Optimization of Nano Science Parameters for Extracting Phenolic Compounds from Ficus religiosa by Three-Phase Partitioning (TPP) Method

Q3 Materials Science
N. Rane, S. Shewale
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引用次数: 0

Abstract

The phenolic compounds are generally found in different parts of the plants such as leaves, barks, seeds, fruits, and so on. These compounds show numerous nanoscience-based bioactive properties including antioxidant characteristics. The phenolic compounds obtained from beneficial herbs and dietary plants include total phenolic compounds, flavonoids, and tannins. In recent times, nanoscience has proved to be extensively reliable in extracting bioactive components. Additionally, nanomaterials have made a considerable contribution in the development of methodical techniques to retain superiority in processing foods and medicines. Of late, extracting nano-bioactive composites from natural resources have gained high interest as these composites are used in manufacturing a wide range of products such as foods, paints, and pharmaceuticals. Therefore, there is a requirement to separate natural products and identify new nano-bioactive compounds that have the potential to improve the importance of logical and developed techniques. This research is focused on optimizing the experimental parameters to extract the phenolic compounds from Ficus religiosa (banyan leaves) by the Three-Phase Partitioning (TPP) method. TPP is an advanced method that has been used for the extraction, concentration, and purification of various nano-based bioactive compounds and enzymes. During the investigation, various experimental parameters have been studied to obtain the maximum concentration of phenolic compounds from the dried powder of the Ficus religiosa leaves. The optimised results were found as ammonium sulphate by 30%, solute to the solvent ratio in 1:20 (v/v), and slurry to t-butanol ratio in 1:1 proportions.
三相分割法提取榕中酚类化合物的纳米科学参数优化
酚类化合物通常存在于植物的不同部位,如叶子、树皮、种子、果实等。这些化合物表现出许多基于纳米科学的生物活性,包括抗氧化特性。从有益草药和膳食植物中获得的酚类化合物包括总酚类化合物、黄酮类化合物和单宁。近年来,纳米科学已被证明在提取生物活性成分方面具有广泛的可靠性。此外,纳米材料在发展系统技术以保持食品和药品加工优势方面做出了相当大的贡献。最近,从自然资源中提取纳米生物活性复合材料引起了人们的高度兴趣,因为这些复合材料用于制造食品、涂料和药品等广泛的产品。因此,需要分离天然产物并鉴定新的纳米生物活性化合物,这些化合物有可能提高逻辑和开发技术的重要性。本研究采用三相分配法(TPP)对榕树叶中酚类化合物的提取工艺参数进行了优化。TPP是一种先进的方法,已被用于提取、浓缩和纯化各种纳米生物活性化合物和酶。在研究过程中,研究了各种实验参数,以获得宗教榕叶干粉中酚类化合物的最大浓度。优化的结果发现,硫酸铵为30%,溶质与溶剂的比例为1:20(v/v),浆液与叔丁醇的比例为1:1。
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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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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