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W Luo

Publications and source records attributed to W Luo.

224 records · Page 13Linked to original sources

Schedule-dependence of C-CAM1 adenovirus gene therapy in a prostate cancer model.

BACKGROUND: C-CAM1 functions as a tumor suppressor in prostate cancer. Thus C-CAM1 recombinant adenovirus therapy may be a promising treatment for prostate cancer. Understanding the time course of C-CAM1's antitumor activity is essential for designing an optimal schedule for C-CAM1 gene therapy. MATERIALS AND METHODS: PC3 cells were exposed to Ad-C-CAM1 and the time course of C-CAM1 expression was monitored by flow cytometry. Tumors generated in nude mice by subcutaneous injection of PC-3 cells were used for in vivo testing of C-CAM1's antitumor activity. Intratumoral injections of viruses (either Ad-C-CAM1 or Ad-beta-gal) or buffer only (control) were performed according to two different schedules. Mice in Schedule A received a single injection, while mice in Schedule B received the same total amount of viruses in 3 equal doses at 2-week intervals. RESULTS: After single exposure to Ad-C-CAM1, PC-3 cells expressed abundant C-CAM1 protein which reached the highest level on day 3 and persisted for up to 5 days. PC-3 tumors in nude mice exhibited 2 to 3-week lag in tumor growth curves after a single Ad-C-CAM1 injection. In contrast, 14 of the 18 tumors receiving 3 fractionated Ad-C-CAM1 injections regressed completely, while the other 4 tumors shrank to significantly smaller sizes. CONCLUSIONS: Sustained expression of C-CAM1 is required for optimal tumor suppression. The schedule-dependence of C-CAM1's antitumor activity should be taken into account in optimizing gene therapy in clinical settings.

Adenosine Triphosphatases↗

Determination of amoxicillin residues in animal tissues by solid-phase extraction and liquid chromatography with fluorescence detection.

Trace levels of amoxicillin residues were determined in animal tissues by liquid chromatography (LC) with fluorescence detection. An improved solid-phase extraction (SPE) procedure requiring less flammable solvent (diethyl ether) was developed for sample preparation. Muscle samples of beef, pork, chicken, and tilapia were extracted with a phosphate buffer followed by the modified SPE procedure for cleanup and concentration prior to the LC-fluorescence analysis. Average recoveries of fortified amoxicillin at 5, 10, and 20 micrograms/kg ranged from 83.9 to 85.8% in beef, 86.1 to 88.1% in pork, 81.7 to 82.9% in chicken, and 92.5 to 95.4% in tilapia. Relative standard deviations were < 4%.

Amoxicillin↗

Determination of lincomycin residue in salmon tissues by ion-pair reversed-phase liquid chromatography with electrochemical detection.

A method is described for detecting and quantitating lincomycin residue in salmon muscle and skin tissues by ion-pair reversed-phase liquid chromatography (LC) with electrochemical detection at +0.9 V. Lincomycin was extracted from tissues by homogenizing with 0.01 M KH2PO4 buffer (pH 4.5) and centrifuging the mixture. Water-soluble proteins were precipitated by adding sodium tungstate and sulfuric acid and removed by centrifugation. The buffer extract was then passed through a C18 solid-phase extraction cartridge. Lincomycin was eluted with 50% acetonitrile in water, and the eluate containing lincomycin was extracted with ethyl acetate. After the solvent had evaporated, the residue was redissolved in mobile phase and analyzed by LC. The method had a limit of detection of 7 ng/g lincomycin for salmon muscle and 12 ng/g for salmon skin. The limit of quantitation was 17 ng/g for salmon muscle and 24 ng/g for salmon skin. Average recoveries of lincomycin spiked at 50, 100, and 200 ng/g were > or = 85% for salmon muscle and > or = 80% for salmon skin.

Acetonitriles↗

Determination of amoxicillin in catfish and salmon tissues by liquid chromatography with precolumn formaldehyde derivatization.

A liquid chromatographic (LC) method with fluorescence detection was developed for analysis of amoxicillin in catfish and salmon tissues. The tissue was extracted with phosphate buffer (pH 4.5), followed by trichloroacetic acid (TCA) precipitation of proteins and solid-phase (C18) extraction. Trace amounts of nonpolar interfering substances present after solid-phase extraction were removed by ether liquid-liquid extraction. The extract was reacted with formaldehyde and TCA at 100 degrees C for 30 min. A fluorescent derivative was extracted with ether, concentrated, and analyzed by reversed-phase LC with fluorescence detection. Average recoveries of amoxicillin spiked at 2.5-20 ppb were > 80% for catfish and > 75% for salmon muscle tissue, with coefficients of variation of < 6%. Limits of detection (LOD) and quantitation (LOQ) for catfish tissue were 0.5 and 1.2 ppb, respectively. LOD and LOQ for salmon muscle tissue were 0.8 and 2.0 ppb, respectively.

Amoxicillin↗

Rapid determination of ampicillin in bovine milk by liquid chromatography with fluorescence detection.

A rapid and sensitive liquid chromatographic (LC) method was developed for the determination of ampicillin residues in raw bovine milk, processed skim milk, and pasteurized, homogenized whole milk with vitamin D. Milk samples were deproteinized with trichloroacetic acid (TCA) and acetonitrile. After centrifugation, the clear supernatant was reacted with formaldehyde and TCA under heat. The major fluorescent derivative of ampicillin was then determined by reversed-phase LC with fluorescence detection. Average recoveries of ampicillin fortified at 5, 10, and 20 ppb (ng/mL) were all > 85% with coefficients of variation < 10%. Limits of detection ranged from 0.31 to 0.51 ppb and limits of quantitation, from 0.66 to 1.2 ppb. After appropriate validation, this method should be suitable for rapid analysis of milk for ampicillin residues at the tolerance level of 10 ppb.

Ampicillin↗

A bridging study between liquid chromatography and microbial inhibition assay methods for determining amoxicillin residues in catfish muscle.

A bridging study was conducted to establish the correlation between a liquid chromatographic (LC) method and a microbial inhibition (MI) method for analysis of amoxicillin residues in catfish muscle. The LC procedure involved precolumn derivatization with formaldehyde followed by LC separation with fluorescence detection. The MI procedure used Bacillus stearothermophilus as the test organism and was validated in this study before the bridging investigation. The 2 methods were compared for determination of both fortified and incurred samples. No significant differences were found between the methods when all data were included in statistical computations. The linear correlation of LC means versus MI means had a slope of 0.972 and a negligible intercept (1.0 ng/g), with a correlation coefficient of 0.9962. LC was more specific and showed better sensitivity than MI for amoxicillin residues at < or = 10 ng/g. For practical purposes, values obtained by the 2 methods can be considered equivalent.

Amoxicillin↗

Msx-2 expression and glucocorticoid-induced overexpression in embryonic mouse submandibular glands.

It is well known that the process of branching morphogenesis requires epithelial-mesenchymal interactions. One outstanding model for the study of tissue interactions during branching morphogenesis is the embryonic mouse submandibular gland (SMG). Although it has been clearly demonstrated that the branching pattern is dependent on interactions between the epithelium and the surrounding mesenchyme, little is known about the molecular mechanism underlying the branching process. One group of transcription factors that likely participates in the control of epithelial-mesenchymal inductive interactions are the Msx-class of homeodomain-containing proteins. In this paper, we focus on Msx-2 because its developmental expression is correlated with inductive interactions, suggesting that Msx-2 may play a functional role during cell-cell interactions. We demonstrate the expression of Msx-2 mRNA and protein to be primarily in the branching epithelia with progressive embryonic (E13 to E15) SMG development and, to a lesser extent, in the mesenchyme. We also show that Msx-2 is expressed by embryonic SMG primordia cultured under defined conditions. In addition, to begin to delineate a functional role for Msx-2, we employed an experimental strategy by using exogenous glucocorticoid (CORT) treatment of embryonic SMGs in vitro and in vivo to significantly enhance branching morphogenesis and evaluate the effect of CORT treatment on embryonic SMG Msx-2 expression. A marked increase in Msx-2 transcripts and protein is detected with in vitro and in vivo CORT treatment. Our studies indicate that one mechanism of CORT regulation of salivary gland morphogenesis is likely through the modulation of Msx-2 gene expression.

Animals↗

Determination of salicin and related compounds in botanical dietary supplements by liquid chromatography with fluorescence detection.

A sensitive and reliable method is described for quantitative determination of salicin (including salicyl alcohol) and salicylic acid in botanical dietary supplements by reversed-phase liquid chromatography (LC) with wavelength-programmed fluorescence detection. One gram sample material was extracted with 20 mL aqueous phosphate buffer (pH 5.0), which was heated in an 80 degrees C water bath for 30 min. After centrifugation and cooling of the extract to room temperature, the supernatant was diluted with additional buffer. A 1 mL portion of diluted extract was mixed with 1 mL beta-glucosidase solution (2 mg/mL) and incubated for 40 min in a 37 degrees C water bath. The extract was passed through a 0.45 micron syringe filter and analyzed by LC. Limits of quantitation for salicin and salicylic acid were 20 and 1 microgram/g, respectively. Recoveries from samples fortified with salicin at 20, 100, and 1000 micrograms/g and with salicylic acid at 5, 20, and 50 micrograms/g ranged from 85 to 110%, with standard deviations less than 7%.

Benzyl Alcohols↗