首页> 美国卫生研究院文献>Microorganisms >Assessment of Phycocyanin Extraction from Cyanidium caldarium by Spark Discharges Compared to Freeze-Thaw Cycles Sonication and Pulsed Electric Fields
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Assessment of Phycocyanin Extraction from Cyanidium caldarium by Spark Discharges Compared to Freeze-Thaw Cycles Sonication and Pulsed Electric Fields

机译:与冻土循环超声处理和脉冲电场相比通过火花放电评估来自CATANIDIUM CALDARIUM的植物蛋白提取

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摘要

Phycocyanin is a blue colored pigment, synthesized by several species of cyanobacteria and red algae. Besides the application as a food-colorant, the pigmented protein is of high interest as a pharmaceutically and nutritionally valuable compound. Since cyanobacteria-derived phycocyanin is thermolabile, red algae that are adapted to high temperatures are an interesting source for phycocyanin extraction. Still, the extraction of high quality phycocyanin from red algae is challenging due to the strong and rigid cell wall. Since standard techniques show low yields, alternative methods are needed. Recently, spark discharges have been shown to gently disintegrate microalgae and thereby enable the efficient extraction of susceptible proteins. In this study, the applicability of spark discharges for phycocyanin extraction from the red alga Cyanidium caldarium was investigated. The efficiency of 30 min spark discharges was compared with standard treatment protocols, such as three times repeated freeze-thaw cycles, sonication, and pulsed electric fields. Input energy for all physical methods were kept constant at 11,880 J to ensure comparability. The obtained extracts were evaluated by photometric and fluorescent spectroscopy. Highest extraction yields were achieved with sonication (53 mg/g dry weight (dw)) and disintegration by spark discharges (4 mg/g dw) while neither freeze-thawing nor pulsed electric field disintegration proved effective. The protein analysis via LC-MS of the former two extracts revealed a comparable composition of phycobiliproteins. Despite the lower total concentration of phycocyanin after application of spark discharges, the purity in the raw extract was higher in comparison to the extract attained by sonication.
机译:植物植物是一种蓝色颜料,由几种蓝藻和红藻类合成。除了应用作为食品着色剂之外,色素沉积的蛋白质对药学上和营养有价值的化合物具有高兴趣。由于蓝细菌衍生的植酸植物是热电坡,适应高温的红藻是植物苷萃取的有趣源。尽管如此,来自红藻的高质量植物素的提取是由于强硬细胞壁的挑战。由于标准技术显示出低产率,因此需要替代方法。最近,已经显示出火花放电以轻轻崩解微藻,从而能够有效地提取易感蛋白质。在这项研究中,研究了火花放电对红藻钙氏菌的植物蛋白提取的适用性进行了研究。将30分钟的火花排出的效率与标准治疗方案进行比较,例如重复冻融循环,超声处理和脉冲电场的三次。所有物理方法的输入能量在11,880 J保持恒定,以确保可比性。通过光度和荧光光谱评估所获得的提取物。通过超声处理(53mg / g干重(DW))和火花排出(4mg / g DW)进行崩解的最高提取产率,而冻结 - 解冻也没有脉冲电场崩解证明是有效的。通过前两种提取物的LC-MS的蛋白质分析揭示了植物胆素的可比组成。尽管在施用火花放电后,植物粘蛋白的总浓度较低,但与松开所获得的提取物相比,原子提取物中的纯度较高。

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