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Structural Modification of Styrene Maleic Anhydride Copolymers for Plant Bioactive Compound Extraction

机译:雄黄马来酸酐共聚物的结构改性植物生物活性化合物萃取

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Ability of poly(styrene-alt-maleic anhydride) (PSMA) to undergo a conformational transition into an amphipathic α-helix coil offers one possible mechanism by which PSMA surface activity can be switched on or off in response to the pH change. This behaviour allows it to be useful in membrane solubilization for extraction technology. Bioactive compounds are recovered from plant tissues for different reasons. One of the most important reasons is due to the increased demand in nutraceuticals market and modern therapeutics. Despite this, aqueous-based extraction of these compounds has been reported to give low extraction yield. A development of new green extraction protocol is still a challenging task for all researchers nowadays. This study demonstrated, for the first time, possible use of PSMA as a lysis agent for plant bioactive compound extraction. To enhance its membrane affinity at physiological pH, the polymer was esterified with methanol. Both PSMA and its derivative (ePSMA) were characterized in terms of their membrane binding affinity through a combined use of both surface characterization and physical techniques. Analysis of the ternary phase diagrams suggested that ePSMA could facilitate stronger hydrophobically-driven interactions with the lipid. This was convinced by the reduced critical PSMA/lipid mass ratio from 7:1 (PSMA) to 1:1 (ePSMA), as observed in the ternary phase diagrams. Last but not the least, the crude extracts of Coffea robusta leaves obtained from ePSMA-based extraction showed a total phenolic content of 20.32±0.75 mg/g sample, significantly higher than that from the PSMA-(14.24±1.27 mg/g sample) and aqueous-based (16.33±1.03 mg/g sample) extractions. A structural manipulation of PSMA is thus a key to tailor its membrane solubilization and so, the extraction efficacy of bioactive compounds from plant cells.
机译:聚(苯乙烯 - ALT-马来酸酐)(PSMA)经历构象过渡到两亲性α-Helix线圈的能力提供了一种可能的机制,通过该机制可以响应于pH改变开启或关闭PSMA表面活性。这种行为允许它可用于提取技术的膜溶解。由于不同的原因,从植物组织中回收生物活性化合物。其中一种最重要的原因是由于营养不良市场和现代治疗方法的需求增加。尽管如此,据报道,基于水性的提取这些化合物以提供低萃取产率。新的绿色提取方案的发展仍然是对所有研究人员的一项有挑战性的任务。本研究首次证明了PSMA作为植物生物活性化合物萃取的裂解剂。为了在生理pH下提高其膜亲和力,将聚合物用甲醇酯化。 PSMA及其衍生物(EPSMA)通过组合使用表面表征和物理技术的组合使用它们的膜结合亲和力来表征。对三元相图的分析表明,EPSMA可以促进与脂质的更强的疏水性相互作用。如在三元相图中所观察到的,通过从7:1(PSMA)至1:1(EPSMA)的严重性PSMA /脂质质量比率降低。最后但并非最不重要的是,从EPSMA的提取获得的Coffea Robusta叶子的粗萃取物显示出20.32±0.75mg / g样品的总酚含量,显着高于Psma-(14.24±1.27mg / g样本)和基于36.33±1.03 mg / g样品)提取物。因此,PSMA的结构操纵是定制其膜溶解等的键,因此,生物活性化合物从植物细胞中的提取效能。

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