胶剂,水被用作凝胶形成溶剂。所制备的超分子金属水凝胶有望表现出粘弹性和力学弹性行为,通过各种流变学参数进行解释。通过这项流变学研究还很好地描述了触变金属水凝胶的触变行为。进行了场发射扫描电子显微镜微观结构分析,以可视化金属水凝胶的形态排列。通过这项工作研究了合成金属凝胶的抗癌特性。通过凝胶对 MCF-7 乳腺癌细胞系的处理,仔细检查了金属水凝胶的细胞毒性潜力。通过这项工作探索了通过凝胶处理在集落形成测定中降低 MCF-7 乳腺癌细胞系生长的能力。还研究了金属水凝胶对 MCF-7 细胞的抗迁移潜力。通过各种测定形成策略,如划痕愈合测定、肿瘤球体抑制测定、核碎裂测定等,检查了所制备的金属水凝胶的抗癌效果。通过这项研究还对用金属水凝胶处理的癌细胞进行了定量活性氧分析。通过研究各种凋亡标志物(如 BAX、BCL2、PUMA 和 NOXA)的表达,执行了机制凋亡研究。