NANOPARTICLES FOR DUAL IMAGING: PET AND FLUORESCENCE IMAGING

E. T. Sarcan
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Abstract

Objective: Molecular imaging methods are gaining popularity in clinical and preclinical fields. There are many different imaging methods such as computed tomography (CT), magnetic resonance imaging (MRI), positron emission tomography (PET), single photon emission computed tomography (SPECT) and Near-infrared fluorescence (NIRF), and each has different advantages and disadvantages. Multimodal imaging methods, a combination of two or more molecular imaging modalities, have been developed to overcome the disadvantages of these molecular imaging methods. However, these imaging methods are conjugated with different vectors to improve the multimodal imaging methods used. In this field, drug delivery systems, peptides, proteins, antibodies and aptamers have been widely used for conjugation of multimodal imaging modalities to overcome some of the disadvantages that come from imaging modalities. In this review, PET and NIRF combination imaging modalities were explained and more specifically PET and NIRF nanoparticle dual imaging modalities with their pros and cons were investigated. Result and Discussion: Dual imaging modalities overcome to limitations of single imaging modalities and provide a better understanding of biological, anatomical, and physiological processes. Multimodal imaging modalities offer higher sensitivity, resolution, and specificity with lower cost and toxicity although have several disadvantages.
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用于双重成像的纳米粒子:宠物和荧光成像
目的:分子成像方法在临床和临床前领域越来越受欢迎。有许多不同的成像方法,如计算机断层扫描(CT)、磁共振成像(MRI)、正电子发射断层扫描(PET)、单光子发射计算机断层扫描(SPECT)和近红外荧光(NIRF),每种方法都有不同的优缺点。为了克服这些分子成像方法的缺点,人们开发了多模态成像方法,即两种或两种以上分子成像模式的组合。不过,这些成像方法都与不同的载体共轭,以改进所使用的多模态成像方法。在这一领域,药物输送系统、肽、蛋白质、抗体和适配体已被广泛用于多模态成像方法的共轭,以克服成像方法的一些缺点。本综述对正电子发射计算机断层显像和近红外荧光联合成像模式进行了解释,并更具体地研究了正电子发射计算机断层显像和近红外荧光纳米粒子双重成像模式的利弊:双重成像模式克服了单一成像模式的局限性,能更好地了解生物、解剖和生理过程。多模态成像模式具有更高的灵敏度、分辨率和特异性,成本和毒性较低,但也有一些缺点。
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