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Highly Sensitive Naphthalimide-Based Fluorescence Polarization Probe for Detecting Cancer Cells

机译:基于灵敏的萘二甲酰亚胺的荧光偏振探针,用于检测癌细胞

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Fluorescence polarization (FP)-based signal is a self-referencing fluorescence signal, and it is less dependent on dye concentration and environmental interferences, which makes FP measurement an attractive alternative sensing technology to fluorescence intensity-based detection. However, most of the fluorescence polarization probes were constructed by introducing fluorescein, rhodamine) and cyanine dyes, which have relatively shorter excited-state lifetimes compared with BODIPY and naphthalimide dyes. Herein, a first naphthalimide based fluorescence polarization probe (BIO) was designed and synthesized for selective and direct detection of cancer cells. The relatively longer excited-state lifetimes and high photostability of naphthalimide makes BIO more sensitive and accuracy in quantitative determination of HeLa cells in homogeneous solution without cell lysis and further separation steps. The detection limit of BIO for HeLa cells was about 85 cells mL(-1), the linear range was from 2.5 x 10(2) cells mL(-1) to 1 x 10(6) cells mL(-1) and the response time is no more than 25 min Moreover, due to the relatively high photostability of naphthalimide, BIO was particularly suitable for live cell imaging under continuous irradiation with confocal microscopy, and the specific interaction of MO with CD44-overexpressing cell lines was clearly visualized. Importantly, this BIO based sensing platform offers a direct and real-time tool for cancer cell diagnosis when complemented with the use of naphthalimide-based fluorescence polarization probe.
机译:基于荧光偏振(FP)的信号是一种自参考荧光信号,它较少依赖染料浓度和环境干扰,这使得FP测量成为基于荧光强度检测的一种有吸引力的替代传感技术。但是,大多数荧光偏振探针是通过引入荧光素,若丹明和花青染料构建的,与BODIPY和萘二甲酰亚胺染料相比,它们的激发态寿命相对较短。本文中,设计并合成了第一种基于萘二甲酰亚胺的荧光偏振探针(BIO),用于选择性和直接检测癌细胞。相对较长的激发态寿命和萘二甲酰亚胺的高光稳定性使BIO在定量测定均相溶液中的HeLa细胞时更加灵敏和准确,无需细胞裂解和进一步的分离步骤。 HeLa细胞的BIO检测限约为85细胞mL(-1),线性范围为2.5 x 10(2)细胞mL(-1)至1 x 10(6)细胞mL(-1),而响应时间不超过25分钟。此外,由于萘二甲酰亚胺具有较高的光稳定性,BIO特别适合在共聚焦显微镜连续照射下进行活细胞成像,并且可以清楚地看到MO与CD44过表达细胞系的特异性相互作用。重要的是,当与基于萘二甲酰亚胺的荧光偏振探针配合使用时,这种基于BIO的传感平台可提供直接实时的癌细胞诊断工具。

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