PubMed Health⌕ Search

Biomedical subjects

Bo Chen

Publications and source records attributed to Bo Chen.

At least 73 records · Page 4Linked to original sources

Determination of tetramethylenedisulfotetramine in human urine with gas chromatograph-flame thermionic detection coupling with direct immersed solid-phase micro-extraction.

An analytical method for determination of tetramethylenedisulfotetramine (tetramine) in human urine by gas chromatography-flame thermionic detection (GC-FTD) coupling with a direct immersed solid-phase micro-extraction (DI-SPME) was developed. The enrichment effects of three fiber coatings of SPME for tetramine were compared. Results showed that the enrichment effect of polar 85 microm polyacrylate (PA) coating was better than that of apolar 100 and 7 microm polydimethylsiloxane (PDMS) coatings. Other experimental parameters, such as ionic strength, volume, temperature of sample solution and time for extraction, time and temperature for desorption, were also optimized. The correlation coefficient of the calibration curve was 0.9998 in the range of 0.082-41.0 ng/mL for tetramine. The limit of quantitation of tetramine in urine was 0.082 ng/mL. In this method, the sample pretreatment is simple and convenient. As a monitoring means, it has been successfully applied to detection of tetramine toxicosis in criminal cases, as well as clinical therapy of poisoned sufferer.

Bridged-Ring Compounds↗

Liquid-phase microextraction combined with high-performance liquid chromatography for the determination of local anaesthetics in human urine.

A simple liquid-phase microextraction (LPME) device combined with high-performance liquid chromatography (HPLC) is presented for the simultaneous analysis of local anaesthetics, lidocaine, bupivacaine, and tetracaine, from human urine sample. An organic solvent showed good compatibility with the mobile phase of the HPLC, o-dibutyl phthalate, was selected. Local anaesthetics are extracted from 6 ml of the feed aqueous solution and human urine sample into a water-immiscible organic solvent suspended at the needle tip of the microsyringe, then the organic solvent was directly introduced to a reversed-phase HPLC system. The kind of the organic extraction solvent, the stirring rate, the pH value of the aqueous feed solution, and the extraction time have been discussed. Under the optimized extraction conditions, high enrichment factors (more than 86.0-fold) and significant sample clean-up for all of studied local anaesthetics were achieved within 30 min. The detection limits (lower than 0.05 microg/ml) were comparable with previously reported gas chromatography methods. This method was applied to specimen of patient who was treated with extradural anaesthesia of lidocaine, bupivacaine, and tetracaine, and revealed that simultaneous determination of above three local anaesthetics in human urine was possible.

Anesthetics, Local↗

Nucleolar localization of non-structural protein 3b, a protein specifically encoded by the severe acute respiratory syndrome coronavirus.

The open reading frame 3 (ORF3) of the severe acute respiratory syndrome coronavirus (SARS-CoV) genome encodes a predicted 154-amino acid protein, which lacks similarities to any known protein, and is named 3b. In this study, it was shown that 3b protein was predominately localized to nucleus with EGFP tag at its N- or C-terminus. The localization patterns were similar in different transfected cells. Immuno-fluorescence assay revealed that 3b protein was co-localized well with C23 in nucleolus. C23, B23 and fibrillarin all are important nucleolar proteins, which localize in the region of the nucleolus. Co-transfection of p3b-EGFP with pC23-DsRed, pB23-DsRed and pfibrillarin-DsRed further confirmed 3b's nucleolus localization. With construction of serial truncated mutants of 3b, a region (residues 134-154 aa) responsible for nucleolar localization was determinated in 3b protein. These results provide a new insight for further functional studies of SARS-CoV 3b protein.

Amino Acid Sequence↗

[Effects of rhein on activity of caspase-3 in kidney and cell apoptosis on the progression of renal injury in glomerulosclerosis].

OBJECTIVE: To investigate the effects of rhein on the progression of renal injury and cell apoptosis in glomerulosclerosis, and further explore the protective mechanism of rhein on glomerulosclerosis. METHODS: Glomerulosclerosis models were made for SD rats by unilateral nephrectomy and being injected with Adriamycin into caudal vein, and randomly divided into control group, renal disease group, Rhein treatment group and Benazepril treatment group, and 6 rats in each group were killed at the 6th, 8th, 10th, 12th week respectively. The apoptosis protease-3 (caspase-3) in renal cortex was determined by immunohistochemistry stain method, and the activity of caspase-3 was measured by colorimetry, and the activity of nuclear factor-kappa B (NF-kappaB) was analyzed by gel electrophoretic mobility shift assay (EMSA), and renal tissue cell apoptosis was tested by terminal-deoxynucleotidyl transferase mediated nick end labeling (TUNEL) in order to observe expressions of caspase-3 and NF-kappaB and cell apoptosis of renal tissue. RESULTS: Renal disease group presented with distinct proteinuria, decreasing of blood albumin content and increasing of cholesterol concentration. Glomerulosclerosis index, apoptosis index, activity of NF-kappaB and expression of caspase-3 in renal disease group were more significantly higher than those in control group (P < 0.05 or P < 0.01) as time passed. Compared with the other time points in renal disease group, there were a great number of TUNEL-positive cells observed at the 10th week, slightly higher than that at the 12th week (9.3 +/- 2.3 vs 8.4 +/- 1.2, P > 0.05), the expression of Caspase-3 was also most obvious at the 10th week, significantly higher than that at the 12th week (11.4 +/- 2.5 vs 8.2 +/- 1.7, P < 0.05), which mainly located around capillary vessel in renal cortex, tending to be consistent with apoptosis cells expression. After the 8 weeks treatment of rhein or Benazepril, the number of TUNEL-positive cells significantly decreased and maintained at a certain level, and the activity of NF-kappaB and expression of caspase-3 decreased (P < 0.05), and renal pathological changes and biochemical changes improved magnificently, moreover, the expression of caspase-3 showed positive correlation with apoptosis index (r = 0.836, P < 0.01). CONCLUSION: Rhein could have significant protective effects on the progression of renal injury, and might regulate pathological changes by influencing the activities of NF-kappaB and caspase-3 in the early phase of glomerulosclerosis. Therefore, down-regulating caspase-3 expression in kidney might be one of the molecular mechanisms in the way that rhein could alleviate renal tissue cell apoptosis in glomerulosclerosis.

Animals↗

[Effect of new photosensitizer CDHS801-mediated photodynamic therapy on bladder cancer: an experimental study].

OBJECTIVE: To investigate the effects of dynamic photodynamic therapy (PDT) on bladder cancer. METHODS: Human bladder cancer cells of the line T24 were co-cultured with CDHS801, a photosensitizer, and MitoTracker RED CMXRose and MitoTracker GREEN FM, mitochondria specific fluorescence probe dyes. Laser scanning confocal fluorescence microimaging system was applied to collect the fluorescence of the photosensitizer and the probes. T24 cells were cultured and divided into 4 groups: Group 1 as blank control group, Group 2 undergoing laser irradiation, Group 3, added with CDHS801 for 6h, and Group 4 (PDT group), added with CDHS801 and undergoing laser irradiation. The survival of the cells was examined by MTT colorimetric assay. The morphological changes and apoptosis of the photo-activated T24 cells were investigated by transmission electron microscopy, confocal laser scan microscopy, and flow cytometry. RESULTS: The fluorescence of the photosensitizer and that of the probes were detected in the cytoplasm and in the peri-nuclear region, mainly in the mitochondria, of the T24 cells. 2. The inhibitory rates of PDT on T24 cells were 0%, 7.3%, 10.8%, and 71.4% in the control group, Group 1, Group 2, and Group 3 respectively. T24 cell photo-activated with CDHS801 showed cell size shrinkage, condensed chromatin and formation of apoptotic body. Flow cytometry showed that apoptosis was seen in 55.31% of the photo-activated cells and peaked in the sub-G1 phase. However, no such changes were seen in the control group. CONCLUSION: CDHS801-based PDT can kill bladder cancer T24 cells. CDHS801 is localized in the cytoplasm and peri-nuclear region, mainly mitochondria, of tumor cell. CDHS801 based PDT maybe eliminate the T24 cell by the induction of apoptosis.

Apoptosis↗

Assembly of heteropoly acid nanoparticles in SBA-15 and its performance as an acid catalyst.

Keggin-type 12-tungstophosphoric acid (TPA) nanocrystals have been assembled inside the pores of mesoporous silica through a vacuum impregnation method by using large-pore SBA-15 as a nanoreactor. The product was characterized by Brunauer-Emmet-Teller particle size distribution (BET-PSD), NMR and FT-IR spectroscopy, X-ray diffraction (XRD), tranmsission electron microscopy (TEM), differential thermal analysis (DTA) and FT-IR of adsorbed pyridine. The experimental results illustrate that the TPA nanocrystals are excellent Brønsted acid catalytic materials at room temperature.

Journal Article↗

[The study of the minimum number of examined lymph nodes for the TNM classification of gastric cancer].

OBJECTIVE: To determine the minimum number of lymph nodes that should be examined for the UICC/AJCC TNM classification of gastric cancer. METHODS: The clinical and pathological data of four hundred and thirty-six patients underwent curative resection for gastric cancer were analyzed by Chi-square and Student-Newman-Keuls test. RESULTS: The pN0 patients with 1 to 4, 5 to 9 examined nodes showed significantly lower survival rate than those with 10 to 14, 15 or more examined nodes (P < 0.05), and the patients with 10 to 14 examined nodes had as good a prognosis as those with 15 or more examined nodes. In the pN1, pN2 categories, the patients with 1 to 4, 5 to 9 and 10 to 14 examined nodes tended toward significantly lower survival rates than those with 15 or more examined nodes (P < 0.05). Among the patients who were classified as stage II, the survival rate of those with 10 to 19 examined nodes was significantly lower than that with 20 or more examined nodes. Among the patients classified as stage III, those with 5 to 9, 10 to 19 and 20 to 29 examined nodes had significantly lower survival rates than those with 30 or more examined nodes (P < 0.05). CONCLUSIONS: The number of lymph nodes examined has significant prognostic impact within each pN category of gastric carcinoma. The minimum number of lymph nodes to examine in order to determine pN0 classification can be reduced from 15 to 10. For tumor with lymph node metastasis, the minimum number should be 15. In stage II, 20 or more nodes should be examined, and in stage III and IV 30 or more.

Adult↗

[Mechanism of advanced glycation end products-induced hyperpermeability in endothelial cells].

The purpose of the present study was to investigate the effects of advanced glycation end products (AGEs) modified protein on the permeability of endothelium monolayers and morphological changes of actin cytoskeleton. The roles of receptor for AGEs (RAGE), oxidant stress and the activation of p38 MAPK pathway in this pathological procedure were elucidated. Human umbilical vein endothelial cells (HUVECs)-derived cell line (ECV304) were incubated with AGEs modified human serum albumin (AGE-HSA) in concentrations of 12.5, 25, 50, and 100 microg/ml respectively, for 2, 4, 8, 12 and 24 h. As control, HSA of the same concentration was administered to cells. Then TRITC-albumin was added to evaluate Pa value that reflects the permeability of endothelial monolayer. Furthermore, to visualize the morphological changes of actin cytoskeleton, the treated cells were incubated with rhodamine-phalloidin to stain F-actin. The results showed that the trans-endothelial membrane flux of albumin was significantly increased in a concentration- and time-dependent manner upon the stimulation of AGE-HSA, accompanying with actin reorganization. The blockage of AGE and RAGE binding with anti-RAGE IgG and the pharmacological inhibition of NADPH oxidase or p38 MAP kinase greatly attenuated the AGE-induced hyperpermeability response, respectively. These results indicate that RAGE, NADPH oxidase and p38 MAPK are possibly involved in the mediation of AGEs-induced barrier dysfunction and actin cytoskeleton reorganization in endothelial cells.

Actin Cytoskeleton↗

Progesterone inhibits the estrogen-induced phosphoinositide 3-kinase-->AKT-->GSK-3beta-->cyclin D1-->pRB pathway to block uterine epithelial cell proliferation.

The mammalian cell cycle is regulated by the cyclin/cyclin-dependent kinase (CDK) phosphorylation of the retinoblastoma (pRB) family of proteins. Cyclin D1 with its CDK4/6 partners initiates the cell cycle and acts as the link between extracellular signals and the cell cycle machinery. Estradiol-17beta (E2) stimulates uterine epithelial cell proliferation, a process that is completely inhibited by pretreatment with progesterone (P4). Previously, we identified cyclin D1 localization as a key point of regulation in these cells with E2 causing its nuclear accumulation and P4 retaining it in the cytoplasm with the resultant inhibition of pRB phosphorylation. Here we show that E2 stimulates phosphoinositide 3-kinase to activate phosphokinase B/AKT to effect an inhibitory phosphorylation of glycogen synthase kinase (GSK-3beta). This pathway is suppressed by P4. Inhibition of the GSK-3beta activity in P4-treated uteri by the specific inhibitor, LiCl, reversed the nuclear accumulation of cyclin D1 and in doing so, caused pRB phosphorylation and the induction of downstream genes, proliferating cell nuclear antigen and Ki67. Conversely, inhibition of phosphoinositide 3 kinase by LY294002 or Wortmanin reversed the E2-induced GSK-3beta Ser9 inhibitory phosphorylation and blocked nuclear accumulation of cyclin D1. These data show the reciprocal actions of E2 and P4 on the phosphoinositide 3-kinase through to the GSK-3beta pathway that in turn regulates cyclin D1 localization and cell cycle progression. These data reveal a novel signaling pathway that links E2 and P4 action to growth factor-mediated signaling in the uterus.

Animals↗

Simultaneous determination of erythromycin propionate and base in human plasma by high-performance liquid chromatography-electrospray mass spectrometry.

An analytical method for simultaneous determination of erythromycin propionate and its active metabolite, erythromycin base, in human plasma by high-performance liquid chromatography-electrospray mass spectrometry (HPLC-ESI-MS) was developed and validated. Roxithromycin was selected as the internal standard. The samples were directly injected after simple deproteinized procedure only. The separation was achieved on a Johnson Spherigel analytical column packed with 5 microm C18 silica, employing acetonitrile -0.1% formic acid aqueous solution (50:50) as mobile phase. The quantification of target compounds was obtained by using a selected ion monitoring (SIM) at m/z 790.7 for erythromycin propionate, m/z 734.7 for erythromycin base and m/z 837.8 for roxithromycin. The correlation coefficients of the calibration curves were better than 0.997 (n=6), in the ranges from 2 ng/ml to 1 microg/ml, and from 1 to 10 microg/ml for erythromycin propionate and base. The method can provide the necessary sensitivity, precision and accuracy to allow the simultaneous determination of both compounds in a patient's plasma following a single administration of erythromycin stinoprate capsule (500 mg erythromycin base equivalent).

Calibration↗

Simultaneous determination of abietane-type diterpenes, flavonolignans and phenolic compounds in compound preparations of Silybum marianum and Salvia miltiorrhiza by HPLC-DAD-ESI MS.

A gradient HPLC-DAD-ESI MS method has been developed for simultaneous determination of multiple bioactive compounds such as abietane-type diterpenes, flavonolignans and phenolic compounds in compound preparations of Silybum marianum and Salvia miltiorrhiza. The separation was completed on an ODS column using 0.5% (v/v) formic acid aqueous solution and methanol as gradient mobiles. Fourteen components can be identified by ESI MS working on ESI(-) and ESI(+) switching mode, respectively. Ten components can be quantified by using external standard method with UV detecting at 254 and 280 nm, respectively. The correlation coefficients of all the calibration curves were found to be higher than 0.992. The recoveries of the standards were about 96-101%. Besides quantification of the components, the chromatograms acquired by this method can be used as the bioactive components fingerprints for the quality control of compound preparations of S. marianum and S. miltiorrhiza.

Abietanes↗

Simultaneous determination of sildenafil, vardenafil and tadalafil as forbidden components in natural dietary supplements for male sexual potency by high-performance liquid chromatography-electrospray ionization mass spectrometry.

A high-performance liquid chromatographic method coupled with ultraviolet detection and electrospray ionization mass spectrometry (HPLC-UV-ESI-MS) was developed for simultaneous determination of banned additives-sildenafil, vardenafil and tadalafil in dietary supplements for male sexual potency. The separation was achieved on a C18 column with acetonitrile and aqueous solution (20 mmol ammonium acetate, 0.2% formic acid) as mobile phase at a flow rate of I ml/min with a linear gradient program. UV detection was at 292 nm. Identification of drugs was accomplished using ESI-MS. Good linearity between response (peak area) and concentration was found over a concentration range of 0.8-80 microg/ml for sildenafil; 2.25-225 microg/ml for vardenafil; and 1.1-110 microg/ml for tadalafil, with regression coefficient is better than 0.999. The recovery of the method ranged from 93.3 to 106.1%, and the relative standard deviation varied from 2.0 to 5.6% (n = 6). The method has been successfully applied to the analysis of practical samples of natural dietary supplements.

Carbolines↗

A novel substrate of receptor tyrosine phosphatase PTPRO is required for nerve growth factor-induced process outgrowth.

The receptor protein tyrosine phosphatase PTPRO may be involved in axon guidance both as a ligand and as a neuronal receptor. We have begun to characterize signaling by PTPRO as a receptor by screening for proteins interacting with the intracellular domain of PTPRO. In a yeast-two hybrid screen, we identified a novel class of protein, which we named neuronal pentraxin with chromo domain (NPCD), as a PTPRO-interacting protein. We have shown recently that NPCD has multiple cytoplasmic isoforms as a result of alternative splicing and that these proteins are present in many neurons, mainly associated with the inner side of the plasma membrane. Through additional two-hybrid experiments, cotransfection and reciprocal coprecipitation, glutathione S-transferase pulldown, and immunoprecipitation in vivo, we confirm that NPCD isoforms interact with the catalytic phosphatase domain of PTPRO. We also find that at least one NPCD isoform is tyrosine phosphorylated in vivo and can serve as a substrate for PTPRO in vitro. Analysis of PTPRO knock-out mice demonstrates that normal localization of NPCD at the plasma membrane requires PTPRO expression, suggesting a physiological role for the NPCD/PTPRO interaction. NPCD is likely to be relevant to axon growth and/or guidance, because RNA interference mediated knock-down of NPCD expression in pheochromocytoma cells inhibits NGF-induced neuronal process outgrowth without affecting NGF-dependent survival or initial NGF signaling.

Animals↗

Simultaneous determination of benazepril hydrochloride and benazeprilat in plasma by high-performance liquid chromatography/electrospray-mass spectrometry.

An analytical method for simultaneous determination of benazepril and its active metabolite, benazeprilat, in human plasma by high-performance liquid chromatography/electrospray-mass spectrometry was developed and validated. Rutaecarpine was selected as the internal standard. The separation was achieved on a C(18) column with acetonitrile and aqueous solution (0.1% formic acid) as mobile phase with a gradient mode. The quantification of target compounds was using a selective ionization recording at m/z 425.5 for benazepril, m/z 397.5 for benzeprilat and m/z 288.3 for rutaecarpine. The correlation coefficients of the calibration curves were better than 0.992 (n = 6), in the range of 6.67-666.67 ng/ml for benazepril and benazeprilat. The inter- and intra-day accuracy, precision, linear range had been investigated in detail. The method can be used to assess the bioavailability and pharmacokinetics of the drug.

Angiotensin-Converting Enzyme Inhibitors↗

Neuronal pentraxin with chromo domain (NPCD) is a novel class of protein expressed in multiple neuronal domains.

The receptor tyrosine phosphatase PTPRO is involved in axon guidance, but its intracellular signaling mechanisms are unknown. Signals generated through PTPRO must involve interaction of the intracellular domain with substrates and/or signaling proteins. By screening for proteins interacting with PTPRO's intracellular domain, we have identified a new class of cytoplasmic protein. This novel protein, NPCD (Neuronal Pentraxin with Chromo Domain), has multiple cytoplasmic isoforms generated by alternative splicing that are selectively expressed in neurons. These cytoplasmic NPCD isoforms are composed of a neuronal pentraxin domain (formerly thought exclusively extracellular) linked to a chromo domain (formerly thought exclusively nuclear); this protein motif organization is unprecedented. NPCD isoforms are expressed in numerous regions of the central nervous system, where they are present in distinct subcellular arrangements in different brain regions. NPCD isoforms are mainly associated with the inner side of the plasma membrane in brain neurons and rat PC12 cells in vitro; they are present in cell bodies, processes, and growth cones. The biochemical complexity and neuronal expression pattern of NPCD, together with its interaction with PTPRO, suggests involvement in multiple neuronal processes.

Animals↗

Porcine skin ED50 damage thresholds for 2,000 nm laser irradiation.

BACKGROUND AND OBJECTIVES: To gain refinement in safe-exposure limits, indicated by the maximum permissible exposure (MPE) limits, the minimum visible lesion thresholds for three spot sizes (5-15 mm) and four exposure durations (0.25-2.5 seconds) were determined for the skin at 2,000 nm continuous wave laser irradiation. STUDY DESIGN/MATERIALS AND METHODS: A series of experiments were conducted in vivo on female Yucatan mini-pigs to determine the ED50 damage thresholds for 2,000 nm continuous wave laser irradiation. The study employed Gaussian laser beam exposures with spot diameters (1/e2) of 4.83, 9.65, and 14.65 mm and exposure durations of 0.25, 0.5, 1.0, and 2.5 seconds as a function of laser power. The effect of each irradiation was evaluated within 1 minute after irradiation and the final determination was made at 48 hours post-exposure. Probit analysis was conducted to estimate the dose for 50% probability of laser-induced damage (ED50), defined as persistent redness at the site of irradiation for the mini-pig skin after 48 hours. RESULTS: The MPE spot size and exposure duration trends for 2,000 nm laser exposure is consistent for exposure diameters less than 3.5 mm. However, for larger exposure diameters of 4.83, 9.65, and 14.65 mm and exposure duration longer than 0.25 second, the current MPEs are bigger than one tenth of our damage thresholds. For Gaussian laser profile, which is common for many laser output irradiance distributions, lower energy is required to generate a lesion on skin for smaller spot sizes and shorter exposure duration. On the other hand, for spot sizes greater than 4.83 mm and exposure duration over 0.25 second, the average radiant exposure at threshold is inversely proportional to spot size. The irradiance-time and temperature-time power law at the threshold were investigated as well and showed that the irradiance-time power law was a close approximation to estimate laser irradiance at ED50 damage threshold. CONCLUSIONS: The thresholds study shows that consideration for lowering the MPE standards should be explored as the laser beam diameter becomes larger than 3.5 mm. Based on the limited experimental data, the duration and size dependences of the ED50 damage thresholds could be described by an empirical equation: Irradiance at the threshold = (5.669-1.81xspot diameter)xexposure duration -0.794.

Animals↗

Validation of the CAS neonatal NIRS system by monitoring vv-ECMO patients: preliminary results.

The CAS neonatal NIRS system determines absolute regional brain tissue oxygen saturation (SnO2) and brain true venous oxygen saturation (SnvO2) non-invasively. Since NIRS-interrogated tissue contains both arterial and venous blood from arterioles, venules, and capillaries, SnO2 is a mixed oxygen saturation parameter, having values between arterial oxygen saturation (SaO2) and cerebral venous oxygen saturation (SvO2). To determine a reference for SnO2, the relative contribution of SvO2 to SaO2 drawn from a brain venous site vs. systemic SaO2 is approximately 70:30 (SvO2:SaO2). If the relationship of the relative average contribution of SvO2 and SaO2 is known and does not change to a large degree, then NIRS true venous oxygen saturation, SnvO2, can be determined non-invasively using SnO2 along with SaO2 from a pulse oximeter.

Blood Gas Monitoring, Transcutaneous↗