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Novel organic compounds combining anti-cancer action with two-photon fluorescent cellular imaging

机译:与双光子荧光细胞成像相结合抗癌作用的新型有机化合物

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This study explores the feasibility of using cytotoxic derivatives of cyclohexanone/piperidone with strong two-photon absorption (TPA) simultaneously for fluorescent labeling of cancer cells and their subsequent biochemical destruction. Recent studies have shown that these compounds have an efficient two-photon excited fluorescence when pumped with infrared laser radiation. Their molecular cross-section of TPA can be as high as 30.0x10~(-48)cm~4s/photon. A cytotoxic two-photon absorbing compound will attach itself selectively to cancer cells and act as a fluorescent label of the cancer cell at harmless levels of excited infrared radiation. Also, when the process of chemical destruction of the cancer cell is over, the fluorescence changes its rate and optical spectrum. In this case, fluorescent labeling could yield more accurate information, not only on the location and distribution of cancer cells, but also on their evolution in time. Compounds combining both properties (cytotoxicity and two-photon excited fluorescence), which are now carried by different chemical agents, are expected to improve the efficiency of the cancer treatment and lower the cost.
机译:本研究探讨了使用环己酮/哌啶酮的细胞毒性衍生物具有强烈的双光子吸收(TPA)的可行性,同时用于癌细胞的荧光标记及其随后的生物化学破坏。最近的研究表明,当用红外激光辐射泵送时,这些化合物具有有效的双光子激发荧光。它们的TPA的分子横截面可以高达30.0x10〜(-48)cm〜4s /光子。一种细胞毒性双光子吸收化合物将自身附着在癌细胞上,并充当癌细胞的荧光标记,以无害的红外辐射水平。此外,当癌细胞的化学破坏过程结束时,荧光改变其速率和光谱。在这种情况下,荧光标记可能会产生更准确的信息,不仅可以在癌细胞的位置和分布上,而且还会及时分布在它们的演变。结合性质(细胞毒性和双光子激发荧光)的化合物预期提高癌症治疗的效率并降低成本。

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