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Characterization of Chlorhexidine-Loaded Calcium-Hydroxide Microparticles as a Potential Dental Pulp-Capping Material

机译:载有氯己定的氢氧化钙微粒作为潜在的牙髓覆盖材料的表征

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This study explores the delivery of novel calcium hydroxide [Ca(OH) 2 ] microparticles loaded with chlorhexidine (CHX) for potential dental therapeutic and preventive applications. Herein, we introduce a new approach for drug-delivery to deep dentin-surfaces in the form of drug-loaded microparticles. Unloaded Ca(OH) 2 [Ca(OH) 2 /Blank] and CHX-loaded/Ca(OH) 2 microparticles were fabricated by aqueous chemical-precipitation technique. The synthesized-microparticles were characterized in vitro for determination of surface-morphology, crystalline-features and thermal-properties examined by energy-dispersive X-ray scanning and transmission electron-microscopy (EDX-SEM/TEM), Fourier-transform infrared-spectroscopy (FTIR), X-ray diffraction (XRD), thermogravimetric analysis (TGA) and differential scanning-calorimetry (DSC). Time-related pH changes, initial antibacterial/biofilm-abilities and cytotoxicity of CHX-loaded/Ca(OH) 2 microparticles were evaluated. Microparticles were delivered to dentin-surfaces with subsequent SEM examination of treated dentin-substrates. The in vitro and ex vivo CHX-release profiles were characterized. Ca(OH) 2 /Blank were hexagonal-shaped with highest z -average diameter whereas CHX-inclusion evidenced micro-metric spheres with distinguishable surface “rounded deposits” and a negative-shift in diameter. CHX:Ca(OH) 2 /50 mg exhibited maximum encapsulation-efficiency with good antibacterial and cytocompatible properties. SEM examination revealed an intact layer of microparticles on exposed dentin-surfaces with retention of spherical shape and smooth texture. Microparticles loaded on dentin-surfaces showed prolonged release of CHX indicating substantial retention on dentin-substrates. This study validated the inherent-applicability of this novel drug-delivery approach to dentin-surfaces using micro-metric CHX-loaded/Ca(OH) 2 microparticles.
机译:这项研究探索了潜在的牙科治疗和预防应用新型载有洗必泰(CHX)的氢氧化钙[Ca(OH)2]微粒的传递。在此,我们介绍了一种以载药微粒的形式向深部牙本质表面递送药物的新方法。通过含水化学沉淀技术制备了未负载的Ca(OH)2 [Ca(OH)2 / Blank]和CHX负载的/ Ca(OH)2微粒。通过能量色散X射线扫描和透射电子显微镜(EDX-SEM / TEM),傅立叶变换红外光谱法对合成的微粒进行体外表征,以确定其表面形态,晶体特征和热性质。 (FTIR),X射线衍射(XRD),热重分析(TGA)和差示扫描量热法(DSC)。评估了与时间相关的pH值变化,CHX负载/ Ca(OH)2微粒的初始抗菌/生物膜功能和细胞毒性。将微粒递送至牙本质表面,然后对处理过的牙本质基质进行SEM检查。表征了体外和离体CHX释放曲线。 Ca(OH)2 /空白为六边形,具有最高的z平均直径,而CHX夹杂物证明是微米级球体,具有明显的表面“圆形沉积物”且直径为负移。 CHX:Ca(OH)2/50 mg表现出最大的包封效率,并具有良好的抗菌和细胞相容性。 SEM检查显示暴露的牙本质表面上完整的微粒层,保留了球形和光滑的质地。载于牙本质表面的微粒显示出CHX的延长释放,表明在牙本质基质上的基本保留。这项研究验证了这种新型药物递送方法使用微米级CHX加载/ Ca(OH)2微粒在牙本质表面的固有适用性。

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