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两亲性控制红色发射双阳离子荧光团在肿瘤细胞中的定位作为生物探针和抗癌药物。

Amphiphilicity-Controlled Localization of Red Emitting Bicationic Fluorophores in Tumor Cells Acting as Bio-Probes and Anticancer Drugs.

机构信息

Department of Chemistry, Biology and Biotechnology and "Centro di Eccellenza Materiali Innovativi Nanostrutturati" (CEMIN), University of Perugia, Via Elce di Sotto 8, 06123 Perugia, Italy.

Department of Chemical Sciences, University of Catania, Viale Andrea Doria 6, 95125 Catania, Italy.

出版信息

Molecules. 2022 Jun 9;27(12):3713. doi: 10.3390/molecules27123713.

Abstract

Small organic molecules arouse lively interest for their plethora of possible biological applications, such as anticancer therapy, for their ability to interact with nucleic acids, or bioimaging, thanks to their fluorescence emission. Here, a panchromatic series of styryl-azinium bicationic dyes, which have already proved to exhibit high water-solubility and significant red fluorescence in water, were investigated through spectrofluorimetric titrations to assess the extent of their association constants with DNA and RNA. Femtosecond-resolved transient absorption spectroscopy was also employed to characterize the changes in the photophysical properties of these fluorophores upon interaction with their biological targets. Finally, in vitro experiments conducted on tumor cell lines revealed that some of the bicationic fluorophores had a peculiar localization within cell nuclei exerting important antiproliferative effects, others were instead found to localize in the cytoplasm without leading to cell death, being useful to mark specific organelles in light of live cell bioimaging. Interestingly, this molecule-dependent behavior matched the different amphiphilicity featured by these bioactive compounds, which are thus expected to be caught in a tug-of-war between lipophilicity, ensured by the presence of aromatic rings and needed to pass cell membranes, and hydrophilicity, granted by charged groups and necessary for stability in aqueous media.

摘要

小分子因其在众多可能的生物应用中的作用而引起了人们的浓厚兴趣,例如抗癌治疗,因为它们能够与核酸相互作用,或进行生物成像,这要归功于它们的荧光发射。在这里,研究了一系列泛彩的苯乙烯-偶氮翁双阳离子染料,这些染料已经被证明在水中具有高水溶性和显著的红色荧光,通过荧光分光光度滴定法来评估它们与 DNA 和 RNA 的结合常数的程度。还采用飞秒分辨瞬态吸收光谱法来表征这些荧光团与生物靶标相互作用时其光物理性质的变化。最后,在肿瘤细胞系上进行的体外实验表明,一些双阳离子荧光团在细胞核内具有特殊的定位,从而产生重要的抗增殖作用,而其他荧光团则被发现定位于细胞质中而不会导致细胞死亡,这对于基于活细胞生物成像来标记特定细胞器是有用的。有趣的是,这种分子依赖性行为与这些生物活性化合物所具有的不同两亲性相匹配,因此预计这些化合物将在疏水性(通过芳环的存在来保证,这是穿过细胞膜所必需的)和亲水性(通过电荷基团来保证,这是在水介质中稳定所必需的)之间展开一场拉锯战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7342/9230006/0a083107b93b/molecules-27-03713-sch001.jpg

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