生物阻抗形式主义:获取细胞和组织健康状况的新方法

IF 4.8 2区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioelectrochemistry Pub Date : 2024-08-19 DOI:10.1016/j.bioelechem.2024.108799
Jose Luis García Bello , Taira Batista Luna , Alcibíades Lara Lafargue , Héctor Manuel Camué Ciria , Yohandys A. Zulueta
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引用次数: 0

摘要

本手稿介绍了一种利用生物阻抗光谱测量的特征频率研究组织和细胞弛豫动力学的新方法。生物阻抗形式主义允许同时研究频域和时域中的生物电参数,从而深入了解相关组织或细胞中可能发生的弛豫过程。科尔-科尔分析的结果表明,没有与异质性相关的多重弛豫过程,男性与女性相比有明显的年龄组差异。对时域弛豫动态的研究表明,β 参数可用于分析组织、细胞或癌细胞中的电荷载体,有可能为癌症和其他疾病带来新的诊断和治疗方法。总之,这种方法为利用生物阻抗方法深入了解组织和细胞的电特性提供了一个前景广阔的研究领域。
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Bioimpedance formalism: A new approach for accessing the health status of cell and tissues

This manuscript describes a novel methodology for studying relaxation dynamics in tissues and cells using characteristic frequency of bioimpedance spectroscopy measurements. The Bioimpedance Formalism allows for the simultaneous study of bioelectrical parameters in the frequency and time domains, providing insight into possible relaxation processes occurring in the tissue or cell of interest. Results from the Cole-Cole analysis showed no multiple relaxation processes associated with heterogeneity, with a visible age group separation in males compared with females. The study of the relaxation dynamic in the time domain revealed that the β parameter can be used to analyse the charge carriers in tissues, cells, or cancer cells, potentially leading to new diagnostic and therapeutic approaches for cancer and other diseases. Overall, this approach presents a promising area of research for gaining insights into the electrical properties of tissues and cells using bioimpedance methods.

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来源期刊
Bioelectrochemistry
Bioelectrochemistry 生物-电化学
CiteScore
9.10
自引率
6.00%
发文量
238
审稿时长
38 days
期刊介绍: An International Journal Devoted to Electrochemical Aspects of Biology and Biological Aspects of Electrochemistry Bioelectrochemistry is an international journal devoted to electrochemical principles in biology and biological aspects of electrochemistry. It publishes experimental and theoretical papers dealing with the electrochemical aspects of: • Electrified interfaces (electric double layers, adsorption, electron transfer, protein electrochemistry, basic principles of biosensors, biosensor interfaces and bio-nanosensor design and construction. • Electric and magnetic field effects (field-dependent processes, field interactions with molecules, intramolecular field effects, sensory systems for electric and magnetic fields, molecular and cellular mechanisms) • Bioenergetics and signal transduction (energy conversion, photosynthetic and visual membranes) • Biomembranes and model membranes (thermodynamics and mechanics, membrane transport, electroporation, fusion and insertion) • Electrochemical applications in medicine and biotechnology (drug delivery and gene transfer to cells and tissues, iontophoresis, skin electroporation, injury and repair). • Organization and use of arrays in-vitro and in-vivo, including as part of feedback control. • Electrochemical interrogation of biofilms as generated by microorganisms and tissue reaction associated with medical implants.
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