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作 者:陈学武 黄芳 欧阳健明[1] CHEN Xue-Wu;HUANG Fang;OUYANG Jian-Ming(Institute of Biomineralization and Lithiasis Research,Jinan University,Guangzhou 510632,China)
机构地区:[1]暨南大学生物矿化与结石病防治研究所,广州510632
出 处:《无机化学学报》2020年第8期1437-1445,共9页Chinese Journal of Inorganic Chemistry
基 金:国家自然科学基金(No.21975105)资助项目。
摘 要:比较研究了羧基(-COOH)含量为16.7%(w/w),但分子量分别为11.0、8.4、4.7和2.6 kDa的4种黄芪多糖(ASP0、ASP1、ASP2和ASP3)对草酸钙(CaOx)晶体形成的调控作用。采用X射线衍射(XRD)、傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)检测表明,4种ASPs均可抑制COM生长,诱导COD生成。电感耦合等离子体发射光谱(ICP)检测表明,4种ASPs增加了溶液中可溶性Ca2+离子的浓度,同时减少了CaOx沉淀的生成量。ASPs还可以增加晶体表面的ζ电位绝对值,从而降低晶体的聚集程度。ASPs抑制CaOx生长和诱导COD的能力与其浓度呈正相关,与其分子量大小呈负相关,即分子量最小的ASP3调控能力最强。此外,各ASPs不仅对HK-2细胞没有毒性,还可以修复被草酸氧化损伤的HK-2细胞,降低细胞的ROS水平;其中分子量适中的ASP2修复能力最强。The effects of four astragalus polysaccharides(ASP0,ASP1,ASP2 and ASP3)with carboxylic group(-COOH)content of 16.7%(w/w)but molecular weights of 11.0,8.4,4.7 and 2.6 kDa,respectively,on the formation ofcalcium oxalate(CaOx)crystals were comparatively studied.X-ray diffraction(XRD),Fourier transform infraredspectroscopy(FT-IR)and scanning electron microscopy(SEM)results revealed that all the four ASPs inhibitedCOM growth,induced COD formation.The inductively coupled plasma emission spectra(ICP)revealed that theseASPs increased the concentration of soluble Ca2+ions in the solution and reduced the amount of CaOx precipitation.Furthermore,ASPs increased the absolute value ofζpotential on the crystal surface,and thus inhibited crystal ag-gregation.The ability of ASPs to regulate CaOx crystal formation and induce COD formation is negatively related toits molecular weight,that is,ASP3 with the smallest molecular weight has the strongest regulatory ability.In addi-tion,each ASPs is not only toxic to HK-2 cells,but also can repair oxalate-damaged HK-2 cells and decrease cellu-lar ROS level,of which APS2 with moderate molecular weight showed the best repair ability.
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