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1.
内毒素的去除策略   总被引:2,自引:0,他引:2  
革兰氏阴性菌的致病性以及革兰氏阴性菌脓毒血症时出现的毒性表现是与牢固结合在其细菌外膜中的一种大分子物质即内毒素密切相关的,文章主要介绍了内毒素的本质和它的危害,并根据该课题组在此领域多年的研究经验,介绍了内毒素的去除策略。  相似文献   
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Removal of end6toxin from medicine injection is very important, becauseendotoxin withpotential biological activity causes pyrogenic and shock reactions in' mammals-'on...intravenous injection even as law as "an6gram amounts. Endotoxin, a constituent ofpotential contaminant of physiological fluids and aqueous solutions 'and very stable atextreme temperature and PH values. For removing endotoxin from solutions ofbiomolecules, such as HSA, adsorption techniques are usedl.' Many methods forendot…  相似文献   
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Lipopolysaccharide (LPS) is an endotoxin that plays a crucial role in septic acute kidney injury (AKI). Hispidulin is a natural flavonoid that possesses various biological activities. Recent studies have shown that hispidulin administration alleviates various inflammatory diseases in animal models. This study aimed to investigate the renoprotective effect of hispidulin on LPS-induced AKI. Male C57BL/6 mice were administered LPS (10 mg/kg) with or without hispidulin (50 mg/kg). Hispidulin administration attenuated renal dysfunction, histological alterations, and the upregulation of neutrophil gelatinase-associated lipocalin. This flavonoid also reduced cytokine production and Toll-like receptor 4 expression, inhibited nuclear factor-κB and mitogen-activated protein kinase cascades, and alleviated immune cell infiltration. The oxidation of lipids and DNA was also inhibited by hispidulin administration. This antioxidant effect of hispidulin was associated with the downregulation of NADPH oxidase 4, the activation of catalase and superoxide dismutase activities, and the restoration of glutathione levels. Moreover, hispidulin administration attenuated tubular cell apoptosis by inhibiting caspase-3 pathway. These data suggest that hispidulin ameliorates endotoxin-induced kidney injury by suppressing inflammation, oxidative stress, and tubular cell death.  相似文献   
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利用大肠埃希菌(E.coli O111:B4)中提取精制的内毒素(Control standard endotoxin,CSE)为研究对象,以MnO2/石墨烯(MnO2/G)纳米复合材料为基质,建立了一种基于MnO2/G纳米材料的表面辅助激光解吸电离质谱(Surface-assisted laser desorption ionization mass spectrometry,SALDI-MS)的内毒素检测新方法.利用SALDI-MS方法可实现对不同注射液和饮用水中内毒素的快速鉴定与定量分析.与传统的鲎试剂检测方法相比,基于MnO2/G纳米复合材料的SALDI-MS方法具有操作简便、灵敏度高、分辨率高、检测速度快、高通量和耐盐性好等优点,有望应用于更多食品和药品中细菌内毒素的高通量快速筛查.  相似文献   
6.
去除内毒素的柱亲和介质与膜亲和介质的制备和特征   总被引:4,自引:0,他引:4  
商振华  周康 《分析化学》1997,25(9):1010-1015
以琼脂糖和尼龙66微孔滤膜为原料,发展了两种用于去 内毒素的不同类型的亲和介质。在对原料进行化学改性后,键合了含六个碳原子的间隔臂和组氨酸亲和配基。它们对内毒素的亲和容量分别为2.0mg/g和0.2mg/g,内毒素和介质之间的表观解离常数分别为8.1*10^-10mol/L和3.0*10^-8mol/L。  相似文献   
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A new stage of endotoxin research was brought about by structure elucidation and chemical synthesis of lipid A, the lipophilic partial structure of the lipopolysaccharide (LPS) of Gram-negative bacteria. Synthetic lipid A exhibited full endotoxic activity, which gave unequivocal evidence for the concept that lipid A is the active entity of endotoxin. Various lipid A analogues, as well as their radiolabeled derivatives and more complex partial structures of LPS, were also synthesized. By the use of these synthetic homogeneous preparations, not only simple studies on structure-activity relationships but precise and detailed analyses became possible on how this typical bacterial component is recognized by the innate immune receptor complex of mammalian cells.  相似文献   
8.
魏桂林  刘学良  李京华  刘莺  商振华 《色谱》2002,20(2):108-114
 以纤维素膜为基质材料 ,制备了 3种用于去除内毒素的亲和膜 ,分别为壳聚糖亲和膜 (KFCC5 17) ,疏水阳离子亲和膜 (KFCG316 )和金属螯合物亲和膜 (KFCG40 2 )。研究了亲和膜对内毒素的吸附容量及在内毒素去除方面的应用 ,结果表明这 3种亲和膜都可以用于多种溶液中内毒素的去除。考察了离子强度、pH值以及流速对去除效果的影响 ,并分析了原因。KFCC5 17,KFCG316 ,KFCG40 2都可用于人血清白蛋白溶液中内毒素的去除 ,KFCC5 17还可用于医药制剂如氢化可的松、葛根素、盐酸丁卡因和右旋糖苷 40葡萄糖注射液中内毒素的去除。  相似文献   
9.
纤维素亲和膜用于内毒素的去除   总被引:5,自引:0,他引:5  
报道了用于内毒素去除的3种新型纤维素亲和膜的制备及应用,并对它们的性能进行了比较。结果表明,这3种亲和膜均能有效去除盐溶液中的内毒素,去除率在90%以上。对人血清白蛋白溶液,季铵盐和壳聚糖亲和膜对内毒素的去除率较高,仍然在90%以上,金属螯合物亲和膜的去除效果不如前两种,去除率仅为83.3%。实验选择不同的亲和膜,考察了它们对内毒素的吸附容量、样品处理量以及再生效果,结果表明吸附量在 2.4×106EU/g以上,样品处理量较大,适合用于小批量医药制剂的生产过程;再生效果较好,可重复使用。  相似文献   
10.
A strong interaction between colistin, a last‐resort antibiotic of the polymyxin family, and free lipopolysaccharide (LPS, also referred to as endotoxin), released from the Gram‐negative bacterial (GNB) outer membrane (OM), has been identified that can decrease the antibacterial efficacy of colistin, potentially increasing the dose of this antibiotic required for treatment. The competition between LPS in the GNB OM and free LPS for the interaction with colistin was prevented by using a supramolecular trap to capture free LPS. The supramolecular trap, fabricated from a subnanometer gold nanosheet with methyl motifs (SAuM), blocks lipid A, preventing the interaction between lipid A and colistin. This can minimize endotoxemia and maximize the antibacterial efficacy of colistin, enabling colistin to be used at lower doses. Thus, the potential crisis of colistin resistance could be avoided.  相似文献   
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