Body-mediated energy loss conversion for personalized cell vitalization
Unlike chemotherapy, physical stimulation is body-friendly method which does not introduce foreign substances into the human body; however, since the use of the separate power source is dominant, there are forced restrictions. Herein, we report an innovative electrical stimulation method using the b...
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Veröffentlicht in: | Nano energy 2021-09, Vol.87, p.106209, Article 106209 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Unlike chemotherapy, physical stimulation is body-friendly method which does not introduce foreign substances into the human body; however, since the use of the separate power source is dominant, there are forced restrictions. Herein, we report an innovative electrical stimulation method using the body-mediated energy loss conversion (BELC) system. The BELC system is a structure-concept-device that concentrates a local electric field in the desired area by utilizing energy loss from body movement as a power source; and the human body as an energy transfer medium. Concentrated electrical energy in the BELC system induces a low-frequency electric field that vitalizes the cell functions locally. Results from 3D simulation, designed cloth (patch, sleeve, athleisure) containing the BELC system and ex-vivo experiments demonstrate the electric field concentration through the human body without additional electrical components. Vitalization of cells and skins by the BELC system was inspected via in-vitro and in-vivo model; and insignificant side-effects of energy transfer pass-through mouse body were investigated.
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•New electrical stimulation method which can stimulate cells internally and personally via body-mediated was proposed.•This study clarified the mechanism of body-mediated energy loss conversion (BELC).•Design of cloth-wear with BELC system was proposed to avoid user discomfort.•BELC enhanced wound regeneration without damage to organs on its the pathway or immune response. |
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ISSN: | 2211-2855 |
DOI: | 10.1016/j.nanoen.2021.106209 |