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Covalent IR820-PEG diamine conjugates: characterization and in vivo biodistribution

机译:共价IR820-PEG二胺缀合物:表征和体内生物分布

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Introduction: IR820 is a near-infrared probe with potential applications in optical imaging and hyperthermia. Its chlorosubstituted cyclohexene makes it amenable to forming conjugates as multifunctional probes. We prepared a novel covalent IR820/PEG-diamine (IRPDcov) nanoconjugate. Methods: IRPDcov was prepared using IR820 and 6kDa PEG-diamine, characterized by SEM, H-NMR, spectrophotometry, and spectrofluorometry; and studied in vitro and in vivo. Mice (n=36) were used to explore the biodistribution of IRPDcov compared to IR820 and indocyanine green (ICG) after i.v. injection of a 0.24 mg/kg dose of dye, with plasma samples collected at 15-30-60 minutes and 24 hours. The plasma concentrations were fit to a biexponential curve following a two compartment model. Organ samples were collected after 24 hours. Results and Discussion: IRPDcov retained the ability to fluoresce for in vivo optical imaging and also to generate heat, and was significantly more stable than IR820 in aqueous solution over a period of 72 hours. IRPDcov and IR820 demonstrated significantly longer (p<0.05) plasma half-lives, elimination half-lives, and area-under-the-curve values compared to ICG. This could pose an advantage in therapeutic probe applications such as hyperthermia or drug delivery. Both IR820 and IRPDcov showed a very strong signal in the liver and lower-intensity signal in the kidneys 24 hours after injection, whereas the predominant signal for ICG was weak and located in the intestines, demonstrating a much more rapid GI elimination. IR820 showed signal in the lungs, which was not present in IRPDcov subjects indicating that IRPDcov may have been able to escape detection by alveolar macrophages.
机译:简介:IR820是近红外探头,具有光学成像和热疗的潜在应用。其氯过二磺酰己烯使其使其成为形成多官能探针的缀合物。我们制备了一种新的共价IR820 / PEG-二胺(IRPDCOV)纳米缀合物。方法:使用IR820和6KDA PEG-二胺制备IRPDCOV,其特征在于SEM,H-NMR,分光光度法和光谱荧光测定法;并在体外和体内研究。与I.V之后的IR820和吲哚菁绿(ICG)相比,小鼠(n = 36)用于探索IRPDCOV的生物分布。注射0.24mg / kg剂量的染料,血浆样品在15-30-60分钟和24小时内收集。等离子体浓度适合于两个隔室模型之后的Biexponential曲线。 24小时后收集器官样品。结果与讨论:IRPDCOV保留体内光学成像的能力,也能够产生热量,并且在72小时的时间内比水溶液中的IR820更稳定。与ICG相比,IRPDCOV和IR820显着更长(P <0.05)等离子体半衰期,消除半衰期和曲线下的曲线值。这可能在治疗性探针诸如热疗或药物递送之类的探测器中造成优势。 IR820和IRPDCOV都在注射后24小时内显示出肝脏和较低强度信号中的非常强的信号,而ICG的主要信号弱,位于肠中,展示了更快速的GI消除。 IR820显示肺中的信号,其在IRPDCOV受试者中不存在,表明IRPDCOV可能能够通过肺泡巨噬细胞逃逸检测。

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