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Human hair follicle biomagnetism: potential biochemical correlates

机译:人的毛囊生物磁性:潜在的生化相关

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Background: The S100 protein family is linked to energy transfer in cells of vertebrates at a molecular level. This process involves the electron transfer chain and therefore, as inferred from Faraday’s Law, electron movement will induce electromagnetic fields (EMFs). Biological entities emit photoelectrons that can be tracked and visualized by small paramagnetic nano-sized iron particles. Methods: We have developed an optical microscopic approach for imaging electromagnetic activity of hair follicles utilizing nano-sized iron particles (mean diameter 2000nm) in Prussian Blue Stain solution (PBS Fe 2000). Results: We found that the human hair follicle emits electromagnetic fields (EMFs) based on metabolic activity within the follicle, which is associated with the activity of selective S-100 proteins. Conclusions: Our results link the molecular biochemical energy associated with the S100 family of proteins and biomagnetism of human hair follicles.
机译:背景:S100蛋白家族在分子水平上与脊椎动物细胞中的能量转移有关。该过程涉及电子转移链,因此,根据法拉第定律推断,电子运动将感应电磁场(EMF)。生物实体发出的光电子可以被小的顺磁性纳米级铁粒子跟踪和可视化。方法:我们开发了一种光学显微镜方法,利用普鲁士蓝染色液(PBS Fe 2000)中的纳米铁颗粒(平均直径2000nm)对毛囊的电磁活动进行成像。结果:我们发现人的毛囊基于毛囊内的代谢活性发射电磁场(EMF),这与选择性S-100蛋白的活性有关。结论:我们的结果将分子生化能量与S100家族蛋白质和人类毛囊的生物磁性联系起来。

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