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研究巨细胞病毒在粘弹性卡森流体中的运动动力学:电场和磁场的影响。

Investigating the dynamics of cytomegalovirus movement in viscoelastic Casson fluid: effects of electric and magnetic fields.

作者信息

Ahn Kyubok, Gifteena Hingis Yesudhasan M, Muthtamilselvan Murugan, Al-Mdallal Qasem

机构信息

School of Mechanical Engineering, Chungbuk National University, Cheongju, Korea.

Department of Mathematics, Bharathiar University, Coimbatore, 641046, India.

出版信息

J Biol Phys. 2025 Mar 18;51(1):14. doi: 10.1007/s10867-025-09680-y.

Abstract

Cytomegalovirus (CMV) is a significant clinical pathogen posing risks, especially for immunocompromised individuals. This study investigates the transport dynamics of CMV within viscoelastic saliva, focusing on factors influencing viral mobility. We employed mathematical models, including the Basset-Boussinesq-Oseen (BBO) equation, to analyze how viral density, particle diameter, saliva viscosity, and external electric and magnetic fields affect CMV movement in the oesophagus. Novel insights include the discovery that smaller CMV particles move significantly faster compared to larger ones, highlighting a critical aspect of viral infectivity. Additionally, we found that increased peristaltic wave amplitudes in the oesophagus greatly enhance viral velocity. More notably, our investigation reveals that the application of external magnetic fields can manipulate CMV transport by exerting forces that reduce viral mobility, thus potentially lowering infection rates through electromagnetic interactions. These findings underscore the complex interplay between fluid rheology, particle shape, and external fields in viral dynamics, suggesting novel therapeutic interventions aimed at controlling CMV spread based on saliva viscosity and electromagnetic manipulation. Our research paves the way for innovative strategies in viral infection management and therapeutic development.

摘要

巨细胞病毒(CMV)是一种重要的临床病原体,会带来风险,尤其是对免疫功能低下的个体。本研究调查了CMV在粘弹性唾液中的运输动力学,重点关注影响病毒移动性的因素。我们采用了包括巴塞特-布辛涅斯克-奥森(BBO)方程在内的数学模型,来分析病毒密度、颗粒直径、唾液粘度以及外部电场和磁场如何影响CMV在食管中的移动。新的见解包括发现较小的CMV颗粒比较大的颗粒移动速度明显更快,这突出了病毒感染性的一个关键方面。此外,我们发现食管中蠕动波振幅的增加会极大地提高病毒速度。更值得注意的是,我们的研究表明,施加外部磁场可以通过施加降低病毒移动性的力来操纵CMV的运输,从而有可能通过电磁相互作用降低感染率。这些发现强调了流体流变学、颗粒形状和外部场在病毒动力学中的复杂相互作用,表明基于唾液粘度和电磁操纵来控制CMV传播的新型治疗干预措施。我们的研究为病毒感染管理和治疗开发中的创新策略铺平了道路。

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