Nutritional Significance of Wheatgrass: Cultivation Practices and Opportunities for its Processing and Preservation.

Mahendra Gunjal, Jaspreet Kaur, Prasad Rasane, Jyoti Singh, Sawinder Kaur, Manish Bakshi, Ravish Choudhary, Romina Alina Marc, Sezai Ercisli
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Abstract

Background: This paper aims to provide a comprehensive review of the nutritional composition and bioactive compounds found in wheatgrass, including chlorophyll, vitamins, minerals, flavonoids, and phenolic compounds, as well as their associated health benefits. The review focuses on various cultivation practices, preservation techniques, and the current utilization of wheatgrass as a whole. Additionally, the potential toxicity of wheatgrass has been discussed. Wheatgrass, a nutrient-rich grass, possesses significant pharmacological and therapeutic qualities. In the present scenario, wheatgrass is available in the form of juice, powder, and tablets, and is incorporated into various food products through different processing treatments.

Method: Information and data regarding wheatgrass cultivation practices, processing, and preservation methods were collected from scientific sources, including Google Scholar, ResearchGate, ScienceDirect, fig, Web of Science, and Scopus databases.

Result: Wheatgrass is a highly valuable source of diverse nutrient compounds. Various cultivation methods, such as indoor and outdoor techniques using different growing mediums, have been employed for wheatgrass production. Recent methods for wheatgrass preservation have been suggested to enhance the bioactive compounds present in wheatgrass.

Conclusion: Numerous studies have demonstrated that the consumption of wheatgrass and wheatgrass- based products can help control diabetes, atherosclerosis, kidney and colon diseases, anemia, and certain types of cancer. The smaller size of wheatgrass allows for easier assimilation of its beneficial compounds. Creating awareness among consumers about the nutritional profile and therapeutic properties of wheatgrass is crucial in order to maximize its market potential.

小麦草的营养价值:小麦草的栽培方法及其加工和保存机会。
背景:本文旨在全面综述小麦草的营养成分和生物活性化合物,包括叶绿素、维生素、矿物质、类黄酮和酚类化合物,以及它们对健康的益处。综述的重点是各种种植方法、保存技术以及目前小麦草的整体利用情况。此外,还讨论了小麦草的潜在毒性。小麦草营养丰富,具有重要的药理和治疗作用。目前,小麦草以果汁、粉末和药片的形式供应,并通过不同的加工处理方法融入各种食品中:方法:从 Google Scholar、ResearchGate、ScienceDirect、fig、Web of Science 和 Scopus 数据库等科学来源收集有关小麦草种植方法、加工和保存方法的信息和数据:结果:小麦草是多种营养成分的重要来源。小麦草的生产采用了多种栽培方法,如使用不同生长介质的室内和室外技术。最新提出的小麦草保存方法可提高小麦草中的生物活性化合物:大量研究表明,食用小麦草和以小麦草为基础的产品有助于控制糖尿病、动脉粥样硬化、肾脏和结肠疾病、贫血和某些类型的癌症。小麦草体积较小,更容易吸收其中的有益化合物。要最大限度地挖掘小麦草的市场潜力,就必须让消费者了解小麦草的营养成分和治疗特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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