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基于碳材料的定制复合材料中大麻二酚(CBD)的生物活性特性及体外消化释放

Bioactive Properties and In Vitro Digestive Release of Cannabidiol (CBD) from Tailored Composites Based on Carbon Materials.

作者信息

Zapata Karol, Vélez Angie D, Correa Jorge A, Carrasco-Marín Francisco, Rojano Benjamín A, Franco Camilo A, Cortés Farid B

机构信息

Bionatural Cosmeticos SAS, Medellín 050030, Colombia.

Fenómenos de Superficie-Michael Polanyi, Facultad de Minas, Universidad Nacional de Colombia-Sede Medellín, Medellín 050036, Colombia.

出版信息

Pharmaceutics. 2024 Aug 27;16(9):1132. doi: 10.3390/pharmaceutics16091132.

Abstract

The use of carriers to improve cannabidiol (CBD) bioavailability during digestion is at the forefront of research. The main objective of this research was to evaluate CBD bioactivity and develop CBD composites based on tailored carbon support to improve availability under digestive conditions. The antioxidant capacity of CBD was evaluated using spectrophotometric methods, and anti-proliferative assays were carried out using human colon carcinoma cells (SW480). Twenty-four composites of CBD + carbon supports were developed, and CBD desorption tests were carried out under simulated digestive conditions. The antioxidant capacity of CBD was comparable to and superior to Butylhydrox-ytoluene (BHT), a commercial antioxidant. CBD reflected an IC-50 of 10,000 mg/L against SW480 cancer cells. CBD in biological systems can increase the shelf life of lipid and protein foods by 7 and 470 days, respectively. Finally, acid carbons showed major CBD adsorption related to electrostatic interactions, but basic carbons showed better delivery properties related to electrostatic repulsion. A tailored composite was achieved with a CBD load of 27 mg/g with the capacity to deliver 1.1 mg, 21.8 mg, and 4 mg to the mouth, stomach, and duodenum during 18 h, respectively. This is a pioneering study since the carriers were intelligently developed to improve CBD release.

摘要

利用载体提高消化过程中大麻二酚(CBD)的生物利用度是研究的前沿领域。本研究的主要目的是评估CBD的生物活性,并基于定制的碳载体开发CBD复合材料,以提高其在消化条件下的利用率。采用分光光度法评估CBD的抗氧化能力,并使用人结肠癌细胞(SW480)进行抗增殖试验。制备了24种CBD与碳载体的复合材料,并在模拟消化条件下进行了CBD解吸试验。CBD的抗氧化能力与商业抗氧化剂丁基羟基甲苯(BHT)相当且优于BHT。CBD对SW480癌细胞的半数抑制浓度(IC-50)为10000mg/L。生物系统中的CBD可分别将脂质和蛋白质食品的保质期延长7天和470天。最后,酸性碳因静电相互作用表现出主要的CBD吸附作用,而碱性碳因静电排斥表现出更好的释放特性。制备了一种定制复合材料,其CBD负载量为27mg/g,能够在18小时内分别向口腔、胃和十二指肠释放1.1mg、21.8mg和4mg的CBD。这是一项开创性研究,因为载体是经过智能开发以改善CBD释放的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be4b/11435132/105369045934/pharmaceutics-16-01132-g001.jpg

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