Recent Advancement of Indocyanine Green Based Nanotheranostics for Imaging and Therapy of Coronary Atherosclerosis.

IF 4.5 2区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Nidhi Verma, Aseem Setia, Abhishesh Kumar Mehata, Nandini Randhave, Paresh Badgujar, Ankit Kumar Malik, Madaswamy S Muthu
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引用次数: 0

Abstract

Atherosclerosis is a vascular intima condition in which any part of the circulatory system is affected, including the aorta and coronary arteries. Indocyanine green (ICG), a theranostic compound approved by the FDA, has shown promise in the treatment of coronary atherosclerosis after incorporation into nanoplatforms. By integration of ICG with targeting agents such as peptides or antibodies, it is feasible to increase its concentration in damaged arteries, hence increasing atherosclerosis detection. Nanotheranostics offers cutting-edge techniques for the clinical diagnosis and therapy of atherosclerotic plaques. Combining the optical properties of ICG with those of nanocarriers enables the improved imaging of atherosclerotic plaques and targeted therapeutic interventions. Several ICG-based nanotheranostics platforms have been developed such as polymeric nanoparticles, iron oxide nanoparticles, biomimetic systems, liposomes, peptide-based systems, etc. Theranostics for atherosclerosis diagnosis use magnetic resonance imaging (MRI), computed tomography (CT), near-infrared fluorescence (NIRF) imaging, photoacoustic/ultrasound imaging, positron emission tomography (PET), and single photon emission computed tomography (SPECT) imaging techniques. In addition to imaging, there is growing interest in employing ICG to treat atherosclerosis. In this review, we provide a conceptual explanation of ICG-based nanotheranostics for the imaging and therapy of coronary atherosclerosis. Moreover, advancements in imaging modalities such as MRI, CT, PET, SPECT, and ultrasound/photoacoustic have been discussed. Furthermore, we highlight the applications of ICG for coronary atherosclerosis.

Abstract Image

基于吲哚菁绿的纳米otheranostics在冠状动脉粥样硬化成像和治疗方面的最新进展。
动脉粥样硬化是一种血管内膜病变,循环系统的任何部位都会受到影响,包括主动脉和冠状动脉。吲哚菁绿(ICG)是美国食品和药物管理局批准的一种治疗性化合物,在加入纳米平台后有望治疗冠状动脉粥样硬化。通过将 ICG 与肽或抗体等靶向药剂结合,可以增加其在受损动脉中的浓度,从而提高动脉粥样硬化的检测率。纳米otheranostics 为动脉粥样硬化斑块的临床诊断和治疗提供了尖端技术。将 ICG 的光学特性与纳米载体的光学特性相结合,可以改善动脉粥样硬化斑块的成像,并进行有针对性的治疗干预。目前已开发出多种基于 ICG 的纳米治疗平台,如聚合物纳米颗粒、氧化铁纳米颗粒、仿生系统、脂质体、基于肽的系统等。用于动脉粥样硬化诊断的超导疗法使用磁共振成像(MRI)、计算机断层扫描(CT)、近红外荧光(NIRF)成像、光声/超声成像、正电子发射计算机断层扫描(PET)和单光子发射计算机断层扫描(SPECT)成像技术。除了成像,人们对利用 ICG 治疗动脉粥样硬化的兴趣也与日俱增。在这篇综述中,我们从概念上解释了基于 ICG 的纳米otheranostics 在冠状动脉粥样硬化成像和治疗中的应用。此外,还讨论了 MRI、CT、PET、SPECT 和超声/光声等成像模式的进展。此外,我们还重点介绍了 ICG 在冠状动脉粥样硬化方面的应用。
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来源期刊
Molecular Pharmaceutics
Molecular Pharmaceutics 医学-药学
CiteScore
8.00
自引率
6.10%
发文量
391
审稿时长
2 months
期刊介绍: Molecular Pharmaceutics publishes the results of original research that contributes significantly to the molecular mechanistic understanding of drug delivery and drug delivery systems. The journal encourages contributions describing research at the interface of drug discovery and drug development. Scientific areas within the scope of the journal include physical and pharmaceutical chemistry, biochemistry and biophysics, molecular and cellular biology, and polymer and materials science as they relate to drug and drug delivery system efficacy. Mechanistic Drug Delivery and Drug Targeting research on modulating activity and efficacy of a drug or drug product is within the scope of Molecular Pharmaceutics. Theoretical and experimental peer-reviewed research articles, communications, reviews, and perspectives are welcomed.
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