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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Back to the roots: photodynamic in activation of bacteria based on water-soluble curcumin bound to polyvinylpyrrolidone as a photosensitizer
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Back to the roots: photodynamic in activation of bacteria based on water-soluble curcumin bound to polyvinylpyrrolidone as a photosensitizer

机译:回归根源:基于水溶性姜黄素与聚乙烯吡咯烷酮结合作为光敏剂的光动力活化细菌

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摘要

Photodynamic inactivation (PDI), the light-induced and photosensitizer-mediated overproduction of reactive oxygen species in microorganisms, represents a convincing approach to treat infections with (multi-resistant) pathogens. Due to its favourable photoactive properties combined with excellent biocompatibility, curcumin derived from the roots of turmeric (Curcuma longa) has been identified as an advantageous photosensitizer for PDI. To overcome the poor water solubility and the rapid decay of the natural substance at physiological pH, we examined the applicability of polyvinylpyrrolidone curcumin (PVP-C) in an acidified aqueous solution (solubility of PVP-C up to 2.7 mM) for photoinactivation of Gram(+) and Gram(-) bacteria. Five micromolar PVP-C incubated for 5 minutes and illuminated using a blue light LED array (435 ± 10 nm, 33.8 J cm~(-2)) resulted in a >6 log_(10) reduction of the number of viable Staphylococcus aureus. At this concentration, longer incubation periods result in a lower phototoxicity, most likely due to degeneration of curcumin. Upon an increase of the PVP-C concentration to 50 μM (incubation for 15 or 25 min) a complete eradication of Staphylococcus aureus can be achieved. As expected for a non-cationic photosensitizer, cell wall permeabilization with CaCI2 prior to addition of 50 μM PVP-C for 15 min is necessary to induce a drop in the count of the Gram(-) Escherichia coli for more than 3 log_(10). As both constituents of the formulation, curcumin (E number E100) and polyvinylpyrrolidone (E1201), have been approved as food additives, a PDI based on PCP-C might allow for a very sparing clinical application (e.g. for disinfection of wounds) or even for employment in aseptic production of foodstuffs.
机译:光动力学灭活(PDI)是光诱导的和光敏剂介导的微生物中活性氧的过量生产,代表了一种有说服力的方法来治疗具有(多抗性)病原体的感染。由于其良好的光敏特性和出色的生物相容性,姜黄素(姜黄根)的姜黄素已被鉴定为PDI的有利光敏剂。为克服水溶性差和天然物质在生理pH值下的快速降解,我们研究了聚乙烯吡咯烷酮姜黄素(PVP-C)在酸化水溶液中的溶解度(PVP-C最高为2.7 mM)对革兰氏酶的光灭活作用(+)和革兰氏(-)细菌。将五个微摩尔的PVP-C孵育5分钟,并使用蓝光LED阵列(435±10 nm,33.8 J cm〜(-2))照射,导致金黄色葡萄球菌的生存数量减少> 6 log_(10)。在此浓度下,较长的孵育时间导致较低的光毒性,这很可能是由于姜黄素的变性。当PVP-C浓度增加到50μM(孵育15或25分钟)时,就可以完全根除金黄色葡萄球菌。如对非阳离子光敏剂所期望的那样,在添加50μMPVP-C 15分钟之前用CaCl2进行细胞壁通透化对于诱导革兰氏大肠杆菌计数下降超过3 log_(10)是必要的)。由于该配方的两种成分姜黄素(E号E100)和聚乙烯吡咯烷酮(E1201)已被批准用作食品添加剂,因此基于PCP-C的PDI可能允许非常少的临床应用(例如,用于伤口消毒),甚至用于食品的无菌生产。

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