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Biomedical subjects

Hong Lu

Publications and source records attributed to Hong Lu.

At least 109 records · Page 6Linked to original sources

Development of a cell-based enzyme-linked immunosorbent assay for high-throughput screening of HIV type 1 entry inhibitors targeting the coreceptor CXCR4.

CXCR4, a coreceptor for human immunodeficiency virus type 1 (HIV-1) X4 virus, plays an important role in virus entry into the target cells. Antiviral agents that bind to CXCR4 are expected to inhibit HIV-1 entry. A cell-based enzyme-linked immunosorbent assay (ELISA) was developed utilizing an anti-CXCR4 monoclonal antibody, 12G5, and cells expressing CD4 and CXCR4, U373-MAGI-CXCR4(CEM) cells. Using this assay, we demonstrated that 12G5 specifically binds to the CXCR4-expressing cells, but not to CCR5-expressing cells and cells without CXCR4 and CCR5, consistent with the results obtained by using flow cytometry. The well-characterized CXCR4 antagonists, T22, T14012 (a downsized analog of T-22), and AMD3100, effectively inhibited 12G5 binding to CXCR4-expressing cells, while HIV-1 entry inhibitors targeting CD4 and gp41 as well as HIV-1 reverse transcriptase and protease inhibitors did not block the binding of 12G5 to U373-MAGI-CXCR4(CEM) cells. The prepared plates containing the fixed cells could be stored at -80 degrees C for at least 5 months without affecting the cell reactivity with 12G5, which enhances the convenience of this method. This suggests that the cell-based ELISA is specific, sensitive, convenient, rapid, and economic. With a robotic sample processing system, this assay can be used for high-throughput screening of HIV-1 entry inhibitors targeted to the HIV-1 coreceptor CXCR4.

Anti-HIV Agents↗

HCC-associated protein HCAP1, a variant of GEMIN4, interacts with zinc-finger proteins.

The gene HCAP1 (HCC-associated Protein 1), one variant of GEMIN4, has been mapped in a minimum LOH region on chromosome 17p13.3 and encodes a 1047-amino acid protein. Function predictions based on the amino acid sequence of protein HCAP1 revealed it to contain one helix-loop-helix motif and one leucine zipper domain. Using yeast two-hybrid screening, five zinc-finger proteins were identified as HCAP1-interacting proteins. Among them, NDP52 (nuclear dot protein 52) appeared most frequently in positive clones and was the most strongly interacting protein. Then, the interaction between HCAP1 and NDP52 was confirmed by GST pull-down assay and a coimmunoprecipitation experiment. Moreover, an immunofluorescent staining assay indicated that NDP52 colocalizes with HCAP1 in the cytoplasm. By deletion analysis, the leucine zipper domain of HCAP1 and the zinc finger domain of NDP52 were identified as important regions responsible for the interaction.

Amino Acid Sequence↗

Epigallocatechin-3-gallate is absorbed but extensively glucuronidated following oral administration to mice.

Epigallocatechin-3-gallate (EGCG), the most abundant catechin in green tea (Camellia sinensis), has shown cancer preventive activity in animal models. The bioavailability of EGCG in the most commonly used animal species, mice, is poorly understood. Moreover, the pharmacokinetic parameters of EGCG have not been reported previously in mice. Here we report that after administration of EGCG intravenously at 21.8 micro mol/kg or intragastrically at 163.8 micro mol/kg, the peak plasma levels of EGCG in male CF-1 mice were 2.7 +/- 0.7 and 0.28 +/- 0.08 micro mol/L, respectively. EGCG was present mainly (50-90%) as the glucuronide. The plasma bioavailability of EGCG after intragastric administration was higher than previously reported in rats (26.5 +/- 7.5% vs. 1.6 +/- 0.6%). The conjugated EGCG displayed a shorter t(1/2) (82.8-211.5 vs 804.9-1102.3 min) than unconjugated EGCG (P < 0.01, Student's t test). EGCG was present in the unconjugated form in the lung, prostate and other tissues at levels of 0.31-3.56 nmol/g after intravenous administration. Although intragastric administration resulted in lower levels in most tissues compared with intravenous administration (e.g., 0.006 +/- 0.004 vs. 2.66 +/- 1.0 nmol/g in the lung), the levels in the small intestine and colon were high at 45.2 +/- 13.5 and 7.86 +/- 2.4 nmol/g, respectively. This is the first report of the pharmacokinetic parameters of EGCG in mice. Such information provides a basis for understanding the bioavailability of EGCG in mice and should aid in understanding the cancer preventive activity of EGCG.

Administration, Oral↗

Glucuronides of tea catechins: enzymology of biosynthesis and biological activities.

(-)-Epigallocatechin gallate (EGCG) and (-)-epigallocatechin (EGC) are major green tea catechins with antioxidant and anticancer activities. In this study, we characterized the glucuronidation of EGCG and EGC in human, mouse, and rat microsomes and by nine different human UGT 1A and 2B isozymes expressed in insect cells. Six EGCG and EGC glucuronides were biosynthesized, and their structures were identified for the first time. (-)-EGCG-4"-O-glucuronide was the major EGCG glucuronide formed in all incubations. The catalytic efficiency (V(max)/K(m)) for (-)-EGCG-4"-O-glucuronide formation followed the order: mouse intestine > mouse liver > human liver > rat liver >> rat small intestine. The UGT-catalyzed glucuronidation of EGC was much lower than that of EGCG. The V(max)/K(m) for (-)-EGC-3'-O-glucuronide followed the following order: mouse liver > human liver > rat liver > rat and mouse small intestine. Human UGT1A1, 1A8, and 1A9 had high activities with EGCG. UGT1A8, an intestine-specific UGT, had the highest V(max)/K(m) for EGCG but low activity with EGC. Mice appeared to be more similar to humans than rats to humans in the glucuronidation of EGCG and EGC. Some of these catechin glucuronides retained the activities of their parent compounds in radical scavenging and in inhibiting the release of arachidonic acid from HT-29 human colon cancer cells. These results provide foundations for understanding the biotransformation and biological activities of tea catechins.

Animals↗

Enzymology of methylation of tea catechins and inhibition of catechol-O-methyltransferase by (-)-epigallocatechin gallate.

(-)-Epigallocatechin gallate (EGCG) and (-)-epigallocatechin (EGC) are the major polyphenolic constituents in green tea. In this study, we characterized the enzymology of cytosolic catechol-O-methyltransferase (COMT)-catalyzed methylation of EGCG and EGC in humans, mice, and rats. At 1 microM, EGCG was readily methylated by liver cytosolic COMT to 4"-O-methyl-EGCG and then to 4',4"-di-O-methyl-EGCG; EGC was methylated to 4'-O-methyl-EGC. The K(m) and V(max) values for EGC methylation were higher than EGCG; for example, with human liver cytosol, the K(m) were 4.0 versus 0.16 microM and V(max) were 1.28 versus 0.16 nmol/mg/min. Rat liver cytosol had higher COMT activity than that of humans or mice. The small intestine had lower specific activity than the liver in the methylation of EGCG and EGC. Glucuronidation on the B-ring or the D-ring of EGCG greatly inhibited the methylation on the same ring, but glucuronidation on the A-ring of EGCG or EGC did not affect their methylation. Using EGC and 3,4-dihydroxy-L-phenylalanine as substrates, EGCG, 4"-O-methyl-EGCG, and 4',4"-di-O-methyl-EGCG were all potent inhibitors (IC(50) approximately 0.2 microM) of COMT. The COMT-inhibiting activity of (-)-EGCG-3'-O-glucuronide was similar to EGCG, but (-)-EGCG-4"-O-glucuronide was less potent. The present work provides basic information on the methylation of EGCG and suggests that EGCG may inhibit COMT-catalyzed methylation of endogenous and exogenous compounds.

Animals↗

Optimization of Rolling-Circle Amplified Protein Microarrays for Multiplexed Protein Profiling.

Protein microarray-based approaches are increasingly being used in research and clinical applications to either profile the expression of proteins or screen molecular interactions. The development of high-throughput, sensitive, convenient, and cost-effective formats for detecting proteins is a necessity for the effective advancement of understanding disease processes. In this paper, we describe the generation of highly multiplexed, antibody-based, specific, and sensitive protein microarrays coupled with rolling-circle signal amplification (RCA) technology. A total of 150 cytokines were simultaneously detected in an RCA sandwich immunoassay format. Greater than half of these proteins have detection sensitivities in the pg/ml range. The validation of antibody microarray with human serum indicated that RCA-based protein microarrays are a powerful tool for high-throughput analysis of protein expression and molecular diagnostics.

Journal Article↗

Rapid and automated fluorescence-linked immunosorbent assay for high-throughput screening of HIV-1 fusion inhibitors targeting gp41.

The human immunodeficiency virus type 1 (HIV-1) envelope glycoprotein gp41 plays an important role in the virus entry. During the process of fusion between the viral and target cell membranes, the N- and C-terminal heptad repeat (HR) regions of the gp41 extracellular domain associate to form a 6-helical bundle, corresponding to the fusion-active gp41 core. Any compound that blocks the gp41 6-helix bundle formation between the N- and C-peptides, which are derived from the N- and C-terminal HR regions, respectively, may inhibit HIV-1 mediated membrane fusion. Based on this principle, we previously established a sandwich enzyme-linked immunosorbent assay (ELISA) for drug screening by using the N-peptide N36 and the C-peptide C34 and a monoclonal antibody (NC-1) which specifically recognizes the gp41 6-helix bundle. In the present study, a fluorescence-linked immunosorbent assay (FLISA) was developed by using fluorescein isothiocyanate (FITC)-conjugated C34 to replace C34 and by directly detecting fluorescence intensity instead of more complicated enzymatic reaction. Compared with the sandwich ELISA, this FLISA has similar sensitivity and specificity, but it is much more rapid, economic and convenient. Using an Integrated Robotic Sample Processing System, this assay has been applied for high-throughput screening of organic compounds on a large scale for HIV-1 fusion inhibitors targeting gp41.

Drug Evaluation, Preclinical↗

[Mapping studies of type 2 diabetes mellitus gene in one family].

OBJECTIVE: To disclose the molecular genetic mechanism of type 2 diabetes mellitus and to determine chromosomal location of type 2 diabetes mellitus gene. METHODS: Genome-wide screening and genotyping were conducted in a family of type 2 diabetes mellitus, and linkage analysis by LINKAGE and GENEHUNTER package was used to determine the potential chromosomal location of the family of type 2 diabetes mellitus gene. RESULTS: Evidence of linkage was found at the long arm of chromosome 2. The maximum Lod score is 1.80 and non-parameter Lod score is 5.06. CONCLUSION: The type 2 diabetes mellitus gene of the family is located at 2q.

Adult↗

[Expression and immunogenicity of equine infectious anemia virus membrane protein GP90].

BACKGROUND: Membrane protein GP90 of China equine infectious anemia virus (EIAV) vaccine strain (DLV) and its parental wild type LN strain were expressed with Bac-to-Bac baculovirus expression system and BALB/c mice were inoculated with purified protein, thereby to explore the availability of protein for differential diagnosis and potential for preparing genetically engineered vaccine. METHODS: The authors infected donkey PBMC culture with China EIAV vaccine strain (DLV) and its parental wild type LN strain, extracted its proviral DNA as template, amplified the GP90 of DLV and LN, respectively, and expressed with Bac-to-Bac baculovirus expression system. The sf9 insect cells were infected with the recombinant baculovirus and the expressed proteins were purified by IMAC. BALB/c mice were inoculated with purified protein. The specific binding Abs generated in the immunized mice were determined by ELISA method. The neutralizing assay was set up to determine the neutralizing capability of the antigens generated in immunized animals. RESULTS: The recombinant virus expressing viral antigens was determined by Western blot. The expressed proteins were purified by IMAC resulting in the protein purity of 87%(DLV) and 82%(LN), respectively. The antibody titer of the groups with and without adjuvant was 1 600 and 800, respectively. Serial 2 fold dilutions of the immunized mice sera were reacted with 100 TCID50 of EIAV. The end point of immunization assay was to protect 50% cells form CPE caused by EIAV in donkey skin cells. The neutralizing antibody titer was in the range 40 to 80 from animal immunized with and without adjuvant. CONCLUSIONS: Membrane proteins of EIAV vaccine strain and wild type strain were successfully expressed in eukaryotic cell expression system according to the scheduled plan. The proteins showed strong immunogenicity and could activate animals to produce anti-EIAV specific antibody including neutralizing antibody to EIAV.

Animals↗

A correlative study between AQP4 expression and the manifestation of DWI after the acute ischemic brain edema in rats.

OBJECTIVE: To investigate the rule of the aquaporin-4 (AQP4) expression in acute ischemic brain edema, and to study the correlation between AQP4 expression and diffusion-weighted imaging (DWI). METHODS: Thirty-six Wistar rats were divided into 2 groups randomly, control group (n = 12) and operation group (n = 24) in which right middle cerebral artery of each animal had been occluded unilaterally (MCAO) at interval times of: 15 minutes, 30 minutes, 1 hours, 3 hours, 6 hours and 24 hours, respectively. The operation process of the control group was the same as the operation group except for the MCAO. All groups were examined using DWI. The apparent diffusion coefficient (ADC), relative density (rd) and relative area (rs) of the biggest hyperintensity signal layer on DWI were measured. After that the animals were sacrificed and perfused with the mixture solution consisting of TTC. The biggest layers of the ischemic cerebral tissues in each rat corresponding to the DWI were stained with TTC and examined with immunochemistry (DeltaS), in situ hybridization (alpha) and histology. RESULTS: There was no significant change in the control group. In the operation group, a hyperintensity signal was found in the DWI of the right MAC territory at 15 minutes after MCAO. The ADC value decreased quickly within one hour after MCAO, while the AQP4 expression, rd-DWI and rs-DWI increased rapidly during this stage. As time progressed, the ADC value decreased further to (2.1 +/- 0.6) x 10(-4) mm(2)/s at 3 hours, and then began to increase slowly till 24 hours. But the AQP4 expression (DeltaS and alpha) and rd as well as the rs continuously increased slowly between 1 hour and 6 hours after MCAO, followed a peak after 6 hours. The AQP4 expression (alpha) showed a positive relationship with the rs-DWI, they all presented two peaks and a plateau. The corresponding sequential pathologic changes were a gradual increase of intracellular edema (within one hour), then an emergence of vasogenic edema (1-6 hours), and final necrosis and liquefaction (6 - 24 hours). CONCLUSIONS: Upregulated expression of AQP4 may play a significant role in acute ischemic brain edema, especially during the stages of intracellular edema and necrosis, but it has no correlation to vasogenic edema. Certainly, the high expression of AQP4 is perhaps one of the most important reasons of the decrease of ADC and hyperintensity on the DWI in the intracellular edema.

Acute Disease↗

[Histopathological and ultracytochemical observation of mucosa on the eustachian tube and middle ear with experimental secretory otitis media].

OBJECTIVE: To further explore the pathogenesis of the secretory otitis media and provide basis for its clinical treatment. METHOD: A model of otitis media with effusion was established by coagulating the pharyngeal orifice of the eustachian tube under an endoscope with microwave. Orifice and its cartilage-mucosa of the eustachian tube and the mucosa in the middle ear were observed and compared, dark-granulated cells near the middle ear and surfactant-like lamellar bodies were observed. RESULT: Under light microscope, the eustachian tube in all the specimens were unblocked. The thick-measurements and pathology observations of the cartilage-mucosa on eustachian tube with otitis media revealed that there were no obviously inflammatory change and no significantly difference in comparison with normal control group. In all the pathologic groups, no surfactant-like lamellar bodies were found in the secretory cells, which showed impaired characters with little secretory granules. CONCLUSION: The cartilage mucosa on eustachian tube is possessed of very strong function of natural defence for inflammatory disease. Surfactant-like substance are important in maintaining the physiological function of the eustachian tube. These studies provide a basis for further experimental research and clinical treatment for secretory otitis media.

Animals↗

Stability, cellular uptake, biotransformation, and efflux of tea polyphenol (-)-epigallocatechin-3-gallate in HT-29 human colon adenocarcinoma cells.

The biological effects of (-)-epigallocatechin-3-gallate (EGCG) have been extensively investigated in cell lines, but its stability and interactions with cells under culture conditions are unclear. In the present study, the stability, uptake, biotransformation, and efflux of [(3)H]EGCG in HT-29 human colon adenocarcinoma cells were investigated. EGCG was unstable in McCoy's 5A culture media with a half-life of less than 30 min, and the half-life increased to 130 min in the presence of cells. The major oxidative products were theasinensin (M(r) 914) and another dimer with M(r) 884. Addition of EGCG (50 micro M) to cell culture media caused the production of H(2)O(2) (up to 25 micro M), and the amount was lower and gradually decreased in the presence of cells. The uptake of EGCG was concentration dependent and did not plateau, even at 640 micro M, suggesting a passive diffusion process. Approximately 75% of the [(3)H]EGCG was found in the cytoplasmic fraction when the cells were incubated with 0.5-20 micro M [(3)H]EGCG for 15 min. The membrane-associated radioactivity increased with time, apparently because of the binding of dimers to the membrane. The accumulation of [(3)H]EGCG in the cells was significantly higher at 4 degrees C than at 37 degrees C. Multidrug-resistant protein inhibitors, such as indomethacin and probenecid, effectively increased the accumulation of EGCG 4"-glucuronide and 4"-methyl EGCG in the cell. These results suggest that EGCG is metabolized in the cell and that the metabolites are pumped out by MRPs. The present study provides fundamental information on the stability, uptake, biotransformation, and efflux of EGCG under cell culture conditions and suggests the need for careful interpretation of related results on the biological activities of EGCG.

ATP Binding Cassette Transporter, Subfamily B↗

Association of estrogen receptor-alpha gene polymorphisms with coronary artery disease in patients with familial hypercholesterolemia.

To investigate the association of estrogen receptor (ER)-alpha gene polymorphisms with coronary artery disease (CAD), we studied 197 men and 98 postmenopausal women with heterozygous familial hypercholesterolemia. We examined the known polymorphisms, including PvuII, XbaI, TA repeat, and CA repeat, and identified 6 novel polymorphisms in the ER-alpha gene. The distributions of -1989T/G (a novel polymorphism in promoter B) and XbaI in intron 1 were associated with CAD in postmenopausal women and in men, with a higher frequency of the G/G genotype (P=0.03) or X1/X1 genotype (P=0.02) in the CAD group. The frequency of alleles of TA repeats >17 was found to be significantly higher in postmenopausal women with CAD than in those without CAD (P=0.04), but not in men. Logistic regression analysis with all coronary risk factors as covariates showed that the G/G genotype was a higher risk for CAD (odds ratio 4.5, 95% CI 1.0 to 19.5;P=0.04) but that X1/X1 was not. We conclude that -1989T/G or its linked polymorphisms in the ER-alpha gene may confer risk for CAD and that the G/G genotype may be an independent predictor for CAD in patients with familial hypercholesterolemia.

Adult↗

Expression of human plasminogen kringle 5 as fusion protein with truncated hIFNgamma gene in Escherichia coli.

The human interferon gamma (hIFNgamma) gene was used as a fusion partner to mediate the expression of heterologous proteins and the effect of the fusion partner length on the expression of the heterologous protein was researched. Plasminogen kringle 5 (pk5), an inhibitor of angiogenesis, was fused to hIFNgamma and its serially truncated fragments, respectively, and the expression of fusion proteins was determined by SDS-Page gel. The pk5 protein was obtained readily by the introduction of sequences recognized by protease factor Xa at the fusion site and ion-exchange chromatography was employed to purify pk5. The recovery of the biological activities of pk5 was studied using the orthogonal experimental design L9 (3(4)) (four factors, three levels, nine experiments) and evaluated by measurement of anti-endothelial cell proliferation in vitro.

Angiogenesis Inhibitors↗

A draft sequence of the rice genome (Oryza sativa L. ssp. indica).

We have produced a draft sequence of the rice genome for the most widely cultivated subspecies in China, Oryza sativa L. ssp. indica, by whole-genome shotgun sequencing. The genome was 466 megabases in size, with an estimated 46,022 to 55,615 genes. Functional coverage in the assembled sequences was 92.0%. About 42.2% of the genome was in exact 20-nucleotide oligomer repeats, and most of the transposons were in the intergenic regions between genes. Although 80.6% of predicted Arabidopsis thaliana genes had a homolog in rice, only 49.4% of predicted rice genes had a homolog in A. thaliana. The large proportion of rice genes with no recognizable homologs is due to a gradient in the GC content of rice coding sequences.

Arabidopsis↗

Molecular genetic analysis of familial hypercholesterolemia: spectrum and regional difference of LDL receptor gene mutations in Japanese population.

To determine the molecular basis of familial hypercholesterolemia (FH) in Japan, 200 unrelated patients with clinically diagnosed heterozygous FH were screened for mutations in coding and promoter region of the low density lipoprotein (LDL) receptor gene using denaturing gradient-gel electrophoresis (DGGE), DNA sequencing and Southern blotting analysis. About 37 different mutations in the LDL receptor gene were identified in 125 (62.5%) of the patients, 22 of these mutations have not been described before. The most common mutations were K790X (19.5%), P664L (6.0%), FH-Tonami-1 (6.0%), IVS15-3C>A (5.5%) and FH-Tonami-2 (4.5%), whereas the other mutations were rare. No apolipoprotein B (apoB) mutations responsible for familial ligand-defective apoB-100 (FDB) were identified. Polymorphisms of apolipoprotein E (apoE) and scavenger receptor class B type I (SR-BI) were observed to have minor effects on the lipid and lipoprotein profile. In 75 (32.5%) of the FH patients, LDL receptor gene mutations could not be identified. These patients had significantly lower total cholesterol (7.71+/-1.64 vs. 8.68+/-1.47 mmol/l, P<0.001) and LDL-cholesterol (6.02+/-1.51 vs. 6.87+/-1.47 mmol/l, P<0.001) in plasma, also a lower incidence of coronary heart disease (CHD) (22 vs. 29%, P=0.05) compared with patients with a LDL receptor gene mutation, suggesting that besides LDL receptor, defect of other genes involved in LDL metabolism may be a cause of FH with a milder phenotypic expression in Japanese population.

Adult↗

Identification and characterization of methylated and ring-fission metabolites of tea catechins formed in humans, mice, and rats.

(-)-Epigallocatechin gallate (EGCG), the most abundant tea catechin, has been proposed to be beneficial to human health based on its strong antioxidative and other biological activities in vitro. Inadequate knowledge regarding the bioavailability and biotransformation of EGCG in humans, however, has limited our understanding of its possible beneficial health effects. In this study, 4',4' '-di-O-methyl-EGCG (4',4' '-DiMeEGCG) was detected in human plasma and urine by LC/MS/MS following green tea ingestion. Both 4',4' '-DiMeEGCG and EGCG reached peak plasma values (20.5 +/- 7.7 and 145.4 +/- 31.6 nM, respectively, in 4 subjects) at 2 h after the dose. The half-lives of 4',4' '-DiMeEGCG and EGCG were 4.1 +/- 0.8 and 2.7 +/- 0.9 h, respectively. The cumulative urinary excretion of 4',4' '-DiMeEGCG during a 24 h period was 140.3 +/- 48.6 microg, about 5-fold higher than that of EGCG, but the excreted 4',4' '-DiMeEGCG and EGCG in urine only accounted for about 0.1% of ingested EGCG. (-)-5-(3',4',5'-Trihydroxyphenyl)-gamma-valerolactone (M4) and (-)-5-(3',4'-dihydroxyphenyl)-gamma-valerolactone (M6), along with another possible ring-fission metabolite, (-)-5-(3',5'-dihydroxyphenyl)-gamma-valerolactone (M6'), were detected in human urine after green tea ingestion. The cumulative excretion of M4, M6', and M6 during a 24 h period ranged from 75 microg to 1.2 mg, 0.6 to 6 mg, and 0.6 to 10 mg, respectively. The combined excretion of all three ring-fission metabolites accounted for 1.5-16% of ingested catechins. M4, M6', and M6 were all observed after the ingestion of pure EGCG or EGC by human subjects, whereas only M6 was produced after EC ingestion. These metabolites as well as monomethylated EGCG were detected in mice and rats after tea or EGCG administration, and the tissue levels reflected the rather low bioavailability of EGCG in rats. The presently characterized methylated EGCG metabolites and ring-fission products exist in substantial quantities and may contribute to the biological activities of tea.

Adult↗