胚胎
牵引(地质)
生物
机械敏感通道
细胞生物学
肌球蛋白
细胞外基质
胚胎发生
解剖
遗传学
离子通道
古生物学
受体
作者
Amélie Luise Godeau,Anna Seriola,Oren Tchaicheeyan,Marc Casals,Denitza Denkova,Ester Aroca,Ot Massafret,Albert Parra,Maria Demestre,Anna Ferrer‐Vaquer,Shahar Goren,Anna Veiga,Miquel Solé,Montserrat Boada,Jordi Comelles,Elena Martínez,Julien Colombelli,Ayelet Lesman,Samuel Ojosnegros
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-08-15
卷期号:11 (33): eadr5199-eadr5199
被引量:8
标识
DOI:10.1126/sciadv.adr5199
摘要
The invasion of human embryos in the uterus overcoming the maternal tissue barrier is a crucial step in embryo implantation and subsequent development. Although tissue invasion is fundamentally a mechanical process, most studies have focused on the biochemical and genetic aspects of implantation. Here, we fill the gap by using a deformable ex vivo platform to visualize traction during human embryo implantation. We demonstrate that embryos apply forces remodeling the matrix with species-specific displacement amplitudes and distinct radial patterns: principal displacement directions for mouse embryos, expanding on the surface while human embryos insert in the matrix generating multiple traction foci. Implantation-impaired human embryos showed reduced displacement, as well as mouse embryos with inhibited integrin-mediated force transmission. External mechanical cues induced a mechanosensitive response, human embryos recruited myosin, and directed cell protrusions, while mouse embryos oriented their implantation or body axis toward the external cue. These findings underscore the role of mechanical forces in driving species-specific invasion patterns during embryo implantation.
科研通智能强力驱动
Strongly Powered by AbleSci AI