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Improved water solubility and photodynamic activity of hydroxy-modified porphyrins by complexation with cyclodextrin

机译:通过与环糊精络合的络合改善羟基改性卟啉的水溶性和光动力活性

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摘要

Porphyrin derivatives with hydroxyphenyl or dihydroxyphenyl moieties in the meso-position were able to dissolve in water by complexation with two trimethyl-β-cyclodextrins (TMe-p-CDxs) without further chemical modification of porphyrins or addition of dimethyl sulfoxide as a co-solvent. TMe-β-CDx-com-plexed tetra(hydroxyphenyl)porphyrins (THPPs) with phenols in meso-positions have a much higher photodynamic activity than TMe-β-CDx-complexed tetrakis(dihydroxyphenyl)porphyrins (TDHPPs) with dihydroxyphenyl in the meso-position. The main reason for the different photoactivity is due to the intra-cellular uptakes of these complexes. Thus phenols in meso-positions of porphyrin derivatives in the complexes were recognized by HeLa cell receptors. Furthermore, the photodynamic activity of TMe-β-CDx-complexed THPP was much higher than that of THPP injected as a dimethyl sulfoxide solution.
机译:卟啉衍生物在中间位置中的羟基苯基或二羟基苯基部分能够通过与两种三甲基-β-环糊精(TME-P-CDXS)络合而溶解在水中,而无需进一步化学改性卟啉或加入二甲基亚砜作为共溶剂。在中间位置中具有苯酚的TME-β-CDX-COM-COMLEXED TETRA(羟基苯基)卟啉(羟基苯基)苯酚(苯酚)具有比MESO中的二羟基苯基的TME-β-CDX络合的四(二羟基苯基)卟啉(TDHPPS)具有更高的光动力活动-位置。不同光脱离的主要原因是由于这些配合物的细胞内腔内。因此,通过HeLa细胞受体识别复合物中卟啉衍生物中卟啉衍生物的中间位置中的酚。此外,TME-β-CDX复合的THPP的光动力活性远高于作为二甲基亚砜溶液注射的THPP的光动力学活性。

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  • 来源
    《Organic & biomolecular chemistry》 |2020年第34期|6702-6709|共8页
  • 作者单位

    Applied Chemistry Program Graduate School of Advanced Science and Engineering Hiroshima University 1-4-1 Kagamiyama Higashi-Hiroshima 739-8527 Japan;

    Applied Chemistry Program Graduate School of Advanced Science and Engineering Hiroshima University 1-4-1 Kagamiyama Higashi-Hiroshima 739-8527 Japan;

    Applied Chemistry Program Graduate School of Advanced Science and Engineering Hiroshima University 1-4-1 Kagamiyama Higashi-Hiroshima 739-8527 Japan;

    Applied Chemistry Program Graduate School of Advanced Science and Engineering Hiroshima University 1-4-1 Kagamiyama Higashi-Hiroshima 739-8527 Japan;

    Applied Chemistry Program Graduate School of Advanced Science and Engineering Hiroshima University 1-4-1 Kagamiyama Higashi-Hiroshima 739-8527 Japan;

    Applied Chemistry Program Graduate School of Advanced Science and Engineering Hiroshima University 1-4-1 Kagamiyama Higashi-Hiroshima 739-8527 Japan;

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