右旋糖酐
血管通透性
荧光素
活体显微镜检查
间隙
外渗
磁导率
化学
血管
生物物理学
双光子激发显微术
荧光显微镜
病理
组胺
内皮
微循环
生物
荧光
医学
生物化学
药理学
膜
内科学
内分泌学
物理
量子力学
作者
Gyohei Egawa,Satoshi Nakamizo,Yohei Natsuaki,Hiromi Doi,Yoshiki Miyachi,Kenji Kabashima
摘要
Blood vessel endothelium forms a semi-permeable barrier and its permeability controls the traffics of plasma contents. Here we report an intravital evaluation system for vascular permeability in mice using two-photon microscopy. We used various sizes of fluorescein-conjugated dextran as a tracer and its efflux was quantified by measuring the changes of fluorescent intensity both on the blood vessel area and the interstitial space. Using this system, we demonstrated that skin blood vessels limited the passage of dextran larger than 70 kDa under homeostatic conditions. We evaluated the kinetics of vascular permeability in histamine- or IgE-induced type I allergic models and a hapten-induced type IV allergic model. In such inflammatory conditions, the hyperpermeability was selectively induced in the postcapillary venules and dextran as large as 2000-kDa leaked from the bloods. Taken together, our study provides a convenient method to characterize the skin blood vessels as a traffic barrier in physiological conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI