多糖对CD3+CD56+ nkt样细胞免疫调节作用的体外研究

Minghao Lu, Yaobiao Huang, Lian Yang, Chun Chen
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摘要

目的:多糖具有广泛的应用价值,特别是在免疫调节方面。然而,很少有有效的方法来评价和比较不同多糖的体外免疫调节特性。为了严格筛选和扩大多糖治疗的应用领域,本研究开发了一种基于脐带血来源的CD3+CD56+ nkt样细胞的体外治疗方法。方法:通过体外细胞增殖和细胞毒性实验,进一步验证了临床上常用的香菇多糖(LNT)、卡介苗多糖核酸(BCG-PSN)、人参多糖(GPS)和生附多糖(SFPS) 4种可能对癌症有治疗作用的注射用多糖。该评价体系可以区分四种多糖的作用。结果:四种多糖处理4 d后的细胞数量均少于未处理的细胞。经过7天的处理,植物细菌来源的BCG-PSN、GPS和SFPS诱导了更高的细胞凋亡。植物学报,36(4):83-91,2021;文章no.ARRB。与对照组相比,IFN水平,CD3+CD56+表型细胞比例,以及A549细胞的细胞溶解活性。然而,真菌衍生的LNT产生较低的IFN, CD3+CD56+细胞比例和细胞溶解活性比对照条件。此外,4种多糖(GPS、SFPS、BCG-PSN和LNT)诱导的TNF-α浓度均显著高于对照,且浓度依次递减。结论:脐带血来源的CD3+CD56+ nkt样细胞可能是筛选和评估生物或化学化合物免疫调节潜力的有力工具,可用于临床开发和应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro Assessment of Polysaccharides Immunoregulatory Effects on CD3+CD56+ NKT-like Cells
Aims: Polysaccharides have shown efficacy in a broad range of applications, especially in immune regulation. However, there are only few effective methods available to evaluate and compare the immunoregulatory properties of the different polysaccharides in vitro. To screen stringently and extend the fields of application of polysaccharide-based treatments, a novel in vitro method, based on the use of cord blood-derived CD3+CD56+ NKT-like cells, was developed in this study. Methodology: Four injectable polysaccharides used in clinics, including Lentinan (LNT), Bacillus Calmette-Guerin polysaccharide nucleic acids (BCG-PSN), ginseng polysaccharides (GPS), and Shengfu polysaccharides (SFPS), which all might benefit cancer therapy, were further validated by testing their effect on cell proliferation and cytotoxicity in vitro. This new evaluation system could discriminate the effects of the four polysaccharides. Results: Cells treated for 4 days with either of the four polysaccharides were fewer than untreated cells. Upon 7-day treatments, plantor bacteria-derived BCG-PSN, GPS, and SFPS induced higher Original Research Article Lu et al.; ARRB, 36(4): 83-91, 2021; Article no.ARRB.67907 84 level of IFN, proportion of cells with a CD3+CD56+ phenotype, and cytolytic activity toward A549 cells, compared to controls. However, fungus-derived LNT yielded lower IFN, proportion of CD3+CD56+ cells, and cytolytic activity than control conditions. Additionally, all four polysaccharides, in decreasing order GPS, SFPS, BCG-PSN, and LNT, induced significantly higher concentrations of TNF-α compared to control, with respectively. Conclusion: Cord blood-derived CD3+CD56+ NKT-like cells may represent a powerful tool to screen and evaluate the immunoregulatory potential of biological or chemical compounds for clinical developments and applications.
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