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作 者:刘静鸿 桂琴 欧阳健明 LIU Jing-Hong;GUI Qin;OUYANG Jian-Ming(College of Chemistry and Materials Science,Institute of Biomineralization and Lithiasis Research,Jinan University,Guangzhou 510632,China)
机构地区:[1]暨南大学化学与材料学院,生物矿化与结石病防治研究所,广州510632
出 处:《无机化学学报》2023年第3期465-474,共10页Chinese Journal of Inorganic Chemistry
基 金:国家自然科学基金(No.21975105,82270800)资助。
摘 要:采用X射线衍射法、傅里叶变换红外光谱仪、扫描电子显微镜、ζ电位仪和电感耦合等离子体发射光谱仪,比较了4种分子量相近(约3700 Da)、但硫酸基(—OSO_(3)-)含量不同的降解海藻多糖对草酸钙(CaC2O_(4))晶体生长的调控作用;采用细胞实验比较了它们对受损伤肾小管上皮细胞(HK-2)的修复能力。这4种海藻多糖分别是降解紫菜多糖(PY-1)、降解龙须菜多糖(GL-2)、降解羊栖菜多糖(SF-3)和降解裙带菜多糖(UP-4),其—OSO_(3)-含量分别为17.9%、13.3%、8.2%和5.5%。结果表明,这4种多糖均能够抑制一水草酸钙(COM)生长,诱导二水草酸钙(COD)生成,增加溶液中可溶性Ca2+离子浓度,增加晶体表面的ζ电位绝对值,从而降低晶体的聚集程度;这些多糖均能修复被草酸氧化损伤的HK-2细胞,提高细胞活力和超氧化物歧化酶(SOD)活力,降低丙二醛(MDA)的释放量。结果表明,多糖中—OSO_(3)-含量越高,多糖对CaC2O_(4)晶体生长的抑制作用和对受损伤HK-2细胞的修复作用均越强。X-ray diffraction,Fourier transform infrared spectrometer,scanning electron microscope,ζpotential analyzer,and inductively coupled plasma emission spectrometer were used to compare the regulation of four degraded seaweed polysaccharides with a similar molecular weight of about 3700 Da and different contents of sulfate group(—OSO_(3)-)on the inhibition of crystal growth of calcium oxalate(CaC2O_(4)),and the repair ability of the polysaccharides on damaged renal epithelial cells was compared by cell experiments.These four seaweed polysaccharides were degraded Porphyra polysaccharide(PY-1),degraded Gracilaria lemaneiformis polysaccharide(GL-2),degraded Sargassum fusiforme polysaccharide(SF-3)and degraded Undaria pinnatifida polysaccharide(UP-4),and their—OSO_(3)-contents were 17.9%,13.3%,8.2%,and 5.5%,respectively.The results showed that these four polysaccharides could inhibit the growth of calcium oxalate monohydrate(COM),induce the formation of calcium oxalate dihydrate(COD),increase the concentration of soluble Ca2+ions in solution,and increase the absolute value ofζpotential on the crystal surface,thereby reducing the degree of crystal aggregation.In addition,these polysaccharides could repair HK-2 cells damaged by oxalic acid,increase cell viability and superoxide dismutase(SOD)activity,and reduce the release of malondialdehyde(MDA).The results show that the higher the content of—OSO_(3)-in polysaccharides,the stronger the inhibitory effect of polysaccharides on CaC2O_(4) crystal growth and the repair effect on damaged HK-2 cells.
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