Department of Biomedical Engineering, Tulane University, New Orleans, LA, USA.
Photosound Technologies Inc., Houston, TX, USA.
Nat Commun. 2023 Oct 9;14(1):6286. doi: 10.1038/s41467-023-42041-8.
Altered vasoactivity is a major characteristic of cardiovascular and oncological diseases, and many therapies are therefore targeted to the vasculature. Therapeutics which are selective for the diseased vasculature are ideal, but whole-body selectivity of a therapeutic is challenging to assess in practice. Vessel myography is used to determine the functional mechanisms and evaluate pharmacological responses of vascularly-targeted therapeutics. However, myography can only be performed on ex vivo sections of individual arteries. We have developed methods for implementation of spherical-view photoacoustic tomography for non-invasive and in vivo myography. Using photoacoustic tomography, we demonstrate the measurement of acute vascular reactivity in the systemic vasculature and the placenta of female pregnant mice in response to two vasodilators. Photoacoustic tomography simultaneously captures the significant acute vasodilation of major arteries and detects selective vasoactivity of the maternal-fetal vasculature. Photoacoustic tomography has the potential to provide invaluable preclinical information on vascular response that cannot be obtained by other established methods.
血管活性改变是心血管和肿瘤疾病的主要特征,因此许多治疗方法都针对血管。针对病变血管的治疗方法是理想的,但治疗方法的全身选择性在实践中很难评估。血管肌描记术用于确定血管靶向治疗药物的功能机制和评估药理反应。然而,肌描记术只能在个体动脉的离体切片上进行。我们已经开发了用于实施非侵入性和体内血管肌描记术的球形视野光声断层扫描的方法。我们使用光声断层扫描技术,演示了对雌性怀孕小鼠的全身血管系统和胎盘对两种血管扩张剂的急性血管反应性的测量。光声断层扫描技术同时捕捉到主要动脉的显著急性血管舒张,并检测到母体-胎儿血管的选择性血管活性。光声断层扫描技术有可能提供其他既定方法无法获得的关于血管反应的宝贵临床前信息。