Selenium Nanoparticles Based on <i>Morinda officinalis</i> Polysaccharides: Characterization, Anti-Cancer Activities, and Immune-Enhancing Activities Evaluation In Vitro

Recently, selenium nanoparticles have been drawing attention worldwide, and it is crucial to increase the stability of nano-Se. <i>Morinda officinalis</i> polysaccharides (MOP) are the main active component in <i>Morinda officinalis</i> radix. However, their low activity has...

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Bibliographic Details
Main Authors: Mengxin Yao, Yuan Deng, Zhimin Zhao, Depo Yang, Guohui Wan, Xinjun Xu
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/28/6/2426
Description
Summary:Recently, selenium nanoparticles have been drawing attention worldwide, and it is crucial to increase the stability of nano-Se. <i>Morinda officinalis</i> polysaccharides (MOP) are the main active component in <i>Morinda officinalis</i> radix. However, their low activity has limited their application. A novel selenium nanoparticle (Se-MOP) was prepared to solve these problems using MOP as a dispersant. The zeta potential was measured to evaluate the stability, and UV and ATR-FTIR were used to investigate the binding type of selenium and MOP. The morphology was observed by the TEM method. Furthermore, the inhibitory effect on five selected cancer cells (HepG2, MCF-7, AGS, PC9, and HCT8) was evaluated, showing remarkable inhibition of all five cancer cells. The mechanism of inhibition was also investigated by cell circle assay, and it was found that Se-MOP could induce cell circle G0/G1 phase arrest. Immune-enhancing activities were evaluated by measuring the proliferation and cytokines of mouse spleen lymphocytes in vitro and quantitative RT-PCR. The results indicated that single stimulation of Se-MOP and synergistic stimulation with PHA or LPS increased immune capacity and improved immune by increasing the expression of cytokines.
ISSN:1420-3049