Bidirectional Mechanical Stimulation Enables Biomechanical Coupling and Functional Maturation in Arterial Microphysiological Systems

  • Kim, Geonwoo
  • Jang, Wonjun
  • Lee, Geonho
  • Ha, Giheon
  • Batjargal, Ulziituya
  • ... Cho, Hyun-Jong
  • 외 10명
Citations

SCOPUS

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초록

Engineering functional arterial tissues in vitro requires dynamic cues that recapitulate native mechanical environments. A bidirectional stimulation approach, termed blood and tissue side stretch (BTS), is presented, applying cyclic circumferential stretch to drive maturation of arterial microphysiological systems (aMPSs). These stimuli replicate key biomechanical forces present in vivo—cyclic circumferential stretch—enabling a more physiologically relevant tissue architecture. Human umbilical vein endothelial cells (HUVECs) and human smooth muscle cells (SMCs) are co-cultured within a bilayered vessel structure composed of an elastomeric hydrogel that mimics native vessel geometry and compliance. BTS stimulation enhances alignment of collagen fibers, promotes expression of contractile markers in SMCs, and improves barrier function and junctional protein localization in HUVECs. The matured aMPS exhibits vasomotor responsiveness and biomechanical integrity, validating its physiological relevance. Comparative analysis shows that BTS outperforms static and one-directional controls in promoting vascular tissue maturation. This platform provides a scalable and biomimetic solution for vascular tissue engineering and disease modeling. By integrating orthogonal mechanical cues that mimic the in vivo arterial environment, this approach represents a significant step forward in the development of predictive, functional, and high-fidelity vascular models for drug testing and regenerative medicine applications. © 2026 Wiley-VCH GmbH.

키워드

arterial microphysiological systembiomechanical stimulationelastomeric hydrogel scaffoldsmooth muscle cell maturationvascular tissue engineering
제목
Bidirectional Mechanical Stimulation Enables Biomechanical Coupling and Functional Maturation in Arterial Microphysiological Systems
저자
Kim, GeonwooJang, WonjunLee, GeonhoHa, GiheonBatjargal, UlziituyaPark, SoojinKim, Min-SeokKang, RaehuiLee, TaehoonSong, JihyeonLee, YejiNasiri, RohollahCho, Hyun-JongZhang, Yu ShrikeKim, Han-JunLee, Junmin
DOI
10.1002/adhm.202505915
발행일
2026-03-25
유형
Article
저널명
Advanced Healthcare Materials
15
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