Kaur Malkiet, Nagpal Manju, Singh Manjinder, Singh Thakur Gurjeet, Aggarwal Geeta, Dhingra Gitika Arora
Chitkara College of Pharmacy, Chitkara University, Punjab, India.
Delhi Pharmaceutical Sciences and Research University, New Delhi-110017, India.
Bioimpacts. 2021;11(1):23-31. doi: 10.34172/bi.2021.04. Epub 2020 Mar 24.
Cinnamon essential oil (CEO) is a volatile oil, obtained from has become one of the most important natural oil due to its antimicrobial activity. CEO suffers from various limitations such as instability and skin irritation. This problem has been overcome by formulating CEO-loaded nanosponges incorporated in carbopol gel with increased antimicrobial property and reduced skin irritation. The nanosponges were fabricated by solvent emulsion diffusion method and evaluated for Fourier transform infrared spectroscopy (FTIR) studies, particle size, field emission scanning electron microscopy studies (FE-SEM), dissolution studies, antibacterial studies, using agar diffusion method, antibacterial activity and skin irritation studies and stability studies. Nanosponge NS1 batch was found to be in the nanosize range. FTIR studies confirmed the absence of drug-polymer interaction. NS1 confirmed a porous structure with a uniform spherical shape using FE-SEM studies. dissolution studies of optimized NS1 revealed 80% drug release in 5 h whereas, incorporating the formulation into carbopol gel showed 100% release in 5h from G1 formulation. In vitro antibacterial study of the nanosponge (NS1 and NS3) showed remarkable antibacterial activity as seen from the zone of inhibition and gel formulation G1 also showed the highest zone of inhibition with 50±1.2 mm. NS1 and G1 were stable for 2 months under accelerated conditions and 3 months under room temperature conditions. Furthermore, the and skin irritation studies were performed with selected formulation against , where the results confirmed the significant antimicrobial activity with no skin irritation. Nanosponge carriers can be more therapeutically effective for essential oils which can further be incorporated into topical gels for convenient application.
肉桂精油(CEO)是一种挥发油,因其抗菌活性而成为最重要的天然油之一。CEO存在各种局限性,如稳定性和皮肤刺激性。通过将负载CEO的纳米海绵掺入卡波姆凝胶中,克服了这一问题,提高了抗菌性能并减少了皮肤刺激性。纳米海绵采用溶剂乳液扩散法制备,并进行了傅里叶变换红外光谱(FTIR)研究、粒径分析、场发射扫描电子显微镜研究(FE-SEM)、溶出度研究、抗菌研究(采用琼脂扩散法)、抗菌活性和皮肤刺激性研究以及稳定性研究。发现纳米海绵NS1批次处于纳米尺寸范围内。FTIR研究证实不存在药物-聚合物相互作用。通过FE-SEM研究,NS1证实具有均匀球形的多孔结构。优化后的NS1的溶出度研究表明,5小时内药物释放率为80%;而将该制剂掺入卡波姆凝胶中,G1制剂在5小时内显示100%释放。纳米海绵(NS1和NS3)的体外抗菌研究显示出显著的抗菌活性,从抑菌圈可见,凝胶制剂G1的抑菌圈也最大,为50±1.2毫米。NS1和G1在加速条件下稳定2个月,在室温条件下稳定3个月。此外,对选定制剂针对[具体菌种未提及]进行了皮肤刺激性研究,结果证实其具有显著的抗菌活性且无皮肤刺激性。纳米海绵载体对于精油可能具有更高的治疗效果,可进一步掺入局部用凝胶中以便于应用。