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首页> 外文期刊>Food Hydrocolloids >Dispersing insoluble yolk low-density lipoprotein (LDL) recovered by complexing with carboxymethylcellulose (CMC) for the nanoencapsulation of hemp cannabidiol (CBD) through emulsification at neutral pH
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Dispersing insoluble yolk low-density lipoprotein (LDL) recovered by complexing with carboxymethylcellulose (CMC) for the nanoencapsulation of hemp cannabidiol (CBD) through emulsification at neutral pH

机译:通过与羧甲基纤维素(CMC)络合,通过中性pH乳化络合通过络合羧甲基纤维素(CMC)来回收不溶性蛋黄的低密度脂蛋白(LDL)

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Insoluble yolk low-density lipoprotein (LDL) recovered by complexing with carboxymethylcellulose (CMC) was studied as an encapsulation agent for nanoencapsulation formulation at neutral pH. The effect of emulsifier and defatting on the dispersibility of the LDL-CMC complex was investigated. A novel dispersion containing partially defatted LDL, CMC, low quantity of Tween 80 and sodium lauryl sulfate (SLS) were successfully created and investigated for encapsulating lipophilic terpenes-cannabidiols mixture (TP-CBD) and crystalline CBD. The stability of such system under different environmental stresses was also evaluated. The defatting of LDL played an important role and the combination of Tween 80 and SLS synergistically improved the dispersibility of LDL-CMC complex. Non-defatted and fully defatted LDL did not fully disperse even with the assistance of Tween 80 and SLS (at 2,000 ppm each). Partially defatted LDL (average fat content of 42%) could be fully dispersed, while LDL with 25% fat had lower dispersibility. The 2% LDL (42% fat) dispersed with Tween 80 and SLS at 1,000 ppm each of the emulsifiers was identified as an excellent encapsulation system. TP-CBD and pure crystalline CBD nano encapsulations were successfully formulated and found to be stable (no phase separation) under ambient condition and after freeze-thawing and heating (10 min at 90 degrees C), although instrumental measurement of their turbidity and particle size varied. Low viscosity of a carrier oil for pure CBD is preferred and medium chain triglyceride (MCT) resulted in better nanoencapsulations compared to vegetable oils such as high oleic soybean oil. Overall, a novel encapsulation system was developed, and crystalline CBD was successfully encapsulated within the LDL particles.
机译:通过络合与羧甲基纤维素(CMC)回收的不溶性蛋黄低密度脂蛋白(LDL)作为中性pH下的纳米封装制剂的包封剂。研究了乳化剂和脱落对LDL-CMC复合物分散性的影响。成功地创建了一种含有部分脱脂LDL,CMC,低量吐温80和月桂基硫酸钠(SLS)的新型分散体,并研究用于包封脂质萜烯类混合物(TP-CBD)和结晶CBD。还评估了在不同环境应力下这种体系的稳定性。 LDL的脱离发挥了重要作用,吐温80和SLS的组合协同改善了LDL-CMC复合物的分散性。即使在TWEEN 80和SLS的帮助下,也没有完全脱赤裸的LDL并未完全分散(每次2,000 ppm)。部分脱脂的LDL(平均脂肪含量为42%)可以完全分散,而具有25%脂肪的LDL具有较低的分散性。将每种乳化剂的吐温80和SLS分散的2%LDL(42%脂肪)被鉴定为优异的包封系统。 TP-CBD和纯结晶CBD纳米封装成功配制并发现是稳定的(没有相分离)环境条件下和冻融和加热(在90摄氏度10分钟)后,虽然它们的浊度和粒径的仪器测量多变。对于纯CBD的载体油的低粘度是优选的,与植物油如高油酸豆油等植物油相比,培养基甘油三酯(MCT)得到更好的纳米锰算法。总的来说,开发了一种新型包封系统,结晶CBD在LDL颗粒内成功包封。

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