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[不同硬度纳米颗粒联合薄荷醇/莪术醇对bEnd.3细胞力学性能的影响]

[Effect of nanoparticles of different stiffness combined with menthol/curcumol on mechanical properties of bEnd.3 cells].

作者信息

Guo Zi-Shuo, Zhang Yi, Yang Kai-Li, Wang Di-Lei, Chen Wan-Ling, Wang Xiao-Jing, Zhong Lin-Ying, Li Peng-Yue, DU Shou-Ying

机构信息

School of Chinese Materia Medica, Beijing University of Chinese Medicine Beijing 102488, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2023 Jan;48(2):390-398. doi: 10.19540/j.cnki.cjcmm.20220621.301.

Abstract

This study aimed to investigate the effects of nanoparticles PLGA-NPs and mesoporous silicon nanoparticles(MSNs) of different stiffness before and after combination with menthol or curcumol on the mechanical properties of bEnd.3 cells. The particle size distributions of PLGA-NPs and MSNs were measured by Malvern particle size analyzer, and the stiffness of the two nanoparticles was quantified by atomic force microscopy(AFM). The bEnd.3 cells were cultured in vitro, and the cell surface morphology, roughness, and Young's modulus were examined to characterize the roughness and stiffness of the cell surface. The changes in the mechanical properties of the cells were observed by AFM, and the structure and expression of cytoskeletal F-actin were observed by a laser-scanning confocal microscope. The results showed that both nanoparticles had good dispersion. The particle size of PLGA-NPs was(98.77±2.04) nm, the PDI was(0.140±0.030), and Young's modulus value was(104.717±8.475) MPa. The particle size of MSNs was(97.47±3.92) nm, the PDI was(0.380±0.016), and Young's modulus value was(306.019±8.822) MPa. The stiffness of PLGA-NPs was significantly lower than that of MSNs. After bEnd.3 cells were treated by PLGA-NPs and MSNs separately, the cells showed fine pores on the cell surface, increased roughness, decreased Young's modulus, blurred and broken F-actin bands, and reduced mean gray value. Compared with PLGA-NPs alone, PLGA-NPs combined with menthol or curcumol could allow deepened and densely distributed surface pores of bEnd.3 cells, increase roughness, reduce Young's modulus, aggravate F-actin band breakage, and diminish mean gray value. Compared with MSNs alone, MSNs combined with menthol could allow deepened and densely distributed surface pores of bEnd.3 cells, increase roughness, reduce Young's modulus, aggravate F-actin band breakage, and diminish mean gray value, while no significant difference was observed in combination with curcumol. Therefore, it is inferred that the aromatic components can increase the intracellular uptake and transport of nanoparticles by altering the biomechanical properties of bEnd.3 cells.

摘要

本研究旨在探讨不同硬度的纳米颗粒聚乳酸-羟基乙酸共聚物纳米粒(PLGA-NPs)和介孔硅纳米颗粒(MSNs)在与薄荷醇或莪术醇联合前后对bEnd.3细胞力学性能的影响。采用马尔文粒度分析仪测定PLGA-NPs和MSNs的粒径分布,并用原子力显微镜(AFM)对两种纳米颗粒的硬度进行量化。体外培养bEnd.3细胞,检测细胞表面形态、粗糙度和杨氏模量,以表征细胞表面的粗糙度和硬度。通过AFM观察细胞力学性能的变化,并用激光扫描共聚焦显微镜观察细胞骨架F-肌动蛋白的结构和表达。结果表明,两种纳米颗粒均具有良好的分散性。PLGA-NPs的粒径为(98.77±2.04)nm,多分散指数(PDI)为(0.140±0.030),杨氏模量值为(104.717±8.475)MPa。MSNs的粒径为(97.47±3.92)nm,PDI为(0.380±0.016),杨氏模量值为(306.019±8.822)MPa。PLGA-NPs的硬度显著低于MSNs。bEnd.3细胞分别经PLGA-NPs和MSNs处理后,细胞表面出现微孔,粗糙度增加,杨氏模量降低,F-肌动蛋白带模糊断裂,平均灰度值降低。与单独使用PLGA-NPs相比,PLGA-NPs与薄荷醇或莪术醇联合可使bEnd.3细胞表面孔加深且分布密集,粗糙度增加,杨氏模量降低,F-肌动蛋白带断裂加剧,平均灰度值减小。与单独使用MSNs相比,MSNs与薄荷醇联合可使bEnd.3细胞表面孔加深且分布密集,粗糙度增加,杨氏模量降低,F-肌动蛋白带断裂加剧,平均灰度值减小,而与莪术醇联合则无显著差异。因此,推测芳香成分可通过改变bEnd.3细胞的生物力学性质来增加纳米颗粒的细胞内摄取和转运。

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