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用于皮肤保湿的初榨椰子油空心纳米和微结构脂质载体

Empty nano and micro-structured lipid carriers of virgin coconut oil for skin moisturisation.

作者信息

Noor Norhayati Mohamed, Khan Abid Ali, Hasham Rosnani, Talib Ayesha, Sarmidi Mohamad Roji, Aziz Ramlan, Aziz Azila Abd

机构信息

Institute of Bioproduct Development (N22), Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia.

Department of Biosciences, COMSATS Institute of Information Technology, Park Road, Chak Shehzad, 44000 Islamabad, Pakistan.

出版信息

IET Nanobiotechnol. 2016 Aug;10(4):195-9. doi: 10.1049/iet-nbt.2015.0041.

Abstract

Virgin coconut oil (VCO) is the finest grade of coconut oil, rich in phenolic content, antioxidant activity and contains medium chain triglycerides (MCTs). In this work formulation, characterisation and penetration of VCO-solid lipid particles (VCO-SLP) have been studied. VCO-SLP were prepared using ultrasonication of molten stearic acid and VCO in an aqueous solution. The electron microscopy imaging revealed that VCO-SLP were solid and spherical in shape. Ultrasonication was performed at several power intensities which resulted in particle sizes of VCO-SLP ranged from 0.608 ± 0.002 µm to 44.265 ± 1.870 µm. The particle size was directly proportional to the applied power intensity of ultrasonication. The zeta potential values of the particles were from -43.2 ± 0.28 mV to -47.5 ± 0.42 mV showing good stability. The cumulative permeation for the smallest sized VCO-SLP (0.608 µm) was 3.83 ± 0.01 µg/cm(2) whereas for larger carriers it was reduced (3.59 ± 0.02 µg/cm(2)). It is concluded that SLP have the potential to be exploited as a micro/nano scale cosmeceutical carrying vehicle for improved dermal delivery of VCO.

摘要

初榨椰子油(VCO)是最优质的椰子油,富含酚类成分、抗氧化活性,且含有中链甘油三酯(MCTs)。在本研究中,对VCO固体脂质颗粒(VCO-SLP)的配方、特性及渗透情况进行了研究。通过在水溶液中对熔融硬脂酸和VCO进行超声处理来制备VCO-SLP。电子显微镜成像显示VCO-SLP呈固态且为球形。在几种功率强度下进行超声处理,结果VCO-SLP的粒径范围为0.608±0.002 µm至44.265±1.870 µm。粒径与超声处理的施加功率强度成正比。颗粒的zeta电位值为-43.2±0.28 mV至-47.5±0.42 mV,显示出良好的稳定性。最小尺寸的VCO-SLP(0.608 µm)的累积渗透率为3.83±0.01 µg/cm²,而较大载体的累积渗透率则降低(3.59±0.02 µg/cm²)。得出的结论是,SLP有潜力被开发为一种微/纳米级的药妆运载工具,以改善VCO的经皮递送。

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