首页> 外文期刊>New Zealand Veterinary Journal >Photodynamic chlorophyll a metabolites, including phytoporphyrin (phylloerythrin), in the blood of photosensitive livestock: overview and measurement.
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Photodynamic chlorophyll a metabolites, including phytoporphyrin (phylloerythrin), in the blood of photosensitive livestock: overview and measurement.

机译:光敏家畜血液中的光动力学叶绿素a代谢产物,包括卟啉(叶绿素):概述和测量。

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Aim: To validate a spectrofluorometric method for measuring chlorophyll a metabolites, specifically phytoporphyrin (=phylloerythrin), as well as the chlorins, pheophorbide a and pyropheophorbide a, in the blood of photosensitive cattle and sheep. Methods: Standard methanolic solutions of pheophorbide a (25 micro M), pyropheophorbide a (25 micro M), and phytoporphyrin (<3.7 micro M) were prepared. Serum and plasma samples were obtained from cattle (n=5), sheep (n=3), and one alpaca, with clinical facial eczema (i.e. photosensitive), as well as from clinically normal (n=2 of each) adult cows, recently weaned calves, and sheep (controls). Standard solutions of the three metabolites were characterised using high-performance liquid chromatography (HPLC), with mass spectrometry, in conjunction with absorption and emission spectral data, and were compared with sera from photosensitive animals. In the latter, phytoporphyrin was the only metabolite detected. Calibration curves were prepared by adding different ratios of methanol and standard solutions of phytoporphyrin in methanol to diluted serum from control animals. Peak areas of fluorescence spectra were determined in samples from photosensitive animals. Results: Pheophorbide a and pyropheophorbide a produced typical chlorin spectra, and had excitation/emission maxima of 408/669 nm and 409/669 nm, respectively. Phytoporphyrin showed a typical porphyrin fluorescence spectrum, with excitation/emission maxima of 425/644 nm. Pyropheophorbide a and phytoporphyrin had very similar chromatographic retention times, the same chemical formula and same mass, but were distinguishable by differences in their absorption spectra. In sera from photosensitive animals, the fluorescence emission at 644 nm was shown to arise solely from phytoporphyrin and not from any other chlorophyll a metabolites. Calibration curves using sera and plasma from control animals gave reliable measurements of phytoporphyrin in the range 0.4-6 micro M. The sera of facial eczema-affected cattle and sheep had concentrations of phytoporphyrin ranging from 0.4 to 1.8 and 0.9 to 2.8 micro M, respectively. Haemolysed serum samples were not suitable for determination of phytoporphyrin with this method. Conclusions and clinical relevance: A spectrofluorometric method for the quantification of phytoporphyrin in the blood of photosensitive animals has been validated, and can be applied to the measurement of other chlorophyll a metabolites in blood. This will be a useful tool in the further investigation of the cause and pathogenesis of idiopathic photosensitivities of farm animals.
机译:目的:为了验证使用荧光光谱法测定叶绿素 a 代谢物,特别是卟啉(= phylloerythrin)以及二氢卟酚,脱镁叶绿素 a 和焦脱镁叶绿素 a 的方法i>,在光敏牛羊的血液中。方法:制备了脱镁叶绿酸 a (25 micro M),焦脱镁叶绿酸 a (25 micro M)和植物卟啉(<3.7 micro M)的标准甲醇溶液。从牛(n = 5),绵羊(n = 3)和一只羊驼,并伴有临床面部湿疹(即光敏性)以及临床正常(每只n = 2)的成年母牛中获得血清和血浆样品,最近断奶的犊牛和绵羊(对照)。使用高效液相色谱(HPLC),质谱,吸收和发射光谱数据对三种代谢物的标准溶液进行表征,并与光敏动物的血清进行比较。在后者中,卟啉是唯一检测到的代谢产物。通过向对照动物的稀释血清中加入不同比例的甲醇和植物卟啉标准溶液,制得校正曲线。在来自感光动物的样品中确定了荧光光谱的峰面积。结果:磷荧光素 a 和焦脱镁叶绿素 a 产生典型的二氢卟酚光谱,激发/发射最大值分别为408/669 nm和409/669 nm。卟啉显示典型的卟啉荧光光谱,激发/发射最大值为425/644 nm。焦脱镁叶绿酸 a 和卟啉具有非常相似的色谱保留时间,相同的化学式和相同的质量,但可以通过吸收光谱的差异来区分。在光敏动物的血清中,显示在644 nm处的荧光发射仅来自卟啉,而不是任何其他叶绿素 a 代谢产物。使用对照动物的血清和血浆的校准曲线可以可靠地测量出卟啉的浓度为0.4-6 microM。受面部湿疹影响的牛和绵羊的血清中phyphyorphyrin的浓度分别为0.4-1.8和0.9-2.8 microM。 。溶血的血清样品不适合用这种方法测定卟啉。结论和临床意义:验证了荧光光谱法定量光敏动物血液中的卟啉,可用于测定血液中其他叶绿素 a 代谢产物。这将是进一步研究农场动物特发性光敏性的原因和发病机理的有用工具。

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