El-Sherbiny Mohsen M, Orif Mohamed I, El-Hefnawy Mohamed E, Alhayyani Sultan, Al-Goul Soha T, Elekhtiar Rawan S, Mahrous Hoda, Tayel Ahmed A
Department of Marine Biology, Faculty of Marine Sciences, King Abdulaziz University, Jeddah, Saudi Arabia.
Department of Marine Chemistry, Faculty of Marine Sciences, King Abdulaziz University, Jeddah, Saudi Arabia.
Front Microbiol. 2023 Jul 21;14:1210780. doi: 10.3389/fmicb.2023.1210780. eCollection 2023.
Natural bioactive alternatives are the utmost requests from researchers to provide biosafe and effectual health-guarding agents. The biopolymers chitosan nanoparticles (NCT), mucilage of cress seed (GCm; ), and GCm-mediated selenium nanoparticles (GCm/SeNPs) were innovatively employed for fabricating novel bioactive natural nanocomposites (NCs) with elevated bioactivities as bactericidal (against and ) and anticancer (against CaCo-2 and HeLa cells). The SeNPs were successfully generated with GCm, and different NCs formulations were fabricated from NCT:GCm/SeNPs amalgam ratios including T1, T2, and T3 with 2:1, 1:1, and 1:2 ratios, respectively. The infrared analysis of synthesized molecules appointed apparent physical interactions among interacted molecules. The average particles' sizes and charges of molecules/NCs were (12.7, 316.4, 252.8, and 127.3 nm) and (-6.9, +38.7, +26.2, and -25.8 mV) for SeNPs, T1, T2, and T3, respectively. The biocidal assessment of NCs indicated that T1 was the strongest antibacterial formulation, whereas T3 was the superior anticancer amalgam. These NCs formulations could exceed the biocidal potentialities of standard biocides. T1-NC could cause severe destructions/deformations in challenged within 9 h, whereas T3-NCs induced apparent fluorescent apoptosis signs in treated HeLa cells. The prospective applications innovatively designed biocidal natural NCs that are recommended for controlling pathogenic bacteria and fighting cancerous cells.
天然生物活性替代品是研究人员的最大需求,旨在提供生物安全且有效的健康保护剂。生物聚合物壳聚糖纳米颗粒(NCT)、水芹种子黏液(GCm)和GCm介导的硒纳米颗粒(GCm/SeNPs)被创新性地用于制备具有更高生物活性的新型生物活性天然纳米复合材料(NCs),这些生物活性包括杀菌(针对 和 )和抗癌(针对CaCo-2和HeLa细胞)。SeNPs通过GCm成功生成,并且由NCT制备了不同的NCs配方:GCm/SeNPs混合比例分别为T1、T2和T3,比例分别为2:1、1:1和1:2。合成分子的红外分析表明相互作用分子之间存在明显的物理相互作用。SeNPs、T1、T2和T3的分子/NCs的平均粒径和电荷分别为(12.7、316.4、252.8和127.3 nm)和(-6.9、+38.7、+26.2和-25.8 mV)。NCs的杀菌评估表明,T1是最强的抗菌配方,而T3是最佳的抗癌混合物。这些NCs配方可能超过标准杀菌剂的杀菌潜力。T1-NC在9小时内可对受挑战的 造成严重破坏/变形,而T3-NCs在处理的HeLa细胞中诱导明显的荧光凋亡迹象。创新性设计的杀菌天然NCs的潜在应用被推荐用于控制病原菌和对抗癌细胞。