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Biomedical subjects

V Wu

Publications and source records attributed to V Wu.

11 recordsLinked to original sources

Myeloma Ig heavy chain V region sequences reveal prior antigenic selection and marked somatic mutation but no intraclonal diversity.

The lg VH region sequence in 48 patients with multiple myeloma (MM) was analyzed to characterize the malignant cell of origin. The sequences were obtained after amplification of bone marrow cDNA by using VH family-specific and CH primers, then compared with either directly sequenced patient germ-line or published VH gen sequences to assay for somatic mutation. Because somatic hypermutation of the VH gene occurs late in B cell development, its presence has been helpful in determining the cell of origin in other B cell malignancies. Overall, a median of 8.2% of the nucleotides had evidence of substitution within each VH gene sequence (range=2.7% to 16.5%), which is more prevalent than in any other reported tumor type. Strong evidence of prior antigenic selection pressure was also evident. The ratio of nucleotide substitutions that resulted in amino acid replacement was significantly higher in the complementarity-determining region than in the framework region (3.25 vs 1.56, respectively; p < 0.00005). No VH gene intraclonal diversity was noted, despite sequencing multiple clones (3-16) from each patient, nor was there evidence of further VH gene somatic mutation over the course of three patients' disease. These findings strongly imply that the malignant clone in MM evolves from a cell late in B cell development.

Amino Acid Sequence

Standardization of flow cytometric crossmatch (FCXM) for investigation of unexplained habitual abortion.

PROBLEM: To define a positive flow cytometric crossmatch (FCXM), in terms of channel shift, for maternal IgG and IgM (n = 28) against paternal T and B lymphocytes. METHOD: A reference range study. Mononuclear cells were obtained from 28 healthy volunteers using density gradient separation of heparinized blood, followed by pre-incubation with goat immunoglobulin. A total of twelve tubes were prepared for each volunteer. Primary incubation was with negative control serum, positive control sera (either IgG or IgM) and individual AB sera. Secondary incubation was with four combinations of fluorochromes: CD3 PE/IgG-Fc F(ab')2FITC, CD3 PE/IgM F(ab')2FITC, CD20 PE/IgG-Fc F(ab')2FITC and CD20 PE/IgM F(ab')2FITC. The cells were then analyzed with an EPICS Profile flow cytometer, using 256-channels and a four decade log scale. RESULTS: The linear mean channel fluorescence of the negative control serum was subtracted from the individual AB sera (channel shift) for each of the four combinations of fluorochromes. By determining the 95% one-sided upper reference limits of the negative control serum for each of the four trimmed data sets, we clinically defined a positive FCXM for bound IgG or IgM to T lymphocytes as a shift of 10 or more channels, and for bound IgG or IgM to B lymphocytes as a shift of 25 or more channels, above the linear mean channel shift of the negative control serum. CONCLUSION: Positive FCXMs were defined for maternal IgG and IgM against T and B lymphocytes, in terms of channel shift above the linear mean channel fluorescence of the negative control serum. By standardizing the dual-color FCXM methodology, the clinical significance of alloantibodies in the maintenance of pregnancy could be addressed in a collaborative manner.

Abortion, Habitual

Effect of histamine on rat gastric H(+)-K(+)-ATPase alpha-subunit expression.

The H(+)-K(+)-adenosinetriphosphatase (ATPase) is expressed in the parietal cell and is responsible for acid secretion by the stomach. Histamine binds to an H2 receptor and activates adenylate cyclase and intracellular calcium concentration ([Ca2+]i) elevation, stimulating acid secretion. It has been shown that omeprazole administered to rats increases serum gastrin and transiently increases the level of mRNA for the alpha-subunit of the pump, but this increase is blocked by the presence of the H2-receptor antagonist, famotidine [A. Tari, G. Yamamoto, K. Sumii, M. Sumii, Y. Takehara, K. Haruma, G. Kajiyama, V. Wu, G. Sachs, and J. H. Walsh. Am. J. Physiol. 265 (Gastrointest. Liver Physiol. 28): G752-G758, 1993]. These observations suggest that the release of histamine induced by gastrin is essential for the increase of the expression of mRNA induced by omeprazole. Infusion of histamine at 15 mumol.kg-1.h-1 i.v. for 1 h increased the alpha-subunit mRNA level by 144 +/- 2.4% and induced a stimulated morphological appearance of the parietal cell. These changes were inhibited completely by the competitive H2-receptor antagonist famotidine, which elevated gastric pH and serum gastrin. Famotidine also reduced the level of H(+)-K(+)-ATPase mRNA compared with control animals. No change in the expression of beta-actin mRNA was observed in any group of animals. These data provide direct evidence for histamine stimulation of H(+)-K(+)-ATPase alpha-subunit gene expression by activation of the H2 receptor.

Animals

Effects of postnatal methylmalonate administration on neurobehavioral development of rats.

Administration of methylmalonic acid in rats has been used as a model for methylmalonicacidemia in humans. Nestling Wistar rats of both sexes received 5 injections daily at 3-h intervals (starting at 7:30 a.m.) of saline or methylmalonic acid (MMA, 10 mg/ml) in a volume of 9 microliters/g body weight per injection subcutaneously in the lumbar region from the 5th to the 9th day of life and 11 microliters/g from day 10 to 14. Growth and neuromotor development were assessed by monitoring the following parameters daily in 54 rats: body weight, ear unfolding, incisor eruption, eye opening, righting, palmar grasp, negative geotaxis, cliff avoidance, free-fall righting and startle reflex. The only statistically significant effects of MMA administration were on the day of appearance of the free-fall righting reflex: MMA, 12.44 +/- 1.55 vs 11.0 +/- 0.39 days for saline control (P < 0.05, by two-way ANOVA) and a significant decrease in weight (P < 0.05, by ANOVA with repeated measures). The results suggest that chronic MMA administration to rats has a selective effect on neuromotor development.

Animals

Role of histamine2 receptor in increased expression of rat gastric H(+)-K(+)-ATPase alpha-subunit induced by omeprazole.

Omeprazole is a specific inhibitor in vivo of the functioning gastric acid pump, the H(+)-K(+)-adenosinetriphosphatase (ATPase), in the secretory canaliculus of the parietal cell. It has been shown previously that omeprazole in rats led to an increase in the mRNA for the alpha-subunit of the H(+)-K(+)-ATPase. Omeprazole causes a marked increase in circulating gastrin in this species, which in turn stimulates release of histamine from the enterochromaffin-like cell. The possible role of this pathway was investigated by the in vivo administration of famotidine, a potent H2 receptor antagonist. A single intraperitoneal dose of famotidine, 200 mg/kg, produced a transient hypergastrinemia peaking at 3 h and normalizing at 12 h, inhibition of secretion that lasted for 12 h, but no change in the level of the alpha-subunit mRNA or of beta-actin mRNA. In contrast, a single dose of omeprazole, 100 mg/kg, inhibited acid secretion and produced hypergastrinemia, peaking at 12 h, both effects lasting for the 24-h observation period. Omeprazole elevated the alpha-subunit mRNA transiently by more than threefold at 3 h, with normal levels being restored at 24 h. The administration of famotidine 1 h after omeprazole did not change the effects of omeprazole on acid secretion but elevated the gastrin levels further. There was now no elevation of the alpha-subunit mRNA for the first 6 h, but a small increase at 12 h and a further increase to approximately 2.5-fold at 24 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Regulation of rat gastric H+/K(+)-ATPase alpha-subunit mRNA by omeprazole.

The H+/K(+)-ATPase is the dimeric enzyme responsible for H+ secretion by the gastric parietal cells. The present study examined the response of rat fundic mRNA levels of H+/K(+)-ATPase alpha-subunit and somatostatin to the inhibition of H+/K(+)-ATPase enzyme activity and gastric pH elevation by oral omeprazole administration. Omeprazole inhibits the alpha-subunit of H+/K(+)-ATPase covalently and stabilizes stimulated morphology of the parietal cell. After a single administration of omeprazole (100 mg/kg), H+/K(+)-ATPase alpha-subunit mRNA levels increased significantly by 57% at 3 h and remained elevated for 6 h, returning to the basal level by 24 h. After multiple administrations of omeprazole (100 mg/kg per day, every 24 h for 3 days), H+/K(+)-ATPase alpha-subunit mRNA levels were already elevated at the time of the last dose, reached maximum at 6 h (95% increase above control), and returned to the pre-treatment level after 36 h. Nuclear run-on assay indicated H+/K(+)-ATPase gene transcription was significantly increased by omeprazole pretreatment in vivo. In contrast, a significant decrease in fundic somatostatin mRNA occurred at 12 h after a single dose, and the inhibition was more pronounced and lasted longer after multiple doses of omeprazole. These data indicate that omeprazole, while effectively inhibiting H+/K(+)-ATPase activity, induces H+/K(+)-ATPase gene expression in the parietal cells. An inverse relationship exists between the regulation of somatostatin gene expression in fundic D-cells and H+/K(+)-ATPase gene expression. The increase in H+/K(+)-ATPase alpha-subunit mRNA could be due to alterations in extracellular gastrin/somatostatin ratios or could be induced by intracellular effects of omeprazole.

Actins

Regulation of rat antral gastrin and somatostatin gene expression during starvation and after refeeding.

Antral gastrin and somatostatin gene expression during starvation and after refeeding with liquid meals of varying composition were studied. Northern and slot-blot hybridization analyses showed that starvation caused a marked decrease in antral gastrin messenger RNA (mRNA) level by 12 hours associated with an increase in somatostatin mRNA. After 48 hours of fasting, antral gastrin mRNA was 26% and somatostatin mRNA was 136% of their prefasting levels. Refeeding caused increased 2-hour integrated gastrin mRNA levels after liquid peptone (+45%), phenylalanine (+31%), and olive oil (+13%), but no changes were observed with glucose or saline solutions. Integrated 2-hour immunoreactive antral gastrin content was increased after peptone (+106%), phenylalanine (+68%), and olive oil (+32%) meals but was not increased after glucose (-11%) or saline (-10%). In some cases, both gastrin mRNA and peptide responses could be measured as early as 15 minutes. The same nutrients that increased gastrin mRNA levels caused decreased 2-hour integrated somatostatin mRNA levels; peptone (-30%), phenylalanine (-28%), and olive oil (-21%), but neither glucose nor saline, altered somatostatin mRNA levels. These results suggest that antral gastrin and somatostatin genes were regulated in opposite directions, in a coordinate manner, by specific gastric nutrients that stimulate gastrin release.

Animals

Somatostatin monoclonal antibody immunoneutralization increases gastrin and gastric acid secretion in urethane-anesthetized rats.

The role of endogenous somatostatin in mediating urethane anesthesia-induced inhibition of gastric acid secretion was investigated using measurement of somatostatin messenger RNA concentrations in the antrum and the influence of somatostatin monoclonal antibody CURE.S6 on acid secretion in rats anesthetized with urethane and acutely implanted with gastric fistulas. Fifteen minutes after injection of urethane, somatostatin messenger RNA concentrations were increased by 128% compared with those in nontreated rats. The significant elevation of somatostatin messenger RNA was maintained for 2 hours after injection. Somatostatin monoclonal antibody injected intravenously (2 mg) completely reversed the inhibitory effect of somatostatin (20 micrograms/kg.h) on pentagastrin (24 micrograms/kg.h)-stimulated gastric acid secretion. The somatostatin monoclonal antibody dose dependently increased basal gastric acid secretion in urethane-anesthetized rats. Peak acid response to the somatostatin monoclonal antibody (2 mg) was observed 20 minutes after antibody injection (preinjection, 1.4 +/- 1.2 mumol/10 min; postinjection, 10.6 +/- 0.6 mumol/10 min); meanwhile, levels of plasma gastrin increased from 27 +/- 6 pg/mL to 75 +/- 8 pg/mL and were maintained elevated for the 2-hour experimental period. When gastrin monoclonal antibody 28.2 was injected together with somatostatin monoclonal antibody, the stimulatory effect of the somatostatin antibody was inhibited by 82%. A control monoclonal antibody 109-21 directed against the biologically inactive glycine-extended fragment 66-72 of progastrin did not alter basal gastric acid secretion or the inhibitory effect of somatostatin. These results indicate that one mechanism by which urethane induced low basal gastric acid secretion involved increased synthesis and release of endogenous somatostatin and associated inhibition of gastrin secretion.

Anesthetics

Colicin A receptor: role of two Escherichia coli outer membrane proteins (OmpF protein and btuB gene product) and lipopolysaccharide.

ompF cells were completely resistant to colicin A, whereas btuB cells were partially resistant. The OmpF protein, in the presence of added lipopolysaccharide, inactivated colicin A. This inactivation was enhanced by added btuB gene product, btuB gene product with lipopolysaccharide did not inactivate colicin A. These data, together with the observation that vitamin B12 protected btuB+ cells from the killing effect of colicin A, suggest that the colicin A receptor in Escherichia coli K-12 is composed of the OmpF protein, the btuB gene product, and lipopolysaccharide.

Adsorption

An automated method for vacuum testing pharmaceutical vials.

A new automated vacuum tester which applies a high voltage, high frequency electric field and a stroboscopic flash to conveyorized vials was found to yield zero percent false rejections of lyophilized vials with internal pressures of less than 62 Torr. The hand-held testing device used until now was found to produce, on extended contact with vials containing sensitive protein product, excessively high numbers of particulates upon drug reconstitution. In the automated machine operating at rates between 150 and 30 vials per minute, each vial is exposed for only 0.3 to 1.4 seconds and sensitive products emerge undamaged.

Automation

Microprocessor-base system for ultrasonic tissue characterization.

A microprocessor-based ultrasonic data acquisiton and analysis system has been developed for measuring acoustic parameters of biologic media in a controlled environment. The system consists of commercially available pulse-echo electronics and both minicomputers and microcomputers. Measurements were made on various biologic tissues, both freshly excised and formalin fixed. Propagation velocity measurements were made using the substitution technique. Peak amplitude and log power spectra difference methods were used for attenuation measurements. Measured results indicate that propagation velocity in the soft tissues was in the range of 1530-1580 m/sec at 20 degrees C. Velocity variation among tissues at any given frequency was less than 2%; dispersion in the frequency range 1-10 MHz was approximately 1.5%. Attenuation coefficients showed a marked dependence on frequency increasing in a linear fashion. The slope of the attenuation frequency curve varied with tissue type and could be used for tissue characterization.

Acoustics