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81.
Abstract: Recent immunocytochemical studies indicated that the myelin-associated glycoprotein (MAG) is localized in the periaxonal region of central nervous system (CNS) and peripheral nervous system (PNS) myelin sheaths but previous biochemical studies had not demonstrated the presence of MAG in peripheral nerve. The glycoproteins in rat sciatic nerves were heavily labeled by injection of [3H]fucose in order to re-examine whether MAG could be detected chemically in peripheral nerve. Myelin and a myelin-related fraction, WI, were isolated from the nerves. Labeled glycoproteins in the PNS fractions were extracted by the lithium diiodosalicylate (LIS)-phenol procedure, and the extracts were treated with antiserum prepared to CNS MAG in a double antibody precipitation. This resulted in the immune precipitation of a single [3H]fucose-labeled glycoprotein with electrophoretic mobility very similar to that of [14C]fucose-labeled MAG from rat brain. A sensitive peptide mapping procedure involving iodination with Bolton-Hunter reagent and autoradiography was used to compare the peptide maps generated by limited proteolysis from this PNS component and CNS MAG. The peptide maps produced by three distinct proteases were virtually identical for the two glycoproteins, showing that the PNS glycoprotein is MAG. The MAG in the PNS myelin and Wl fractions was also demonstrated by Coomassie blue and periodic acid-Schiff staining of gels on which the whole US-phenol extracts were electrophoresed, and densitometric scanning of the gels indicated that both fractions contained substantially less MAG than purified rat brain myelin. The presence of MAG in the periaxonal region of both peripheral and central myelin sheaths is consistent with a similar involvement of this glycoprotein in axon-sheath cell interactions in the PNS and CNS.  相似文献   
82.
Dopamine-stimulated adenylate cyclase activity from various rat brain areas was inhibited in vitro by lithium. The inhibition was dose-dependent and non-competitive. In lithium-treated rats no changes in enzyme activity could be demonstrated.  相似文献   
83.
84.
The molecular basis of bipolar disorder (BD) is still unknown as is the mechanism through which lithium, the therapy of choice, exerts its effects in treatment of BD. So far, no biomarkers exist to facilitate diagnosis of BD or treatment evaluation. To investigate whether BD and its treatment with lithium leaves a characteristic signature in the serum proteome, we used SELDI‐TOF MS to analyze individual serum samples from BD patients treated with lithium (BD‐plus‐Li, n=15) or other drugs (BD‐minus‐Li, n=10) and from healthy controls (n=15). Interestingly, features of 28 kDa (one peak) and 14 kDa (three peaks) showed a decreased level in the BD‐minus‐Li group and a level restored to that of the control group in the BD‐plus‐Li group. To reveal the identity of these features, we subjected pooled serum samples from both BD groups to the 2‐D DIGE technology and identified 28 kDa apolipoprotein A‐I (apo A‐I) and three 14 kDa fragments thereof as upregulated in the BD‐plus‐Li group. Immunoturbidimetry, a routine clinical assay, verified the characteristic apo A‐I signature in individual serum samples. In conclusion, we propose apo A‐I as a candidate marker that can visualize response to lithium treatment at the serum protein level.  相似文献   
85.
Cubism     
The syntheses of [Li2(salen)(DME)]2, [Li2(salpn)(THF)]2, [Na2(salpn)(Et2O)]2 and [Na2(salpn)(DME)]2 (H2salen = (o-HOC6H4CHNCH2)2; H2salpn = (o-HOC6H4CHNCH2)2CH2) involve treatment of the appropriate Schiff base with either n-BuLi or MN(SiMe3)2 (M = Li, Na) in DME, THF or Et2O. The X-ray crystal structures of these compounds show that they all have very similar structural motifs comprising M4O4 (M = Li or Na) ‘cubanoid’ cores. The synthesis and X-ray crystal structure of [{Nd(salpn)(THF)Cl}{LiCl(THF)}2]2 obtained by treatment of [Na2(salpn)(THF)] with [NdCl3 · 2(LiCl)] has a dimeric [Nd(salpn)(THF)Cl]2 molecule sandwiched between two Li2Cl2(THF)2 units.  相似文献   
86.
Glycogen Synthase Kinase-3 (GSK3): Inflammation, Diseases, and Therapeutics   总被引:15,自引:0,他引:15  
Deciphering what governs inflammation and its effects on tissues is vital for understanding many pathologies. The recent discovery that glycogen synthase kinase-3 (GSK3) promotes inflammation reveals a new component of its well-documented actions in several prevalent diseases which involve inflammation, including mood disorders, Alzheimer’s disease, diabetes, and cancer. Involvement in such disparate conditions stems from the widespread influences of GSK3 on many cellular functions, with this review focusing on its regulation of inflammatory processes. GSK3 promotes the production of inflammatory molecules and cell migration, which together make GSK3 a powerful regulator of inflammation, while GSK3 inhibition provides protection from inflammatory conditions in animal models. The involvement of GSK3 and inflammation in these diseases are highlighted. Thus, GSK3 may contribute not only to primary pathologies in these diseases, but also to the associated inflammation, suggesting that GSK3 inhibitors may have multiple effects influencing these conditions. Special issue dedicated to John P. Blass.  相似文献   
87.
目的:研究不同首次剂量匹罗卡品对氯化锂-匹罗卡品颞叶癫痫大鼠模型诱发成功率、死亡率的影响。方法:90只SD大鼠随机分为三组,每组首次使用匹罗卡品剂量:A组10mg/kg、B组20mg/kg、C组30mg/kg;随后采用多次注射10mg/kg匹罗卡品,比较3组癫痫持续状态诱发成功率、死亡率的差异。结果:A、B、C组癫痫持续状态诱发成功率分别为66.7%、90%、93.3%。其中A组与B组之间诱发成功率差异有统计学意义,P<0.05;C组与B组之间相比,差异无统计学意义,P>0.05。三组死亡率分别为20%、23.3%、57.1%,其中A组与B组之间差异无统计学差异,P>0.05,;C组与其它两组相比较差异有统计学差异,P<0.05。结论:首次剂量20mg匹罗卡品,然后10mg多次反复注射,癫痫持续状态诱发成功率高、死亡率低,是一种理想的颞叶癫痫模型。  相似文献   
88.
Lithium has been shown to be neuroprotective against various insults including ethanol exposure. We previously reported that ethanol-induced apoptotic neurodegeneration in the postnatal day 7 (P7) mice is associated with decreases in phosphorylation levels of Akt, glycogen synthase kinase-3β (GSK-3β), and AMP-activated protein kinase (AMPK), and alteration in lipid profiles in the brain. Here, P7 mice were injected with ethanol and lithium, and the effects of lithium on ethanol-induced alterations in phosphorylation levels of protein kinases and lipid profiles in the brain were examined. Immunoblot and immunohistochemical analyses showed that lithium significantly blocked ethanol-induced caspase-3 activation and reduction in phosphorylation levels of Akt, GSK-3β, and AMPK. Further, lithium inhibited accumulation of cholesterol ester (ChE) and N-acylphosphatidylethanolamine (NAPE) triggered by ethanol in the brain. These results suggest that Akt, GSK-3β, and AMPK are involved in ethanol-induced neurodegeneration and the neuroprotective effects of lithium by modulating both apoptotic and survival pathways.  相似文献   
89.
Guadagnini D  Gontijo JA 《Life sciences》2006,79(17):1666-1673
The mechanism by which blood pressure rises in the SHR strain remains to be elucidated. Also, there is a surprising lack of experimental data on the natriuretic mechanisms induced by intracerebroventricular (ICV) injection of hyperosmotic saline (HoS) in SHR. In normotensive animals ICV injection of HoS causes coordinated responses including natriuresis and inhibition of renal sympathetic nerve activity. In the present study, we hypothesized that presumable blunting of the sympathoinhibitory response to centrally injected HoS may contribute to a lack of suppression of efferent renal nerve outflow in SHR. To test this hypothesis, the present study evaluates the influence of renal denervation after central HoS injection at increasing concentration on urinary sodium handling in SHR compared with age-matched normotensive WKy rats. The study confirmed previous data showing pronounced natriuretic response to centrally HoS stimuli but also demonstrated that the creatinine clearance (C(Cr)) and fractional sodium excretion responses diminished as graded NaCl concentrations were increased in WKy rats but not in SHR. In SHR, increased FE(Na) obtained by central administration of 0.90 M NaCl was produced by increases in proximal (FEP(Na)) and post-proximal fractional urinary sodium rejection without changes in C(Cr), indicating a direct tubular effect. Renal denervation caused significant antinatriuresis by decreased C(Cr) and increased FEP(Na) reabsorption in WKy but not in SHR. This study suggests that natriuresis observed only after higher centrally HoS stimuli with a rightward shift of dose-response curve provides evidence of a down-regulation of target organ responsiveness of periventricular areas of genetic hypertensive rats.  相似文献   
90.
目的探讨急性给锂小鼠大脑皮层一氧化氮合酶(NOS)活性与蛋白表达的时程变化及其意义.方法选用昆明小鼠40只,分为对照组和腹腔注射1.5mmol/Kg氯化锂(LiCl)即刻、0.5h、1h、3h、6h、12h、24h组,每组5只.采用NADPH-d黄递酶组织化学和ABC免疫组化法,观察急性给锂后不同时程小鼠大脑皮层NOS和nNOS阳性神经元数目的变化.结果急性给锂即刻小鼠大脑皮层NOS和nNOS阳性神经元数目明显增加(P<0.01),1h后达到高峰(P<0.01),6h和12h恢复到正常水平(P>0.05),24hNOS阳性神经元又明显增高(P<0.01),nNOS阳性神经元处于正常水平(P>0.05).结论本实验提示急性给锂对小鼠大脑皮层NOS和nNOS阳性神经元数目有一定影响,这种变化可能是锂影响脑发育及锂的神经毒性的机理之一.  相似文献   
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