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用于牙周疾病治疗的电纺罗勒和姜黄素负载纳米纤维膜的制备与表征:一项体外研究

Fabrication and Characterization of Electrospun Ocimum sanctum and Curcumin-Loaded Nanofiber Membrane for the Management of Periodontal Disease: An In Vitro Study.

作者信息

Chakraborty Poulami, Ramamurthy Jaiganesh

机构信息

Periodontics, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Science, Chennai, IND.

出版信息

Cureus. 2024 Jul 2;16(7):e63678. doi: 10.7759/cureus.63678. eCollection 2024 Jul.

DOI:10.7759/cureus.63678
PMID:39092342
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11293482/
Abstract

Background Periodontal disease is a chronic inflammatory condition that gradually deteriorates the supportive tissues of teeth, eventually leading to tooth loss. Mechanical debridement stands as the gold standard method for treating periodontitis. However, antimicrobial therapy is recommended for optimal results when used alongside mechanical debridement. Numerous studies have investigated local drug delivery as an adjunct to mechanical debridement of affected tooth surfaces. Ocimum sanctum exhibits anti-inflammatory, antioxidant, and antimicrobial properties. Similarly, curcumin, as documented in the literature, demonstrates a broad spectrum of anti-inflammatory and antimicrobial effects. Electrospinning has demonstrated itself to be a highly effective method for fabricating drug-loaded fibers. Electrospun nanofibers containing Ocimum sanctum and curcumin are expected to exhibit greater efficacy due to their increased surface area, facilitating the dispersion of larger quantities of drugs, and their ability to control drug release when employed as a local drug delivery system. This study aims to fabricate and characterize the properties of nanofiber membranes loaded with Ocimum sanctum and curcumin using the electrospinning technique. Methods About 50 mg each of Ocimum sanctum and curcumin were blended with 15% polyvinyl alcohol and 2% chitosan polymer in a 4:1 ratio and left to stir overnight. A 10 mL syringe was filled with this solution, and an 18 G blunt-end needle charged at 15.9 kV was used for extrusion. Continuous fibers were collected onto a collector plate positioned 12 cm from the center of the needle tip, at a flow rate of 0.005 mL/min. The morphology of the fabricated membrane was assessed through scanning electron microscopy (SEM), the strength of the material was assessed through tensile strength analysis using INSTRON, an Electropuls E3000 Universal Testing Machine (INSTRON, Norwood, MA), and the drug release pattern was analyzed using Jasco V-730 UV-visible spectrophotometer (Jasco, Easton, MD). Results The morphology of this nanofiber showed a random distribution of fibers with no bead formation. The average diameter of the membrane was 383±102 nm, and the tensile strength of this material was 1.87 MPa. The drug release pattern showed an initial burst release of Ocimum sanctum, followed by a controlled release in subsequent hours. However, curcumin showed very little drug release because of its solubility. Conclusion In summary, the Ocimum sanctum and curcumin-loaded nanofibers exhibited robust tensile strength, a controlled drug release profile, and uniform drug distribution within the nanofiber membrane. Consequently, it can be concluded that curcumin nanofibers and electrospun Ocimum sanctum serve as valuable agents for local drug delivery in the treatment of periodontitis.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/ff432acdf3cd/cureus-0016-00000063678-i04.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/ad9b879e0ba8/cureus-0016-00000063678-i01.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/f1227067d6c7/cureus-0016-00000063678-i02.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/062f01bdca8d/cureus-0016-00000063678-i03.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/ff432acdf3cd/cureus-0016-00000063678-i04.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/ad9b879e0ba8/cureus-0016-00000063678-i01.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/f1227067d6c7/cureus-0016-00000063678-i02.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/062f01bdca8d/cureus-0016-00000063678-i03.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6212/11293482/ff432acdf3cd/cureus-0016-00000063678-i04.jpg
摘要

背景

牙周病是一种慢性炎症性疾病,会逐渐破坏牙齿的支持组织,最终导致牙齿脱落。机械清创术是治疗牙周炎的金标准方法。然而,为获得最佳效果,建议在机械清创术的同时使用抗菌治疗。众多研究已对局部药物递送作为受影响牙齿表面机械清创术的辅助手段进行了调查。神圣罗勒具有抗炎、抗氧化和抗菌特性。同样,如文献记载,姜黄素具有广泛的抗炎和抗菌作用。静电纺丝已证明是一种制备载药纤维的高效方法。含有神圣罗勒和姜黄素的静电纺纳米纤维由于其增加的表面积,有利于大量药物的分散,并且在用作局部药物递送系统时具有控制药物释放的能力,预计将表现出更高的疗效。本研究旨在使用静电纺丝技术制备并表征负载神圣罗勒和姜黄素的纳米纤维膜的性能。

方法

将约50mg的神圣罗勒和姜黄素分别与15%的聚乙烯醇和2%的壳聚糖聚合物按4:1的比例混合,并搅拌过夜。将该溶液装入10mL注射器中,使用在15.9kV电压下充电的18G钝头针进行挤出。连续纤维以0.005mL/min的流速收集到距离针尖中心12cm的收集板上。通过扫描电子显微镜(SEM)评估制备的膜的形态,使用INSTRON公司(位于马萨诸塞州诺伍德)的Electropuls E3000万能材料试验机通过拉伸强度分析评估材料强度,并使用Jasco公司(位于马里兰州伊斯顿)的Jasco V-730紫外可见分光光度计分析药物释放模式。

结果

该纳米纤维的形态显示纤维随机分布且无珠状物形成。膜的平均直径为383±102nm,该材料的拉伸强度为1.87MPa。药物释放模式显示神圣罗勒最初有突发释放,随后在接下来的数小时内为控释。然而,由于姜黄素的溶解度,其药物释放很少。

结论

总之,负载神圣罗勒和姜黄素的纳米纤维表现出强大的拉伸强度、可控的药物释放曲线以及在纳米纤维膜内均匀的药物分布。因此,可以得出结论,姜黄素纳米纤维和静电纺神圣罗勒是治疗牙周炎的局部药物递送的有价值的药物。

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