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Structural modification and biological activities of carboxymethyl Pachymaran

机译:羧甲基偶联的结构改性及生物活性

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摘要

Polysaccharides are good chelating agents for metal ions, which are often used to synthesize polysaccharide metal ion complexes. With carboxymethyl pachymaran (CMP) as the substrate, carboxymethyl pachymaran iron (CMPF), carboxymethyl pachymaran selenium (CMPS), and carboxymethyl pachymaran zinc (CMPZ) were synthesized by response surface methodology, and their biological characteristics were studied. The results showed that the CMP was a β‐polysaccharide, and the degree of carboxymethylation was 0.6352. The polysaccharide metal ion complexes were characterized by physicochemical methods, scanning electron microscopy, Fourier transform infrared spectroscopy, circular dichroism spectroscopy, and nuclear magnetic resonance spectroscopy. All the polysaccharides and complexes possessed antioxidant activity in vitro with scavenging activities to ABTS, superoxide anions, and ferrous ions. CMPF, CMPS, and CMPZ caused significant inhibition of A2780 cell proliferation, promoted the production of reactive oxygen species, and induced apoptosis in a human ovarian cancer cell line (A2780 cells). These results suggest that the CMP complex may be an effective candidate drug for cancer treatment in the field of functional food and pharmacology.
机译:多糖是金属离子的良好螯合剂,其通常用于合成多糖金属离子配合物。通过响应面方法合成羧甲基偶联(CMP)作为底物,羧甲基偶联铁(CMPF),羧甲基偶联酶硒(CMPZ)和羧甲基偶联碳氧化锌(CMPZ),研究其生物学特性。结果表明,CMP是β-多糖,羧甲基化程度为0.6352。通过物理化学方法,扫描电子显微镜,傅里叶变换红外光谱,圆形二色光谱和核磁共振光谱,表征多糖金属离子配合物。所有多糖和复合物在体外具有抗氧化活性,并将清除活性与ABTS,超氧化物阴离子和黑色离子一起。 CMPF,CMP和CMPZ引起了A2780细胞增殖的显着抑制,促进了活性氧物质的产生,并在人卵巢癌细胞系中诱导细胞凋亡(A2780细胞)。这些结果表明,CMP复合物可以是功能性食品和药理学领域的癌症治疗的有效候选药物。

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