Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P43026 (lipopolysaccharide)
62,215 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The effect of sodium salicylate at a dose of 200 and 1000 mg/kg, per os, on body temperature and plasma cation pattern was investigated in healthy rabbits and those infected with 1 microgram/kg iv of lipopolysaccharide Escherichia coli (LPS). An increase in plasma Cu2+ and decrease in Fe2+ and Mg2+ concentration appeared to be the most important effect in LPS treated animals. Sodium salicylate in a dose-dependent manner attenuated the febrile response to LPS. Furthermore, this antipyretic antagonized the rise of Cu2+ concentration induced by pyrogen. Smaller increases of K+ and Mg2+ were observed during antipyresis than in the group of rabbits treated with sodium salicylate alone.
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PMID:The plasma cation pattern in fever and sodium salicylate antipyresis. 716 17

Increased level of Cu2+, induced by intravenous injection of CuCl2 at a dose of 2 mg Cu2+/kg in normothermic and Escherichia coli lipopolysaccharide treated rabbits, enhanced the antipyretic effect of sodium salicylate. Furthermore, in the presence of CuCl2, sodium salicylate caused a fall of body temperature in normothermic rabbits.
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PMID:The effect of sodium salicylate on body temperature in normothermic and febrile rabbits with enhanced level of Cu2+. 734 11

A critical step in development of atherosclerosis is the interaction of oxidized low-density lipoprotein (LDL) with mononuclear phagocytes. Oxidized LDL, as well as acetyl-LDL, is rapidly taken up into macrophages via a family of scavenger receptors. We report that macrophages treated with oxidized LDL have markedly lower levels of mRNA specific for the genes MCP-1, TNF-alpha, IL-1 alpha, and KC as measured by Northern blot analyses of lipopolysaccharide (LPS)-stimulated macrophages. By contrast, acetyl-LDL does not inhibit these genes at the doses at which oxidized-LDL is effective. Similar effects are observed whether the LDL is oxidized in the presence of Cu2+ or of Fe2+. Such inhibition also occurs when maleylated bovine serum albumin (BSA), which also clears by one or more scavenger receptors on macrophages, is used as the stimulant. Fe2+ or Cu2+ oxidized LDL inhibits release of nitric oxide when triggered by LPS and direct cytolysis of tumor cells when triggered by maleylated BSA or LPS. Taken together, the data presented indicate that oxidized LDL inhibits induction of several important gene RNAs as well as functional markers that characterize the development of inflammatory and fully activated macrophages.
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PMID:Effects of oxidized LDL on mononuclear phagocytes: inhibition of induction of four inflammatory cytokine gene RNAs, release of NO, and cytolysis of tumor cells. 788 14

To determine whether cytokines or lipopolysaccharide (LPS) are involved in the induction of superoxide dismutase (SOD) in the nervous system, we examined the effects of these substances on the levels of SOD in cultured mouse astrocytes. Treatment of astrocytes with 10(2) to 10(4) U/ml tumor necrosis factor-alpha for 3 days increased the levels of Mn SOD in a dose- and time-dependent manner to as much as six times the level under nontreated conditions. Treatment with 1.0 microgram/ml LPS for 3 days elicited a fourfold increase in levels of Mn SOD, and the effect of LPS was also dose dependent. Furthermore, Mn SOD in astrocytes was induced by a 3-day exposure to interleukin-1 alpha at concentrations of 10(2) or 10(3) U/ml. However, these stimuli had no effect on levels of copper-zinc SOD (Cu/Zn SOD) in astrocytes. By contrast, interferon-gamma did not change the levels of either Mn or Cu/Zn SOD in the cells. The results indicate that the selective induction of Mn SOD by cytokines and LPS, which has been observed in nonnervous tissues, may also occur in nervous tissues. The induction of Mn SOD may represent a mechanism for protection of cells from oxidative stress.
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PMID:Induction of manganese superoxide dismutase by cytokines and lipopolysaccharide in cultured mouse astrocytes. 803 84

The antiinflammatory efficacy of CuPu(Py)2 ([[N,N'-bis(2-pyridylmethylene)-1,4-butanediamine] (N,N',N'',N''')]-Cu2+), a serum stable active center analog of Cu2Zn2superoxide dismutase (SOD), was tested in vitro and in vivo in male Wistar rats suffering from potassium peroxochromate-induced inflammation. Parameters including 99mTc gamma-scintigraphic imaging, the arthritis score, the plasma superoxide dismutase activity, the inhibition of plasma sulfhydryl depletion as well as mitogenic and phagocytic responses were used to quantify the disease activity. All parameters improved impressively during the treatment with CuPu(Py)2 and resembled those of healthy animals after 21 days. The arthritis score was inhibited by 80% (P > 0.001) and the plasma SOD activity enhanced by 380% (P > 0.001). The depletion of plasma sulfhydryls and the leukocytic responses to concanavalin A, tetradecanoylphorbolacetate, and lipopolysaccharide were significantly reduced (P > 0.001) and correlated well with the arthritis score. The collapse of antioxidant defenses in human plasma as well as the depolymerization of hyaluronic acid was mimicked in vitro and successfully inhibited by CuPu(Py)2. Oxidant-induced injury of plasma components during the aqueous decay of potassium peroxochromate were demonstrated to activate the oxidative burst of phagocytes in human blood. The role of impaired pro- and antioxidant balances in the etiology of inflammatory and autoimmune rheumatic diseases is discussed.
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PMID:Reactivity of an active center analog of Cu2Zn2superoxide dismutase in murine model of acute and chronic inflammation. 822 66

Intraperitoneal injection of lipopolysaccharide (LPS) at a dose of 50 micrograms/kg increased the activity and the mRNA level of manganese superoxide dismutase (Mn-SOD) but did not change those of copper/zinc-SOD (Cu/Zn-SOD) in the rat pancreas. Both the formation of pancreatic edema and the elevation of serum amylase during caerulein pancreatitis were significantly relieved in the rats pretreated with LPS (50 micrograms/kg) compared with the rats without the pretreatment. These results support the view that superoxides play a key role in the pathogenesis of caerulein pancreatitis, and that Mn-SOD in the pancreas may work as a defense against the development of this disease.
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PMID:Lipopolysaccharide induces manganese superoxide dismutase in the rat pancreas: its role in caerulein pancreatitis. 855 79

The cascade of physiologic mechanisms in response to infection, the acute phase response, is recognized as having a major role in host defense. Two such responses are an increase in plasma copper and activation of the hypothalamic-pituitary-adrenal axis, which are consistently reported to occur during bacterial infection. We aimed to determine whether the alterations in plasma copper and corticosterone were conditionable using the conditioned taste aversion paradigm. The regime involved the pairing of a novel-tasting saccharine solution (the conditioned stimulus) with lipopolysaccharide (the unconditioned stimulus). Seven days after the initial pairing of these stimuli (the test day), the saccharine solution was represented. Animals exposed to this condition displayed a significant decrease in plasma copper levels. In addition, these rats experienced a reduction in plasma corticosterone that was time dependent. Paradoxically, the conditioned response of both these variables were in a direction contrary to that reported during bacterial infection. These results suggest that some acute phase responses may condition as a rebound response, or in an opposing trend to that occurring as the initial reaction.
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PMID:Paradoxical conditioning of the plasma copper and corticosterone responses to bacterial endotoxin. 857 1

This article reviews studies of the molecular biology of the avian metallothionein (MT) genes. Analysis of cloned genes and/or cDNAs from chicken, turkey, pheasant and quail suggests that each of these species possesses a very simple MT gene family. The MT from these birds is a cysteine-rich protein of 63 amino acids that shares extensive structural homology with the mammalian MTs, and, remarkably, the deduced amino acid sequence of the major metallothionein is identical in each of these birds. The chicken MT gene is inducible by dietary or injected metal ions [i.e., zinc (Zn) and copper (Cu)], bacterial lipopolysaccharide and oxidative stress. Furthermore, it is expressed during liver development. The turkey and chicken MT genes are identical in gross structure to other functional MT genes. They consist of three exons separated by two intervening sequences. Comparisons of the nucleotide sequences of the turkey and chicken MT genes revealed regions of exceptionally high sequence conservation, suggesting important functions such as splicing, polyadenylation and transcriptional activation. Structure-function studies of the chicken MT promoter using transient transfection assays and transgenic mice have revealed cis-acting promoter sequences involved in the induction of chicken MT gene expression by metals ions. A metal-responsive enhancer was located in the proximal 107-bp of the chicken MT promoter in a region highly conserved in both the turkey and chicken MT genes. Function of this enhancer element apparently requires cooperation of transcription factors interacting with an Sp 1 binding site and a single palindromic metal-responsive element. In this regard, the structure of the proximal region of the chicken and turkey MT promoters is unique. Our current studies suggest that this enhancer regulates gene expression in a position-independent manner in transgenic mice.
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PMID:Avian metallothioneins: structure, regulation and evolution. 864 78

Exploitation of the metabolic capabilities of the genus Sphingomonas could provide important commercial benefits to biotechnology. Recent advances have demonstrated that these organisms have unique abilities to degrade refractory contaminants, to serve as bacterial antagonists to phytopathogenic fungi, and to secrete the highly useful gellan exopolysaccharides. Unfortunately, Sphingomonas are also animal pathogens and can readily degrade the copper pipes in drinking water distribution systems. The closely related Zymomonas could be important for commercial ethanol production. These Gram-negative aerobic bacteria are characterized by an outer membrane that contains glycosphingolipids, but lacks lipopolysaccharide. Their distribution in environmental samples has not been systematically examined as yet.
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PMID:The genus Sphingomonas: physiology and ecology. 878 34

To determine whether lipopolysaccharide (LPS) and tumor necrosis factor-alpha (TNF-alpha) are involved in the induction of superoxide dismutase (SOD) in gingival tissue, we examined their effect on induction of SOD isozymes in cultured normal (NGF) and phenytoin-induced hyperplastic (PHF) gingival fibroblasts. Treatment of both NGFs and PHFs with 10 to 50 ng/mL TNF-alpha for 24 hours increased the level of manganese SOD (MnSOD) to as much as four times the level of untreated cultures. PHFs, but not NGFs, were shown to be responsive to TNF-alpha in eliciting a significant increase in copper-zinc SOD (Cu/ZnSOD), albeit in a lesser amount than MnSOD. Additionally, treatment of both types of cells with 5 to 50 mg/mL of LPS for 24 hours also elicited an increase in the levels of MnSOD. Again, an LPS-induced increase in Cu/ZnSOD levels could only be demonstrated in PHFs, but not in NGFs. These observations were further confirmed by comparing the achromatic bands associated with SOD isozymes exhibited in the electrophoretogram using a nondenaturing polyacrylamide electrophoresis technique. These results indicate that TNF-alpha and LPS were capable of inducing both MnSOD and Cu/ZnSOD simultaneously in PHF fibroblasts. PHFs may be inherently more capable than NGFs in combating oxidative stress.
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PMID:Induction of superoxide dismutase isozymes by tumor necrosis factor-alpha and lipopolysaccharide in cultured normal and hyperplastic gingival fibroblasts. 885 57


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