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Fluorocarbons Enhance Intracellular Delivery of Short STAT3-sensors and Enable Specific Imaging

机译:碳氟化合物增强短STAT3传感器的细胞内传递并实现特异性成像

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Short oligonucleotide sequences are now being widely investigated for their potential therapeutic properties. The modification of oligonucleotide termini with short fluorinated residues is capable of drastically altering their behavior in complex in vitro and in vivo systems, and thus may serve to greatly enhance their therapeutic potential. The main goals of our work were to explore: 1) how modification of STAT3 transcription factor-binding oligodeoxynucleotide (ODN) duplexes (ODND) with one or two short fluorocarbon (FC)-based residues would change their properties in vitro and in vivo , and if so, how this would affect their intracellular uptake by cancer cells, and 2) the ability of such modified ODND to form non-covalent complexes with FC-modified carrier macromolecule. The latter has an inherent advantage of producing a 19F-specific magnetic resonance (MR) imaging signature. Thus, we also tested the ability of such copolymers to generate 19F-MR signals.
机译:短的寡核苷酸序列由于其潜在的治疗特性正在被广泛研究。用短的氟化残基修饰寡核苷酸末端能够显着改变其在复杂的体外和体内系统中的行为,因此可以极大地增强其治疗潜力。我们工作的主要目标是探索:1)用一个或两个短的基于碳氟化合物(FC)的残基修饰STAT3转录因子结合的寡脱氧核苷酸(ODN)双链体(ODND)如何在体外和体内改变其特性,如果是的话,这将如何影响癌细胞在细胞内的吸收,以及2)此类修饰的ODND与FC修饰的载体大分子形成非共价复合物的能力。后者具有产生 19 F特异性磁共振(MR)成像签名的固有优势。因此,我们还测试了此类共聚物产生 19 F-MR信号的能力。

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