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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Spectroscopic and photostability study of water-soluble hypericin encapsulated with polyvinylpyrrolidone
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Spectroscopic and photostability study of water-soluble hypericin encapsulated with polyvinylpyrrolidone

机译:用聚乙烯吡咯烷酮包封水溶性高蛋白的光谱和光稳定性研究

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Hypericin has gained great attention as a powerful photosensitizing and fluorescent agent for photodynamic therapy (PDT) and fluorescence diagnosis (FD) of cancer. However, native hypericin is hydrophobic and nearly insoluble in aqueous media which hinders its photobiological activity. Herein, we demonstrate the encapsulation of hypericin and polyvinylpyrrolidone (hypericin@PVP) as an attractive class of water-soluble formula of hypericin with improved absorption and emission characteristics in water. The absorption and fluorescence properties of the watersoluble hypericin@PVP were studied at room temperature. Also, the photostability of the prepared hypericin@PVP was studied under visible light irradiation. The absorbance and emission measurements confirm the association and binding of hypericin and PVP with a binding constant (K-b) of 1.2 x 10(5) M-1. The interaction between hypericin and PVP in water could lead to the dissociation of aggregated hypericin into their monomeric state which is crucial for effective photobiological implementation in PDT and FD. Upon encapsulation with PVP, hypericin showed a significant increase in the fluorescence properties with an enhanced emission intensity of 300% at a PVP concentration of 1 x 10(-4) M. Moreover, water-soluble hypericin@PVP demonstrated high photostability under visible light irradiation with an irradiance of 15 mW/cm(2) and exposure time up to 150 min. This enhancement in the absorption, emission, and photostability of hypericin in water is related to the effects of encapsulation with PVP and the unique spectroscopic properties of the formulated hypericin@PVP.
机译:丙晶菌霉素作为癌症的光动力治疗(PDT)和荧光诊断(FD)的强大光敏和荧光剂。然而,原生高白蛋白是疏水性的,几乎不溶于妨碍其光生物活性的水性介质。在此,我们证明了金丝菌素和聚乙烯醇吡咯烷酮(HypericIN @ PVP)作为一种有吸引力的多晶硅类水溶性配方,具有改善的吸收和水中的吸收特性。在室温下研究了水溶性高霉素@ PVP的吸收和荧光性质。此外,在可见光照射下研究了制备的高霉素@ PVP的光稳定性。吸光度和排放测量证实了金丝菌素和PVP的结合和结合,其结合常数(K-B)为1.2×10(5)m-1。 HyperIcIN和PVP之间的相互作用可能导致聚集金晶菌素的解离进入其单体状态,这对于PDT和FD中的有效光生物学实施至关重要。在用PVP封装时,HyperIc键在PVP浓度为1×10(-4)米的PVP浓度下具有300%的荧光性能显着增加。此外,水溶性高蛋白@ PVP在可见光下显示出高的光稳定性用15mW / cm(2)的辐照度和暴露时间高达150分钟。这种增强在水中的高白蛋白的吸收,发射和光稳定性有关与PVP的包封和配制的高霉素@ PVP的独特光谱性能有关。

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