Handa Mayank, Ujjwal Rewati Raman, Vasdev Nupur, Flora S J S, Shukla Rahul
Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER)-Raebareli, Lucknow 226002, India.
Department of Pharmacology and Toxicology, National Institute of Pharmaceutical Education and Research (NIPER)-Raebareli, Lucknow 226002, India.
ACS Omega. 2020 Dec 30;6(1):559-568. doi: 10.1021/acsomega.0c05033. eCollection 2021 Jan 12.
Highly stable pine oil-loaded nanoemulsions were evaluated for nutraceutical and storage stability applications. Pine oil-loaded nanoemulsion preparation was done with pine oil as the oily phase and additionally with different ratios of the non-ionic surfactant (Tween 80) and cosurfactant (ethanol) in an aqueous solution using the isothermal low-energy or spontaneous emulsification method. A transparent and stable nanoemulsion was obtained with a combination of pine oil (5 wt %), surfactant mixture (35 wt %), and water quantity sufficient (qs) by the isothermal low-energy method. The mean droplet size and ζ-potential of the fabricated nanoemulsion were ≈14 nm and -3.4 mV, respectively. The size of the transparent nanoemulsion increased to ∼45 nm and showed turbidity at 60 °C. Microrheological investigation highlighted the gel-sol-gel conversion in the presence of applied angular frequency at 25 °C. The loss modulus shifted to lower frequency at 60 °C in comparison to other temperatures. The anticholinesterase (AChE) inhibition activity of the pine oil-loaded nanoemulsion suggested a possible therapeutic value, and at 0.10% concentration of the nanoemulsion, the AChE inhibition activity was ≈95.72 ± 5.59%. These studies have important implications in fabrication and optimization of a nanoemulsion as a delivery system for combating reminiscence in Alzheimer's disease and application in the nutraceutical-based industry. This isothermal low-energy method offers an advantage of preparing an edible oil delivery system using simple and rapid operational parameters.
对高度稳定的负载松油纳米乳液进行了营养保健和储存稳定性应用评估。负载松油纳米乳液的制备是以松油为油相,另外在水溶液中使用等温低能或自发乳化法,加入不同比例的非离子表面活性剂(吐温80)和助表面活性剂(乙醇)。通过等温低能法,将松油(5 wt%)、表面活性剂混合物(35 wt%)和足量水(qs)混合,得到了透明且稳定的纳米乳液。制备的纳米乳液的平均液滴尺寸和ζ电位分别约为14 nm和 -3.4 mV。透明纳米乳液在60 °C时尺寸增大至约45 nm并出现浑浊。微观流变学研究表明,在25 °C施加角频率的情况下会发生凝胶-溶胶-凝胶转变。与其他温度相比,损耗模量在60 °C时向较低频率偏移。负载松油纳米乳液的抗胆碱酯酶(AChE)抑制活性表明其可能具有治疗价值,在纳米乳液浓度为0.10%时,AChE抑制活性约为95.72 ± 5.59%。这些研究对于制备和优化作为对抗阿尔茨海默病记忆力减退的递送系统的纳米乳液以及在营养保健品行业中的应用具有重要意义。这种等温低能法具有利用简单快速的操作参数制备食用油递送系统的优势。