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Multimodal Characterization of Cardiac Organoids Using Integrations of Pressure-Sensitive Transistor Arrays with Three-Dimensional Liquid Metal Electrodes.
Kim, Moohyun; Hwang, Jae Chul; Min, Sungjin; Park, Young-Geun; Kim, Suran; Kim, Enji; Seo, Hunkyu; Chung, Won Gi; Lee, Jakyoung; Cho, Seung-Woo; Park, Jang-Ung.
Afiliação
  • Kim M; Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.
  • Hwang JC; Center for Nanomedicine, Institute for Basic Science (IBS), Yonsei University, Seoul 03722, Republic of Korea.
  • Min S; Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.
  • Park YG; Center for Nanomedicine, Institute for Basic Science (IBS), Yonsei University, Seoul 03722, Republic of Korea.
  • Kim S; Department of Biotechnology, Yonsei University, Seoul 03722, Republic of Korea.
  • Kim E; Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.
  • Seo H; Center for Nanomedicine, Institute for Basic Science (IBS), Yonsei University, Seoul 03722, Republic of Korea.
  • Chung WG; Department of Biotechnology, Yonsei University, Seoul 03722, Republic of Korea.
  • Lee J; Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.
  • Cho SW; Center for Nanomedicine, Institute for Basic Science (IBS), Yonsei University, Seoul 03722, Republic of Korea.
  • Park JU; Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Nano Lett ; 22(19): 7892-7901, 2022 10 12.
Article em En | MEDLINE | ID: mdl-36135332
ABSTRACT
Herein, we present an unconventional method for multimodal characterization of three-dimensional cardiac organoids. This method can monitor and control the mechanophysiological parameters of organoids within a single device. In this method, local pressure distributions of human-induced pluripotent stem-cell-derived cardiac organoids are visualized spatiotemporally by an active-matrix array of pressure-sensitive transistors. This array is integrated with three-dimensional electrodes formed by the high-resolution printing of liquid metal. These liquid-metal electrodes are inserted inside an organoid to form the intraorganoid interface for simultaneous electrophysiological recording and stimulation. The low mechanical modulus and low impedance of the liquid-metal electrodes are compatible with organoids' soft biological tissue, which enables stable electric pacing at low thresholds. In contrast to conventional electrophysiological methods, this measurement of a cardiac organoid's beating pressures enabled simultaneous treatment of electrical therapeutics using a single device without any interference between the pressure signals and electrical pulses from pacing electrodes, even in wet organoid conditions.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Organoides / Células-Tronco Pluripotentes Induzidas Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Organoides / Células-Tronco Pluripotentes Induzidas Idioma: En Ano de publicação: 2022 Tipo de documento: Article