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通过挤压法制备藻酸盐-果胶微胶囊用于包封番木瓜(番木瓜属)中的多酚并实现其控释。

Development of alginate-pectin microcapsules by the extrusion for encapsulation and controlled release of polyphenols from papaya (Carica papaya L.).

作者信息

Vallejo-Castillo Vladimir, Rodríguez-Stouvenel Aida, Martínez Ronny, Bernal Claudia

机构信息

Tecnología Enzimática para Bioprocesos, Departamento de Ingeniería de Alimentos, Universidad de La Serena, La Serena, Chile.

Grupo de Investigación en Ingeniería de los Procesos Agroalimentarios y Biotecnológicos, GIPAB, Escuela de Ingeniería de Alimentos, Universidad del Valle, Cali, Colombia.

出版信息

J Food Biochem. 2020 Sep;44(9):e13331. doi: 10.1111/jfbc.13331. Epub 2020 Jun 29.

Abstract

The papaya fruit (Carica papaya L.) contains a wide variety of bioactive compounds with potential applications in the food and nutraceutical industries. The entrapment and release of such bioactive compounds remain a critical step for the development of functional, stable, and cost-effective storage and delivery systems, since the interaction of polymers on capsules and the payload molecules can influence the performance of the capsule system under operational conditions. The present study describes the encapsulation of rutin and trans-ferulic acid-rich extracts from papaya exocarp in a pectin-alginate composite, evaluating the performance of gallic acid encapsulation obtained through in situ and two-step entrapment methods. The best alginate:pectin ratio for gallic acid encapsulation was 55:45 and 61:39, achieving 6.1 mg and 28.1 mg GAE/g capsules when the papaya exocarp extract was encapsulated by in situ and two-step, respectively. We also evaluated the payload release performance of the obtained capsules under in vitro conditions simulating gastrointestinal conditions. Our results indicate an increased protective effect at gastric pH and targeted release of polyphenols when in situ encapsulation is used to encapsulate the extracts. PRACTICAL APPLICATIONS: Currently, adding value to agroindustry processing waste is an important focus to achieve a more economically and environmentally sustainable food industry. The recovery of bioactive molecules such as polyphenols, for food supplements or formulation additives in the form of by-product extracts is gaining importance as novel sustainable processes in the agricultural industry. Thus, the encapsulation of such bioactive extracts for storage and consumption is an active research field, aiming to overcome the low storage stability and lability to gastric conditions, currently hindering their applications in food or pharmaceutical formulations. In this sense, capsule design and the development of efficient encapsulation methods are very important to obtain a suitable carrier and protector system for the capsulated bioactive extracts or molecules. This research aims to add value to papaya waste and potentially to other agroindustry wastes such as pectin and alginate, resulting in a polyphenol carrier with excellent encapsulation and targeted release properties under gastrointestinal conditions. In conclusion, this kind of works could allow to the application of the agroindustry byproducts to obtain high added-value products, in the form of polyphenol-loaded capsules.

摘要

番木瓜果实(番木瓜属番木瓜)含有多种生物活性化合物,在食品和营养保健品行业具有潜在应用价值。对于功能化、稳定且经济高效的储存和递送系统的开发而言,此类生物活性化合物的包封和释放仍然是关键步骤,因为聚合物与胶囊以及有效载荷分子之间的相互作用会影响胶囊系统在操作条件下的性能。本研究描述了将番木瓜外果皮中富含芦丁和反式阿魏酸的提取物包封于果胶 - 海藻酸盐复合物中,评估通过原位包封法和两步包封法获得的没食子酸包封性能。没食子酸包封的最佳海藻酸盐与果胶比例分别为55:45和61:39,当采用原位包封法和两步包封法分别包封番木瓜外果皮提取物时,每克胶囊分别获得6.1毫克和28.1毫克没食子酸当量。我们还在模拟胃肠道条件的体外环境下评估了所得胶囊的有效载荷释放性能。我们的结果表明,当采用原位包封法包封提取物时,在胃pH值条件下具有增强的保护作用且多酚实现靶向释放。实际应用:目前,提高农业产业加工废弃物的附加值是实现更具经济和环境可持续性的食品工业的一个重要关注点。以副产物提取物形式回收生物活性分子(如多酚)用于食品补充剂或配方添加剂,作为农业产业中的新型可持续工艺正变得愈发重要。因此,包封此类生物活性提取物以用于储存和消费是一个活跃的研究领域,旨在克服目前阻碍其在食品或药物制剂中应用的低储存稳定性和对胃部条件的敏感性。从这个意义上讲,胶囊设计和高效包封方法的开发对于获得适合包封生物活性提取物或分子的载体和保护系统非常重要。本研究旨在提高番木瓜废弃物以及潜在地其他农业产业废弃物(如果胶和海藻酸盐)的附加值,从而得到一种在胃肠道条件下具有优异包封和靶向释放性能的多酚载体。总之,这类研究工作能够使农业产业副产品应用于获得高附加值产品,即负载多酚的胶囊形式。

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