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Highly Selective Mitochondrial Targeting by a Ruthenium(II) Peptide Conjugate: Imaging and Photoinduced Damage of Mitochondrial DNA

机译:通过钌(II)肽缀合物的高度选择性线粒体靶向:显影和线粒体DNA的成像和光致损伤

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Mitochondrial DNA (mtDNA) plays a crucial but incompletely understood role in cellular biochemistry and etiology of numerous disease states. Thus, there is an urgent need for targeted probes that can dynamically respond to changes to mtDNA such as copy number in live cells, but it is difficult to permeate the mitochondrial membrane of the living cell. Now, a ruthenium(II) light-switching probe targeted by peptide vectorization selectively to mitochondrial nucleoids is presented. Evidence for DNA binding by the probe in live cells is derived from confocal fluorescence microscopy, resonance Raman, and luminescence lifetime imaging. While viable under imaging conditions, specific staining of mitochondrial DNA permitted efficient and selective photoinduced toxicity on a cell-by-cell basis under higher excitation intensities. This powerful combination of imaging and photocytotoxicity is an important step towards realizing phototheranostic application of such Ru-II probes.
机译:线粒体DNA(MTDNA)在众多疾病状态的细胞生物化学和病因中起着至关重要但不完全理解的作用。 因此,迫切需要靶向探针,其可以动态地响应于MTDNA的变化,例如活细胞中的拷贝数,但难以渗透活细胞的线粒体膜。 现在,提出了选择性地通过肽载体化靶向的钌(II)光切换探针对线粒体核核。 活细胞中探针的DNA结合的证据来自共聚焦荧光显微镜,共振拉曼和发光寿命成像。 虽然在成像条件下可行,但在较高激发强度下,线粒体DNA的特异性染色允许在细胞基础上允许有效和选择性光致毒性。 这种成像和光菌毒性的这种强大的组合是实现这种Ru-II探针的光热应用的重要步骤。

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