School of Nano Science and Technology (SNST), Indian Institute of Technology, Kharagpur, West Bengal 721302, India.
Department of Chemical Engineering and Materials Science, University of Minnesota, Amundson Hall, 421 Washington Ave SE #151, Minneapolis, MN 55455, USA.
Int J Pharm. 2024 Sep 5;662:124490. doi: 10.1016/j.ijpharm.2024.124490. Epub 2024 Jul 18.
A sodium alginate (Alg) based REDOX (reduction and oxidation)-responsive and fluorescent active microgel was prepared via water in oil (w/o) mini-emulsion polymerization technique. Here, we initially synthesized sodium alginate-based disulfide cross linked microgels and after that those microgels were tagged with rhodamine amine derivative (RhB-NH) by ionic interaction to get the pH-responsive fluorescent property. Functionalized microgels were characterized using H NMR, FTIR, DLS, HRTEM, FESEM, UV-vis, and fluorescence spectroscopy analyses. Presence of the REDOX-responsive disulfide-containing crosslinkers in the microgels enhances the release of doxorubicin (DOX), an anti-cancer drug in the reducing environment of the cancer-cells (simulated). Existence of the rhodamine-amine derivative in the microgels triggers the pH-dependent fluorescence property by showing fluorescence emission at 560-580 nm at pH 5.5 (cancer cell pH). The cytotoxicity of the biopolymer based microgel was assessed over both cancerous HeLa (IC 100 µg/mL) and non-cancerous MDCK (IC 200 µg/mL) cells by MTT assay which showed the synthesized microgel is non-toxic whereas DOX-loaded microgels showed significant toxicity. FACS and cell uptake (in vitro) analyses were conducted to understand the cell apoptosis cycle and behavior of the cancer cells in presence of the DOX-loaded microgels. This pH-responsive fluorescent active alginate-based biomaterial could be a promising material for the anti-cancer drug delivery and other medical fields.
一种基于海藻酸钠(Alg)的氧化还原(还原和氧化)响应和荧光活性微凝胶,通过油包水(w/o)细乳液聚合技术制备。在这里,我们最初合成了基于海藻酸钠的二硫键交联微凝胶,然后通过离子相互作用将这些微凝胶标记上罗丹明胺衍生物(RhB-NH),以获得 pH 响应的荧光性质。通过 H NMR、FTIR、DLS、HRTEM、FESEM、UV-vis 和荧光光谱分析对功能化微凝胶进行了表征。微凝胶中存在氧化还原响应的含二硫键交联剂增强了阿霉素(DOX)的释放,DOX 是一种抗癌药物,在癌细胞的还原环境中(模拟)。微凝胶中存在罗丹明胺衍生物会触发 pH 依赖性荧光性质,在 pH 5.5(癌细胞 pH)时在 560-580nm 处显示荧光发射。通过 MTT 测定法评估了基于生物聚合物的微凝胶对癌细胞 HeLa(IC 100μg/mL)和非癌细胞 MDCK(IC 200μg/mL)的细胞毒性,结果表明合成的微凝胶是无毒的,而负载 DOX 的微凝胶则表现出显著的毒性。进行了流式细胞术和细胞摄取(体外)分析,以了解载 DOX 微凝胶存在下癌细胞的细胞凋亡周期和行为。这种 pH 响应的荧光活性基于海藻酸钠的生物材料可能是一种有前途的抗癌药物输送和其他医学领域的材料。