Remígio Myrth Soares do Nascimento, Greco Teresa, Silva Júnior José Otávio Carréra, Converti Attilio, Ribeiro-Costa Roseane Maria, Rossi Alessandra, Barbosa Wagner Luiz Ramos
Laboratory of Chromatography and Mass Spectrometry, Graduate Program in Pharmaceutical Innovation, Institute of Health Sciences, Federal University of Pará, Belém 66075-110, Brazil.
Department of Food and Drug, University of Parma, 43124 Parma, Italy.
Pharmaceutics. 2024 Apr 2;16(4):488. doi: 10.3390/pharmaceutics16040488.
Species belonging to the genus, usually known as "pata-de-vaca", are popularly used to treat diabetes. var. (Ducke) Vaz is among them, of which the leaves are used as a tea for medicinal purposes in the Amazon region. A microencapsulation study of lyophilized aqueous extract from leaves, which contain phenolic compounds, using five different wall materials (maltodextrin DE 4-7, maltodextrin DE 11-14; β-cyclodextrin; pectin and sodium carboxymethylcellulose) is described in this paper. The microstructure, particle size distribution, thermal behavior, yield, and encapsulation efficiency were investigated and compared using different techniques. Using high-performance liquid chromatography, phenolics, and flavonoids were detected and quantified in the microparticles. The microparticles obtained with a yield and phenolics encapsulation efficiency ranging within 60-83% and 35-57%, respectively, showed a particle size distribution between 1.15 and 5.54 µm, spherical morphology, and a wrinkled surface. Among them, those prepared with sodium carboxymethylcellulose or pectin proved to be the most thermally stable. They had the highest flavonoid content (23.07 and 21.73 mg RUTE/g Extract) and total antioxidant activity by both the DPPH (376.55 and 367.86 µM TEq/g Extract) and ABTS (1085.72 and 1062.32 µM TEq/g Extract) assays. The chromatographic analyses allowed for quantification of the following substances retained by the microparticles, chlorogenic acid (1.74-1.98 mg/g Extract), p-coumaric acid (0.06-0.08 mg/g Extract), rutin (11.2-12.9 mg/g Extract), and isoquercitrin (0.49-0.53 mg/g Extract), compounds which considered to responsible for the antidiabetic property attributed to the species.
属于该属的物种,通常被称为“pata-de-vaca”,在民间被广泛用于治疗糖尿病。其中,var. (Ducke) Vaz也在其中,其叶子在亚马逊地区被用作药用茶。本文描述了对含有酚类化合物的var. (Ducke) Vaz叶子冻干水提取物使用五种不同壁材(麦芽糊精DE 4 - 7、麦芽糊精DE 11 - 14;β-环糊精;果胶和羧甲基纤维素钠)进行的微胶囊化研究。使用不同技术对微胶囊的微观结构、粒径分布、热行为、产率和包封效率进行了研究和比较。通过高效液相色谱法,对微颗粒中的酚类和黄酮类进行了检测和定量。所获得的微颗粒产率和酚类包封效率分别在60 - 83%和35 - 57%范围内,粒径分布在1.15至5.54 µm之间,呈球形形态且表面有皱纹。其中,用羧甲基纤维素钠或果胶制备的微颗粒被证明具有最高的热稳定性。它们具有最高的黄酮类含量(分别为23.07和21.73 mg芦丁/g提取物)以及通过DPPH(分别为376.55和367.86 µM TEq/g提取物)和ABTS(分别为1085.72和1062.32 µM TEq/g提取物)测定的总抗氧化活性。色谱分析能够对微颗粒保留的以下物质进行定量:绿原酸(1.74 - 1.98 mg/g提取物)、对香豆酸(0.06 - 0.08 mg/g提取物)、芦丁(11.2 - 12.9 mg/g提取物)和异槲皮苷(0.49 - 0.53 mg/g提取物),这些化合物被认为是该物种具有抗糖尿病特性的原因。