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Biomedical subjects

J Hwang

Publications and source records attributed to J Hwang.

At least 91 records · Page 5Linked to original sources

Characterization of endothelial cell injury by cholesterol oxidation products found in oxidized LDL.

The present study describes the toxicity of oxidized LDL towards rabbit aortic endothelial cells in terms of its lipid components with specific attention to the cholesterol oxidation products (ChOx) found in oxidized LDL isolated from human plasma. Measurements of the major ChOx associated with freshly isolated unmodified LDL, those found in oxidized LDL isolated from human plasma and LDL subjected to oxidation in vitro are described. We have confirmed previous findings that most of the cytotoxicity of freshly isolated human LDL may be attributable to a minor fraction that appears to be oxidatively modified by several criteria. Moreover, this plasma-derived oxidized LDL (referred to as LDL) is highly enriched in ChOx, whereas the content of lipid peroxides or derived products (measured as conjugated dienes and thiobarbituric acid reacting products) are much lower, particularly when compared to copper-induced LDL oxidation. Much of the ChOx found in plasma are associated with LDL, however, the levels and proportions of the various ChOx found in LDL differ from those produced after extensive copper-induced oxidation but resemble those produced after moderate oxidation with copper. The species and concentrations of ChOx found in LDL when applied as a mixture exhibit considerably more toxicity than any individual ChOx alone. At non-toxic levels this ChOx mixture causes an increased influx of several ions, including calcium, an effect not seen with individual ChOx at comparable doses. Perturbations in ionic homeostasis, and particularly the sustained increase in intracellular calcium concentrations, are associated with much of the cytotoxicity, an effect attributable to the membrane disruptive action of ChOx leading to altered ion transporter activity. The effect of the ChOx mixture (but not any individual ChOx) on sodium and potassium flux appears to be due to enhanced Na+/K(+)-ATPase activity based on the complete inhibition produced by ouabain under all treatment conditions. These findings also show that the levels of cholesterol oxidation products found in normal LDL are not cytotoxic whereas those present in oxidized LDL exceed the toxic threshold for endothelial cells and account for most of the cytotoxicity produced by this modified lipoprotein.

Animals↗

Report from the Maryland Epidemiology Schizophrenia Linkage Study: no evidence for linkage between schizophrenia and a number of candidate and other genomic regions using a complex dominant model.

Our collaborative group has undertaken a linkage study of schizophrenia, using a systematic sample of patients admitted to Maryland hospitals. An initial sample of 39 families, each having two or more affecteds, was available for genotyping candidate genes, candidate regions, and highly polymorphic markers randomly distributed throughout the genome. We used a single complex dominant model (with a disease gene frequency of 0.005 and age-dependent penetrance for affected phenotype: for under 35, penetrance = .45; for 35 and older, penetrance = .85). We report here 130 markers, which met the exclusion criteria of LOD score < -2.00 at theta > 0.01 in at least 10 informative families, and no evidence for heterogeneity. We also report here markers that were tested as candidates for linkage to the schizophrenic phenotype. They were selected based on the following criteria: a) proximity to reported chromosomal rearrangements (both 5q and 11q), b) suggestions of linkage from other families (5q), or c) presence of a candidate gene (5q, 11q, 3q: Dopamine receptors 1, 2, and 3, respectively). We also tested for mutations of codon 717 in exon 17 of the amyloid precursor protein (APP) gene and were unable to detect the C to T substitution in our schizophrenic group.

Chromosome Mapping↗

Selective suppression of cytochrome P-450 gene expression by interleukins 1 and 6 in rat liver.

Inflammatory stimuli suppress constitutive hepatic expression of the CYP2C11 and CYP2C12 genes in male and female rat livers, respectively. We have shown previously that injection of interleukin-1 (IL1), but not interleukin-6 (IL6), to female rats also suppresses CYP2C12. In the present study, we examined the effects of these cytokines on CYP2C12 expression in rat hepatocyte cultures, and their in vivo effects on expression of multiple cytochrome P-450 (P450) gene products in male rat livers. IL1 suppressed the expression of CYP2C12 mRNA and protein in hepatocytes cultured on Matrigel in the presence of growth hormone. No consistent effect of IL6 was observed. Maximal suppression of CYP2C12 mRNA after 24 h of IL1 treatment reached 12 and 32% of control levels in two separate experiments. The approximate ED50 for IL1 was 5 ng/ml. CYP2C12 protein was suppressed to 28% of control levels as early as 12 h after IL1 treatment. Injection of IL1, low doses of dexamethasone, or both, in male rats produced decreases in total P450, and in CYP3A2 and CYP2C11 mRNA and protein expression similar to effects previously seen for CYP2C12 expression in females. CYP2E1 mRNA and protein was significantly suppressed only by the combination of IL1 and dexamethasone. IL6 treatment of male rats down-regulated the CYP2C11 and CYP2E1 mRNAs at a dose of 4.5 micrograms/kg, which was lower than that required to induce haptoglobin mRNA, a prototype acute phase gene product. CYP2C11 protein content of the microsomes was also decreased by IL6 treatment, with a slower time-course than for suppression of its mRNA. No significant effects of IL6 treatment were seen on CYP3A2 mRNA or CYP3A2/1 proteins. These results demonstrate that IL1 and IL6 treatments in vivo differentially affect subsets of P450 gene products in rat liver.

Animals↗

Biochemical and cytotoxic characteristics of an in vivo circulating oxidized low density lipoprotein (LDL-).

Using ion exchange high pressure liquid chromatography, total plasma low density lipoprotein (LDL) from 30 hypercholesterolemic and 10 normocholesterolemic cynomolgus monkeys was subfractionated into unmodified LDL (n-LDL) and more negatively charged LDL (LDL-). In hypercholesterolemic monkeys, the absolute LDL-cholesterol level was 16.54 +/- 2.82 mg/dl (mean +/- SE) whereas in normocholesterolemic monkeys it was 2.39 +/- 0.12 mg/dl (P < 0.0001); the percentage of LDL- was 5.2 +/- 0.71% and 4.9 +/- 0.19% of the total LDL for hypercholesterolemic versus normocholesterolemic monkeys, respectively. LDL- averaged 5% and n-LDL 95% of the total plasma LDL cholesterol. To confirm and further elucidate the oxidative nature of LDL-, cholesterol and cholesterol oxide contents of LDL- and n-LDL were determined by capillary gas chromatography; 53.98 +/- 2.24% (mean +/- SE) of the LDL- cholesterol was oxidized whereas in n-LDL only 10.70 +/- 1.06% of the cholesterol was oxidized (P < 0.00001). The spectrum of oxysterols identified, which was similar for LDL- and n-LDL, suggested a free radical-mediated process for cholesterol oxidation. The principal oxysterols identified were: cholest-5-ene-3 beta, 7 alpha-diol, cholesta-3,5-diene-7-one, cholest-5-ene-3 beta, 7 beta-diol, 5,6 beta-epoxy-5 beta-cholestan-3 beta-ol, 5,6 alpha-epoxy-5 alpha-cholestan-3 beta-ol, 5 alpha-cholestan-3 beta,5,6 beta-triol, 3 beta-hydroxycholest-5-ene-7-one, and cholest-5-ene-3 beta,25-diol. To model one of the steps in the possible mechanism of atherogenesis, the cytotoxicity of LDL- was demonstrated to be greater against subconfluent than confluent aortic endothelial cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Prevalence and magnitude of perinatal substance exposures in California.

BACKGROUND: Perinatal substance exposure has been linked to many neonatal and obstetrical complications. There have been few population-based epidemiologic studies to identify the prevalence and demographic profiles associated with drugs, alcohol, and smoking during pregnancy. METHODS: We studied a fully probabilistic stratified-cluster sample to estimate the prevalence of perinatal substance exposures in California in 1992. Urine samples from 29,494 women presenting for delivery in 202 hospitals were coded and screened for toxins; the results of toxicology screening were later linked by code number to the subjects' demographic variables and their reported use of tobacco and prescribed drugs. Urinary toxicologic tests provide conservative estimates because they can detect only very recent substance use. RESULTS: The weighted prevalence for perinatal substance exposure was 5.16 percent for the use of one or more drugs, 6.72 percent for alcohol (analyzed independently), and 8.82 percent for self-reported smoking. The percentage of women testing positive for any drug, including alcohol, was 11.35 percent. Estimates for racial and ethnic groups varied widely. Black women had the highest prevalence of total drug use (14.22 percent), alcohol use (11.58 percent), cocaine use (7.79 percent), and tobacco use (20.12 percent). Most drug exposures occurred among white non-Hispanic and Hispanic women. White non-Hispanic women had the second highest prevalence rate for the use of one or more drugs (6.79 percent) and self-reported tobacco use (14.82 percent). Hispanic women had the second highest prevalence rate for alcohol (6.87 percent). CONCLUSIONS: In California in 1992, there were 67,361 estimated perinatal exposures to one or more drugs, including alcohol, and 52,346 self-reported exposures to tobacco. These findings have clinical and public health implications.

Alcohol Drinking↗

Increased synthesis and degradation of DNA topoisomerase I during the initial phase of human T lymphocyte proliferation.

The regulation of DNA topoisomerase I was studied in human T lymphocytes following phytohemagglutinin (PHA) stimulation. As T lymphocytes began to enter the S phase 24 h after stimulation, there was a rapid increase in DNA topoisomerase I mRNA. The level of DNA topoisomerase I mRNA increased continuously over the next 18 h and peaked (> 50-fold increase) 42 h after stimulation with PHA. A concomitant increase in DNA topoisomerase I protein was also observed. However, the maximal increase in DNA topoisomerase I protein was only 6-fold. To explain the quantitative difference between the mRNA and protein levels, we investigated the change in the rates of DNA topoisomerase I protein synthesis versus degradation in human T lymphocytes following PHA stimulation. The increase in the mRNA parallels the increase in protein synthesis. However, the half-life of the enzyme protein was reduced to 9 h in proliferating T lymphocytes compared to a half-life of 36 h in resting lymphocytes. These results indicate that, in addition to the growth-regulated increase in the expression of DNA topoisomerase I, there was also a concomitant increase in the degradation of DNA topoisomerase I protein.

Blotting, Northern↗

Characterization of an unusual mutant of human melanoma cells resistant to anticancer drugs that inhibit topoisomerase II.

The topoisomerase II inhibitor, VP-16 (etoposide), is an important component in many chemotherapeutic regimens. To characterize resistance to this drug, the human melanoma cell line, FEM-X, was selected in multiple steps with VP-16. To prevent the development of typical multidrug resistance, an inhibitor of P-glycoprotein, the tiapamil analog, RO-11-2933, was added to the selections. The resultant clone FVP3 is 56-fold resistant to VP-16 and cross-resistant to doxorubicin (Adriamycin) (9-fold) and VM-26 (27-fold). These cells are also two- to four-fold resistant to m-AMSA, daunorubicin, and mitoxantrone. FVP3 is not resistant to the P-glycoprotein substrates vinblastine, does not express the MDR1 gene at detectable levels, and does not show reduced 3H-VP-16 accumulation. Unlike other cell lines that exhibit resistance to inhibitors of topoisomerase II, FVP3 has the same level of topoisomerase II expression and activity as FEM-X. Using live cells treated with VP-16, band depletion assays and KCI/SDS precipitation assays show that topoisomerase II from FVP3 is much less susceptible to drug-induced cleavable complex formation than is that from FEM-X. This difference in sensitivity to VP-16 is also detected using lysates from disrupted cells, but not with isolated nuclei devoid of cytoplasmic and membrane components. In addition, the topoisomerase II present in nuclear extracts from FVP3 is not resistant to the effects of VP-16 as measured by: (1) inhibition of strand passing activity during decatenation of kinetoplast DNA, (2) drug-induced linearization of plasmid DNA, and (3) immunodepletion by VP-16. These results suggest that some component of the cytoplasm or cellular membranes, or a factor depleted from nuclei during their isolation, is responsible for the resistance to VP-16 in FVP3.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Inhibition of NAD(P)H:quinone acceptor oxidoreductase by flavones: a structure-activity study.

A structure-activity study was carried out to determine the important regions of baicalein and oroxylin A, two flavones isolated from the Chinese herb Scutellariae radix, in inhibiting NAD(P)H:quinone acceptor oxidoreductase (EC 1.6.99.2; DT-diaphorase). This quinone reductase is a vitamin K reductase. It is a target for and has been used as a model enzyme to investigate the mode of action of oral anticoagulants. The two flavones were found to inhibit this quinone reductase in nanomolar ranges. The 5-hydroxyl, 7-hydroxyl, 8-hydroxyl, and 2-phenyl groups of these flavones were found to be important for their inhibition of the enzyme. The inhibition profiles of the flavones on the NADH-menadione reductase activity, the NADH-potassium ferricyanide reductase activity, and the NADH-methyl red reductase activity of this enzyme were different. Therefore, even though the flavones were found to be competitive inhibitors with respect to NADH, they probably did not inhibit the enzyme by binding to the nicotinamide nucleotide binding site. Inhibition kinetic studies which indicated that these compounds bound to different sites than those for dicoumarol and phenindone were performed. These results indicate that these flavones are a new type of inhibitor of NAD(P)H:quinone acceptor oxidoreductase and potentially useful as anticoagulant drugs.

Azo Compounds↗

An EGF-pseudomonas exotoxin A recombinant protein with a deletion in toxin binding domain specifically kills EGF receptor bearing cells.

We constructed two chimeric toxins; one composed of epidermal growth factor (EGF) and pseudomonas exotoxin A (PE), designated EGF-PE and the other composed of EGF and PE with a deletion of the Ia domain (cell-binding domain), designated EGF-PE (delta Ia). Both chimeric toxins reacted with anti-EGF and anti-PE antibodies. The cell-killing experiments showed that EGF-PE, but not EGF-PE (delta Ia), was cytotoxic to the murine fibroblast cell line NR6, which carried the PE receptor, but not the EGF receptor. However, after NR6 was transfected with DNA for the expression of human EGF receptor, the transfected cell line, designated NRHER5, over-expressed human EGF receptors and became sensitive to EGF-PE(delta IA). The cytotoxicity of EGF-PE(delta Ia), but not EGF-PE, to NRHER5 can be completely blocked by an excess amount of EGF. To completely reverse the cytotoxicity of EGF-PE on NRHER5, both the EGF receptor pathway and the PE receptor pathway need to be blocked. These results suggest that EGF-PE exhibits both EGF and PE binding activities, while EGF-PE(delta IA) possesses only EGF binding activity. Thus, EGF-PE(delta Ia) may be a better chimeric toxin than EGF-PE in terms of target specificity to EGF receptor bearing cells. We, therefore, examined the cytotoxicity of EGF-PE(delta Ia) to various human cancer cell lines. We find that human cancer cells containing more EGF receptors are more sensitive to EGF-PE(delta Ia).

ADP Ribose Transferases↗

Pseudomonas exotoxin A-epidermal growth factor (EGF) mutant chimeric protein as an indicator for identifying amino acid residues important in EGF-receptor interaction.

Epidermal growth factor (EGF) was fused to the carboxyl end of a modified pseudomonas exotoxin A that has its toxin binding domain deleted. This chimeric toxin designated as PE(delta Ia)-EGF kills A431 cells through the EGF receptor-mediated pathway. In this study, we used a random mutagenesis approach to make point mutations on EGF, followed by replacing the wild type EGF in PE(delta Ia)-EGF with these EGF mutants. We have constructed 14 different PE(delta Ia)-EGFmutants, and examined their EGF receptor binding activity as well as their cytotoxicity to A431 cells. Our results showed that individual mutations of Val19 to Glu and Val34 to Asp in the EGF domain of PE(delta Ia)-EGFmutants resulted in an increase in the binding affinity to EGF receptor and cytotoxicity to A431 cells. On the other hand, individual mutations of His16 to Asp and Gly18 to Ala in the EGF domain of PE(delta Ia)-EGFmutants lead to a decrease in the binding affinity to EGF receptor and cytotoxicity to A431 cells. In addition, mutations of any of the cysteine residues of EGF in PE(delta Ia)-EGFmutants resulted in the loss of their binding activity to EGF receptor and a corresponding loss of their cytotoxicity. This study indicates that the cytotoxicity of PE(delta Ia)-EGFmutant to EGF receptor-bearing cells may be used as an indicator to screen mutations of EGF important in EGF-receptor interactions.

ADP Ribose Transferases↗

Colchicine photosensitizes covalent tubulin dimerization.

Pure rat brain tubulin can be cross-linked by ultraviolet irradiation of tubulin-colchicine complexes at the high-wavelength maximum of colchicine to form covalent dimers greater than trimers greater than tetramers. With colchicine concentrations approximately 3 x 10(-4) M (mole ratio to tubulin 3-12) and irradiation for 5-10 min at 95-109 mW/cm2, the yield of dimers is 11-17% and of trimers is 4-6% of the total tubulin. The oligomers show polydispersity and anomalously high apparent molecular masses that converge toward expected values in low-density gels. Maximal dimer yields are obtained with MTC and the decreasing photosensitizing potency is MTC greater than colchicine greater than colchicide greater than isocolchicine greater than thiocolchicine. Single-ring troponoids also promote dimerization. Evidence is presented suggesting that the initial, low-affinity, binding step of colchicine and its analogues is sufficient to photosensitize tubulin dimerization.

Animals↗

[[The effect of demographic changes on the unemployment rate in Taiwan: 1978-1990]].

"The purpose of this paper is to compute the effects of changes in the composition of age, sex, and labor force participation rate, and education of population and labor force on the overall unemployment rate in Taiwan. The results show that the changes in the composition of age-sex and labor force participation rate have had an increasingly significant downward pressure on the overall unemployment rate. However, the compositional changes in...education [and sex] have exerted considerable upward pressure on the overall unemployment rate...." Recommendations for future policy directions are made. (SUMMARY IN ENG)

Age Distribution↗

Use of a cellular ELISA for the detection of cell surface antigens.

A sensitive, convenient and inexpensive enzyme-linked immunosorbent assay (ELISA) is described for the detection and relative quantitation of cell surface antigens. The cells to be tested are rapidly glutaraldehyde-fixed to the wells of microtiter plates, which can be stored for later assay, if desired. Alternatively, adherent cells may be left unfixed. Following incubation with antibodies specific for the antigens of interest, an enzyme-linked second antibody conjugate is added, followed by the substrate for the enzyme, as in a conventional ELISA for soluble proteins. The method is a sensitive and accurate alternative to immunofluorescence flow cytometry for rapid and inexpensive screening of large numbers of cell samples.

Animals↗