Literature DB >> 35841726

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.

Craig Jun Kit Wong1, Yee Kit Tai2, Jasmine Lye Yee Yap1, Charlene Hui Hua Fong1, Larry Sai Weng Loo3, Marek Kukumberg4, Jürg Fröhlich5, Sitong Zhang6, Jing Ze Li7, Jiong-Wei Wang8, Abdul Jalil Rufaihah9, Alfredo Franco-Obregón10.   

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.
Copyright © 2022 The Author(s). Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  Cell-based meat; Conditioned media; Extracellular vesicles; Myokines; Streptomycin; TRPC1

Year:  2022        PMID: 35841726     DOI: 10.1016/j.biomaterials.2022.121658

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   15.304


  1 in total

1.  Magnetic field therapy enhances muscle mitochondrial bioenergetics and attenuates systemic ceramide levels following ACL reconstruction: Southeast Asian randomized-controlled pilot trial.

Authors:  Mary C Stephenson; Lingaraj Krishna; Rina Malathi Pannir Selvan; Yee Kit Tai; Craig Jun Kit Wong; Jocelyn Naixin Yin; Shi-Jie Toh; Federico Torta; Alexander Triebl; Jürg Fröhlich; Christian Beyer; Jing Ze Li; Sara S Tan; Chun-Kit Wong; Duraimurugan Chinnasamy; Leroy Sivappiragasam Pakkiri; Chester Lee Drum; Markus R Wenk; John J Totman; Alfredo Franco-Obregón
Journal:  J Orthop Translat       Date:  2022-10-13       Impact factor: 4.889

  1 in total

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