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Enhanced Immunomodulatory Activity of Gelatin-Encapsulated Rubus coreanus Miquel Nanoparticles

机译:明胶包裹的悬钩子纳米颗粒的增强的免疫调节活性。

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摘要

The aim of this work was to investigate the immunomodulatory activities of Rubus coreanus Miquel extract-loaded gelatin nanoparticles. The mean size of the produced nanoparticles was 143 ± 18 nm with a bandwidth of 76 nm in the size distribution and a maximum size of ~200 nm, which allows effective nanoparticle uptake by cells. Confocal imaging confirmed this, since the nanoparticles were internalized within 30 min and heterogeneously distributed throughout the cell. Zeta-potential measurements showed that from pH = 5 onwards, the nanoparticles were highly negatively charged, which prevents agglomeration to clusters by electrostatic repulsion. This was confirmed by TEM imaging, which showed a well dispersed colloidal solution. The encapsulation efficiency was nearly 60%, which is higher than for other components encapsulated in gelatin nanoparticles. Measurements of immune modulation in immune cells showed a significant effect by the crude extract, which was only topped by the nanoparticles containing the extract. Proliferation of B-, T- and NK cells was notably enhanced by Rubus coreanus-gelatin nanoparticles and in general ~2–3 times higher than control and on average ~2 times higher than ferulic acid. R. coreanus-gelatin nanoparticles induced cytokine secretion (IL-6 and TNF-α) from B- and T-cells on average at a ~2–3 times higher rate compared with the extract and ferulic acid. In vivo immunomodulatory activity in mice fed with R. coreanus-gelatin nanoparticles at 1 mL/g body weight showed a ~5 times higher antibody production compared to control, a ~1.3 times higher production compared to the extract only, and a ~1.6 times higher production compared to ferulic acid. Overall, our results suggest that gelatin nanoparticles represent an excellent transport vehicle for Rubus coreanus extract and extracts from other plants generally used in traditional Asian medicine. Such nanoparticles ensure a high local concentration that results in enhancement of immune cell activities, including proliferation, cytokine secretion, and antibody production.
机译:这项工作的目的是研究核芯悬钩子提取物负载明胶纳米粒子的免疫调节活性。产生的纳米颗粒的平均尺寸为143±18 nm,尺寸分布带宽为76 nm,最大尺寸为〜200 nm,这可以使细胞有效吸收纳米颗粒。共聚焦成像证实了这一点,因为纳米颗粒在30分钟内被内在化,并在整个细胞中异质分布。 Zeta电位测量结果表明,从pH = 5开始,纳米颗粒带负电,从而防止了静电排斥引起的团聚。通过TEM成像证实了这一点,TEM成像显示出良好分散的胶体溶液。包封效率接近60%,高于明胶纳米颗粒中包封的其他组分。免疫细胞中免疫调节的测量结果显示,粗提取物具有显着效果,而粗提取物仅次于含有提取物的纳米颗粒。悬钩子明胶纳米颗粒显着增强了B细胞,T细胞和NK细胞的增殖,通常比对照高约2至3倍,平均比阿魏酸高约2倍。 R. coreanus-明胶纳米颗粒诱导B细胞和T细胞的细胞因子分泌(IL-6和TNF-α)平均比提取物和阿魏酸高约2-3倍。以1 mL / g体重喂食R. coreanus-明胶纳米颗粒的小鼠体内免疫调节活性显示,与对照相比,抗体产量高出约5倍,与仅提取物相比,高出约1.3倍,约1.6倍。与阿魏酸相比产量更高。总体而言,我们的结果表明,明胶纳米颗粒代表了悬钩子提取物和传统亚洲医学中常用的其他植物提取物的优良运输载体。这样的纳米颗粒确保了高的局部浓度,其导致免疫细胞活性增强,包括增殖,细胞因子分泌和抗体产生。

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