Department of Chemistry, RCSI, 123 St. Stephen's Green, Dublin 2, Ireland.
School of Biomolecular and Biomedical Science, Conway Institute, University College Dublin, Belfield, Dublin 4, Ireland.
Theranostics. 2020 Feb 10;10(7):3064-3082. doi: 10.7150/thno.42702. eCollection 2020.
A successful matching of a PEG group size with the EPR effect for an responsive NIR-fluorophore conjugate has been accomplished which allows two distinct tumor imaging periods, the first being the switch on during the initial tumor uptake via enhanced permeability into the ROI (as background is suppressed) and a second, later, due to enhanced retention within the tumor. : Software simulation (https://mihaitodor.github.io/particle_simulation/index.html), synthetic chemistry, with and imaging have been synergistically employed to identify an optimal PEG conjugate of a bio-responsive NIR-AZA fluorophore for tumor imaging. : A bio-responsive NIR-AZA fluorophore conjugated to a 10 kDa PEG group has shown excellent imaging performance with sustained high tumor to background ratios and peak tumor emission within 24 h. Analysis of fluorescence profiles over 7 days has provided evidence for the EPR effect playing a positive role. : Preclinical results show that exploiting the EPR effect by utilizing an optimized PEG substituent on a bio-responsive fluorophore may offer a means for intraoperative tumor margin delineation. The responsive nature of the fluorophore makes tumor imaging achievable without waiting for clearance from normal tissue.
已成功实现 PEG 基团大小与 EPR 效应的匹配,以实现响应性近红外荧光团缀合物的靶向性,这允许进行两个不同的肿瘤成像期,第一个是通过增强通透性进入 ROI 时在初始肿瘤摄取期间的开启(背景被抑制),第二个是由于在肿瘤内的增强保留。:软件模拟(https://mihaitodor.github.io/particle_simulation/index.html)、合成化学以及 和 成像已协同用于鉴定用于肿瘤成像的生物响应性近红外-AZA 荧光团的最佳 PEG 缀合物。:已证明,将生物响应性近红外-AZA 荧光团连接到 10 kDa PEG 基团上,具有出色的 成像性能,可在 24 小时内保持高肿瘤与背景比和峰值肿瘤发射。对 7 天的荧光谱分析提供了 EPR 效应发挥积极作用的证据。:临床前结果表明,通过在生物响应性荧光团上利用优化的 PEG 取代基来利用 EPR 效应,可能为术中肿瘤边界描绘提供一种手段。荧光团的响应特性使得在等待正常组织清除之前即可进行肿瘤成像。