Ultrasound-triggered three dimensional hyaluronic acid hydrogel promotes in vitro and in vivo reprogramming into induced pluripotent stem cells
  • Kim, Deogil
  • Lee, Min-Ju
  • Arai, Yoshie
  • Ahn, Jinsung
  • Lee, Gun Woo
  • ... Lee, Soo-Hong
Citations

WEB OF SCIENCE

6
Citations

SCOPUS

7

초록

Cellular reprogramming technologies have been developed with different physicochemical factors to improve the reprogramming efficiencies of induced pluripotent stem cells (iPSCs). Ultrasound is a clinically applied noncontact biophysical factor known for regulating various cellular behaviors but remains uninvestigated for cellular reprogramming. Here, we present a new reprogramming strategy using low-intensity ultrasound (LIUS) to improve cellular reprogramming of iPSCs in vitro and in vivo. Under 3D microenvironment conditions, increased LIUS stimulation shows enhanced cellular reprogramming of the iPSCs. The cellular reprogramming process facilitated by LIUS is accompanied by increased mesenchymal to epithelial transition and histone modification. LIUS stimulation transiently modulates the cytoskeletal rearrangement, along with increased membrane fluidity and mobility to increase HA/CD44 interactions. Furthermore, LIUS stimulation with HA hydrogel can be utilized in application of both human cells and in vivo environment, for enhanced reprogrammed cells into iPSCs. Thus, LIUS stimulation with a combinatorial 3D microenvironment system can improve cellular reprogramming in vitro and in vivo environments, which can be applied in various biomedical fields. © 2024 The Authors

키워드

Biophysical stimulationCellular reprogrammingCytoskeletal rearrangementInduced pluripotent stem cellLow-intensity ultrasoundINTENSITY PULSED ULTRASOUNDBIOPHYSICAL REGULATIONCULTURESTIMULATIONFIBROBLASTSMECHANISMSNUCLEARBIOMATERIALSMOLECULESSTIFFNESS
제목
Ultrasound-triggered three dimensional hyaluronic acid hydrogel promotes in vitro and in vivo reprogramming into induced pluripotent stem cells
저자
Kim, DeogilLee, Min-JuArai, YoshieAhn, JinsungLee, Gun WooLee, Soo-Hong
DOI
10.1016/j.bioactmat.2024.05.011
발행일
2024-08
유형
Article
저널명
Bioactive Materials
38
페이지
331 ~ 345