Florea Alexandra-Diana, Dobrota Cristina Teodora, Carpa Rahela, Racz Csaba-Pal, Tomoaia Gheorghe, Mocanu Aurora, Avram Alexandra, Soritau Olga, Pop Lucian Cristian, Tomoaia-Cotisel Maria
Research Center of Physical Chemistry, Faculty of Chemistry and Chemical Engineering, Babeş-Bolyai University, 11 Arany Janos Str., 400028 Cluj-Napoca, Romania.
Department of Molecular Biology and Biotechnology, Faculty of Biology and Geology, Babeş-Bolyai University, 44 Republicii Str., 400015 Cluj-Napoca, Romania.
Materials (Basel). 2023 Nov 13;16(22):7143. doi: 10.3390/ma16227143.
This research work aims to develop functional toothpastes with combined enamel remineralization and antibacterial effects using nano-hydroxyapatites (nHAPs) and birch extract. Eleven toothpastes (notated as P1-P11) were designed featuring different concentrations of birch extract and a constant concentration of pure nHAPs or substituted nHAPs (HAP-5%Zn, HAP-0.23%Mg-3.9%Zn-2%Si-10%Sr, and HAP-2.5%Mg-2.9%Si-1.34%Zn). In vitro assessments involved treating artificially demineralized enamel slices and analyzing surface repair and remineralization using Atomic Force Microscopy (AFM). The Agar Disk Diffusion method was used to measure antibacterial activity against , , , , and . Topographic images of enamel structure and surface roughness, as well as the ability of nHAP nanoparticles to form self-assembled layers, revealed excellent restorative properties of the tested toothpastes, with enamel nanostructure normalization occurring as soon as 10 days after treatment. The outcomes highlighted enamel morphology improvements due to the toothpaste treatment also having various efficacious antibacterial effects. Promising results were obtained using P5 toothpaste, containing HAP-5%Zn (3.4%) and birch extract (1.3%), indicating notable remineralization and good antibacterial properties. This study represents a significant advancement in oral care by introducing toothpaste formulations that simultaneously promote enamel health through effective remineralization and bacterial inhibition.
本研究旨在利用纳米羟基磷灰石(nHAPs)和桦树提取物开发具有牙釉质再矿化和抗菌双重功效的功能性牙膏。设计了11种牙膏(标记为P1 - P11),其特点是含有不同浓度的桦树提取物以及恒定浓度的纯nHAPs或取代型nHAPs(HAP - 5%Zn、HAP - 0.23%Mg - 3.9%Zn - 2%Si - 10%Sr和HAP - 2.5%Mg - 2.9%Si - 1.34%Zn)。体外评估包括处理人工脱矿的牙釉质切片,并使用原子力显微镜(AFM)分析表面修复和再矿化情况。采用琼脂扩散法测量对 、 、 、 和 的抗菌活性。牙釉质结构和表面粗糙度的形貌图像以及nHAP纳米颗粒形成自组装层的能力表明,所测试的牙膏具有优异的修复性能,处理后仅10天牙釉质纳米结构就恢复正常。结果突出了牙膏处理导致的牙釉质形态改善,同时还具有多种有效的抗菌作用。使用含有HAP - 5%Zn(3.4%)和桦树提取物(1.3%)的P5牙膏获得了有前景的结果,表明其具有显著的再矿化和良好的抗菌性能。本研究通过引入能够通过有效再矿化和抑制细菌同时促进牙釉质健康的牙膏配方,在口腔护理方面取得了重大进展。