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研究从牡丹籽粕中基于膜的洋蓟素最佳分离方法并评估其生物医学意义。

Investigating the Optimal Membrane-Based Separation of Cynaroside From Peony Seed Meals and Assessing Its Biomedical Implications.

作者信息

Chen Wen-Tao, Sun Jing, Zhang Ying-Yang, Xu Ying, Zou Ping, Hu Jian-Gang, Zhou Lei

机构信息

School of Biological and Food Engineering Changzhou University Changzhou China.

Department of Gardiology Jintan Affiliated Hospital of Jiangsu University Changzhou China.

出版信息

Food Sci Nutr. 2024 Dec 4;12(12):10933-10945. doi: 10.1002/fsn3.4528. eCollection 2024 Dec.

Abstract

This comprehensive study focused on evaluating and selecting seven distinct commercial membranes to develop BTESE/PA membranes. This method effectively facilitated the extraction of cynaroside from the complex composition of peony seed meal. We subsequently conducted a thorough investigation into its biological properties. These findings establish a robust foundation for future research and the development of related products. The peak concentration achieved by peony seed meal filtration (PSMF) was 234.84 ± 1.17 μg/mL. Among the commercial membranes evaluated, the PA membrane exhibited superior separation capabilities, leading to its selection for BTESE loading. Compared with BTESE treated with HCl and NH, the HCl variant, once incorporated into the BTESE/PA membrane, enhanced cynaroside separation, achieving an impressive 90.23% recovery rate. A comprehensive investigation of the biological effects of cynaroside revealed its crucial antioxidant role, especially in SOD binding. Additionally, cynaroside has the potential to induce apoptosis in K562 cells through interactions with BCL-2 and CDK-2 enzymes. Pharmacophore screening revealed the affinity of cynaroside for the PDE5A, TNKS2, and DAPK1 proteins, suggesting that it has diverse potential applications.

摘要

这项综合性研究聚焦于评估和挑选七种不同的商用膜,以制备BTESE/PA膜。该方法有效地促进了从牡丹籽粕复杂成分中提取绿原酸。随后,我们对其生物学特性进行了深入研究。这些发现为未来的研究和相关产品的开发奠定了坚实基础。牡丹籽粕过滤(PSMF)达到的峰值浓度为234.84±1.17μg/mL。在所评估的商用膜中,PA膜表现出卓越的分离能力,因此被选用于负载BTESE。与用HCl和NH处理的BTESE相比,HCl变体一旦掺入BTESE/PA膜中,就增强了绿原酸的分离效果,回收率达到了令人瞩目的90.23%。对绿原酸生物学效应的全面研究揭示了其关键的抗氧化作用,尤其是在与超氧化物歧化酶(SOD)结合方面。此外,绿原酸有可能通过与BCL-2和CDK-2酶相互作用诱导K562细胞凋亡。药效团筛选揭示了绿原酸对PDE5A、TNKS2和DAPK1蛋白的亲和力,表明它具有多种潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f9c/11666981/53164bb0b6bf/FSN3-12-10933-g002.jpg

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