Kim Ki-Hak, Mai Hang-Nga, Hyun Dong-Choon, Lee Du-Hyeong
Department of Polymer Science and Engineering, Kyungpook National University, Daegu 41940, Korea.
Institute for Translational Research in Dentistry, Kyungpook National University, Daegu 41940, Korea.
Pharmaceutics. 2022 May 7;14(5):1005. doi: 10.3390/pharmaceutics14051005.
A new autonomous water-enabled self-healing coating with antibacterial-agent-releasing capability was developed for the first time by precipitating an aqueous solution of hydrogen-bonded tannic acid (TA) and polyethylene glycol (PEG) (TA: 5 mg/mL; PEG: 5 mg/mL with M = 100 kDa) to form a smooth, uniform coating layer with an average roughness of 0.688 nm and thickness of 22.3 μm on a polymethyl methacrylate (PMMA) substrate after 10 min of incubation. Our method is cost- and time-efficient, as the hydrophilic coating (water contact angle = 65.1°) forms rapidly, binding strongly to the PMMA substrate (adhesive energy = 83 mJ/m), without the need for pretreatment or surface modification, and is capable of rapid self-repair (approximately 5 min) through hydrogen bonding in aqueous media. Furthermore, adding 0.5 mg/mL of chlorhexidine acetate (CHX), a commonly used antibacterial agent in dentistry, into the TA-PEG emulsion allowed the release of 2.89 μg/mL of the drug from the coating layer, which is promising for actively inhibiting the vitality and growth of bacteria around PMMA dental restorations. The use of CHX-loaded TA-PEG hydrogen-bonded complexes is highly favorable for the fabrication of an autonomous self-healing biocoating with active antibacterial-agent-releasing capability, which can be applied not only in dentistry but also in other medical fields.
首次开发出一种新型的具有自主加水自修复能力且能释放抗菌剂的涂层。通过使氢键结合的单宁酸(TA)和聚乙二醇(PEG)(TA:5 mg/mL;PEG:5 mg/mL,M = 100 kDa)的水溶液沉淀,在聚甲基丙烯酸甲酯(PMMA)基材上孵育10分钟后形成光滑、均匀的涂层,其平均粗糙度为0.688 nm,厚度为22.3 μm。我们的方法具有成本效益且省时,因为亲水性涂层(水接触角 = 65.1°)形成迅速,与PMMA基材紧密结合(粘附能 = 83 mJ/m²),无需预处理或表面改性,并且能够在水性介质中通过氢键快速自我修复(约5分钟)。此外,在TA-PEG乳液中添加0.5 mg/mL的醋酸氯己定(CHX,牙科常用抗菌剂),可使药物从涂层中释放出2.89 μg/mL,这有望有效抑制PMMA牙科修复体周围细菌的活力和生长。负载CHX的TA-PEG氢键复合物非常有利于制备具有自主释放活性抗菌剂能力的自修复生物涂层,该涂层不仅可应用于牙科,还可应用于其他医学领域。