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微滤红紫色火龙果浓缩物:一种有前景的多功能食品源色素。

Microfiltered red-purple pitaya concentrate: A promising multifunctional food-derived colorant.

作者信息

de Sousa Silva Fernanda Tayla, da Rocha Viana José Diogo, Gomes da Silva Maria de Fátima, Silvestre da Silva Gisele, Florindo Guedes Maria Izabel, de Lima Rebouças Emanuela, Apolinário da Silva Ana Paula, Coutinho Marnielle Rodrigues, Wlisses da Silva Antônio, Rodrigues de Souza Arthur Claudio, Zocolo Guilherme Juliao, Herbster Moura Carlos Farley, Dionísio Ana Paula

机构信息

Federal Institute of Education, Science and Technology of Ceará, Limoeiro do Norte, Ceará, Brazil.

Embrapa Agroindústria Tropical, Fortaleza, Ceará, Brazil.

出版信息

J Food Sci. 2024 Oct;89(10):6759-6773. doi: 10.1111/1750-3841.17351. Epub 2024 Sep 17.

Abstract

Red pitaya fruit has become a source of natural colorant, because it is rich in betalains, a pigment that imparts a red-purple color that interests the food and cosmetics industries. This fruit also possesses high nutritional value, with a range of bioactive compounds known to confer potential health benefits and prevent chronic diseases, such as diabetes, which makes it useful for use as pharmaceutical agents and dietary supplements. In order to improve its technological and biological effects, a concentration will be required. Thus, the microfiltration, followed by vacuum concentration, can be an interesting strategy for this purpose. This study aimed to explore tangential microfiltration to produce microfiltered material, which is an important step to obtain the microfiltered red-purple pitaya concentrate. Therefore, physicochemical and chemical characterization (including H NMR analysis) and biological properties (toxicity and diabetes) of this concentrate were assessed, using adult zebrafish as a model. The results show that microfiltration was carried out efficiently, with an average consumption of 95.75 ± 3.13 and 74.12 ± 3.58 kW h m, varying according to the material used ("unpeeled pitaya pulp" or "pitaya pulp with peel," respectively). The in vivo tests indicated non-toxicity and hypoglycemic effect of the concentrate, since the blood glucose levels were significantly lower in the zebrafish groups treated with this concentrate in comparison with that of control group. Thus, this study suggests the potential of microfiltered red-purple pitaya concentrate as a promising multifunctional food-derived colorant, exhibiting beneficial biological effects far beyond its attractive color. PRACTICAL APPLICATION: Hylocereus polyrhizus (F.A.C. Weber) Britton & Rose has attracted attention as a potential source of natural colorants because of its red-purple skin and flesh color. In addition, this fruit has a range of bioactive compounds, which make it a valuable resource for providing potential health benefits and preventing chronic diseases such as diabetes. In this paper, the microfiltered red-purple pitaya concentrate showed beneficial biological effects far beyond its attractive color. Thus, this product can be considered a promising multifunctional food-derived colorant to use in the food, pharmaceutical, or cosmetics industries.

摘要

红肉火龙果已成为天然色素的来源,因为它富含甜菜红素,这种色素赋予其红紫色,受到食品和化妆品行业的关注。这种水果还具有很高的营养价值,含有一系列已知具有潜在健康益处并能预防慢性疾病(如糖尿病)的生物活性化合物,这使其可用于制药和作为膳食补充剂。为了提高其技术和生物学效果,需要进行浓缩。因此,先进行微滤,再进行真空浓缩,可能是实现这一目的的有效策略。本研究旨在探索切向微滤以生产微滤材料,这是获得微滤红紫色火龙果浓缩物的重要步骤。因此,以成年斑马鱼为模型,对该浓缩物的物理化学和化学特性(包括核磁共振氢谱分析)以及生物学特性(毒性和糖尿病相关)进行了评估。结果表明,微滤过程高效进行,平均能耗分别为95.75 ± 3.13和74.12 ± 3.58千瓦时/平方米,具体能耗根据所使用的材料(分别为“带皮火龙果果肉”或“去皮火龙果果肉”)而有所不同。体内试验表明该浓缩物无毒且具有降血糖作用,因为与对照组相比,用该浓缩物处理的斑马鱼组的血糖水平显著降低。因此,本研究表明微滤红紫色火龙果浓缩物作为一种有前景的多功能食品源色素具有潜力,其有益的生物学效应远不止于其诱人的颜色。实际应用:由于其红紫色的果皮和果肉颜色,霸王花(F.A.C. Weber)Britton & Rose作为天然色素的潜在来源受到关注。此外,这种水果含有一系列生物活性化合物,使其成为提供潜在健康益处和预防糖尿病等慢性疾病的宝贵资源。本文中,微滤红紫色火龙果浓缩物显示出远不止其诱人颜色的有益生物学效应。因此,该产品可被视为一种有前景的多功能食品源色素,可用于食品、制药或化妆品行业。

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