Suppr超能文献

短暂暴露于定向特异性脉冲电磁场会刺激细胞外囊泡释放,且这种作用会被链霉素拮抗:一种潜在的再生医学和食品工业模式。

Brief exposure to directionally-specific pulsed electromagnetic fields stimulates extracellular vesicle release and is antagonized by streptomycin: A potential regenerative medicine and food industry paradigm.

作者信息

Wong Craig Jun Kit, Tai Yee Kit, Yap Jasmine Lye Yee, Fong Charlene Hui Hua, Loo Larry Sai Weng, Kukumberg Marek, Fröhlich Jürg, Zhang Sitong, Li Jing Ze, Wang Jiong-Wei, Rufaihah Abdul Jalil, Franco-Obregón Alfredo

机构信息

Department of Surgery, Yong Loo Lin School of Medicine, National University of Singapore, 119228, Singapore; Institute of Health Technology and Innovation (iHealthtech), National University of Singapore, 117599, Singapore; Biolonic Currents Electromagnetic Pulsing Systems Laboratory (BICEPS), National University of Singapore, 117599, Singapore.

Department of Surgery, Yong Loo Lin School of Medicine, National University of Singapore, 119228, Singapore; Institute of Health Technology and Innovation (iHealthtech), National University of Singapore, 117599, Singapore; Biolonic Currents Electromagnetic Pulsing Systems Laboratory (BICEPS), National University of Singapore, 117599, Singapore.

出版信息

Biomaterials. 2022 Aug;287:121658. doi: 10.1016/j.biomaterials.2022.121658. Epub 2022 Jul 6.

Abstract

Pulsing electromagnetic fields (PEMFs) have been shown to promote in vitro and in vivo myogeneses via mitohormetic survival adaptations of which secretome activation is a key component. A single 10-min exposure of donor myoblast cultures to 1.5 mT amplitude PEMFs produced a conditioned media (pCM) capable of enhancing the myogenesis of recipient cultures to a similar degree as direct magnetic exposure. Downwardly-directed magnetic fields produced greater secretome responses than upwardly-directed fields in adherent and fluid-suspended myoblasts. The suspension paradigm allowed for the rapid concentrating of secreted factors, particularly of extracellular vesicles. The brief conditioning of basal media from magnetically-stimulated myoblasts was capable of conferring myoblast survival to a greater degree than basal media supplemented with fetal bovine serum (5%). Downward-directed magnetic fields, applied directly to cells or in the form of pCM, upregulated the protein expression of TRPC channels, markers for cell cycle progression and myogenesis. Direct magnetic exposure produced mild oxidative stress, whereas pCM provision did not, providing a survival advantage on recipient cells. Streptomycin, a TRP channel antagonist, precluded the production of a myogenic pCM. We present a methodology employing a brief and non-invasive PEMF-exposure paradigm to effectively stimulate secretome production and release for commercial or clinical exploitation.

摘要

脉冲电磁场(PEMFs)已被证明可通过线粒体应激存活适应促进体外和体内的肌生成,其中分泌组激活是关键组成部分。将供体成肌细胞培养物单次暴露于1.5 mT振幅的脉冲电磁场10分钟,可产生一种条件培养基(pCM),其增强受体培养物肌生成的程度与直接磁暴露相似。在贴壁和悬浮的成肌细胞中,向下的磁场比向上的磁场产生更大的分泌组反应。悬浮模式允许快速浓缩分泌因子,特别是细胞外囊泡。经磁刺激的成肌细胞对基础培养基的短暂预处理,比添加5%胎牛血清的基础培养基更能赋予成肌细胞存活能力。直接施加于细胞或以pCM形式施加的向下磁场,上调了TRPC通道的蛋白表达,TRPC通道是细胞周期进程和肌生成的标志物。直接磁暴露产生轻度氧化应激,而提供pCM则不会,这为受体细胞提供了生存优势。链霉素是一种TRP通道拮抗剂,可阻止产生促肌生成的pCM。我们提出了一种方法,采用短暂且非侵入性的脉冲电磁场暴露模式,有效刺激分泌组的产生和释放,以供商业或临床应用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验