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Static Magnetic Field (SMF) as a Regulator of Stem Cell Fate – New Perspectives in Regenerative Medicine Arising from an Underestimated Tool

机译:静磁场(SMF)作为干细胞命运的调节剂–再生医学的新观点来自一种被低估的工具

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摘要

Tissue engineering and stem cell-based therapies are one of the most rapidly developing fields in medical sciences. Therefore, much attention has been paid to the development of new drug-delivery systems characterized by low cytotoxicity, high efficiency and controlled release. One of the possible strategies to achieve these goals is the application of magnetic field and/or magnetic nanoparticles, which have been shown to exert a wide range of effects on cellular metabolism. Static magnetic field (SMF) has been commonly used in medicine as a tool to increase wound healing, bone regeneration and as a component of magnetic resonance technique. However, recent data shed light on deeper mechanism of SMF action on physiological properties of different cell populations, including stem cells. In the present review, we focused on SMF effects on stem cell biology and its possible application as a tool for controlled drug delivery. We also highlighted the perspectives, in which SMF can be used in future therapies in tissue engineering due to its easy application and a wide range of possible effects on cells and organisms.
机译:组织工程和基于干细胞的疗法是医学科学中发展最快的领域之一。因此,已经非常关注以细胞毒性低,效率高和控释为特征的新药物递送系统的开发。实现这些目标的可能策略之一是磁场和/或磁性纳米粒子的应用,已证明它们对细胞代谢产生广泛的影响。静磁场(SMF)在医学中已普遍用作增加伤口愈合,骨骼再生的工具,并且是磁共振技术的组成部分。然而,最近的数据揭示了SMF作用于包括干细胞在内的不同细胞群体的生理特性的更深层机理。在当前的审查中,我们专注于SMF对干细胞生物学的影响及其作为可控药物递送工具的可能应用。我们还强调了一些观点,即SMF易于应用且对细胞和有机体具有广泛的可能影响,因此可在组织工程的未来疗法中使用。

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