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Biomedical subjects

L Guo

Publications and source records attributed to L Guo.

322 records · Page 18Linked to original sources

S100B proteins that lack one or both cysteine residues can induce inflammatory responses in astrocytes and microglia.

The astrocytic protein S100B stimulates neurite outgrowth and neuronal survival during CNS development. S100B can also stimulate glial activation, leading to induction of pro-inflammatory molecules like interleukin-1 beta (IL-1 beta) and inducible nitric oxide synthase (iNOS). Although it is known that S100B's neurotrophic activity requires a disulfide-linked dimeric form of the protein, the structural features of S100B that are important for glial activation have not been defined. As an initial step towards understanding the structural features of S100B required for its action on glia and to determine if these features are different from those required for its action on neurons, we tested two mutants of S100B for their ability to activate glia. The C68VC84S mutant lacks S100B's two cysteine residues (cys68, cys84) and lacks neurotrophic activity (Winningham-Major et al., 1989, J. Cell Biol. 109 3063-3071), and the truncation mutant S100B83stop lacks the C-terminal nine residues (including cys84) that have been shown to be important for some S100B:target protein interactions. We report here that both C68VC84S and S100B83stop stimulate glial activation, as determined by induction of iNOS and IL-1 beta in rat primary astrocyte and microglial cultures. C68VC84S showed activation profiles similar to those of wild-type S100B, demonstrating that a disulfide-linked dimer is not required for glial activation. S100B83stop also stimulated both iNOS and IL-1 beta, although S100B83stop was significantly less effective than wild-type S100B in inducing iNOS. These results indicate that the C-terminal region of S100B is not required for glial activation; however, its presence may influence the degree of activation by the protein. Altogether, these studies demonstrate that the structural features required for S100B's neurotrophic activity are distinct from those affecting its glial activation activity.

Animals↗

Apolipoprotein E and apolipoprotein E receptors modulate A beta-induced glial neuroinflammatory responses.

Large numbers of activated glia are a common pathological feature of many neurodegenerative disorders, including Alzheimer's disease (AD). Several different stimuli, including lipopolysaccharide (LPS), dibutyryl (db)cAMP, and aged amyloid-beta 1-42 (A beta), can induce glial activation in vitro, as measured by morphological changes and the production of pro-inflammatory cytokines and oxidative stress molecules. Only A beta-induced activation is attenuated by the addition of exogenous apolipoprotein E (apoE)-containing particles. In addition, only A beta also induces an increase in the amount of endogenous apoE, the primary apolipoprotein expressed by astrocytes in the brain. The functional significance of the increase in apoE appears to be to limit the inflammatory response. Indeed, compared to wild type mice, glial cells cultured from apoE knockout mice exhibit an enhanced production of several pro-inflammatory markers in response to treatment with A beta and other activating stimuli. The mechanism for both the A beta-induced glial activation and the increase in apoE appears to involve apoE receptors, a variety of which are expressed by both neurons and glia. Experiments using receptor associated protein (RAP), an inhibitor of apoE receptors with a differential affinity for the low-density lipoprotein receptor (LDLR) and the LDLR-related protein (LRP), revealed that LRP mediates A beta-induced glial activation, while LDLR mediates the A beta-induced changes in apoE levels. In summary, both an apoE receptor agonist (apoE) and an antagonist (RAP) inhibit A beta-induced glial cell activation. Thus, apoE receptors appear to translate the presence of extracellular A beta into cellular responses, both initiating glial cell activation and limiting its scope by inducing apoE, an anti-inflammatory agent.

Amyloid beta-Peptides↗

Ligand modulation of glial activation: cell permeable, small molecule inhibitors of serine-threonine protein kinases can block induction of interleukin 1 beta and nitric oxide synthase II.

Activated glia (astrocytes and microglia) and their associated neuroinflammatory sequelae have been linked to the disease progression of several neurodegenerative disorders, including Alzheimer's disease. We found that the experimental anti-inflammatory drug K252a, an inhibitor of calmodulin regulated protein kinases (CaMKs), can block induction of both the oxidative stress related enzyme iNOS and the proinflammatory cytokine IL-1 beta in primary cortical glial cultures and the microglial BV-2 cell line. We also found that the profile of CaMKIV and CaMKII isoforms in primary cortical glial cultures and BV-2 cells is distinct from that found in neurons. Knowledge of cellular mechanisms and high throughput screens of a pharmacologically focused chemical library allowed the discovery of novel pyridazine-based compounds that are cell permeable ligand modulators of gene regulating protein kinases involved in the induction of iNOS and IL-1 beta in activated glia. Pyridazine-based compounds are attractive for the development of new therapeutics due to the retention of the remarkable pharmacological properties of K252a and related indolocarbazole alkaloids, and presence of enhanced functional selectivity in a comparatively simple structure amenable to diverse synthetic chemistries.

Animals↗

Mechanism of glial activation by S100B: involvement of the transcription factor NFkappaB.

Compelling evidence links chronic activation of glia and the subsequent cycle of neuroinflammation and neuronal dysfunction to the progression of neurodegeneration in disorders such as Alzheimer's disease (AD). S100B, a glial-derived cytokine, is significantly elevated in the brains of AD patients and high concentrations of S100B are believed to be detrimental to brain function. As a first step toward elucidating the mechanisms by which S100B might be serving this detrimental role, we examined the mechanisms by which S100B stimulates glial inducible nitric oxide synthase (iNOS), an oxidative stress related enzyme that has been linked to neuropathology through the production of neurotoxic peroxynitrite. We report here that S100B stimulates iNOS in rat primary cortical astrocytes through a signal transduction pathway that involves activation of the transcription factor NFkappaB. NFkappaB activation was demonstrated by nuclear translocation of the p65 NFkappaB subunit, stimulation of NFkappaB-specific DNA binding activity, and stimulation of NFkappaB-dependent transcriptional activity. Furthermore, S100B-induced iNOS promoter activation was inhibited upon mutation of the NFkappaB response element in the promoter, and transfection of cells with an NFkappaB inhibitor blocked S100B-induced iNOS promoter activation and nitric oxide production. These studies define a signal transduction pathway by which S100B activation of glia could participate in the generation of oxidative stress in the brain.

Alzheimer Disease↗

Similar activation of glial cultures from different rat brain regions by neuroinflammatory stimuli and downregulation of the activation by a new class of small molecule ligands.

Activated glia (astrocytes and microglia) surrounding neuritic plaques in Alzheimer's disease (AD) overexpress an array of detrimental inflammatory molecules. Chronically activated glia and numerous inflammatory mediators in AD suggest that neuroinflammation is an integral component of the pathogenic process. However, the potential for glia from different brain regions to respond differentially to activating stimuli and inhibitors of glial activation is not well understood. As part of our goal to elucidate molecular mechanisms of glial activation, we examined the activation responses of primary cultures of glia derived from different brain regions. Neonatal rat glia from cortex, hippocampus, midbrain, brainstem, striatum, and cerebellum can be activated by a variety of stimuli (including beta-amyloid, S100B, and lipopolysaccharide), and the activation can be downregulated by a new class of small molecule, cell permeable ligands. The end points assayed included IL-1beta, iNOS, apoE and the astrocyte marker protein GFAP. The activating stimuli were able to increase the production of iNOS and IL1beta, and the ligand was able to inhibit this increase in cultures derived from the diverse brain regions. The activation and downregulation were selective, as demonstrated by lack of effect on GFAP levels and no downregulation of apoE. These results are consistent with the working hypothesis that regional differences in glial activation seen in disease and injury are reflective of the intensity, duration and repertoire of activating stimuli rather than an innate property of the glia.

Amyloid beta-Peptides↗

[Radiotherapy of cutaneous lymphomas].

Radiotherapy plays an important role in the treatment of cutaneous lymphomas. In the treatment of Mycosis fungoides, total skin electron beam radiation therapy is efficient for patients with limited and superficial forms of the disease. Radiotherapy is also efficient for the locally advanced forms of non-epidermotropic lymphomas. The palliative radiotherapy is indicated for advanced, nodular and treatment resistant forms of cutaneous lymphomas and for voluminous lymphadenopathies.

Electrons↗

Poly(ethylene glycol)-grafted liposomes with oligopeptide or oligosaccharide ligands appended to the termini of the polymer chains.

Novel conjugates tailor-made for inclusion in liposomal formulations, containing distearoylphosphatidylethanolamine (DSPE) as a lipid anchor, heterobifunctional polyethylene glycol (PEG) with a molecular weight of 2000 as a linking moiety, and a biological cell adhesive ligand [YIGSR peptide or Sialyl Lewis(X) oligosaccharide (SLX)], were synthesized. They were characterized by NMR, chromatography, and matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOFMS). Inclusion of either of the ligand-PEG-lipid conjugates (2 mol %) in a lecithin/cholesterol/ methoxy-PEG2000-DSPE (55:40:3 mole ratio) lipid mixture followed by preparation of unilamellar vesicles (100 nm) resulted in positioning of 55% of the YIGSR and 63% of the SLX ligands on the periphery of the outer surface-grafted polymeric "brush", as determined by a combination of specific enzymatic alterations of each ligand and HPLC. Similar densities of ligand-bearing PEG chains were incorporated into liposomes by simply incubating (37 degrees C, 5 h) either one of the ligand-PEG-lipid conjugates with preformed lipid vesicles. This conjugate insertion process was aggregation free. Using enzymatic derivatization-HPLC, it was demonstrated that all the ligands incorporated into lipid membranes by this new approach were positioned exclusively on the outer leaflet of the liposomal bilayers. Since liposomes of this type are intended for in vivo use as long-circulating, ligand-presenting platforms, the insertion approach is preferable because of the more efficient utilization of ligand-PEG-lipid conjugates.

Amino Acid Sequence↗

A simple method for fixation and microdissection of frozen fresh tissue sections for molecular cytogenetic analysis of cancers.

Microdissection has been widely used for procuring DNA from specific microscopic regions of formalin fixed, paraffin embedded tissue sections. We have developed a method for fixation and microdissection of frozen fresh biopsy tissue sections. Five micrometer frozen fresh tissue sections were fixed with ethanol and stored at room temperature. Well defined regions from hematoxylin and eosin (H & E) stained or unstained sections were briefly steamed and microdissected using a needle. The dissected tissue was digested with proteinase K and DNA was isolated. Whole genome amplifications were obtained by degenerate oligonucleotide primed polymerase chain reaction (DOP-PCR) from these samples. The reliability of this technique was demonstrated by comparing conventional comparative genomic hybridization (CGH) with DOP-PCR-CGH. The advantages of this method are that frozen fresh sections can be fixed easily and stored for more than 4 years, it is easy to microdissect and pick-up very minute regions (0.1 mm(2)), and it is rapid; microdissection and purification can be accomplished within 3 h. Using DNA from microdissected sections, DOP-PCR-CGH revealed genetic abnormalities more accurately than conventional CGH. Although this novel method was demonstrated using DOP-PCR-CGH, we believe that it will be useful for other genetic analyses of specific small regions and cell populations. We also observed whether storage time, H & E staining and crude DNA extracts affected the quality of amplified DNA. DNA integrity was maintained for at least 49 months in ethanol fixed sections that were stored at room temperature, but DNA was gradually degraded after one month if the ethanol fixed sections had been H & E stained and stored. When crude DNA extracts from H & E stained sections were used, the size of the DOP-PCR product was reduced. Our study suggests that ethanol fixed tissue sections may be stored at room temperature for at least 4 years without DNA degradation, the H & E stains may not affect the quality of amplified DNA, but H & E or other components in the staining process may reduce the size of DOP-PCR product, which is critical for the quality of CGH hybridization.

Biopsy↗

Carcinosarcoma arising from atypical endometriosis in a cesarean section scar.

Malignant change of endometriosis in a cesarean scar (CS) is rare. We report a case of carcinosarcoma arising from atypical endometriosis in a CS scar, which was successfully treated with complete excision of the lesion and repair of the abdominal wall defect with autologous skin-muscle flap graft. A 41-year-old woman presented with a recurrent endometriosis in a CS scar. Within 16 years it changed from benign to atypical endometriosis and finally to carcinosarcoma after three operations. Complete excision of the tumor was performed, with a big defect of abdominal wall successfully repaired by autologous pedicle skin-muscle graft. The diagnosis of carcinosarcoma arising from atypical endometriosis was confirmed histologically. The lesion recurred 6 months after the fourth operation. She died of disease 15 months after the fourth operation. This case demonstrated that long-standing recurrent scar endometriosis could undergo malignant changes and should be made aware. The primary treatment is complete surgical excision.

Abdominal Wall↗

The complementary role of beta-catenin in diagnosing various subtypes of renal cell carcinomas and its up-regulation in conventional renal cell carcinomas with high nuclear grades.

beta-catenin is a kind of cytoplasmic protein involved in cell adhesion and signal transduction. This study investigated its expression in various subtypes of renal cell carcinomas (RCCs) using an immunohistochemical staining method. beta-catenin expression was assessed from staining frequency and staining score. Staining score was performed by evaluating both staining percentage and intensity. All subtypes of RCCs reacted positively with beta-catenin. However, the positive frequency and staining score in papillary and chromophobe RCCs were significantly higher than those in conventional RCCs (p < 0.05). In addition, in conventional RCCs, the positive frequency and staining score of beta-catenin showed a significant difference between nuclear grades I/II and grade III (p < 0.05). Therefore, it may indicate that beta-catenin can serve as a complementary tool to distinguish conventional RCCs from chromophobe RCCs. In conventional RCCs with low nuclear grades, beta-catenin expression is generally down-regulated, while it appears to be preserved in those with high nuclear grades.

Adult↗

Increased expression of platelet-derived endothelial cell growth factor in human hepatocellular carcinomas correlated with high Edmondson grades and portal vein tumor thrombosis.

Platelet-derived endothelial cell growth factor (PD-ECGF), identical to thymidine phosphorylase, has been reported as an angiogenic factor in human malignancies. However, the role of PD-ECGF in human hepatocellular carcinoma (HCC) is still unconfirmed. Herein, we studied the expression of PD-ECGF in 27 human HCC cases by immunohistochemistry, to clarify the relationship to tumor angiogenesis. The immunoreaction of PD-ECGF in HCC cells was scored in both the staining percentage and intensity. CD34, an endothelial cell marker, was used to evaluate the intratumoral microvessel density (IMVD). PD-ECGF expression was noted in carcinoma cells in 14 (51.9%) of 27 HCCs. In these cases, the carcinoma cells showed heterogeneous staining in both the nucleus and cytoplasm. Tumor-associated stroma cells and infiltrating lymphocytes were also stained. Kupffer cells in non-tumor areas were strongly positive. Statistically, the expression of PD-ECGF increased in HCC specimens with high Edmondson grades (III-IV) or portal vein tumor thrombosis (PVTT) (P<0.05). Additionally, the IMVD of PD-ECGF-positive HCC specimens (136.071+/-31.008, mean +/- SD) was higher than that of the PD-ECGF-negative HCC specimens (61.077+/-15.795) (P<0.05). These findings may suggest that PD-ECGF is one of the angiogenic factors in human HCCs. Furthermore, with the increasing expression of PD-ECGF, HCC cells show poor differentiation and invasive behavior.

Aged↗

Laser interferometric prediction of postoperative visual acuity in patients with genetic ectopia lentis.

PURPOSE: To compare preoperative laser interference visual acuity (LIVA) with postoperative Snellen visual acuity (SVA), and to evaluate clinical significance using laser interferometer in patients with genetic ectopia lentis. METHODS: We treated a series of 18 patients (34 eyes) with genetic ectopia lentis whose visual acuity did not improve with optical phakic or aphakic correction, or with modern microsurgery and automated suction-cutting devices. Laser interferometry and electroretinogram (ERG) were used for the examination of retinal function before surgery. RESULTS: There was not significant difference between the interferometric acuity before operation and the corrected visual acuity after operation (p > 0.05), and the coincidence rate between them was 80% (27 eyes). ERG examination showed normal function in most of the patients. CONCLUSIONS: The results showed that the laser interferometric acuity is a valuable method in evaluation of postoperative visual acuity in patients with ectopia lentis. In six eyes, the LIVA was lower than the initial corrected vision postoperatively, but ERG examination showed that the retinal function was normal in these patients. Therefore, in patients with genetic ectopia lentis, LIVA combined with ERG predicts visual acuity more accurately.

Adolescent↗

All trans-retinoic acid suppresses in vitro growth and down-regulates LIF gene expression as well as telomerase activity of human medulloblastoma cells.

Leukemia inhibitory factor (LIF) is prevalently expressed in human medulloblastomas in vivo and in vitro. Blockage of LIF expression or biological function can inhibit in vitro growth and induce differentiation-like phenotypes of medulloblastoma cells (Med-3), suggesting a redifferentiation potential of Med-3 cells when intrinsic dedifferentiation factor(s) is suppressed or external differentiation element(s) is exerted. All-trans retinoic acid (RA) can induce differentiation in some types of cancers but its effect on medulloblastoma cells has not yet been described. To address the above issues, three dosages (5, 8 and 10 mumol/L) of RA were used to treat Med-3 cells and their effects on the target cells were evaluated by multiple approaches. It was found that, in addition to induction of morphological changes and growth inhibition, RA could repress LIF expression as well as the telomerase activity of Med-3 cells in time- and dose-related fashions. Our data thus suggest that the growth inhibitory effect of RA on Med-3 cells may be correlated with the LIF down-regulation. Reduction of telomerase activity by RA indicates that this enzymatic activity is a potential differentiation indicator of medulloblastoma cells.

Antineoplastic Agents↗

Passive diffusion through polymeric membranes: a novel cleanup procedure for analysis of azinphos-methyl and azinphos-ethyl residues in fruits and vegetables.

A novel procedure is described for simple removal of coextractives prior to analysis of fruits and vegetables for azinphos-methyl and azinphos-ethyl residues. The solvent extract is concentrated, placed in a polymeric membrane tube, and then dialyzed in cyclohexane. Both azinphos-methyl and azinphos-ethyl diffuse into the surrounding solvent while coextractants remain inside the membrane. The dialyzing solvent is exchanged during concentration with n-hexane and analyzed without further cleanup by gas-liquid chromatography with a specific thermionic detector. The detection limit for a 25 g grape sample with final volume of extract made to 15 mL was 0.01 mg/kg. Recoveries of both residues from grapes averaged 107% (spike levels of 0.3 to 2.0 mg/kg). From a 20 g spinach sample, recoveries averaged 82% for azinphos-methyl and 72% for azinphos-ethyl when final volume of extract was made to 5 mL (spike levels of 0.1 to 1.0 mg/kg). Recoveries from 20 types of fruits and vegetables (20 g sample spiked at 1 mg/kg for both azinphos-methyl and azinphos-ethyl) were consistently greater than 70%, except for strawberries (61-67%) and avocado (28-34%). The high lipid content of avocado may impede diffusion of azinphos-methyl and azinphos-ethyl through the polymeric membrane. A field evaluation of the procedure showed a strong correlation (r = 0.957) between azinphos-methyl residues on grapes and treatments with 2 spray formulations. The membrane cleanup procedure is a simple and cost-effective alternative to other column or liquid-liquid partitioning procedures for azinphos-methyl and azinphos-ethyl residue analysis.

Azinphosmethyl↗

Headspace gas-liquid chromatographic determination of dithiocarbamate residues in fruits and vegetables with confirmation by conversion to ethylenethiourea.

Ethylene-bis-dithiocarbamate (EBDC) residues were determined as carbon disulfide (CS2) by an improved headspace gas-liquid chromatographic (GLC) procedure. Among 837 samples of 30 agricultural commodities tested, 43% contained residues above the detection limit for the method: 100% of broccoli samples; 80% of cabbage, kiwifruit, and grape samples; and 71% of cucumber samples. Most of the residues in kiwifruit were on or near the skin. Elimination of false-positive detections by the improved method was confirmed with kiwifruit in 2 independent procedures. Whole fruits were washed with 5% EDTA to remove surface residues of EBDC. Analysis of washes for CS2 by the headspace procedure after treatment with acidic stannous chloride and for ethylene thiourea by LC after prolonged treatment at 60 degrees C qualitatively identified the EDTA-soluble residues as EBDC. Although the improved method does not produce false-positive results, peak area responses of CS2 and the internal standard, thiophene, are influenced by chemical composition of the matrix. With matrixes high in sugar or lipids, the apparent CS2 content may be overestimated by 4-fold. Accurate determination of EBDC residues in these sample types requires appropriate adjustments to matrixes.

Australia↗