Mortazavian Hamid, Picquet Guillaume A, Lejnieks Jānis, Zaidel Lynette A, Myers Carl P, Kuroda Kenichi
Department of Biologic and Materials Sciences & Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI 48109, USA.
Oral Care Early Research, Colgate-Palmolive Company, Piscataway, NJ 08855, USA.
J Funct Biomater. 2019 Dec 17;10(4):56. doi: 10.3390/jfb10040056.
In this study, we have prepared a series of 4- and 6-arm star-shaped polymers with varying molecular weight and hydrophobicity in order to provide insight into the role and relationship that shape and composition have on the binding and protecting of oral relevant surfaces (hydroxyapatite, HAP) from bacteria colonization. Star-shaped acrylic acid polymers were prepared by free-radical polymerization in the presence of chain transfer agents with thiol groups, and their binding to the HAP surfaces and subsequent bacteria repulsion was measured. We observed that binding was dependent on both polymer shape and hydrophobicity (star vs. linear), but their relative efficacy to reduce oral bacteria attachment from surfaces was dependent on their hydrophobicity only. We further measured the macroscopic effects of these materials to modify the mucin-coated HAP surfaces through contact angle experiments; the degree of angle change was dependent on the relative hydrophobicity of the materials suggesting future in vivo efficacy. The results from this study highlight that star-shaped polymers represent a new material platform for the development of dental applications to control bacterial adhesion which can lead to tooth decay, with various compositional and structural aspects of materials being vital to effectively design oral care products.
在本研究中,我们制备了一系列具有不同分子量和疏水性的四臂和六臂星形聚合物,以便深入了解形状和组成对口腔相关表面(羟基磷灰石,HAP)免受细菌定植的结合和保护作用及关系。通过在含硫醇基团的链转移剂存在下进行自由基聚合制备星形丙烯酸聚合物,并测量它们与HAP表面的结合以及随后的细菌排斥作用。我们观察到结合作用取决于聚合物的形状和疏水性(星形与线性),但它们减少口腔细菌从表面附着的相对功效仅取决于其疏水性。我们通过接触角实验进一步测量了这些材料对修饰粘蛋白包被的HAP表面的宏观影响;角度变化程度取决于材料的相对疏水性,这表明其在体内具有潜在功效。本研究结果突出表明,星形聚合物代表了一种用于开发牙科应用以控制细菌粘附的新材料平台,细菌粘附会导致龋齿,材料的各种组成和结构方面对于有效设计口腔护理产品至关重要。