首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Sensitization of Salmonella enterica with 5-aminolevulinic acid-induced endogenous porphyrins: a spectroscopic study
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Sensitization of Salmonella enterica with 5-aminolevulinic acid-induced endogenous porphyrins: a spectroscopic study

机译:用5-氨基纤维素酸诱导的内源性卟啉的沙门氏菌肠道的敏化:光谱研究

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摘要

Photodynamic therapy (PDT) of bacterial strains presents an attractive potential alternative to antibiotic therapies in search of the solution for the chemoresistance problem. The efficacy of the treatment is dependent on the interaction of photochemically active substances called photosensitizers (PSs) with the bacterial cell wall or their intracellular accumulation. In addition to exogenous PSs, other molecules such as 5-aminolevulinic acid (5-ALA), a natural precursor of heme, are gaining interest. When provided exogenously to cells, 5-ALA uptake results in the overproduction of various photoactive porphyrins. The pattern of their intracellular accumulation and release to the surroundings depends on incubation conditions such as the applied 5-ALA concentration, cell density and incubation duration. The detection of endogenously synthesized porphyrins in samples of Salmonella enterica cells and supernatants was accomplished after 4 h and 20 h incubation periods by means of fluorescence spectroscopy. The relative proportions of different types of porphyrins were assessed by modeling the registered spectra with the fluorescence spectra of standard porphyrins. After the shorter incubation period, the dominant porphyrins in the supernatant medium were coproporphyrins. The longer incubation period shifted the relative proportion of intracellular porphyrins from protoporphyrin IX towards water-soluble porphyrins such as uroporphyrin I, which interfered with additional by-products. The time-dependent changes in compositions of both intracellular and extracellular porphyrins imply that 5-ALA-induced sensitization might have triggered a complex protective mechanism of bacterial cells. Thus, identification and evaluation of the relative amounts of porphyrins, which accumulate in bacterial cells and are extruded outside after different time periods, could provide access to valuable information, working towards more efficient applications of 5-ALA-based antibacterial PDT.
机译:细菌菌株的光动力疗法(PDT)呈现出具有抗生素疗法的吸引力的潜在替代方案,用于寻找化学抑制问题的溶液。治疗的功效取决于光化学活性物质与细菌细胞壁或其细胞内积聚的光化学活性物质的相互作用。除了外源PSS之外,其他分子如5-氨基乙酰丙酸(5-ALA),血红素的天然前体是令人感兴趣的。当外源向细胞提供时,5 ala摄取导致各种光活性​​卟啉的过生产量。它们的细胞内积聚和释放到周围的模式取决于孵育条件,例如施加的5-Ala浓度,细胞密度和孵育持续时间。通过荧光光谱完成在4小时和20小时培养期后完成在沙门氏菌肠道细胞和上清液样品中的内源合成卟啉的检测。通过使用标准卟啉的荧光光谱对注册光谱进行评估来评估不同类型卟啉的相对比例。在孵育期较短之后,上清液中的显性卟啉是常卟啉。较长的孵育周期使细胞内卟啉IX的细胞内卟啉的相对比例移向水溶性卟啉如尿布卟啉I,其干扰了另外的副产物。细胞内和细胞外卟啉的组合物的时间依赖性变化意味着5-Ala诱导的致敏可能引发了细菌细胞的复杂保护机制。因此,鉴定和评估卟啉的相对量,其在细菌细胞中积聚并在不同的时间段之后挤出,可以提供对有价值的信息的访问,旨在更有效地应用5-Ala基抗菌PDT。

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