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通过与亲脂性弱酸抗衡阴离子的简单离子配对,手性 Ru(II) 阳离子配合物发生非寻常的对映选择性细胞质到细胞核的转位和光增敏作用。

Unusual enantioselective cytoplasm-to-nucleus translocation and photosensitization of the chiral Ru(II) cationic complex via simple ion-pairing with lipophilic weak acid counter-anions.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences; University of Chinese Academy of Sciences, The Chinese Academy of Sciences, Beijing 100085, P.R. China.

Gansu Key Laboratory of Biomonitoring and Bioremediation for Environmental Pollution, School of Life Sciences, Lanzhou University, Lanzhou 730000, China.

出版信息

Nucleic Acids Res. 2023 Apr 24;51(7):3041-3054. doi: 10.1093/nar/gkad155.

Abstract

Targeted and enantioselective delivery of chiral diagnostic-probes and therapeutics into specific compartments inside cells is of utmost importance in the improvement of disease detection and treatment. The classical DNA 'light-switch' ruthenium(II)-polypyridyl complex, [Ru(DIP)2(dppz)]Cl2 (DIP = 4,7-diphenyl-1,10-phenanthroline, dppz = dipyridophenazine) has been shown to be accumulated only in the cytoplasm and membrane, but excluded from its intended nuclear DNA target. In this study, the cationic [Ru(DIP)2(dppz)]2+ is found to be redirected into live-cell nucleus in the presence of lipophilic 3,5-dichlorophenolate or flufenamate counter-anions via ion-pairing mechanism, while maintaining its original DNA recognition characteristics. Interestingly and unexpectedly, further studies show that only the Δ-enantiomer is selectively translocated into nucleus while the Λ-enantiomer remains trapped in cytoplasm, which is found to be mainly due to their differential enantioselective binding affinities with cytoplasmic proteins and nuclear DNA. More importantly, only the nucleus-relocalized Δ-enantiomer can induce obvious DNA damage and cell apoptosis upon prolonged visible-light irradiation. Thus, the use of Δ-enantiomer can significantly reduce the dosage needed for maximal treatment effect. This represents the first report of enantioselective targeting and photosensitization of classical Ru(II) complex via simple ion-pairing with suitable weak acid counter-anions, which opens new opportunities for more effective enantioselective cancer treatment.

摘要

靶向和对映选择性地将手性诊断探针和治疗剂递送到细胞内的特定隔室中,对于提高疾病检测和治疗的效果至关重要。经典的 DNA“光开关”钌(II)-多吡啶配合物[Ru(DIP)2(dppz)]Cl2(DIP=4,7-二苯基-1,10-菲咯啉,dppz=二吡啶并[1,2-a:2',1'-c]吩嗪)已被证明仅在细胞质和膜中积累,但被排除在其预期的核 DNA 靶标之外。在这项研究中,发现带正电荷的[Ru(DIP)2(dppz)]2+通过离子对相互作用机制在亲脂性 3,5-二氯苯酸盐或氟芬酸盐抗衡阴离子的存在下被重新引导到活细胞的核内,同时保持其原始的 DNA 识别特性。有趣的是,出乎意料的是,进一步的研究表明,只有Δ-对映异构体选择性地转移到核内,而 Λ-对映异构体仍被困在细胞质中,这主要是由于它们与细胞质蛋白和核 DNA 的不同的对映体选择性结合亲和力所致。更重要的是,只有重新定位到核内的Δ-对映异构体在长时间可见光照射下才能引起明显的 DNA 损伤和细胞凋亡。因此,仅使用核内重定位的Δ-对映异构体就可以显著减少达到最大治疗效果所需的剂量。这代表了通过与合适的弱酸抗衡阴离子进行简单的离子对相互作用对手性 Ru(II) 配合物进行对映选择性靶向和光敏化的首例报道,为更有效的手性癌症治疗开辟了新的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe76/10123113/149bda314069/gkad155figgra1.jpg

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