Methomyl residue on Chinese cabbage grown under greenhouse conditions.
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Biomedical subjects
Publications and source records attributed to K T Lim.
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Solanum nigrum L. (SNL) has been used in traditional folk medicine to treat numerous cancers. We isolated a glycoprotein (150 kDa) from SNL and tested its effect on the modulation of transcriptional factors (NF-kappa B and AP-1) and iNO production in TPA induced-MCF-7 cells, which are part of the human breast cancer cell line, without estrogen receptors. However, the mechanism of SNL glycoprotein in pharmacological and biochemical actions in cancer cells has not been studied. To test the effect of SNL glycoprotein on the DNA-binding activities of nuclear factor-kappa B (NF-kappaB) and activator protein-1 (AP-1), and nitric oxide (NO) production, these experiments were carried out using electrophoretic mobility shift assays (EMSA), western blot analysis, and the Griess method. Results in this experiment showed that SNL glycoprotein inhibits 12-O-Tetra decanoylphorbol-13-acetate (TPA; 100 nM)-induced DNA-binding activities of NF-kappaB and AP-1, and enhances NO production in MCF-7 cells. That is, our results indicated that SNL glycoprotein has the capacity to modulate the TPA-induced DNA-binding activities of transcription factors and NO production, which play a critical role with respect to cytotoxicity in MCF-7 cells. Therefore, SNL glycoprotein might be one of the agents that blocks TPA-mediated signal responses in tumor cells.
In this study, the antioxidant, cytotoxic, and antitumorigenic activities of a fractionated, ethanol extract derived from Rhus verniciflua Stokes (RVS), a plant indigenous to Korea, China, and Japan, were determined. Physicochemical analysis and sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) results indicated that the active component of a Sephadex G-150-fractionated RVS extract (PII fraction) was a copper-containing glycoprotein, possibly a plant laccase. Antioxidant activity of the fractionated RVS extract, observed in both aqueous and lipid in vitro oxidation reactions using 1,1-diphenyl 2-picrylhydrazyl (DPPH) radical, site-specific Fenton-reaction deoxyribose, and a model lipid emulsion test system, indicated an affinity for protection against hydroxyl and peroxyl radicals. Cultured mouse brain neurons were protected against glucose oxidase-induced hydroxyl radical in the presence of the fractionated RVS extract (e.g., 58% protection at 4.9 microM and 95% protection with 22.7 microM RVS). RVS was further shown to protect against in vitro Fenton-reaction-induced single- and double-strand scission in supercoiled plasmid DNA. Further testing for bioactivity of the fractionated RVS extract was based on the affinity to inhibit cell proliferation in cultured HeLa and CT-26 tumor cells. The presence of RVS resulted in 70% cell death after 24 h of incubation in both cell lines at a minimum concentration of 2.48 microM RVS. Data demonstrate multiple bioactive chemopreventative properties of a Sephadex G-150-fractionated extract derived from RVS.
A fractionated ethanol extract derived from Rhus Verniciflua Stokes (RVS) was assessed in both organic and aqueous media for the purpose of characterizing the mechanisms of antioxidant activity. RVS, an indigenous plant to Korea, was initially extracted with ethanol and characterized to contain a 90 KDa-ABTS reactive protein possessing 0.662 ng/mg copper. This characterization suggested that a primary component of RVS was Laccase, an oxidase enzyme complex. RVS exhibited a significant (P < 0.01) concentration-dependent inhibition of linoleic acid oxidation in an emulsion system up to 48 hours of incubation. Free radical scavenging activity of both a stable radical (e.g DPPH) and hydroxyl (e.g. *OH) radical followed a concentration-dependent pattern in different model systems. Using a liposome model with peroxyl radicals generated by AAPH, a significant extension of both the lag phase and a reduction of peak propagation of peroxyl radicals by RVS over a concentration range of 1 to 10 microg/ml was observed. RVS ethanol extract was also found to protect human low-density lipoprotein (LDL) from oxidative modification, mediated by cupric ion at 37 degrees C. Finally, RVS was found to be effective at protecting against plasmid DNA strand breakage induced by peroxyl free radicals in an aqueous medium. Our findings show that the ethanol fraction derived from RVS contained significant antioxidant activity in both polar and non-polar mediums.
The aim of the present work was to examine the efficacy of using FISH for the rapid prenatal diagnosis of common chromosome aneuploidies. A total of 100 analyses over a six month period were included in the study. Diagnosis was possible in all cases. A mosaic for trisomy 21 proved, by comparison with an extensive analysis of long term cultures, to be an apparent false positive. Otherwise the technique was reliable, accurate and relatively straightforward to perform. Results could be available within 24 hrs. In most cases an additional long term full analysis was also done, so as to exclude rarer aneuploidies and structural rearrangements. This methodology is seen as a useful addition to the prenatal diagnostic repertoire.
A quadruple variant of horse heart myoglobin (Thr39Ile/Lys45Asp/Phe46Leu/Ile107Phe) that exhibits significantly (approximately 25-fold) greater peroxidase activity than the wild-type protein has been studied to determine its midpoint reduction potential (24(2) mV vs. SHE; pH 6.0, mu = 0.1 M, 25 degrees C) and to characterize the kinetics of its reaction with hydrogen peroxide. In addition, Fourier transform infrared (FTIR) spectra of the carbonyl and azide adducts of the protein have been obtained to gain initial insight into the effects of these substitutions on the ligand binding properties of the reduced and oxidized variant. All of the results obtained in this work are consistent with a variant heme binding pocket with increased hydrophilic character.
The occurrence of malignant mural nodule in benign cystic common epithelial tumor of the ovary have been reported in only three cases; the case one was mucinous cystadenoma with a mural nodule of fibrosarcoma and the others were of carcinomas. Our case was another rare case of ovarian mucinous cystadenoma with mural nodule of anaplastic carcinoma in a 42-year-old woman. The cystadenoma had an unilocular cystic cavity and a mural nodule with thick multinodular solid wall. The internal cystic wall was lined with mucinous cystadenoma without any malignant features. The mural nodule showed anaplastic carcinomatous differentiation and its nature was confirmed by immunohistochemistry and electron microscopy. This tumor had metastasized to the right salpinx, uterus, cul-de-sac, periureter and mesentery.
In rubella virus-infected cells, genomic 40S and subgenomic 24S RNAs are present in the cytoplasm of infected cells. However, encapsidation by rubella virus capsid protein is specific for 40S genomic RNA. As a first step toward understanding the assembly of rubella virus nucleocapsid at the molecular level, the interaction between capsid protein and genomic RNA was studied by Northwestern (RNA-protein) blot analysis. RNA probes prepared by in vitro transcription were used to localize the RNA sequence that participates in binding to the capsid protein. We have identified a 29-nucleotide RNA sequence (nucleotides 347 to 375) that is essential for the binding. By using overlapping synthetic peptides of capsid protein, a peptide domain (residues 28 to 56) that displays specific RNA-binding activity of capsid protein has been located. This result suggests that the specific recognition of viral RNA during rubella virus assembly involves, at least in part, the nucleocapsid protein.
The neurotoxic effects of methylmercury on cerebral neuron cultures derived from neonatal mouse were studied. Exposure of cerebral neurons to methylmercury chloride resulted in significant cell damage and death in a time-dependent manner in cerebral neuron cultures. The methylmercury neurotoxicity was blocked by oxygen radical scavengers such as glutathione, catalase, selenium, and cysteine. Antagonists of the N-methyl-D-aspartate (NMDA) receptor, including MK-801 (a non-competitive NMDA antagonist), D-2-amino-5-phosphonovaleric acid (APV) (a competitive NMDA antagonist), and 7-chlorokynurenic acid (an antagonist at the glycine site associated with the NMDA receptor), similarly blocked methylmercury-induced neurotoxicity in cerebral neuron cultures. These results indicate that both oxygen radicals and excitotixic amino acids are involved in the methylmercury-induced neurotoxicity of cerebral neuron cultures.
The neurotoxic effects of oxygen radicals on spinal cord neuron cultures derived from fetal mouse have been studied. Oxygen radicals, superoxide radical and hydrogen peroxide, were generated by adding xanthine oxidase and hypoxanthine in the culture medium. Exposure of neurons to this oxygen radical-generating system resulted in a significant cell death and decrease of choline acetyltransferase (ChAT) activity in a time-dependent manner in spinal cord neuron cultures. The decrease in cell viability and ChAT enzyme activity induced by the oxygen radicals was blocked by scavengers such as superoxide dismutase (SOD), catalase, and tetrakis (2-pyridylmethyl) ethylenediamine (TPEN), a metal chelator. Antagonists of the N-methyl-D-aspartate (NMDA) receptor, including MK801 (a noncompetitive NMDA antagonist), D-2-amino-5-phosphonovaleric acid (APV) (a competitive NMDA antagonist), and 7-chlorokynurenic acid (an antagonist at the glycine site associated with the NMDA receptor), similarly blocked oxygen radical-induced decrease in cell viability and ChAT activity in spinal cord neuron cultures. These results indicate that both oxygen radicals and excitotoxic amino acids were involved in the oxidant-initiated neurotoxicity of spinal cord neurons.
Griseofulvin(GF) has become the drug of choice as an antifungal agent for patients who suffer from many kinds of fungal infection. In order to clarify hepatic injury by griseofulvin(GF) overload and the effect of UDCA on GF-induced hepatic injury, the authors carried out biochemical, histologic, and ultrastructural studies of liver following treatment with griseofulvin and ursodeoxycholic acid(UDCA) in mice. Urine porphobilinogen excretion in the group treated with GF alone was significantly increased and reached the highest level in the 4th week and declined thereafter. Biochemical studies of the liver function showed no remarkable changes of serum bilirubin levels throughout the experimental period in all groups, except for SGPT and alkaline phosphatase activities which were significantly elevated and reached the highest level in the second week. Then they slightly decreased in GF treated groups(GF alone and GF plus UDCA) in comparison with the control group. Pathologic findings in the group treated with GF alone include focal liver cell necrosis(esp, zone 3), Mallory bodies in hepatocytes(esp, zone 1), Kupffer cell activation, and brown protoporphyrin pigments in the hepatocytes, bile canaliculi and interlobular bile ducts with a marked inflammatory cell infiltration in the portal tracts. Under the polarizing light microscope, bile ductular and canalicular thrombi showed a "Maltese cross" birefringence in mice treated with GF alone. There is no definite finding of fatty change in hepatocyte. Under the microscope, the liver appeared normal with an intact lobular architecture in the GF plus UDCA treated group. Electron microscopically, GF-induced changes include swelling of mitochondria, globular protoporphyrin crystals in the hepatocyte cytoplasm, markedly dilated bile cannaliculi and bile ducts and the formation of a Mallory hyaline bodies in the hepatocytes. There were no noticeable structural changes in the GF plus UDCA-treated group. Therefore the results suggest that GF causes hepatic injury, namely porphyria and cholestasis, and the treatment of UDCA may have cytoprotective and choleretic effects on GF-induced hepatic injuries.
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BACKGROUND: The treatment of cryptorchidism has changed, with surgery now advocated before the age of two years. Delayed treatment affects fertility, malignant potential and psychological stress. AIMS: To assess the pattern of referral of cryptorchid patients to a surgical clinic, management and follow-up. METHODS: A four-year review of 114 cryptorchid patients examined age at presentation, waiting time, timing of surgery and length of follow-up. RESULTS: The mean age at presentation to the surgical clinic was 6.7 years (neonatal to 71). The mean age at orchidopexy was 5.6 years. Seventy per cent had a surgical procedure within eight weeks of presentation to a surgeon. Seven per cent were kept under surveillance until a maximum age of three years before orchidopexy was considered. Only 29% proceeded to surgery before the age of two. Seventeen were referred to a paediatric urology unit for further management. CONCLUSIONS: Orchidopexy seems prudent between one and two years of age. Only one-quarter of patients underwent early orchidopexy. It is vital that it is detected early, by paediatricians at birth or the general practitioners (GPs) at the six-week check up. Prompt referral to a surgeon with a paediatric interest is essential in order to permit surveillance or surgery.
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