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盐酸氯己定纳米乳剂的配方及表征:一种有前景的抗菌根管冲洗剂:体内外研究。

Formulation and characterization of chlorhexidine HCl nanoemulsion as a promising antibacterial root canal irrigant: in-vitro and ex-vivo studies.

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Misr University for Science and Technology, 6th of October City, Egypt.

Department of Microbiology and Immunology, Faculty of Pharmacy, Misr University for Science and Technology, 6th of October City, Egypt.

出版信息

Int J Nanomedicine. 2019 Jul 1;14:4697-4708. doi: 10.2147/IJN.S204550. eCollection 2019.

Abstract

Chlorhexidine Hydrochloride [Chx.HCl] has a broad-spectrum antibacterial effect, sustained action and low toxicity so it has been recommended as a potential root canal irrigant. The aim of this study was to improve the penetration ability, cleansing and antibacterial effect of Chx.HCl using a newly formulated Chx.HCl nanoemulsion and use it as root canal irrigant. Chx.HCl nanoemulsions were prepared using two different oils; Oleic acid and Labrafil M1944CS, two surfactants; Tween 20 and Tween 80 and co-surfactant; Propylene Glycol. Pseudoternary phase diagrams were constructed to designate the optimum systems. The prepared nanoemulsion formulae were evaluated for their drug content, emulsification time, dispersibility, droplet size, in-vitro drug release, thermodynamic stability, In-vitro antibacterial activity and ex-vivo study for the selected formula. Comparisons were made of Chx.HCl nanoemulsion with two different concentrations 0.75% and 1.6% vs Chx.HCl normal particle size as root canal irrigant for their penetration ability, cleansing effect and antibacterial effect. The selected formula was F6 with composition of 2% Labrafil, 12% Tween 80 and 6% Propylene glycol. It has small particle size (12.18 nm), short emulsification time (1.67 seconds), and fast dissolution rate after 2 minutes. It was found to be a thermodynamically/physically stable system. The higher concentration of Chx.HClnanoemulsion1.6% shows the best penetration ability compared to Chx.HCl normal particle size due to the smaller particle size. Chx.HCl nanoemulsion 1.6% has the lowest mean value of the remaining debris surface area (2001.47 µm) when compared to normal particle size material (2609.56 µm). Chx.HCl nanoemulsion preparation has better cleansing ability and antibacterial effect with high efficacy on , where high reduction rate or complete eradication of bacterial cells has been achieved.

摘要

盐酸氯己定[Chx.HCl]具有广谱抗菌作用、持续作用和低毒性,因此已被推荐为一种有潜力的根管冲洗液。本研究旨在使用新配方的盐酸氯己定纳米乳液来提高盐酸氯己定的穿透能力、清洁效果和抗菌效果,并将其用作根管冲洗液。采用油酸和 Labrafil M1944CS 两种油、Tween 20 和 Tween 80 两种表面活性剂以及丙二醇两种助表面活性剂制备盐酸氯己定纳米乳液。构建伪三元相图以指定最佳体系。评估所制备的纳米乳液配方的药物含量、乳化时间、分散性、粒径、体外药物释放、热力学稳定性、体外抗菌活性和所选配方的离体研究。比较了两种不同浓度 0.75%和 1.6%的盐酸氯己定纳米乳液与普通粒径的盐酸氯己定作为根管冲洗液的穿透能力、清洁效果和抗菌效果。选择的配方是 F6,其组成为 2%的 Labrafil、12%的 Tween 80 和 6%的丙二醇。它具有较小的粒径(12.18nm)、较短的乳化时间(1.67 秒)和在 2 分钟后快速溶解。它被发现是热力学/物理稳定的系统。与普通粒径材料相比,较高浓度的盐酸氯己定纳米乳液 1.6%由于粒径较小,具有更好的穿透能力。与普通粒径材料(2609.56μm)相比,盐酸氯己定纳米乳液 1.6%的剩余碎屑表面积平均值(2001.47μm)最低。盐酸氯己定纳米乳液制剂具有更好的清洁能力和抗菌效果,对具有高功效的细菌,达到了高的减少率或完全消除细菌细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/024a/6611715/83ac21eb2d3a/IJN-14-4697-g0001.jpg

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