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超声辅助提取(UAE)在生物活性成分提取方面的综合综述:原理、优点、设备和联合技术。

A comprehensive review of ultrasonic assisted extraction (UAE) for bioactive components: Principles, advantages, equipment, and combined technologies.

机构信息

School of Food and Biological Engineering, Jiangsu University, 301 Xuefu Road, Zhenjiang, Jiangsu 212013, China.

Zhongke Zhigu International Pharmaceutical Biotechnology (Guangdong) Co., Ltd, Guikeng Village, Chuangxing Avenue, Gaoxin District, Qingyuan, Guangdong 511538, China.

出版信息

Ultrason Sonochem. 2023 Dec;101:106646. doi: 10.1016/j.ultsonch.2023.106646. Epub 2023 Oct 13.

DOI:10.1016/j.ultsonch.2023.106646
PMID:37862945
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10594638/
Abstract

The increasing focus on health and well-being has sparked a rising interest in bioactive components in the food, pharmaceutical, and nutraceutical industries. These components are gaining popularity due to their potential benefits for overall health. The growing interest has resulted in a continuous rise in demand for bioactive components, leading to the exploration of both edible and non-edible sources to obtain these valuable substances. Traditional extraction methods like solvent extraction, distillation, and pressing have certain drawbacks, including lower extraction efficiency, reduced yield, and the use of significant amounts of solvents or resources. Furthermore, certain extraction methods necessitate high temperatures, which can adversely affect certain bioactive components. Consequently, researchers are exploring non-thermal technologies to develop environmentally friendly and efficient extraction methods. Ultrasonic-assisted extraction (UAE) is recognized as an environmentally friendly and highly efficient extraction technology. The UAE has the potential to minimize or eliminate the need for organic solvents, thereby reducing its impact on the environment. Additionally, UAE has been found to significantly enhance the production of target bioactive components, making it an attractive method in the industry. The emergence of ultrasonic assisted extraction equipment (UAEE) has presented novel opportunities for research in chemistry, biology, pharmaceuticals, food, and other related fields. However, there is still a need for further investigation into the main components and working modes of UAEE, as current understanding in this area remains limited. Therefore, additional research and exploration are necessary to enhance our knowledge and optimize the application of UAEE. The core aim of this review is to gain a comprehensive understanding of the principles, benefits and impact on bioactive components of UAE, explore the different types of equipment used in this technique, examine the various working modes and control parameters employed in UAE, and provide a detailed overview of the blending of UAE with other emerging extraction technologies. In conclusion, the future development of UAEE is envisioned to focus on achieving increased efficiency, reduced costs, enhanced safety, and improved reliability. These key areas of advancement aim to optimize the performance and practicality of UAEE, making it a more efficient, cost-effective, and reliable extraction technology.

摘要

对健康和幸福的日益关注,激发了食品、制药和营养保健品行业对生物活性成分的浓厚兴趣。这些成分因其对整体健康的潜在益处而受到欢迎。不断增长的兴趣导致对生物活性成分的需求持续增加,促使人们探索可食用和不可食用的来源来获取这些有价值的物质。传统的提取方法,如溶剂提取、蒸馏和压榨,存在一定的缺点,包括提取效率较低、产量降低以及大量使用溶剂或资源。此外,某些提取方法需要高温,这可能会对某些生物活性成分产生不利影响。因此,研究人员正在探索非热技术以开发环保且高效的提取方法。超声辅助提取 (UAE) 被认为是一种环保且高效的提取技术。UAE 有可能最大限度地减少或消除对有机溶剂的需求,从而减少其对环境的影响。此外,研究发现,UAE 显著提高了目标生物活性成分的产量,使其成为该行业有吸引力的方法。超声辅助提取设备 (UAEE) 的出现为化学、生物学、制药、食品和其他相关领域的研究带来了新的机遇。然而,对于 UAEE 的主要组件和工作模式,仍需要进一步研究,因为目前对该领域的理解仍然有限。因此,需要进一步研究和探索,以增强我们的知识并优化 UAEE 的应用。本综述的核心目标是全面了解 UAE 对生物活性成分的原理、益处和影响,探索该技术中使用的不同类型的设备,研究 UAE 中采用的各种工作模式和控制参数,并详细介绍 UAE 与其他新兴提取技术的结合。总之,未来 UAEE 的发展方向是提高效率、降低成本、增强安全性和提高可靠性。这些关键领域的进展旨在优化 UAEE 的性能和实用性,使其成为更高效、更具成本效益和更可靠的提取技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/43f7253ce3c0/gr10.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/b02528bd63b3/ga1.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/5a6337b096cd/gr3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/bf17b08f0f19/gr4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/53ff550da3e2/gr5.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/6f3e10b6b77d/gr6.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/03091f3ea5f3/gr7.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e3a/10594638/1d1a1c547d62/gr8.jpg
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