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1.
羟自由基对人红细胞氧化囊泡化的作用   总被引:2,自引:0,他引:2  
红细胞经氧化处理后,发现红细胞膜区带1、2、2.1及3易形成高聚物,同时Hb亦有氧化变性。氧化过程中磷脂(PS、PE)逐渐减少,根据此结果提出氧化产生囊泡化的机制是:首先Hb氧化变性,膜骨架蛋白聚集,从而网架松散,膜磷脂脱离骨架的束缚,膜脂质与膜整合蛋白形成小囊泡从红细胞上脱落。  相似文献   

2.
目的:研究肺叶切除术对红细胞及淋巴细胞膜流坳性的影响。方法:选择20例择期开胸手术病人,均作肺叶切除术。分别用微量滴定法、高效液权色谱法和DPH荧光探剂法测定血浆和红细胞膜PLA2活性,红细胞膜磷脂PS、PE、PC和红细胞、淋巴膜脂流动性。结果:手术10min、手术60min和手术结束后30min血浆和红细胞膜PLA2活性均显著高于麻醉诱导前;手术60min和手术结束后30min 红细胞膜PS、P  相似文献   

3.
 脂质过氧化产物丙二醛可引起溶血。本文用丙二醛处理红细胞,发现膜磷脂可与丙二醛交联形成荧光化合物;丙二醛又可使血红蛋白变性,产生一个棕色物质,经质谱及光谱特征鉴定为高铁卟啉,此物质可使红细胞破溶。  相似文献   

4.
我们都知道磷脂双亲分子在水或者油溶液中会形成各种不同的形状。现在我们探讨的是一种细的管状生物膜泡。它通常是指在磷脂双亲分子形成膜泡后,我们对它在显微镜下进行的一系列使用光镊施加拉力操作而形成的细的管状结构。实验显示,膜泡形成的管状结构在生物学中是普遍存在的。本文主要研究怎样应用数值计算的方法进行模拟细的管状膜泡,从而得到一些长短,粗细不同的管状生物膜泡。我们从极小曲面悬链面的角度出发,研究管状膜泡的形成结构特点。最后我们认为管状膜泡的形成不同形状是与对膜泡施加拉力、细管的半径、以及管子的长度等因素有着密切的联系。  相似文献   

5.
牙龈卟啉单胞菌及其细胞外膜泡多克隆抗体的比较研究   总被引:1,自引:0,他引:1  
分别制备牙龈卟啉单胞菌47A- 1 及其膜泡的多克隆抗体,并用间接免疫荧光法对67 个临床标本进行检测。结果经统计学检验,两种抗体显著相关,P< 0.01 ,符合率为82.1 % ;膜泡抗体的检出率高于菌体抗体,P<0.05 ;膜泡抗体相对于菌体抗体的敏感性为93.5 % 。膜泡抗体与牙龈卟啉单胞菌以外的其他口腔细菌无交叉反应,说明膜泡抗体的特异性较强。  相似文献   

6.
用TBA法测定了三尖杉酯碱的膜脂氧化效应;用纳秒荧光偏振技术研究了氧化膜脂对DPH标记大鼠心肌肌质网膜脂、ANM标记心肌肌质网Ca2+-ATPa功能及磷酸化微区运动状态的影响。随膜脂中氧化磷脂的增加,肌质网膜脂双层的微粘度增加,磷脂分子摆动角减小:DPH的荧光强度减弱,荧光寿命缩短。Ca2+-ATPase的ATP水解活性降低。ANM标记Ca2+-ATPase磷酸化微区的r(t)曲线半衰期减至68±4nsec。结果提示,膜脂中氧化磷脂的含量影响膜脂双层的流动性及Ca2+-ATPase的ATP水解活性和磷酸化微区的微细结构。  相似文献   

7.
1 实验目的观察血液通入O2或CO2过程中的颜色变化,从而对血红蛋白的生理功能有初步的认识;观察血液遇到CO后的颜色变化,了解CO中毒的危害。2 实验原理血红蛋白(Hb)是人和其他脊椎动物红细胞的成分,主要功能是运输O2和CO2。Hb能与氧迅速结合成氧合血红蛋白(HbO2),也能迅速分离。其结合与分离取决于血液中氧分压的高低,当血液流经肺部时,氧分压增高,使得大部分Hb与O2结合成HbO2,血液颜色鲜红,为动脉血;血液流经组织时,氧分压下降,一部分HbO2解离,释放出O2,供组织利用,血液变为颜…  相似文献   

8.
中华大蟾蜍长足的卵母细胞,经注入装载水相孕酮的红细胞膜泡,能被诱发成熟;直接注入水相孕酮的卵母细胞,无能恢复成熟分裂。将蛋白酶处理的红细胞制备成装载水相孕酮的膜泡,注入卵内,照样能诱发其成熟分裂;然而,分别用根皮素结合或磷脂酶A_2水解红细胞膜磷脂,制备的膜泡,虽亦包裹着水相孕酮,但注射的卵母细胞都未能被诱发成熟。这些结果表明,在通过红细胞膜转运孕酮诱发卵母细胞成熟过程中,红细胞膜上的某些膜蛋白可能不是必要的成份,而膜磷脂类却是关键成份,它不仅可能保证孕酮不被迅速代谢,且保证孕酮从卵母细胞内部诱发成熟分裂。  相似文献   

9.
莱氏衣原体膜上Mg~(2+)-ATPase用DOC溶解后,经Sepharose-6B和DEAE-CelluloseDE-52离子交换柱,得到了部分纯化的Mg~(2+)ATPase,并将此ATPase与不同极性头部的磷脂和膜糖脂重组,研究了不同的极性头部的磷脂和膜糖脂对ATPase活性的影响。此酶的活性不依赖酸性磷脂,PG、DPG、大豆磷脂等明显抑制酶活性,中性磷脂DMPC、PE、PC则能增加酶活性,其中尤以非双层脂PE的作用最为明显。从莱氏衣原体膜上提取的糖脂(MGDG,DGDG)单独和ATPase重组时,酶活性增加并不明显,当MGDG和DGDG以等比例混合时,能大大地增加酶活性。这表明Mg~(2+)-ATPase的活性很大程度上与磷脂的表面电荷及磷脂的组成相关。  相似文献   

10.
槲皮素对完整HL┐60细胞中肌醇磷脂转换的抑制作用康铁邦梁念慈(广东医学院医用生化研究所,湛江524023)肌醇磷脂信使系统在生物信号的跨膜传递方面起重要作用,并与细胞增殖及肿瘤形成有密切联系[1~5],有报道:肿瘤细胞或组织中磷脂酰肌醇4-激酶(P...  相似文献   

11.
The effect of activated oxygen species on human hemoglobins was studied. All radicals induced polymerization in Hb A both intermolecular and by cross-linking of subunits (intramolecular). However, a system producing mainly superoxide ion gave the most important changes. An oxidation step is necessary to produce polymerization since in the case of cyanmet Hb A (where there is no possible oxidation) no polymerization occurs. The effect of O-2 on blocked SH β 93 Hbs or on the abnormal Hbs tested was practically identical to that on Hb A although their autoxidation rates were modified. Consequently the action of radicals is different from autoxidation processes and the modified residues in the abnormal hemoglobins are not involved in the action of superoxide ion on Hb.

The kinetics of oxidation of Hb by H2O2 followed two steps: the first is the oxidation of oxy Hb to ferri Hb and the second is hemichrome formation. This last step is independent of the presence of H2O2 since it is not inhibited by catalase. The kinetics of oxidation to ferri Hb were of second order and the rate constant was found to be 16 M-1 sec-1.  相似文献   

12.
The reaction between hydroxylamine (NH2OH) and human hemoglobin (Hb) at pH 6-8 and the reaction between NH2OH and methemoglobin (Hb+) chiefly at pH 7 were studied under anaerobic conditions at 25 degrees C. In presence of cyanide, which was used to trap Hb+, Hb was oxidized by NH2OH to methemoglobin cyanide with production of about 0.5 mol NH+4/mol of heme oxidized at pH 7. The conversion of Hb to Hb+ was first order in [Hb] (or nearly so) but the pseudo-first-order rate constant was not strictly proportional to [NH2OH]. Thus, the apparent second-order rate constant at pH 7 decreased from about 30 M-1 X s-1 to a limiting value of 11.3 M-1 X s-1 with increasing [NH2OH]. The rate of Hb oxidation was not much affected by cyanide, whereas there was no reaction between NH2OH and carbonmonoxyhemoglobin (HbCO). The pseudo-first-order rate constant for Hb oxidation at 500 microM NH2OH increased from about 0.008 s-1 at pH 6 to 0.02 s-1 at pH 8. The oxidation of Hb by NH2OH terminated prematurely at 75-90% completion at pH 7 and at 30-35% completion at pH 8. Data on the premature termination of reaction fit the titration curve for a group with pK = 7.5-7.7. NH2OH was decomposed by Hb+ to N2, NH+4, and a small amount of N2O in what appears to be a dismutation reaction. Nitrite and hydrazine were not detected, and N2 and NH+4 were produced in nearly equimolar amounts. The dismutation reaction was first order in [Hb+] and [NH2OH] only at low concentrations of reactants and was cleanly inhibited by cyanide. The spectrum of Hb+ remained unchanged during the reaction, except for the gradual formation of some choleglobin-like (green) pigment, whereas in the presence of CO, HbCO was formed. Kinetics are consistent with the view advanced previously by J. S. Colter and J. H. Quastel [1950) Arch. Biochem. 27, 368-389) that the decomposition of NH2OH proceeds by a mechanism involving a Hb/Hb+ cycle (reactions [1] and [2]) in which Hb is oxidized to Hb+ by NH2OH.  相似文献   

13.
We compared oxygenation and anaerobic oxidation reactions of a purified complex of human hemoglobin (Hb) and haptoglobin (Hb-Hp) to those of uncomplexed Hb. Under equilibrium conditions, Hb-Hp exhibited active-site heterogeneity and noncooperative, high-affinity O(2) binding (n(1/2)=0.88, P(1/2)=0.33mm Hg in inorganic phosphate buffer at pH 7 and 25°C). Rapid-reaction kinetics also exhibited active-site heterogeneity, with a slower process of O(2) dissociation and a faster process of CO binding relative to uncomplexed Hb. Deoxygenated Hb-Hp had significantly reduced absorption at the λ(max) of 430nm relative to uncomplexed Hb, as occurs for isolated Hb subunits that lack T-state stabilization. Under comparable experimental conditions, the redox potential (E(1/2)) of Hb-Hp was found to be +54mV, showing that it is much more easily oxidized than uncomplexed Hb (E(1/2)=+125mV). The Nernst plots for Hb-Hp oxidation showed no cooperativity and slopes less than unity indicated active-site heterogeneity. The redox potential of Hb-Hp was unchanged by pH over the range of 6.4-8.3. Exposure of Hb-Hp to excess hydrogen peroxide (H(2)O(2)) produced ferryl heme, which was found to be more kinetically inert in the Hb-Hp complex than in uncomplexed Hb. The negative shift in the redox potential of Hb-Hp and its stabilized ferryl state may be central elements in the protection against Hb-induced oxidative damage afforded by formation of the Hb-Hp complex.  相似文献   

14.
The recently discovered peroxyl radical scavenging properties of plasmalogen phospholipids led us to evaluate their potential interactions with alpha-tocopherol. The oxidative decay of plasmalogen phospholipids and of polyunsaturated fatty acids as induced by peroxyl radicals (generated from 2,2'-azobis-2-amidinopropane hydrochloride; AAPH) was studied in micelles using 1H-NMR and chemical analyses. In comparison with alpha-tocopherol, a 20- to 25-fold higher concentration of plasmalogen phospholipids was needed to induce a similar inhibition of peroxyl radical-mediated oxidation of polyunsaturated fatty acids. Plasmalogen phospholipids and alpha-tocopherol protected each other from oxidative degradation. In low-density lipoproteins (LDL) and micelles supplemented with plasmalogen phospholipids plus alpha-tocopherol, the peroxyl radical-promoted oxidation was additively diminished. The differences in the capacities to inhibit oxidation processes induced by peroxyl radicals between the plasmalogen phospholipids and alpha-tocopherol were less pronounced in the LDL particles than in the micelles. In conclusion, plasmalogen phospholipids and alpha-tocopherol apparently compete for the interaction with the peroxyl radicals. Oxidation processes induced by peroxyl radicals are inhibited in an additive manner in the presence of the two radical scavengers. The contribution of the plasmalogen phospholipids to the protection against peroxyl radical promoted oxidation in vivo is expected to be at least as important as that of alpha-tocopherol.  相似文献   

15.
Red cells from several animal species were treated with acetylphenylhydrazine and a comparative study of the oxidation of hemoglobin (Hb) and glutathione (GSH) made. Wide interspecies differences were observed but the oxidation of GSH paralleled that of Hb. Added glucose protected both Hb and GSH from oxidation; GSH by itself exercises a protective effect on Hb. The characteristic rates of oxidation of GSH in the different species can be observed only in the presence of oxyhemoglobin but not carboxyhemoblobin or methemoglobin. The oxidation of Hb appears to be the primary event, the oxidation of GSH being a consequence thereof.  相似文献   

16.
Li DJ  Yan RW  Luo H  Zou GL 《Biochemistry. Biokhimii?a》2005,70(10):1173-1179
In this work, the reactions of nitrite (NO2-) and peroxynitrite (ONOO-) with organic molecules as well as with hemoglobin (Hb) were examined and the potential interference with the detection of hydrogen peroxide and Hb was investigated. ONOO- at low concentrations (35-140 microM) induced a concentration-dependent oxidation of o-phenylenediamine and guaiacol, and this process can be improved by the addition of Hb in a concentration-dependent manner. This enhancing effect of Hb was possibly due to the formation of such highly reactive species as ferrylHb during the reaction of ONOO- and Hb. NO2- also oxidized the aromatic amine o-phenylenediamine, but its efficiency was much lower than that of ONOO-. A 300-fold excess of NO2- over hydrogen peroxide inhibited the oxidation of Pyrogallol Red mediated by hydrogen peroxide and Hb, which was due in part to the reaction of NO2- with Hb ferryl species compound I and compound II and the phenoxyl radical. These data suggest that ONOO- and NO2- can interfere with the detection of hydrogen peroxide. The overestimation or underestimation of the hydrogen peroxide detected is dependent upon the organic molecule utilized for detection and the relative rate of NO2-, superoxide, and ONOO- generation.  相似文献   

17.
The oxidation of low density lipoproteins (LDL) has been correlated with atherogenesis through a variety of pathways. The process involves nonspecific fragmentation, oxidative breakdown, and modification of the lipids and protein of LDL. The process yields a variety of bioactive products, including aldehyde-containing phospholipids, which can cross-react with primary amines (i.e. peptides or phospholipid head groups) to yield Schiff base products. We also demonstrate that such oxidized phospholipid products may further react through a post-oxidation chemical pathway involving aldol condensation. EO6, an IgM monoclonal autoantibody to oxidized phospholipids, blocks the uptake of oxidized LDL (OxLDL) by macrophages. Because the epitope(s) of EO6 also blocks the uptake of OxLDL, a series of oxidized phospholipids, their peptide complexes, and their aldol condensates have been synthesized and characterized, and their antigenicity has been determined. This study defines structural motifs of oxidized phospholipids responsible for antigenicity for EO6. Certain monomeric phospholipids containing short chain fatty acids were antigenic whether oxidized or not in the sn-2 position. However, oxidized phospholipids containing sn-1 long chain fatty acids were not antigenic unless the sn-2 oxidized fatty acid contained an aldehyde that first reacted with a peptide yielding a Schiff base or the sn-2 oxidized fatty acid underwent an aldol type self-condensation. Our data indicate that the phosphorylcholine head group is essential for antigenicity, but its availability depends on the oxidized phospholipid conformation. We suggest that upon oxidation, similar reactions occur in phospholipids on the surface of LDL, generating ligands for macrophage recognition. Synthetic imine adducts of oxidized phospholipids of this type are capable of blocking the uptake of OxLDL.  相似文献   

18.
Rat ventral prostate incorporated (1-14C)acetate, (1-14C)palmitate and (1-14C)linoleate into different phospholipids in a time-dependent process. The rate of incorporation into total phospholipids was higher with linoleate (10.0 nmol/g) than with either palmitate (5.8 nmol/g) or acetate (4.7 nmol/g). Predominant labelling with all the radioactive substrates assayed was found in choline glycerophospholipids (PC). The radioactive profiles for linoleate in the other ventral prostate phospholipids differed from those obtained with palmitate and acetate. Specifically linoleate was incorporated into inositol glycerophospholipids plus lysoethanolamine glycerophospholipids (PI+LPE) and not into sphingomyelin (SM), while palmitate and acetate incorporated into SM but not into PI+LPE. Acetate showed the highest oxidation to CO2 whereas no differences were observed in the radioactivity incorporated into CO2 from a saturated (palmitate) or an essential unsaturated fatty acid (linoleate). These studies also show zinc-dependence by the acetate to CO2 oxidation.Abbreviations PL total phospholipids - PC choline glycerophospholipids - PE ethanolamine glycerophospholipids - PI+LPE inositol glycerophospholipids plus lysoethanolamine glycerophospholipids - PS serine glycerophospholipids - SM sphingomyelin  相似文献   

19.
Patients with increased haemolytic haemoglobin (Hb) have 10-20-times greater incidence of cardiovascular mortality. The objective of this study was to evaluate the role of Hb peroxidase activity in LDL oxidation. The role of Hb in lipid peroxidation, H(2)O(2) generation and intercellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1) was assessed using NaN(3), a peroxidase inhibitor, catalase, a H(2)O(2) decomposing enzyme and human umbilical vein endothelial cells (HUVECs), respectively. Hb induced H(2)O(2) production by reacting with LDL, linoleate and cell membrane lipid extracts. Hb-induced LDL oxidation was inhibited by NaN(3) and catalase. Furthermore, Hb stimulated ICAM-1 and VCAM-1 expression, which was inhibited by the antioxidant, probucol. Thus, the present study suggests that the peroxidase activity of Hb produces atherogenic, oxidized LDL and oxidized polyunsaturated fatty acids (PUFAs) in the cell membrane and reactive oxygen species (ROS) formation mediated Hb-induced ICAM-1 and VCAM-1 expression.  相似文献   

20.
Cell-free hemoglobin (Hb) enhances the oxidation-related toxicity associated with inflammation, ischemia, and hemolytic disorders. Hb is highly vulnerable to oxidative damage, and irreversible structural changes involving iron/heme oxidation, heme-adduct products, and amino acid oxidation have been reported. Specific structural features of Hb, such as unconstrained alpha-chains and molecular size, determine the efficiency of interactions between the endogenous Hb scavengers haptoglobin (Hp) and CD163. Using HPLC, mass spectrometry, and Western blotting, we show that H(2)O(2)-mediated Hb oxidation results in the formation of covalently stabilized globin multimers, with prominent intramolecular crosslinking between alpha-globin chains. These structural alterations are associated with reduced Hp binding, reduced CD163 interaction, and severely impaired endocytosis of oxidized Hb by the Hp-CD163 pathway. As a result, when exposed to oxidized Hb, CD163-positive HEK293 cells and human macrophages do not increase hemeoxygenase-1 (HO-1) expression, the physiological anti-oxidative macrophage response to Hb exposure. Failed Hb clearance, inadequate HO-1 expression, and the subsequent accumulation of oxidatively damaged Hb species might thus contribute to pathologies related to oxidative stress.  相似文献   

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