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Biomedical subjects

N Chen

Publications and source records attributed to N Chen.

At least 91 records · Page 5Linked to original sources

The majority of duck hepatitis B virus reverse transcriptase in cells is nonencapsidated and is bound to a cytoplasmic structure.

The hepadnavirus reverse transcriptase binds cotranslationally to the viral pregenomic RNA. This ribonucleoprotein complex is then encapsidated into nascent viral core particles, where the reverse transcriptase copies the viral RNA into DNA. Here we report that 75% of the duck hepatitis B virus reverse transcriptase present in transfected LMH cells does not follow this well-known pathway but rather exists in the cell separate from the core protein or nucleocapsids. The nonencapsidated reverse transcriptase is also abundant in infected duck liver. The nonencapsidated reverse transcriptase exists as a complex set of isoforms that are most likely produced by posttranslational modification. Interestingly, only the smallest of these isoforms is encapsidated into viral core particles. The nonencapsidated reverse transcriptase is bound to a large cellular cytoplasmic structure(s) in a detergent-sensitive complex. The cellular distribution of the reverse transcriptase only partially overlaps that of the core protein, and this distribution is unaffected by blocking encapsidation. These observations raise the possibilities that the metabolic fate of the reverse transcriptase may be posttranscriptionally regulated and that the reverse transcriptase may have roles in the viral replication cycle beyond its well-known function in copying the viral genome.

Animals↗

Competitive inhibition of NMDA receptor-mediated currents by extracellular calcium chelators.

Calcium chelators have been widely used in electrophysiological recordings of N-methyl-D-aspartate (NMDA) receptor-mediated currents, as well as in studies of excitotoxicity. Intracellularly applied calcium chelators are known to inhibit, at least in part, such calcium-dependent processes as calmodulin-dependent inactivation, calcineurin-dependent desensitization, and rundown of NMDA receptors. On the other hand, the functional consequences and potential nonspecific effects of extracellularly applied chelators have not been extensively investigated. In whole-cell patch-clamp recordings from human embryonic kidney (HEK) 293 cells transiently transfected with recombinant NMDA receptors, we found that addition of calcium chelators such as EGTA shifted the glutamate dose-response curve to the right, from an EC(50) for NR1A/NR2A of 8 microM in 1.8 mM Ca(2+) to approximately 24 microM in a solution containing nominal 0 Ca(2+)/5 mM EGTA and further to approximately 80 microM in 20 mM EGTA. A similar shift in glutamate dose-response was observed for NR1A/NR2B currents. This dose-response shift was not due to a decrease in extracellular Ca(2+) concentration because there was no change in the glutamate EC(50) at Ca(2+) concentrations ranging from 10 mM to nominal 0/200 microM EGTA. Moreover, addition of 5 mM EGTA fully chelated with 6.8 mM Ca(2+) did not produce any shift in the glutamate dose-response curve. We propose that calcium chelators, containing four free carboxyl moieties, competitively inhibit glutamate binding to NMDA receptors.

Binding, Competitive↗

Inhibition of atypical PKC blocks ultraviolet-induced AP-1 activation by specifically inhibiting ERKs activation.

Since ultraviolet (UV) radiation is a major etiologic factor in the development of human skin cancers, investigating the signal transduction pathways initiated by UV radiation may help with the understanding of the molecular mechanisms of UV-induced carcinogenesis. Our previous studies demonstrated that UV-induced activator protein-1 (AP-1) activation is blocked by dominant negative atypical PKCs (aPKCs). Here we investigated the role of aPKC in UV-induced activation of mitogen activated protein (MAP) kinase family members which are considered to be the mediators of AP-1 activation. We found that UV radiation led to translocation of protein kinase C (PKC) zeta and activation of MAP kinase family members as well as an increase of AP-1-dependent transcription activation at the same dose range. Pretreatment of cells or mouse skin with antisense oligonucleotides of PKCzeta impaired UV-induced activation of AP-1 in JB6 cells as well as in AP-1-luciferase transgenic mice. It also inhibited UV-induced activation of ERKs but not of JNK and p38 kinases in JB6 cells. In contrast, no significant inhibition of AP-1 activation and MAP kinase activation were observed in cells treated with sense oligonucleotides of PKCzeta. Furthermore, overexpression of a dominant negative mutant of PKClambda/iota specifically inhibited activation of extracellular signal-regulated protein kinases (ERKs) but not of c-jun N-terminal kinases (JNKs) nor p38 kinases induced by UV radiation. These results demonstrated that inhibition of aPKC impairs UV-induced AP-1 activation via suppression of ERKs activation but not of JNKs or p38 kinase activation.

Animals↗

[The nonhealing of the buccal mucosa after tooth extraction. Apropos a case of histiocytosis X].

We report a case of eosinophilic granuloma falsely diagnosed as a radicular cyst in a 28-year-old patient. Between August 1996 and June 1997, successful extraction [correction of avulsion] of teeth 36 and 37 was followed by non-healing of the mucosa in the corresponding sockets. Three bone biopsies were needed to establish the diagnosis of histiocytosis X. In case of non-healing of the intraoral mucosa after tooth extraction [correction of avulsion], the first step is to rule out a malignant tumor. A clinical and radiographic work-up as well as biopsy are needed. Less common conditions such as tuberculosis or histiocytosis X requiring specific treatment can be diagnosed by pathology.

Adult↗

Effect of anti-P-selectin monoclonal antibody on renal ischemia/reperfusion injury in rats.

OBJECTIVE: To explore the effect of anti-P-selectin monoclonal antibody (mAb) on renal ischemia/reperfusion (I/R) injury in rats. METHODS: Renal function, renal histopathological changes, plasma P-selectin levels and renal P-selectin protein and mRNA expression were studied in a renal I/R injury rat models. Biochemical measurement, ELISA, Immunohistochemistry and Nested RT-PCR were used. RESULTS: Renal function insufficiency and renal histopathological damage were much less in the anti-P-selectin mAb-treated group than the saline-treated group. Plasma P-selectin levels were lower and renal P-selectin protein and mRNA expression were down-regulated in the former group. CONCLUSION: Anti-P-selectin mAb might be an efficient approach for the treatment of renal I/R injury.

Animals↗

[The regulation of apoptosis by Bcl-2, bcl-X(L), Bcl-2alpha and Bax in chronic liver disease].

OBJECTIVE: To analyse the expression of Fas and Fas ligand (FasL) in patients of chronic hepatitis, liver cirrhosis and hepatocellular carcinoma and to study the regulation of apotosis by Bax and Bcl-2 subfamilies. METHODS: The subfamily of Bcl-2 in the liver tissue was studied by immunohistochemistry. RESULTS: In 156 cases of chronic liver disease the expression levels of Fas and FasL in the chronic hepatitis group were significantly higher than that in hepatocellular carcinoma group(P < 0.01). The expression level of Bax subfamily in the chronic hepatitis group was significantly higher than that of Bcl-2 subfamily. CONCLUSION: It is suggested that Bcl-2 family is involved in the regulation of apoptosis in the chronic liver diseases.

Apoptosis↗

[Effect of natrahagin, a Chinese cobra venom proteinase on hemorrheology in rat].

The effects of natrahagin, a Chinese cobra venom proteinase on hemorrheology and plasma fibrinogen level in rat was investigated. The results showed that intravenous injection of natrahagin (0.025-0.1 mg/kg) dose-dependently decreased the whole blood viscosity and the plasma viscosity (P < 0.05 or P < 0.01) in rat, but caused no significant effect on hematocrit (P > 0.05). Natrahagin also decreased the plasma fibrinogen level (P < 0.05 or P < 0.01) of rat in a dose-dependent manner at these doses.

Animals↗

[Study on the aggregation state of sulfonated phthalimidomethyl zinc phthalocyanine in CEL solution].

Sulfonated Phthalimidomethyl Zinc Phthalocyanine is a new photodynamic therapy reagent, it can be selectively attacked to cell, but how it attacks the target cell is still unknowable. The aggregation state of photosensitizer is significant to its mechanism proved in CEL solution. The aggregation of ZnPcS2P2 in CEL has been studied with absorption spectroscopy and fluorescence spectroscopy. The aggregation state is dimer through theory analysis, monomer molar absorption coefficient as well as equilibrium constant were estimated.

Antineoplastic Agents↗

[FTIR spectra of SO4(2-)/Fe2O3 nanosolid superacid].

The nanosolid superacid SO4(2-)/Fe2O3 was prepared by using nanometer chemical precursor FeO(OH)2 put in the SO4(2-) solution and dried. IR spectra of samples was determined with different calcination temperature, calcination time and with different concentration SO4(2-) solutions. They are different from IR of normal solid superacid. Then a good analysis and discussion are done.

English Abstract↗

[The molecular spectra and existence state of sulfonated phthalimidomethyl phthalocyanine hydroxyl aluminum as amphiphilic photosensitizer in aqueous alcoholic solutions and water].

The sulfonated phthalimidomethyl phthalocyanine hydroxyl aluminum (Al(OH)PcSP) is an amphiphilic photosensitizer which was proved to have the photodynamic activities against cancer. The electronic absorption spectra and aggregation state of the Al(OH)PcSP in aqueous alcoholic solutions and water were investigated. The results showed that the Al(OH)PcSP existed in the form of monomer in aqueous alcoholic solutions. The increase in the carbon chain and hydroxy of alcohol in solutions had no significant effects on the absorption spectra behaviors of Al(OH)PcSP. But in water, the Al(OH)PcSP existed in the equilibrium between monomer and dimer. The dimerization constant was 5.7307 x 10(4) mol-1.L. The characteristic absorption peak of the Q band of the Al(OH)PcSP dimer was red shifted to 740.5 nm from that of the monomer (676.5 nm), which contrast with those of other metal phthalocyanines dimer. The study on the fluorescence spectra of Al(OH)PcSP in aqueous alcoholic solutions suggested that the fluorescence of the dimer was weak.

Electron Probe Microanalysis↗

[The monomer electronic spectra and fluorescence spectra of some metal phthalocyanines].

The monomer electronic absorption spectra of the ZnPcS2P2 (disulfonated diphthalimidomethyl phthalocyanine zinc) in 11 kinds of solvents and 5 kinds of unsubstituted metal phthalocyanines in DMF were investigated. The monomer electronic absorption spectra of some substituted phthalocyanine zinc including ZnPcS4 (tetrasulfonated phthalocyanine zinc), ZnPcS4 (tetraphthalimidomethyl phthalocyanine zinc), ZnPc(NO2)4 (tetranitro phthalocyanine zinc) and ZnPcS2P2 in the same solvent were also studied. The result showed that (1) with the strengthening of coordination ability of the solvent, the maximum absorption wavelength of ZnPcS2P2 increased slightly. (2) with the increasing of electronegativity of central ion, the maximum absorption wavelength of MPcs had a little blue shift. (3) the electron-donating substituting group caused slightly blue shift. The monomer fluorescence spectra of ZnPcS4, ZnPcP4, and ZnPcS2P2 in different solvents were determined. The result showed that (1) the electron-withdrawing substituting group caused slightly red shift of the fluorescence spectra. (2) with the strenghtening of coordination ability of the solvent, the maximum emission wavelength increased slightly. (3) the fluorescence intensity of ZnPcS2P2 in the solution which contains Cremophor EL was remarkable stronger than that in other solvents. This is an important suggest to the development of photodynamic diagnose agent. The effect of solvents, central ions and substituents on spectra were partly explained by means of the quantrum chemistry.

Electrochemistry↗

The onset and extent of genomic instability in sporadic colorectal tumor progression.

Cancer cell genomes contain alterations beyond known etiologic events, but their total number has been unknown at even the order of magnitude level. By sampling colorectal premalignant polyp and carcinoma cell genomes through use of the technique inter-(simple sequence repeat) PCR, we have found genomic alterations to be considerably more abundant than expected, with the mean number of genomic events per carcinoma cell totaling approximately 11,000. Colonic polyps early in the tumor progression pathway showed similar numbers of events. These results indicate that, as with certain hereditary cancer syndromes, genomic destabilization is an early step in sporadic tumor development. Together these results support the model of genomic instability being a cause rather than an effect of malignancy, facilitating vastly accelerated somatic cell evolution, with the observed orderly steps of the colon cancer progression pathway reflecting the consequences of natural selection.

Adenomatous Polyps↗

Association of Nafion with Polypyrrole Nanoparticles in a Hydrophilic Polymer Network: Effects on Proton Transport.

Proton-conducting polymer composites containing perfluorosulfonic polymer (Nafion) and polypyrrole (PPy) nanoparticles in a polyacrylamide network, P(AAM-MBAM), were synthesized as proton-conducting electrolytes. An investigation into the assembling of Nafion polymer molecules as well as the colloidal PPy-Nafion complexes in the P(AAM-MBAM) network was carried out on the basis of DSC and XRD analysis. It was found that the proton conductivity of the composites was largely affected by the occurrence of the free volume between the P(AAM-MBAM) network and Nafion polymer as well as the concentration of the PPy-Nafion complexes in the composites according to the measurements of the electrical resistance and the frequency-dependent impedance. Copyright 1999 Academic Press.

Journal Article↗

Subtype-dependence of NMDA receptor channel open probability.

NMDA receptor-mediated calcium transients play a critical role in synaptogenesis, synaptic plasticity, and excitotoxicity. NMDA receptors are heteromeric complexes of NR1A combined with NR2A, NR2B, NR2C, and/or NR2D subunits. The NR2 subunits determine a variety of electrophysiological and pharmacological properties of the NMDA receptor complex. In this report, we provide evidence for the first time that there is also a significant difference in peak channel open probability (P(o)) between NMDA receptors composed of NR1A/NR2A and those of NR1A/NR2B subunits. First, whole-cell patch-clamp recordings from human embryonic kidney (HEK) 293 cells expressing NMDA receptors revealed that NR1A/NR2A-mediated peak current densities are approximately four times larger than those of NR1A/NR2B. We show that this fourfold difference is unlikely caused by differences in receptor surface expression, since these levels were similar for the two subtypes by Western blot analysis. To determine whether P(o) contributed to the difference in peak current densities, we used two different open channel antagonists, MK-801 and 9-aminoacridine, in a variety of experimental paradigms. Our results indicate that peak P(o) is significantly higher (twofold to fivefold) for NR1A/NR2A than NR1A/NR2B, with estimated values of approximately 0.35 and 0.07, respectively. These results suggest that a change in the relative expression levels of NR2A and NR2B can regulate peak amplitude of NMDA receptor-mediated excitatory postsynaptic potentials and therefore may play a role in mechanisms underlying synaptic plasticity.

Aminacrine↗

Neuronal expression of NOS-1 is required for host recovery from viral encephalitis.

The role of nitric oxide synthase (NOS) in host defense and clearance of vesicular stomatitis virus (VSV) from the central nervous system (CNS) was examined. NOS-1, NOS-2, and NOS-3 knockout mice were infected with VSV and were treated with either IL-12 or medium. IL-12 treatment resulted in substantially decreased VSV titers in wildtype and NOS-3 knockout mice, but had a marginal effect in the NOS-1 and NOS-2 knockout mice. NOS-1 expression in neurons was associated with survival from VSV infection. The data indicate that the enzyme activity is local, since NOS-2 expression in microglia and inflammatory macrophages and NOS-3 expression in astrocytes, endothelial cells, and ependymal cells did not compensate.

Animals↗

Translocation of protein kinase Cepsilon and protein kinase Cdelta to membrane is required for ultraviolet B-induced activation of mitogen-activated protein kinases and apoptosis.

UV-induced signal transduction may be involved in tumor promotion and induction of apoptosis. The role of protein kinase C (PKC) in UVB-induced signal transduction is not well understood. This study showed that UVB markedly induced translocation of membrane-associated PKCepsilon and PKCdelta, but not PKCalpha, from cytosol to membrane. Dominant negative mutant (DNM) PKCepsilon or PKCdelta inhibited UVB-induced translocation of PKCepsilon and PKCdelta, respectively. UVB-induced activation of extracellular signal-regulated protein kinases (Erks) and c-Jun NH2-terminal kinases (JNKs) was strongly inhibited by DNM PKCepsilon and PKCdelta, whereas the DNM of PKCalpha was less effective on the UVB-induced phosphorylation of Erks and JNKs. Among the PKC inhibitors used only rottlerin, a selective inhibitor of PKCdelta, markedly inhibited the UVB-induced activation of Erks and JNKs, but not p38 kinases. Safingol, a selective inhibitor for PKCalpha, did not show any inhibitory effect on UVB-induced mitogen-activated protein kinase activation. GF109203X is a stronger inhibitor of classical PKC than novel PKC. Lower concentrations of GF109203X (<10 microM) had no effect on UVB-induced activation of Erks or JNKs. However, at higher concentrations (over 20 microM), GF109203X inhibited UVB-induced activation of JNKs, Erks, and even p38 kinases. Meanwhile, rottlerin and GF109203X markedly inhibited UVB-induced apoptosis of JB6 cells, whereas safingol had little inhibitory effect. DNM-Erk2 cells and PD98059, a selective inhibitor for mitogen-activated protein kinase/extracellular signal-regulated kinase 1 that directly activates Erks, inhibited UVB-induced apoptosis. DNM-JNK1 cells also blocked UVB-induced apoptosis, whereas SB202190, a specific inhibitor for p38 kinases, did not produce the inhibitory effect. These data demonstrate that PKCdelta and PKCepsilon, but not PKCalpha, mediate UVB-induced signal transduction and apoptosis in JB6 cells through activation of Erks and JNKs.

Acetophenones↗

Alternative 2-keto acid oxidoreductase activities in Trichomonas vaginalis.

We have induced high levels of resistance to metronidazole (1 mM or 170 microg ml(-1)) in two different strains of Trichomonas vaginalis (BRIS/92/STDL/F1623 and BRIS/92/STDL/B7708) and have used one strain to identify two alternative T. vaginalis 2-keto acid oxidoreductases (KOR) both of which are distinct from the already characterised pyruvate:ferredoxin oxidoreductase (PFOR). Unlike the characterised PFOR which is severely down-regulated in metronidazole-resistant parasites, both of the alternative KORs are fully active in metronidazole-resistant T. vaginalis. The first, KORI, localized in all membrane fractions but predominantly in the hydrogenosome fraction, is soluble in Triton X-100 and the second, KOR2, is extractable in 1 M acetate from membrane fractions of metronidazole-resistant parasites. PFOR and both KORI and KOR2 use a broad range of 2-keto acids as substrates (pyruvate, alpha-ketobutyrate, alpha-ketomalonate), including the deaminated forms of aromatic amino acids (indolepyruvate and phenylpyruvate). However, unlike PFOR neither KORI or KOR2 was able to use oz-ketoglutarate. Deaminated forms of branched chain amino acids (alpha-ketoisovalerate) were not substrates for T. vaginalis KORs. Since KOR I and KOR2 do not apparently donate electrons to ferredoxin, and are not down-regulated in metronidazole-resistant parasites, we propose that KORI and KOR2 provide metronidazole-resistant parasites with an alternative energy production pathway(s) which circumvents metronidazole activation.

Animals↗

Gel electrophoretic distinction between toxic and nontoxic forms of beta-amyloid (1-40).

The in vitro toxicity of synthetic beta-amyloid (1-40) correlates with its binding to Congo red (CR). Potentially, therefore, CR binding to the beta-amyloid containing neuritic plaques in Alzheimer's disease could be used diagnostically. Using polyacrylamide under nondenaturing conditions, the present study shows that both CR binding and nonbinding synthetic beta-amyloid exhibits multiple charge-isomeric and size-isomeric species. The CR binding species exhibit values of free electrophoretic mobility, related to the surface charge density of the protein, which are less than those of the CR non-binding species within 95% confidence limits. Since surface net charge and solubility are correlated, the decreased solubility of the CR binding species may be responsible for the relative abundance and CR binding of beta-amyloid in the neuritic plaques of Alzheimer patients.

Alzheimer Disease↗