Cellulose & Paper Dept., National Research Centre, El-Buhouth St., Dokki, 12622, Egypt.
Cellulose & Paper Dept., National Research Centre, El-Buhouth St., Dokki, 12622, Egypt.
Int J Biol Macromol. 2018 Feb;107(Pt A):1364-1372. doi: 10.1016/j.ijbiomac.2017.11.061. Epub 2017 Nov 16.
This article deals with evaluating the role of cellulose origin, from wood and non-wood, on preparing green CMC-Ag complex as biological active agent. Viscose pulp as well as bagasse and rice straw pulps were used in preparation of CMCs, followed by complexation with AgNO The complex structure (free-Ag, IR-spectra and TGA), morphology (TEM), antibiological and anti-tumor activities were studied. The data revealed that, the main interaction between CMC and silver is occurred via carboxylate groups and ether link of 1ry alcohol, with formation stable 5-membered ring structure. For the case of RS-based CMC-Ag complex the interaction between COO groups and silica included RS is also possible, via hydrogen bonds. These complexes have anti-biological especially towards gram positive bacteria (B.subtilis, NCID-3610), and uni- and multi cellular fungi. AgNPs from viscose (VCMC-Ag complex) has relatively higher anti-tumor activity for breast cancer MCF-7 in vitro than bagasse-based CMC-Ag complex (BCMC-Ag complex) with IC 128μg/ml (as Ag). It is interesting to note that; viscose-based CMC-Ag complex (VCMC-Ag) has higher efficient behaviour as bioactive agent than literature reported agents, e.g., Pyridine derivative (∼300μg/ml).
本文探讨了纤维素来源(木材和非木材)在制备绿色 CMC-Ag 复合物作为生物活性剂中的作用。本文采用粘胶纤维浆、甘蔗渣浆和稻草浆制备 CMC,然后与 AgNO 进行复合。研究了复合物的结构(游离银、红外光谱和热重分析)、形态(TEM)、抗菌和抗肿瘤活性。结果表明,CMC 与银的主要相互作用是通过羧酸盐基团和 1 级醇的醚键发生的,形成稳定的 5 元环结构。对于基于 RS 的 CMC-Ag 复合物,COO 基团与包括 RS 的二氧化硅之间也可能通过氢键相互作用。这些复合物具有抗生物活性,特别是对革兰氏阳性菌(枯草芽孢杆菌,NCID-3610)和单细胞及多细胞真菌。与基于甘蔗渣的 CMC-Ag 复合物(BCMC-Ag 复合物)相比,粘胶纤维基 CMC-Ag 复合物(VCMC-Ag 复合物)中银纳米粒子(AgNPs)对乳腺癌 MCF-7 的体外抗肿瘤活性相对较高,IC 为 128μg/ml(以 Ag 计)。有趣的是,与文献报道的吡啶衍生物(约 300μg/ml)等试剂相比,粘胶纤维基 CMC-Ag 复合物(VCMC-Ag)作为生物活性剂具有更高的效率。