Dantas Thamires Lacerda, Alonso Buriti Flávia Carolina, Florentino Eliane Rolim
Programa de Pós-Graduação em Ciências Farmacêuticas, Universidade Estadual da Paraíba, Campina Grande 58429-600, PB, Brazil.
Núcleo de Pesquisa e Extensão em Alimentos, Universidade Estadual da Paraíba, Campina Grande 58109-790, PB, Brazil.
Plants (Basel). 2021 Aug 16;10(8):1683. doi: 10.3390/plants10081683.
has fruit popularly known as okra and belongs to the family. It is commonly used in cooking but also in traditional medicine in the treatment of worms, dysentery, inflammation, and also irritation of the stomach, intestines, and kidneys, as it is a potential functional food. Its mucilage is a highly viscous polysaccharide that is mostly composed of monosaccharides D-galactose, L-rhamnose, and galacturonic acid, as well as proteins and minerals. The functional properties of okra mucilage have been widely studied, mainly for its potential antidiabetic activity; thus, its use as adjuvant or nutraceutical therapy for diabetes is very promising. Due to its rheological properties, it is a potential resource for pharmaceutical and food applications. Okra mucilage can be extracted by several methods, which can directly influence its physicochemical characteristics and biological activity. Features such as low cost, non-toxicity, biocompatibility, and high availability in nature arouse the interest of researchers for the study of okra mucilage. The survey of research on the applications of okra mucilage highlights the importance of using this promising source of bioactive compounds with interesting technological properties. The potential of okra as a functional food, the properties of okra mucilage, and its technological applications are discussed in this review.
有一种水果俗称秋葵,属于该科。它通常用于烹饪,也用于传统医学中治疗蠕虫、痢疾、炎症以及胃、肠和肾脏的刺激,因为它是一种潜在的功能性食品。其黏液是一种高度黏稠的多糖,主要由单糖D-半乳糖、L-鼠李糖、半乳糖醛酸以及蛋白质和矿物质组成。秋葵黏液的功能特性已得到广泛研究,主要是因其潜在的抗糖尿病活性;因此,将其用作糖尿病的辅助治疗或营养治疗非常有前景。由于其流变学特性,它是制药和食品应用的潜在资源。秋葵黏液可以通过多种方法提取,这会直接影响其理化特性和生物活性。低成本、无毒、生物相容性以及在自然界中高可用性等特性引起了研究人员对秋葵黏液研究的兴趣。对秋葵黏液应用研究的调查突出了使用这种具有有趣技术特性的有前途的生物活性化合物来源的重要性。本综述讨论了秋葵作为功能性食品的潜力、秋葵黏液的特性及其技术应用。