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Zhan-Hui Wang

Publications and source records attributed to Zhan-Hui Wang.

18 recordsLinked to original sources

Immunosensor interface based on physical and chemical immunoglobulin G adsorption onto mixed self-assembled monolayers.

An immunosensor interface based on mixed hydrophobic self-assembled monolayers (SAMs) of methyl and carboxylic acid terminated thiols with covalently attached human Immunoglobulin G (hIgG), is investigated. The densely packed and organised SAMs were characterised by contact angle measurements and cyclic voltammetry. The effect of the non-ionic surfactant, Tween 20, in preventing nonspecific adsorption is addressed by ellipsometry during physical and covalent hIgG immobilization on pure and mixed SAMs, respectively. It is clearly demonstrated that nonspecific adsorption due to hydrophobic interactions of hIgG on methyl ended groups is totally inhibited, whereas electrostatic/hydrogen bonding interactions with the exposed carboxylic groups prevail in the presence of surfactant. Results of ellipsometry and Atomic Force Microscopy, reveal that the surface concentration of covalently immobilized hIgG is determined by the ratio of COOH / CH(3)-terminated thiols in SAM forming solution. Moreover, the ellipsometric data demonstrates that the ratio of bound anti-hIgG / hIgG depends on the density of hIgG on the surface and that the highest ratio is close to three. We also report the selectivity and high sensitivity achieved by chronoamperometry in the detection of adsorbed hIgG and the reaction with its antibody.

Adsorption↗

A label-free protein microfluidic array for parallel immunoassays.

A label-free protein microfluidic array for immunoassays based on the combination of imaging ellipsometry and an integrated microfluidic system is presented. Proteins can be patterned homogeneously on substrate in array format by the microfluidic system simultaneously. After preparation, the protein array can be packed in the microfluidic system which is full of buffer so that proteins are not exposed to denaturing conditions. With simple microfluidic channel junction, the protein microfluidic array can be used in serial or parallel format to analyze single or multiple samples simultaneously. Imaging ellipsometry is used for the protein array reading with a label-free format. The biological and medical applications of the label-free protein microfluidic array are demonstrated by screening for antibody-antigen interactions, measuring the concentration of the protein solution and detecting five markers of hepatitis B.

Animals↗

Investigation of interaction between two neutralizing monoclonal antibodies and SARS virus using biosensor based on imaging ellipsometry.

Two neutralizing human scFv, b1 and h12 were identified initially using ELISA,employing highly purified virus as the coating antigen. The biosensor technique based on imaging ellipsometry was employed directly to detect two neutralizing monoclonal antibodies and serial serum samples from 10 SARS patients and 12 volunteers who had not SARS. Further, the kinetic process of interaction between the antibodies and SARS-CoV was studied using the real-time function of the biosensor. The biosensor is consistent with ELISA that the antibody h12 showed a higher affinity in encountering the virus than antibody b1. The affinity of antibody b1 and antibody h12 was 9.5 x 10(6) M(-1) and 1.36 x 10(7) M(- 1), respectively. As a label free method, the biosensor based on imaging ellipsometry proved to be a more competent mechanism for measuring serum samples from SARS patients and the affinity between these antibodies and the SARS coronavirus.

Antibodies, Monoclonal↗

[Application of optical proteinchip in detecting phage M13KO7].

Avidin layer was bound on the substrate surface of Silicon wafer modified with aldehyde. The interaction between avidin and biotin was adopted for the immobilization of mouse monoclonal biotin-anti-M13 (antibody GP3)-labeled biotin. The surface was incubated in a solution containing phage M13KO7, which was trapped by the antibody GP3 with the interaction between phage M13KO7 and antibody GP3, resulting in a variation of layer thickness that was detected by imaging ellipsometry. The results showed a saturated layer of antibody GP3 with a thickness about 6.9 nm on the surface of the silicon wafer. The specific interaction between phage M13KO7 and antibody GP3 resulted in a variation of the layer thickness. The layer of phage M13KO7 bound with antibody GP3 was 17.5 nm in the concentration of 1.1 x 10(10) pfu/mL. Each variation of layer thickness corresponded to a concentration of phage M13KO7 in the range of 0.1 x 10(10) approximately 2.5 x 10(10) pfu/mL, with the sensitivity of 10(9) pfu/mL. Compared with other methods, the optical protein-chip requires only short measurement time, is label free, is a quantitative test, and can be visualized. This study could be significant on the investigation of interactions between the antibody and virus, and shows potential in the early diagnosis of virosis.

Animals↗

[Genotyping of hepatitis B virus and its clinical significance in patients with chronic hepatitis B].

OBJECTIVE: To investigate the distribution of hepatitis B virus (HBV) genotypes in Guangdong and explore its clinical significance. METHODS: Fifty-five patients with chronic active hepatitis (CAH) from Guangdong province were included in this study. HBV surface gene amplified by PCR was analyzed by restriction fragments length polymorphism (RFLP) for HBV genotyping, and the relationship of HBV genotype with clinical, serological and histological data of the patients was analyzed. RESULTS: Twenty-eight out of 55 patients were infected with HBV strains of genotype B (51.0%), 18 with genotype C (32.7%), 4 with genotype D (7.3%), 4 with HBV classified as genotype B+C (7.3%), and 1 (1.8%) with HBV that did not conform to any of the genotypes from A to G. No significant differences in clinical, histological, or serological data of HBV DNA loading were detected between genotypes B and C. But in patients older than 30 years, the genotype C was accompanied by significantly higher HBV DNA loading and serum HBeAg level than genotype B (Fisher's exact test, P=0.002). CONCLUSIONS: HBV genotype B and C are the major genotypes prevalent in Guangdong Province. Genotype C is associated with the longer duration of HBeAg and higher HBV DNA level in patients older than 30 years, suggesting the higher risk of HBV genotype C infection to progress into chronic liver disease.

Adult↗

[Expression and renaturation of a novel human single-chain Fv antibody against SARS-CoV].

A novel human ScFv H12 against SARS-CoV has been selected from a SARS immune library. In order to produce a large amount of ScFv H12, pET28a-H12 expression vector was constructed and ScFv H12 was expressed at yield about 30% of total proteins in E. coli . Here two different refolding procedures were used to refold ScFv H12 from inclusion body: gel filtration chromatography and dilution. The results showed that ScFv H12 could be efficiently refolded by both procedures. However, the refolding via gel filtration was 1.5 time more effective than that of dilution. The affinity of ScFv H12 to SARS-CoV virion was detected as Kd = 73.5 nmol/mL.

Antibodies, Monoclonal↗

A novel hepatitis B virus genotyping system by using restriction fragment length polymorphism patterns of S gene amplicons.

AIM: Traditional hepatitis B virus (HBV) genotyping methods using restriction fragment length polymorphism (RFLP) can reliably identify genotypes A to F. As HBV genotypes G and H have been recently identified, this study was to establish an accurate and simple genotyping method for all eight HBV genotypes (A to H). METHODS: Two hundred and forty HBV small S sequences obtained from GeneBank were analysed for restriction enzyme sites that would be genotype-specific. Restriction patterns following digestion with restriction enzymes BsrI, StyI, DpnI, HpaII, and EaeI, were determined to identify all eight HBV genotypes. Mixed genotype infections were confirmed by cloning and further RFLP analysis. RESULTS: The new genotyping method could identify HBV genotypes A to H. Genotypes B and C could be determined by a single step digestion with BsrI and StyI in parallel. This was particularly useful in the Far East where genotypes B and C are predominant. Serum samples from 187 Chinese HBV carriers were analysed with this genotyping system, and the genotype distribution was 1.1% (2), 51.9% (97), 40.6% (76) and 4.8% (9) for genotypes A, B, C, and D, respectively. Mixed genotypes were found in only 3 patients (1.6%). Sequence data analysis confirmed the validity of this new method. CONCLUSION: This HBV genotyping system can identify all eight HBV genotypes. It is accurate and simple, and can be widely used for studies on HBV genotyping.

Adult↗

Silicon surface modification with a mixed silanes layer to immobilize proteins for biosensor with imaging ellipsometry.

One kind of surface modification method on silicon wafer was presented in this paper. A mixed silanes layer was used to modify silicon surface and rendered the surface medium hydrophobic. The mixed silanes layer contained two kinds of compounds, aminopropyltriethoxysilane (APTES) and methyltriethoxysilane (MTES). A few of APTES molecules in the layer was used to immobilize covalently human immunoglobulin G (IgG) on the silicon surface. The human IgG molecules immobilized covalently on the modified surface could retain their structures well and bind more antibody molecules than that on silicon surface modified with only APTES. This kind of surface modification method effectively improved the sensitivity of the biosensor with imaging ellipsometry.

Biosensing Techniques↗

Covalent immobilization of proteins for the biosensor based on imaging ellipsometry.

In the development of biosensors, the immobilization of biomolecules at interfaces played a crucial role. The feasibility of using 3-aminopropyltriethoxysilane (APTES) and glutaraldehyde (Glu) to modify silicon surface to immobilize covalently protein for immunoassay with the biosensor based on imaging ellipsometry was investigated. The higher density and stability of human IgG layer could be obtained on the silicon surface modified with APTES and Glu than that on the silicon surface modified with dichlorodimethylsilane (DDS). The human IgG molecules immobilized covalently on APTES-Glu surface bound more anti-IgG molecules than that on DDS surface, which indicated that the human IgG molecules could maintain higher binding capability on APTES-Glu surface. Tween 20 was able to block the undesirable adsorption on APTES-Glu surface, and also enhanced the recognition between human IgG and its antibody on both APTES-Glu and DDS surfaces. The combination of this protein covalent immobilization and the biosensor has the potential to be developed into a fast, simple immunoassay technique.

Antibody Affinity↗

[Oriented immobilization of human IgG by protein A on imaging ellipsometry biosensor].

The biosensor based on optical imaging ellipsometry, can be used to detect directly, without labeling, the surface concentration of biomolecules on solid surface. The feasibility of using protein A to immobilize antibody on the silicon surface of the imaging ellipsometry biosensor was investigated in this study. The results showed that the anti-IgG immobilized by the protein A on silicon surface could bind effectively human IgG, and the human IgG immobilized on silicon surface by protein A bound more polyclonal antibody molecules than that immobilized on silicon surface directly, suggesting that protein A might block the surface to prevent the absorption of human IgG on surface directly, which might compromise its native configuration. The silicon surface modified with protein A is expected to be used to immobilize a variety of antibodies, as protein A can bind selectively the Fc regions of many mammalian IgG. The combination of imaging ellipsometry and the protein A surface modification has the potential to be developed into immunoassays of high sensitivity.

Biosensing Techniques↗

[Visualization of the interaction between IL-6 and IL-6R by imaging ellipsometry].

Imaging Ellipsometry is one of recently developed optical surface-sensitive methods for the investigation of various aspects of biomolecules adsorption on solid surfaces and biomolecules interactions. It has advantages of high sensitivity to layer-thickness, big area of view, high sampling speed, and high lateral resolution. Compared with other solid phase methods such as enzyme linked immunosorbent assay, immunofluorescence and radioimmunoassay, imaging ellipsometry has the advantage of not involving any labelling of reactants and it is a relatively inexpensive method and easy to handle. In this report, the mono-layers of IL-6 and IL-6 receptor were visualized as well as their interaction.

Diagnostic Imaging↗

[Effects of partial deletion in the core promoter of hepatitis B virus genome on viral antigen expressions].

OBJECTIVE: To study the effects of 20/21 bp partial deletion mutation (from nt 1 748 or nt 1 747 to nt 1 767) in the core promoter (CP) region of hepatitis B virus (HBV) genome complicated by precore stop condon mutation at nt 1 896 on the expression of the viral antigens. METHODS: Eukaryotic expression vector containing full-length HBV genome with the above mutations was constructed. After transfection of the recombinant HBV plasmids into HepG2 cells, the expression of the viral antigens was examined with enzyme-linked immunosorbent assay (ELISA) and Western blotting analysis. RESULTS: As shown by ELISA and Western blotting analysis, the amount of extracellular secretion of hepatitis B surface antigen (HBsAg) and hepatitis B e antigen (HBeAg) along with intracellular hepatitis B core antigen (HBcAg) in the cells transfected with vectors containing HBV genomes with partial deletion in the CP region was markedly reduced compared with that produced by wild-type HBV. CONCLUSION: The mutations in question causes marked reduction in viral antigen production by HBV in comparison that by wild-type HBV.

Blotting, Western↗

[Efficient and constant expression of cloned human beta2-microglobulin gene in E.coli].

OBJECTIVE: To obtain human beta2-microglobulin (beta2m) gene that is to be efficiently expressed in E.coli. METHODS: beta2m cDNA including only the coding region for the protein was amplified from Raji cell line by reverse transcriptase-PCR via the primers 5'-GGTGGTCATATGGCTATCCAGCGTACTCCA-3' and 3'-GGTGGTTGCTCTTCCGACATGTCTCGATCC-3'. The product was subsequently cloned into a modified pBV220 vector after digestion with Nde I/Sap I. The recombinant plasmid pBV220-beta2m was transformed into E.coli BL21 after sequence analysis, and the fusion protein was then expressed via induction at 42 for 5 h at D(600) of 0.55-0.60, followed by purification through chitin beads. RESULTS: The beta2m cDNA was identical with those published in Genbank. The expressed fusion protein was identified in the form of inclusion body at the ratio more than 45 % of the E.coli proteins, and was denatured with 8 mol/L urea, followed by refold and purification to a high purity, displaying a relative molecular mass of 12 000 on 10 % SDS-PAGE gel. CONCLUSION: The human beta2m gene was cloned successfully and expressed efficiently and constantly in E.coli BL21,which lays the ground for engineering MHC-tetramers.

Escherichia coli↗

[Micropatterning of biotin-avidin layers and cell location].

The located culture of cells on patterned surfaces is useful for tissue engineering, biosensor development and fundamental research of cell biology. It is presented here a rapid fabrication method of Biotin-Avidin protein layers micropattern, which is based on soft-lithography technology. The bovine aortic endothelial cells are cultured on the micropatterned surface. It is found that cell location can be controlled on the scale of individual cell by this method.

Animals↗

Construction of recombinant eukaryotic expression plasmid containing hepatitis B virus genome with partial deletion of the core promoter.

OBJECTIVE: To construct an eukaryotic expression vector containing the full-length genome with partially deleted core promoter of hepatitis B virus (HBV). METHODS: A linearized genome containing the entire HBV 3.5 kb mRNA transcriptional units (P3.8 I plasmid) was used, which initiated from the upstream sequences of the basic core promoter. The objective eukaryotic expression vector was constructed by molecular cloning and PCR-based site-directed mutagensis in vitro, and identifcation was performed using polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) followed by cloning and sequencing analysis. RESULTS: The eukaryotic expression vectors containing HBV genomes with 20/21 bp deletion (position 1 748/1 747 to 1 767) in the core promoter or with precore stop mutation at nucleotide 1896 as well were constructed successfully as confirmed by sequence analysis with RFLP. CONCLUSION: The recombinant expression vector may lay the foundation for further studies into the biological significance of the above mentioned mutations in vitro.

Journal Article↗

Determination and analysis of complete nucleotide sequence of Chinese genotype D hepatitis B virus: the first report.

OBJECTIVE: To determine the complete nucleotide sequence of a Chinese hepatitis B virus (HBV) strain of genotype D. METHOD: The complete nucleotide sequence of HBV derived from a Chinese chronic asymptomatic carrier was amplified by PCR and cloned to conduct sequence analysis. Homology of the resulted nucleotide sequence with those of published HBV strains was assessed by using DNASIS, and complete sequence analysis of the phylogenetic tree of 30 genotype D HBV strains conducted by the assistance of Clustalw. RESULTS: With the complete nucleotide sequnce of 3 182 bp, this HBV strain belongs to ayw3 subtype and D genotype, with the Genebank accession number AF280817. Its complete nucleotide homology is 98.3% to 94.5% with the published sequences of genotype D HBV strains and less than 89.5% with the other HBV strains of genotype A, B, C, E, F and G published in GenBank. CONCLUSION: The evolutionary relations of the complete nucleotide sequence of this HBV strain is the closest to those of the 4 Swedish strains out of the 30 genotype D strains published in GenBank.

Journal Article↗

Hot-spot mutations in HBV pre-C region in HBeAg-negative patients with severe hepatitis B.

OBJECTIVE: To investigate the association of hot-spot mutations in hepatitis B virus (HBV) pre-C region with the occurrence and outcome of severe hepatitis B. METHODS: A total of 68 patients with severe hepatitis B negative for hepatits B e antigen (HBeAg) were enrolled in this study, including 6 cases of acute, 38 cases of subacute and 24 chronic severe hepatitis B, with another 44 HBeAg-positive patients with chronic hepatitis B serving as control. Mismatch PCR and restriction fragment length polymorphism analysis were employed to examine the mutations of T1862 and A1896 in this 2 groups of patients. RESULTS: The mutation rates at A1896 and T1862 were 66.7% (4/6) and 0 (0/6) respectively in acute severe hepatitis B cases, 42.1% (16/38) and 15.8% (6/38) in subacute severe hepatitis, 25.0% (6/24) and 16.7% (4/24) in chronic severe hepatitis, and 45.5% (20/24) and 2.3% (1/44) in chronic hepatitis cases. There were significant differences in terms of T1862 mutation between patients with severe hepatitis and chronic hepatitis (P<0.01). CONCLUSION: T1862 mutation is closely related to the exacerbation of chronic hepatitis, while the role of A1896 mutation in this process requires further investigation.

Journal Article↗