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RGD conjugated cell uptake off to on responsive NIR-AZA fluorophores: applications toward intraoperative fluorescence guided surgery

机译:RGD偶联的细胞吸收至响应性NIR-AZA荧光团:在术中荧光引导手术中的应用

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The use of NIR-fluorescence imaging to demarcate tumour boundaries for real-time guidance of their surgical resection has a huge untapped potential. However, fluorescence imaging using molecular fluorophores, even with a targeting biomolecule attached, has a major shortcoming of signal interference from non-specific background fluorescence outside the region of interest. This poor selectivity necessitates prolonged time delays to allow clearance of background fluorophore and retention within the tumour prior to image acquisition. In this report, an innovative approach to overcome this issue is described in which cancer targeted off to on bio-responsive NIR-fluorophores are utilised to switch-on first within the tumour. Bio-responsive cRGD, iRGD and PEG conjugates have been synthesised using activated ester/amine or maleimide/thiol couplings to link targeting and fluorophore components. Their off to on emission responses were measured and compared with an always-on non-responsive control with each bio-responsive derivative showing large fluorescence enhancement values. Live cell imaging experiments using metastatic breast cancer cells confirmed in vitro bio-responsive capabilities. An in vivo assessment of MDA-MB 231 tumour imaging performance for bio-responsive and always-on fluorophores was conducted with monitoring of fluorescence distributions over 96 h. As anticipated, the always-on fluorophore gave an immediate, non-specific and very strong emission throughout whereas the bio-responsive derivatives initially displayed very low fluorescence. All three bio-responsive derivatives switched on within tumours at time points consistent with their conjugated targeting groups. cRGD and iRGD conjugates both had effective tumour turn-on in the first hour, though the cRGD derivative had superior specificity for tumour over the iRGD conjugate. The pegylated derivative had similar switch-on characteristics but over a much longer period, taking 9 h before a significant emission was observable from the tumour. Evidence for in vivo active tumour targeting was obtained for the best performing cRGD bio-responsive NIR-AZA derivative from competitive binding studies. Overall, this cRGD-conjugate has the potential to overcome the inherent drawback of targeted always-on fluorophores requiring prolonged clearance times and shows excellent potential for clinical translation for intraoperative use in fluorescence guided tumour resections.
机译:使用NIR荧光成像来划定肿瘤边界以实时指导其手术切除具有巨大的未开发潜力。然而,即使使用附着的靶向生物分子,使用分子荧光团的荧光成像也具有来自感兴趣区域之外的非特异性背景荧光的信号干扰的主要缺点。这种差的选择性需要延长时间,以允许背景荧光团的清除和在图像采集之前保留在肿瘤中。在本报告中,描述了解决此问题的创新方法,其中利用靶向生物反应性NIR荧光团的癌症首先在肿瘤内启动。生物活性的cRGD,iRGD和PEG共轭物已使用活化的酯/胺或马来酰亚胺/硫醇偶合来连接靶向和荧光团成分而合成。测量了它们自始至终的发射响应,并与始终在线的非响应性对照进行了比较,每种生物响应性衍生物均显示出较大的荧光增强值。使用转移性乳腺癌细胞的活细胞成像实验证实了体外生物反应能力。通过监测96小时内的荧光分布,对MDA-MB 231肿瘤成像性能进行了体内评估,以评估其具有生物响应性和始终开启的荧光团。如预期的那样,始终存在的荧光团始终发出立即,非特异性和非常强的发射光,而生物响应性衍生物最初显示出非常低的荧光。所有三种生物反应性衍生物均在与其缀合的靶向基团一致的时间点在肿瘤内开启。尽管cRGD衍生物对肿瘤的特异性优于iRGD缀合物,但cRGD和iRGD缀合物在第一小时内均具有有效的肿瘤开启能力。聚乙二醇化衍生物具有类似的接通特性,但是需要更长的时间,需要9小时才能从肿瘤中观察到明显的发射。从竞争结合研究中获得了表现最佳的cRGD生物反应性NIR-AZA衍生物体内活体肿瘤靶向的证据。总的来说,这种cRGD偶联物具有克服靶向性始终在线的荧光团固有的缺陷的潜力,该荧光团需要延长清除时间,并且在临床上用于荧光引导的肿瘤切除术中进行临床翻译显示出极好的潜力。

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