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离子液体对软质义齿衬里材料的力学、物理、抗真菌性能及生物相容性的影响

Effect of Ionic Liquids on Mechanical, Physical, and Antifungal Properties and Biocompatibility of a Soft Denture Lining Material.

作者信息

Alsaiari Mabkhoot, Roghani Khumara, Liaqat Saad, Alkorbi Ali S, Sharif Faiza, Irfan Muhammad, Rizk Moustafa A, Uroos Maliha, Ahmad Naveed, Muhammad Nawshad

机构信息

Department of Chemistry, Faculty of Science and Arts at Sharurah, Najran University, Sharurah 68342, Saudi Arabia.

Department of Dental Materials, Institute of Basic Medical Sciences, Khyber Medical University, Peshawar 25100, Khyber Pakhtunkhwa, Pakistan.

出版信息

ACS Omega. 2023 Jul 17;8(30):27300-27311. doi: 10.1021/acsomega.3c02677. eCollection 2023 Aug 1.

Abstract

This study aims to evaluate the effect of ionic liquids and their structure on the mechanical (tensile bond strength (TBS) and Shore A hardness), mass change, and antifungal properties of soft denture lining material. Butyl pyridinium chloride (BPCL) and octyl pyridinium chloride (OPCL) were synthesized, characterized, and mixed in concentrations ranging from 0.65-10% w/w with a soft denture liner (Molloplast-B) and were divided into seven groups (C, BPCL1-3, and OPCL1-3). The TBS of bar-shaped specimens was calculated on a Universal Testing Machine. For Shore A hardness, disc-shaped specimens were analyzed using a durometer. The mass change (%) of specimens was calculated by the weight loss method. The antifungal potential of ionic liquids and test specimens was measured using agar well and disc diffusion methods ( ≤ 0.05). The alamarBlue assay was performed to assess the biocompatibility of the samples. The mean TBS values of Molloplast-B samples were significantly lower ( ≤ 0.05) for all groups except for OPCL1. Compared with the control, the mean shore A hardness values were significantly higher ( ≤ 0.05) for samples in groups BPCL 2 and 3. After 6 weeks, the OPCL samples showed a significantly lower ( ≤ 0.05) mass change as compared to the control. Agar well diffusion methods demonstrated a maximum zone of inhibition for 2.5% OPCL (20.5 ± 0.05 mm) after 24 h. Disc diffusion methods showed no zones of inhibition. The biocompatibility of the ionic liquid-modified sample was comparable to that of the control. The addition of ionic liquids in Molloplast-B improved the liner's surface texture, increased its hardness, and decreased its % mass change and tensile strength. Ionic liquids exhibited potent antifungal activity.

摘要

本研究旨在评估离子液体及其结构对软质义齿衬里材料的机械性能(拉伸粘结强度(TBS)和邵氏A硬度)、质量变化及抗真菌性能的影响。合成并表征了氯化丁基吡啶(BPCL)和氯化辛基吡啶(OPCL),并将其与软质义齿衬里材料(Molloplast - B)按0.65 - 10% w/w的浓度混合,分为七组(C、BPCL1 - 3和OPCL1 - 3)。在万能试验机上计算条形试样的TBS。对于邵氏A硬度,使用硬度计分析圆盘形试样。通过失重法计算试样的质量变化(%)。使用琼脂孔扩散法和纸片扩散法测量离子液体及测试试样的抗真菌潜力(≤0.05)。进行alamarBlue检测以评估样品的生物相容性。除OPCL1组外,所有组的Molloplast - B样品的平均TBS值均显著较低(≤0.05)。与对照组相比,BPCL 2组和3组样品的平均邵氏A硬度值显著更高(≤0.05)。6周后,与对照组相比,OPCL样品的质量变化显著更低(≤0.05)。琼脂孔扩散法显示,24小时后2.5% OPCL的抑菌圈最大(20.5±0.05毫米)。纸片扩散法未显示抑菌圈。离子液体改性样品的生物相容性与对照组相当。在Molloplast - B中添加离子液体改善了衬里的表面质地,提高了其硬度,并降低了其质量变化百分比和拉伸强度。离子液体表现出强大的抗真菌活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa3/10399165/46e0c028b896/ao3c02677_0002.jpg

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