Ahmed Omnia Abdelmoneim Khidir, Sibuyi Nicole Remaliah Samantha, Fadaka Adewale Oluwaseun, Maboza Ernest, Olivier Annette, Madiehe Abram Madimabe, Meyer Mervin, Geerts Greta
Department of Restorative Dentistry, University of the Western Cape, Bellville 7535, South Africa.
Department of Science and Innovation (DSI)/Mintek Nanotechnology Innovation Centre (NIC) Biolabels Research Node, Department of Biotechnology, University of the Western Cape, Bellville 7535, South Africa.
Pharmaceutics. 2023 Mar 8;15(3):871. doi: 10.3390/pharmaceutics15030871.
There is growing interest in the use of green synthesized silver nanoparticles (AgNPs) to control and prevent dental diseases. The incorporation of green synthesized AgNPs into dentifrices to reduce pathogenic oral microbes is motivated by their presumed biocompatibility and broad-spectrum antimicrobial activity. In the present study, gum arabic AgNPs (GA-AgNPs) were formulated into a toothpaste (TP) using a commercial TP at a non-active concentration, to produce GA-AgNPs_TP. The TP was selected after evaluating the antimicrobial activity of four commercial TPs 1-4 on selected oral microbes using agar disc diffusion and microdilution assays. The less active TP-1 was then used in the formulation of GA-AgNPs_TP-1; thereafter, the antimicrobial activity of GA-AgNPs_0.4g was compared to GA-AgNPs_TP-1. The cytotoxicity of GA-AgNPs_0.4g and GA-AgNPs_TP-1 was also assessed on the buccal mucosa fibroblast (BMF) cells using the MTT assay. The study demonstrated that antimicrobial activity of GA-AgNPs_0.4g was retained after being combined with a sub-lethal or inactive concentration of TP-1. The non-selective antimicrobial activity and cytotoxicity of both GA-AgNPs_0.4g and GA-AgNPs_TP-1 was demonstrated to be time and concentration dependent. These activities were instant, reducing microbial and BMF cell growth in less than one hour of exposure. However, the use of dentifrice commonly takes 2 min and rinsed off thereafter, which could prevent damage to the oral mucosa. Although, GA-AgNPs_TP-1 has a good prospect as a TP or oral healthcare product, more studies are required to further improve the biocompatibility of this formulation.
人们对使用绿色合成银纳米颗粒(AgNPs)来控制和预防牙科疾病的兴趣与日俱增。将绿色合成的AgNPs加入牙膏中以减少口腔致病微生物,这是基于其假定的生物相容性和广谱抗菌活性。在本研究中,使用市售牙膏在非活性浓度下将阿拉伯胶AgNPs(GA-AgNPs)配制成牙膏(TP),以生产GA-AgNPs_TP。在使用琼脂平板扩散法和微量稀释法评估了四种市售牙膏1-4对选定口腔微生物的抗菌活性后,选择了活性较低的牙膏。然后将活性较低的牙膏-1用于配制GA-AgNPs_TP-1;此后,将GA-AgNPs_0.4g的抗菌活性与GA-AgNPs_TP-1进行比较。还使用MTT法评估了GA-AgNPs_0.4g和GA-AgNPs_TP-1对颊黏膜成纤维细胞(BMF)的细胞毒性。研究表明,GA-AgNPs_0.4g与亚致死或非活性浓度的牙膏-1混合后仍保留抗菌活性。GA-AgNPs_0.4g和GA-AgNPs_TP-1的非选择性抗菌活性和细胞毒性均显示出时间和浓度依赖性。这些活性是即时的,在暴露不到一小时内即可减少微生物和BMF细胞的生长。然而,牙膏的使用通常需要2分钟,然后冲洗掉,这可以防止对口腔黏膜造成损害。尽管GA-AgNPs_TP-1作为牙膏或口腔保健产品具有良好的前景,但仍需要更多研究来进一步提高该配方的生物相容性。