Ankri Rinat, Leshem-Lev Dorit, Duadi Hamootal, Harari Emanuel, Motiei Menachem, Hochhauser Edith, Lev Eli I, Fixler Dror
Department of Physics, Ariel University, Ariel 4076414, Israel.
Cardiac Research Labs, The Felsenstein Medical Research Center, Petah-Tikva 4922297, Israel.
Diagnostics (Basel). 2022 Feb 23;12(3):577. doi: 10.3390/diagnostics12030577.
Cardiovascular disease (CVD) is a major cause of death and disability worldwide. A real need exists in the development of new, improved therapeutic methods for treating CVD, while major advances in nanotechnology have opened new avenues in this field. In this paper, we report the use of gold nanoparticles (GNPs) coated with high-density lipoprotein (HDL) (GNP-HDL) for the simultaneous detection and therapy of unstable plaques. Based on the well-known HDL cardiovascular protection, by promoting the reverse cholesterol transport (RCT), injured rat carotids, as a model for unstable plaques, were injected with the GNP-HDL. Noninvasive detection of the plaques 24 h post the GNP injection was enabled using the diffusion reflection (DR) method, indicating that the GNP-HDL particles had accumulated in the injured site. Pathology and noninvasive CT measurements proved the recovery of the injured artery treated with the GNP-HDL. The DR of the GNP-HDL presented a simple and highly sensitive method at a low cost, resulting in simultaneous specific unstable plaque diagnosis and recovery.
心血管疾病(CVD)是全球范围内死亡和残疾的主要原因。开发新的、改进的治疗心血管疾病的方法存在切实需求,而纳米技术的重大进展为该领域开辟了新途径。在本文中,我们报告了使用高密度脂蛋白(HDL)包被的金纳米颗粒(GNP-HDL)对不稳定斑块进行同步检测和治疗。基于众所周知的HDL对心血管的保护作用,通过促进逆向胆固醇转运(RCT),将GNP-HDL注射到作为不稳定斑块模型的受伤大鼠颈动脉中。在注射GNP后24小时,使用漫反射(DR)方法对斑块进行无创检测,表明GNP-HDL颗粒已在受伤部位积聚。病理学和无创CT测量证明了用GNP-HDL治疗的受伤动脉得以恢复。GNP-HDL的DR提供了一种低成本、简单且高度灵敏的方法,可实现不稳定斑块的特异性同步诊断和恢复。