Ruiz Jessica L, Hutcheson Joshua D, Aikawa Elena
Center for Interdisciplinary Cardiovascular Sciences and Center for Excellence in Vascular Biology, Cardiovascular Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
Center for Interdisciplinary Cardiovascular Sciences and Center for Excellence in Vascular Biology, Cardiovascular Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA.
Cardiovasc Pathol. 2015 Jul-Aug;24(4):207-12. doi: 10.1016/j.carpath.2015.03.002. Epub 2015 Mar 10.
Cardiovascular calcification is a commonly observed but incompletely understood mechanism of increased atherosclerotic plaque instability and accelerated aortic valve stenosis. Traditional histological staining and imaging techniques are nonspecific for the type of mineral present in calcified tissues, information that is critical for proper validation of in vitro and in vivo models. This review highlights current gaps in our understanding of the biophysical implications and the cellular mechanisms of valvular and vascular calcification and how they may differ between the two tissue types. We also address the hindrances of current cell culture systems, discussing novel platforms and important considerations for future studies of cardiovascular calcification.
心血管钙化是一种常见但尚未完全理解的机制,它会增加动脉粥样硬化斑块的不稳定性并加速主动脉瓣狭窄。传统的组织学染色和成像技术对于钙化组织中存在的矿物质类型缺乏特异性,而这些信息对于体外和体内模型的正确验证至关重要。本综述强调了我们目前在理解瓣膜和血管钙化的生物物理影响和细胞机制方面的差距,以及这两种组织类型之间可能存在的差异。我们还探讨了当前细胞培养系统的障碍,讨论了心血管钙化未来研究的新平台和重要考虑因素。