PubMed Health⌕ Search

Biomedical subjects

Xuan Cao

Publications and source records attributed to Xuan Cao.

6 recordsLinked to original sources

Real-time TaqMan polymerase chain reaction assays for quantitative detection and differentiation of Ureaplasma urealyticum and Ureaplasma parvum.

Evidence has been presented that the species currently known as Ureaplasma urealyticum should be separated into 2 species-Ureaplasma parvum (previously, U. urealyticum biovar 1) and U. urealyticum (previously, U. urealyticum biovar 2). Differentiation and quantification of U. parvum and U. urealyticum can provide important information of the epidemiology of Ureaplasma infections. We developed 2 real-time TaqMan polymerase chain reaction (PCR) assays that would allow rapid, specific, sensitive, quantitative detection and convenient differentiation of U. parvum and U. urealyticum. One hundred twenty-eight clinical specimens were studied and compared with results obtained by culture methods and conventional PCR. The positive rate of real-time TaqMan PCR (59.4%, 76 of 128) was higher than that of culture methods (42.2%, 54 of 128) and conventional PCR (50%, 64 of 128). Of 76 positive specimens, 86.8% (66) contained U. parvum only, 10.5% (8) contained U. urealyticum only, and 2.6% (2) contained both. The copy numbers of 11 positive specimens were in the range of 10(1) to 10(3) copies per reaction mixture, 18 in the range of 10(3) to 10(5), and 47 in the range of 10(5) to 10(8). In the future, quantitative detection and convenient differentiation of real-time TaqMan PCR assays will assist in the study of the pathogenesis and epidemiology of Ureaplasma infections.

Bacterial Typing Techniques↗

Visual DNA microarrays for simultaneous detection of Ureaplasma urealyticum and Chlamydia trachomatis coupled with multiplex asymmetrical PCR.

Visual DNA microarrays, based on gold label silver stain (GLSS) and coupled with multiplex asymmetrical PCR, were developed for simultaneous, sensitive and specific detection of Ureaplasma urealyticum and Chlamydia trachomatis. 5'-end-amino-modified oligonucleotides, which were immobilized on glass surface, acted as capturing probes that were designed to bind complementary biotinylated targets DNA. The gold-conjugated streptavidins were introduced to the microarray for specific binding to biotin. The black image of microarray spots, resulting from the precipitation of silver onto nanogold particles bound to streptavidins, were used to detect biotinylated targets DNA visually or with a visible light scanner. Multiplex asymmetrical PCR of U. urealyticum, C. trachomatis and Bacillus subtilis (used as positive control) was performed to prepare abundant biotinylated single-stranded targets DNA, which affected detection efficiency and sensitivity of hybridization on microarray. Plenty of clinical samples of U. urealyticum and C. trachomatis from infected patients were tested using home-made DNA microarrays. For its high sensitivity, good specificity, simplicity, cheapness and speed, the present visual gene-detecting technique has potential applications in clinical fields.

Biosensing Techniques↗

Array-based nano-amplification technique was applied in detection of hepatitis E virus.

A rapid method for the detection of Hepatitis E Virus (HEV) was developed by utilizing nano-gold labeled oligonucleotide probes, silver stain enhancement and the microarray technique. The 5'-end -NH(2) modified oligonucleotide probes were immobilized on the surface of the chip base as the capture probe. The detection probe was made of the 3'-end -SH modified oligonucleotide probe and nano-gold colloid. The optimal concentrations of these two probes were determined. To test the detection sensitivity and specificity of this technique, a conservative fragment of the virus RNA was amplified by the RT-PCR/PCR one step amplification. The cDNA was hybridized with the capture probes and the detection probes on microarray. The detection signal was amplified by silver stain enhancement and could be identified by naked eyes.100 fM of amplicon could be detected out on the microarray. As the results, preparation of nano-gold was improved and faster. Development time also was shortened to 2 min. Thus, considering high efficiency, low cost, good specificity and high sensitivity, this technique is alternative for the detection of HEV.

Gold↗

The promise of cytokine antibody arrays in the drug discovery process.

The introduction of cytokine antibody arrays has added a new approach for investigators to simultaneously measure multiple cytokine levels in biological samples. Several different platforms have been developed. The ability to measure hundreds of cytokine levels with high specificity and sensitivity within a very limited amount of samples is a powerful tool. Many investigators worldwide have applied this novel technology in their biomedical research, particularly in drug discovery. Undoubtedly, the technology will continue to be improved and the application increased in the next several years.

Antibodies↗

The presence of endometrial cells in the peritoneal cavity enhances monocyte recruitment and induces inflammatory cytokines in mice: implications for endometriosis.

OBJECTIVE: To determine the inflammatory response in the peritoneal cavity by the presence of endometrial cells and the role of the mesothelium. DESIGN: In vivo study using mice. SETTING: University research laboratory. ANIMAL(S): Female Swiss Webster mice, 8 to 10 weeks old. INTERVENTION(S): Homogenous mouse endometrial epithelial and stromal cells were injected intraperitoneally. Peritoneal lavage and mesothelium were collected 4 to 72 hours after the administration. MAIN OUTCOME MEASURE(S): We determined the number of peritoneal macrophages, and the production and gene expression of monocyte chemotactic protein-1 (MCP-1/JE), interleukin 1alpha (IL-1alpha), and interleukin 6 (IL-6). RESULT(S): The intraperitoneal administration of endometrial cells increased the number of peritoneal macrophages, production of MCP-l, IL-1alpha, and IL-6, and expression of mesothelial MCP-1/JE, IL-1alpha, and IL-6 genes in recipient mice. CONCLUSION(S): These results suggest that retrograde menstruation could account for the increased presence of inflammatory mediators in the peritoneal cavity of women with endometriosis. The mesothelium could play an active role in endometriosis in addition to providing an attachment stratum for the endometrial cells.

Animals↗

Detection of multiple cytokines by protein arrays from cell lysate and tissue lysate.

Previously we demonstrated that multiple cytokines could be simultaneously detected using an antibody-based protein array system with high sensitivity and specificity from conditioned medium and serum. Here, we created a higher density array system to simultaneously detect 35 cytokines from cell lysates and tissue lysates. This assay combines the advantages of the specificity of enzyme-linked immunosorbent assays (ELISA), sensitivity of enhanced chemiluminescence (ECL), and high-throughput of microspot. In this system, capture antibodies dissolved in methanol were spotted onto polyvinylidene difluoride (PVDF) membranes. The membranes were then incubated with tissue lysates or cell lysates. After removing unbound proteins by extensive washing, the membranes were exposed to horseradish peroxidase (HRP)-conjugated antibody(ies). The signals were visualized with an ECL system. High specificity, sensitivity, and accuracy of this approach were demonstrated. This approach can be used in any general laboratory setting without any sophisticated equipment. It should be feasible to extend this concept to develop a high-throughput protein array system. Combining nitrocellulose membrane-based and PVDF membrane-based approaches, the human cytokine array system can be applied to detect multiple cytokine expression from cell lysate, tissue lysate, serum, plasma, and conditioned medium. Future applications of this new approach include direct protein expression profiling, immunological disease diagnostics, and discovery of new biomarkers.

Biomarkers↗