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Synthesis of Novel Baicalein Amino Acid Derivatives and Biological Evaluation as Neuroprotective Agents

机译:黄ical素氨基酸衍生物的合成及其作为神经保护剂的生物学评价

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摘要

Baicalein, a famously effective component of the traditional Chinese medicine Rhizoma Huang Qin ( L.), has been proved to have potent neuroprotection and anti-platelet aggregation effects with few side effects. Meanwhile, recent studies have revealed that the introduction of amino acid to baicalein could improve its neuroprotective activity. In the present study, a series of novel baicalein amino acid derivatives were designed, synthesized, and screened for their neuroprotective effect against -butyl, hydroperoxide-induced, SH-SY5Y neurotoxicity cells and toxicity on the normal H9C2 cell line by standard methylthiazol tetrazolium (MTT) assay. In addition, all of the newly synthesized compounds were characterized by H-NMR, C-NMR, and high resolution mass spectrometry (HR-MS). The results showed that most of the compounds provided more potent neuroprotection than baicalein, and were equivalent to the positive drug edaravin. They showed no obvious cytotoxicity on normal H9C2 cells. Notably, the most active compound displayed the highest protective effect (50% effective concentration (EC ) = 4.31 μM) against -butyl, hydroperoxide-induced, SH-SY5Y neurotoxicity cells, which was much better than the baicalein (EC = 24.77 μM) and edaravin (EC = 5.62 μM). Further research on the chick chorioallantoic membrane (CAM) model indicated that compound could significantly increase angiogenesis, which might promote neurovascular proliferation. The detection of apoptosis analysis showed that compound could dramatically alleviate morphological manifestations of cell damage. Moreover, the benzyloxycarbonyl (cbz)-protected baicalein amino acid derivatives showed better neuroprotective activity than the -Butyloxy carbonyl (boc)-protected derivatives.
机译:黄ical素是中药黄Rh的著名有效成分,已被证明具有有效的神经保护作用和抗血小板聚集作用,且几乎没有副作用。同时,最近的研究表明,将氨基酸引入黄ical素可以改善其神经保护活性。在本研究中,设计,合成并筛选了一系列新的黄ical素氨基酸衍生物,以研究其对丁基,氢过氧化物诱导的SH-SY5Y神经毒性细胞的神经保护作用以及标准甲基噻唑四唑对正常H9C2细胞系的毒性( MTT)分析。此外,所有新合成的化合物均通过1 H-NMR,C-NMR和高分辨率质谱(HR-MS)进行了表征。结果表明,大多数化合物比黄ical苷具有更强的神经保护作用,相当于阳性药物依达拉文。他们对正常的H9C2细胞没有明显的细胞毒性。值得注意的是,活性最高的化合物对氢过氧化物诱导的SH-SY5Y丁基正丁基神经毒性细胞的保护作用最高(50%有效浓度(EC)= 4.31μM),远优于黄than素(EC = 24.77μM)。和依达拉文(EC = 5.62μM)。对鸡绒膜尿囊膜(CAM)模型的进一步研究表明,该化合物可以显着增加血管生成,从而可能促进神经血管增殖。凋亡分析的检测表明该化合物可以显着减轻细胞损伤的形态学表现。而且,苄氧羰基(cbz)保护的黄ical素氨基酸衍生物显示出比-丁氧羰基(boc)保护的衍生物更好的神经保护活性。

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