Xie Sheng-Xue, Boone Kyle, VanOosten Sarah Kay, Yuca Esra, Song Linyong, Ge Xueping, Ye Qiang, Spencer Paulette, Tamerler Candan
Institute for Bioengineering Research, University of Kansas, 1530 W. 15th St., Lawrence, KS 66045, USA.
Bioengineering Program, 1530 W. 15th St., University of Kansas, Lawrence, KS 66045, USA.
Appl Sci (Basel). 2019 Feb;9(3). doi: 10.3390/app9030557. Epub 2019 Feb 8.
The most common cause for dental composite failures is secondary caries due to invasive bacterial colonization of the adhesive/dentin (a/d) interface. Innate material weakness often lead to an insufficient seal between the adhesive and dentin. Consequently, bacterial by-products invade the porous a/d interface leading to material degradation and dental caries. Current approaches to achieve antibacterial properties in these materials continue to raise concerns regarding hypersensitivity and antibiotic resistance. Herein, we have developed a multi-faceted, bio-functionalized approach to overcome the vulnerability of such interfaces. An antimicrobial adhesive formulation was designed using a combination of antimicrobial peptide and a ε-polylysine resin system. Effector molecules boasting innate immunity are brought together with a biopolymer offering a two-fold biomimetic design approach. The selection of ε-polylysine was inspired due to its non-toxic nature and common use as food preservative. Biomolecular characterization and functional activity of our engineered dental adhesive formulation were assessed and the combinatorial formulation demonstrated significant antimicrobial activity against Our antimicrobial peptide-hydrophilic adhesive hybrid system design offers advanced, biofunctional properties at the critical a/d interface.
牙科复合材料失效的最常见原因是由于细菌侵入粘结剂/牙本质(a/d)界面而导致的继发龋。材料本身的弱点往往会导致粘结剂与牙本质之间的密封不足。因此,细菌副产物侵入多孔的a/d界面,导致材料降解和龋齿。目前在这些材料中实现抗菌性能的方法仍然引发了对超敏反应和抗生素耐药性的担忧。在此,我们开发了一种多方面的、生物功能化的方法来克服此类界面的脆弱性。使用抗菌肽和ε-聚赖氨酸树脂系统的组合设计了一种抗菌粘结剂配方。具有先天免疫的效应分子与一种提供双重仿生设计方法的生物聚合物结合在一起。选择ε-聚赖氨酸是因为它无毒且常用作食品防腐剂。我们对工程化牙科粘结剂配方进行了生物分子表征和功能活性评估,组合配方对……显示出显著的抗菌活性。我们的抗菌肽-亲水性粘结剂混合系统设计在关键的a/d界面提供了先进的生物功能特性。