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Axial PEGylation of Tin Octabutoxy Naphthalocyanine Extends Blood Circulation for Photoacoustic Vascular Imaging

机译:锡八丁氧基萘酞菁的轴向聚乙二醇化扩展了血液循环用于光声血管成像。

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摘要

Attachment of polyethylene glycol (PEG) can prolong blood circulation of biological molecules; a useful trait for a vascular imaging agent. Here, we present a route for modifying octabutoxy naphthalocyanine (ONc) with PEG, via axial conjugation following ONc chelation with Sn(IV) chloride (Sn-ONc). Tin chelation caused ONc absorbance to shift from 860 nm to 930 nm. Hydroxy terminated PEG was treated with sodium and then was axially attached to the tin, generating PEG-Sn-ONc. Unlike ONc or Sn-ONc, PEG-Sn-ONc was soluble in methanol. ONc and PEG-Sn-ONc were dissolved in polysorbate solutions and administered to mice intravenously. PEG-Sn-ONc demonstrated substantially longer blood circulation time than ONc, with a 4 times longer half-life and a nearly 10 times greater area under the curve. PEG-Sn-ONc gave rise to photoacoustic contrast and could be used for non-invasive brain vessel imaging even 24 hours following injection. This work demonstrates that non-metallic naphthalocyanines can be chelated with tin, and be axially modified with PEG for enhanced circulation times for long-term vascular imaging with photoacoustic tomography.
机译:聚乙二醇(PEG)的附着可以延长生物分子的血液循环;血管成像剂的有用特性。在这里,我们提出了通过与氯化锡(IV)(Sn-ONc)螯合ONc后轴向共轭用PEG改性八丁氧基萘酞菁(ONc)的途径。锡螯合导致ONc吸光度从860 nm变为930 nm。用钠处理羟基封端的PEG,然后轴向连接到锡上,生成PEG-Sn-ONc。与ONc或Sn-ONc不同,PEG-Sn-ONc可溶于甲醇。将ONc和PEG-Sn-ONc溶解在聚山梨酯溶液中并静脉内给予小鼠。 PEG-Sn-ONc的血液循环时间比ONc长得多,半衰期长4倍,曲线下面积大近10倍。 PEG-Sn-ONc引起光声对比,甚至可以在注射后24小时用于非侵入性脑血管成像。这项工作表明,非金属萘菁可以与锡螯合,并可以用PEG轴向修饰,以延长循环时间,从而利用光声层析成像技术进行长期血管成像。

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