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Biomedical subjects

J C Lin

Publications and source records attributed to J C Lin.

At least 253 records · Page 14Linked to original sources

Metabolic activation of 9([2-hydroxy-1-(hydroxymethyl)ethoxy]methyl)guanine in human lymphoblastoid cell lines infected with Epstein-Barr virus.

9-([2-Hydroxy-1-(hydroxymethyl)ethoxy]methyl)guanine (BW B759U) is more potent and has a more prolonged inhibitory effect against Epstein-Barr virus (EBV) in vitro than does acyclovir (ACV). To assess the mechanism of this difference, we first compared the extent of phosphorylation of the two drugs in superinfected Raji cells. BW B759U is phosphorylated to levels 100-fold higher than is ACV. In addition, lower levels of phosphorylation of BW B759U and ACV were observed in uninfected Raji cells. Studies on the kinetics of formation of BW B759U triphosphate in superinfected Raji cells indicated that drug-phosphorylating activity was detected as early as 3 h after superinfection; this activity was steadily maintained for the first 7 h, followed by a burst of activity between 7 and 10 h and a doubling of phosphorylation between 10 and 25 h. During the superinfection cycle, the pool sizes of deoxyribonucleoside and ribonucleoside triphosphates were increased and reached their maxima at 10 h after infection. The maximal amount of triphosphorylated drug in a virus producer cell, P3HR-1 (LS), was obtained at 21 h after drug treatment. During long-term drug treatment, approximately 44 and 77% reduction in EBV genome copies per cell was observed on days 3 and 7, respectively. In a separate experiment, after treatment of P3HR-1 (LS) cells with BW B759U for 36 h, 4.2 pmol of BW B759U triphosphate per 10(6) cells was achieved. After the cells were released into drug-free medium, drug triphosphate was rapidly decreased to 11% of the original level in 1 day. Thereafter, the decrease was slow but steady, down to 0.22 pmol/10(6) P3HR-1 cells by 5 days. We calculated that 0.22 pmol of BW B759U triphosphate per 10(6) cells represents a cellular concentration of 0.22 microM, which is theoretically enough to inhibit EBV replication. This is based upon a comparison with the 50% effective dose of BW B759U (0.05 microM) for inhibition of genome replication and a Ki of 0.08 microM for BW B759U triphosphate inhibition of EBV DNA polymerase.

Acyclovir↗

The effect of 2450 MHz microwave radiation on the ultrastructure of snail neurons.

An electron microscopical study of snail neurons was undertaken to verify whether any ultrastructural alterations accompany microwave-induced electrophysiological changes observed in these neurons. Subesophageal ganglia from Helix aspersa snails were exposed to 2450 MHz microwave radiation in vitro at SAR 12.9 mW/g for 60 minutes. It was found that exposure at 21 degrees C causes minor changes in Golgi complexes and slight swelling of the endoplasmic reticulum.

Animals↗

Identification of two molecular forms of (Na+,K+)-ATPase in rat adipocytes. Relation to insulin stimulation of the enzyme.

Two molecular forms of the (Na+,K+)-ATPase catalytic subunit have been identified in rat adipocyte plasma membranes using immunological techniques. The similarity between these two forms and those in brain (Sweadner, K. J. (1979) J. Biol. Chem. 254, 6060-6067) led us to use the same nomenclature: alpha and alpha(+). The K0.5 values of each form for ouabain (determined by inhibition of phosphorylation of the enzyme from [gamma-32P]ATP) were 3 X 10(-7)M for alpha(+) and 1 X 10(-5)M for alpha. These numbers correlate well with the K0.5 values for the two ouabain-inhibitable components of 86Rb+/K+ pumping in intact cells (1 X 10(-7) M and 4 X 10(-5)M). Quantitation of the Na+ pumps in plasma membranes demonstrated a total of 11.5 +/- 0.2 pmol/mg of membrane protein, of which 8.5 +/- 0.3 pmol/mg, or 75%, was alpha(+). Insulin stimulation of 86Rb+/K+ uptake in rat adipocytes was abolished by ouabain at a concentration sufficient to inhibit only alpha(+)(2-5 X 10(-6)M). Immunological techniques and ouabain inhibition of catalytic labeling of the enzyme from [gamma-32P]ATP demonstrated that alpha(+) was present in skeletal muscle membranes as well as in adipocyte membranes, but was absent from liver membranes. Since insulin stimulates increased Na+ pump activity in adipose and muscle tissue but not in liver, there is a correlation between hormonal regulation of (Na+,K+)-ATPase and the presence of alpha(+). We propose that alpha(+) is the hormonally-sensitive version of the enzyme.

Adipose Tissue↗

Microwave-induced changes in nerve cells: effects of modulation and temperature.

Helix aspersa neurons were irradiated with continuous-wave (CW) and noise-amplitude-modulated microwaves (carrier frequency 2450 MHz, 20% AM, 2 Hz-20 kHz) in a specially designed waveguide exposure system. Continuous-wave microwave irradiations were conducted at 8 degrees, 21 degrees, and 28 degrees C, while noise-modulated irradiation was performed at 21 degrees C. The results showed that exposure of snail neurons to CW microwaves for 60 min at 12.9 W/kg inhibited spontaneous activity and reduced input resistance at 8 degrees and 21 degrees C but not at 28 degrees C. The relative decrease in resistance at 21 degrees C was half that at 8 degrees C. Exposure of neurons to noise-modulated microwaves at 6.8 and 14.4 W/kg predominately caused excitatory responses characterized by augmented membrane resistance and the appearance of greater activity. The effect differed qualitatively from the inhibition observed with continuous, unmodulated microwave irradiation.

Animals↗

Extracellular calcium and microwave enhancement of membrane conductance in snail neurons.

Microwave irradiation has been shown to decrease the input resistance of snail neurons. In this study, we examined the role of extracellular calcium in triggering the microwave-induced enhancement of membrane conductance. Two sets of experiments were conducted. In the first set, nerve cells were superfused using Ringer solution with added Cd2+ (0.9 mM) which is a known blocker of calcium channels. In the second set, cells were superfused with low Ca2+ (0.7 mM) Ringer solution. Microwave irradiation was conducted at 2,450 MHz for 30 min with a specific absorption rate of 13 mW/g. It was found that 7 mM to 0.7 mM lowering of Ca2+ in bathing solution as well as blocking of calcium channels in neuronal membrane by means of Cd2+ did not influence the fall in membrane resistance induced by microwave radiation. In fact, the observed changed in membrane resistance in these experiments were nearly equal to those observed for neurons superfused by normal Ringer's. Thus, these results rule out the possible contribution of external Ca2+ in the observed microwave effect. Experiments with high Ca2+ solution also support this conclusion.

Animals↗

Effect of (E)-5-(2-bromovinyl)-2'-deoxyuridine on replication of Epstein-Barr virus in human lymphoblastoid cell lines.

The effect of (E)-5-(2-bromovinyl)-2'-deoxyuridine (BVDU) on replication of Epstein-Barr virus (EBV) was investigated and compared with Acyclovir (ACV). Both drugs inhibited EBV replication very rapidly. However, the inhibitory effect of ACV was readily reversed after removal of the drug, in contrast to the more prolonged effect exerted by BVDU, which persisted for more than 21 days. The 50% inhibitory doses of BVDU for virus replication (ED50) and lymphoblastoid cell growth (ID50) were 0.06 microM and 390 microM, respectively; the in vitro therapeutic index (ID50/ED50) was 6,500. Synthesis of EBV-induced polypeptides with molecular weights of 145K, 140K and 110K was partially reduced by BVDU. When superinfected Raji cells were exposed to 125I-labeled (E)-5-(2-iodovinyl)-2'-deoxyuridine (IVDU), larger amounts of (125I)IVDU were incorporated into viral DNA than cellular DNA.

Acyclovir↗

Comparative efficacy and selectivity of some nucleoside analogs against Epstein-Barr virus.

The effects of (2-deoxy-2-fluoro-beta-D-arabinofuranosyl)-5-iodocytosine (FIAC), 1-(2-deoxy-2-fluoro-beta-D-arabinofuranosyl)-5-methyluridine (FMAU), 1-(2-deoxy-2-fluoro-beta-D-arabinofuranosyl)-5-iodouridine (FIAU), (E)-5-(2-bromovinyl)-2'-deoxyuridine (BVdU), and 9-(1,3-dihydroxy-2-propoxymethyl)guanine (DHPG or BW B759U) on the replication of Epstein-Barr virus (EBV) in vitro were evaluated and compared with that of acyclovir (ACV). The relative potencies of these drugs, on the basis of anti-EBV activity, were: FIAC = FIAU greater than FMAU greater than DHPG greater than BVdU greater than ACV; on the basis of the therapeutic index they were: BVdU greater than DHPG greater than FIAC greater than ACV greater than FIAU greater than FMAU. Differential inhibition of EBV-associated polypeptides by these drugs was observed.

Antiviral Agents↗

Qualitative and quantitative analyses of Epstein-Barr virus early antigen diffuse component by western blotting enzyme-linked immunosorbent assay with a monoclonal antibody.

We report the use of monoclonal antibody against the early antigen diffuse component (anti-EA-D) of Epstein-Barr virus (EBV) to analyze, both qualitatively and quantitatively, the expression of EA-D in various human lymphoblastoid cell lines activated by chemical inducers. The kinetics of synthesis of EA-D in P3HR-1, B95-8, and Ramos/AW cells were similar in that they all reached the peak of synthesis on day 5 after induction. Surprisingly, no expression of EA-D was found in induced BJAB/GC, an EBV-genome-containing cell line. EBV-negative cell lines, BJAB and Ramos, were negative for EA-D. Raji cells had no detectable EA-D but responded rapidly to induction, reaching a peak on day 3. Superinfection of Raji cells also resulted in marked induction of EA-D, which reached a plateau between 8 to 12 h postinfection. Western blotting coupled with the enzyme-linked immunosorbent assay was employed to identify polypeptides representing EA-D. A family of four polypeptides with molecular weights of 46,000 (46K protein), 49,000, 52,000, and 55,000 were identified to be reactive with monoclonal anti-EA-D antiserum. The pattern of EA-D polypeptides expressed in each cell line was different. Of particular interest was the expression of a large quantity of 46K protein both in induced Raji and P3HR-1 cells, but not in superinfected Raji cells. A 49K doublet was expressed in activated p3HR-1, B95-8, and Ramos/AW cells and in superinfected Raji cells. In addition, two distinct 52K and 55K polypeptides were expressed in induced Ramos/AW and superinfected Raji cells. However, none of these EA-D polypeptides was detectable in BJAB/GC, BJAB, Ramos, and mock-infected Raji cells. To approximate relative concentrations of EA-D in cell extracts, we employed the enzyme-linked immunosorbent assay and immunoblot dot methods by using one of the purified EA-D components to construct a standard curve. Depending upon the cell lines, it was estimated that ca. 1 to 3% (determined by the enzyme-linked immunosorbent assay) and 0.8 to 1.6% (determined by immunoblot dot) of total proteins from maximally induced cells were EA-D. These results suggest that differential expression of EA-D polypeptides could be of importance in the diagnosis of state of EBV infection.

Antibodies, Monoclonal↗

Establishment and characterization of four human bladder tumor cell lines and sublines with different degrees of malignancy.

We have established four human bladder tumor cultures, designated MGH-U1 to -U4 (also known as EJ, HM, RN, and RB in some previous reports). All have been grown in culture for over 30 passages and were free of Mycoplasma contamination. Characterizations of these cell lines were performed. These include isozyme profile, morphology with light and scanning electron microscopes, karyotype, growth rate, DNA content by flow cytometry, presence of cell surface ABH isoantigens, tumorigenicity in nude mice, lactic acid dehydrogenase isozymes, and colony formation in soft agar. Results obtained from these characterizations confirm that MGH-U1 and -U2 are sublines of a previously established bladder tumor cell line, T-24. These results also show that MGH-U3 and -U4, derived respectively from a grade 1 tumor and an urothelium biopsy with severe atypia, are likely to be independent human bladder cell lines and different from other transitional cell bladder carcinoma cell lines reported. The study further demonstrates that these four cell lines/sublines have different degrees of malignancy and a close correlation, in biological and malignant characteristics, between the cells in culture and those in the original tumors. Therefore these cultures may represent cells at different stages of malignant progression. These can be useful models for studies of the development and progression of bladder tumors and detection and treatment of bladder tumors of different grades and stages.

ABO Blood-Group System↗

Sex differential and dose dependence of phenobarbital-promoting activity in N-bis(2-hydroxypropyl)nitrosamine-initiated thyroid tumorigenesis in rats.

Studies were made on the dose and sex dependence of thyroid tumor development in rats pretreated with N-bis(2-hydroxypropyl)nitrosamine (DHPN) followed by exposure to various doses of phenobarbital (PB). A direct dose-response relationship in induction of thyroid tumors was found in both male and female rats. Upon feeding the DHPN-treated rats with basal diet containing 20, 100, 500, and 2500 ppm of PB, the incidences of follicular adenoma were, respectively, 8, 45, 70, and 66% in male rats and 12, 17, 50, and 58% in female rats. Development of papillary adenomas in male rats was observed only at the higher doses of PB, at incidences of 12 and 20% for doses of 500 and 2500 ppm. Follicular carcinoma was also seen at higher doses of PB, at 16 and 12%, respectively, for the 500- and 2500-ppm groups. Neither follicular nor papillary carcinomas were induced in female rats; only a low incidence of papillary adenoma (4%) was observed with a PB concentration as high as 2500 ppm. A single injection of DHPN resulted in production of approximately 1 tumor/female rat and 2.5 tumors/male rat. DHPN combined with posttreatment with PB at doses up to 500 ppm did not increase tumor yield in female rats, whereas a 3-fold increase was observed in male rats for the 500-ppm-treated groups. When PB was increased to 2500 ppm a marked increase (8-fold) in tumor yield in male rats was observed, in contrast to a less than 3-fold increase in similarly treated female rats.

Animals↗

Pathophysiologic mechanisms of cardiac tamponade and pulsus alternans shown by echocardiography.

A pericardial effusion is easily recognized by echocardiography, but the diagnosis of cardiac tamponade by echocardiography is controversial. Recently, several reports have indicated that right ventricular (RV) or right atrial (RA) diastolic collapse represent highly specific and sensitive signs of a hemodynamically significant pericardial effusion. This report evaluates the pathophysiologic significance of these findings in 3 patients. One patient had classic clinical and hemodynamic features of tamponade without typical echocardiographic features; 1 had typical echocardiographic features of tamponade without the characteristic clinical or hemodynamic features; and 1 had all the findings characteristic of tamponade, including mechanical and electrical alternans. The first patient had increased right-sided cardiac pressures and RV hypertrophy, which prevented RV or RA collapse. The second patient had low right-sided intracardiac pressures, which allowed RV and RA diastolic compression to occur during early and mid-diastole. In the third patient, severe holodiastolic impairment of right-sided filling, and presumed decreased pulmonary venous and pericardial compliance, in the setting of tamponade produced a beat-to-beat alternation of RV and left ventricular filling with associated electrical and mechanical alternans. RV or RA collapse during diastole occurs when intrapericardial pressure equals or exceeds intracardiac pressure. Increases in wall stiffness of chamber pressures may prevent diastolic collapse in the setting of tamponade. Conversely, extremely low intracardiac pressures may allow diastolic collapse to occur in the absence of overt cardiac tamponade. The extent and timing of the RA or RV collapse, rather than its mere occurrence, are important in the diagnosis of cardiac tamponade by echocardiography.

Adolescent↗

Cerebrovascular permeability to 86Rb in the rat after exposure to pulsed microwaves.

Microwaves (pulsed, 2,450 MHz) at an average power density of 3 W/cm2 were applied directly to the head for 5, 10, or 20 min, producing a peak specific absorption rate of 240 W/kg in the brain, which, after a 10-min exposure, resulted in brain temperatures in excess of 43 degrees C. A bolus of 86Rb in isotonic saline was injected intravenously and an arterial sample was collected for 20 s to determine cardiac output. Compared with unexposed controls, uptake of 86Rb increased most in those regions directly in the path of the irradiation, namely, the occipital and parietal cortex, as well as the dorsal hippocampus, midbrain, and basal ganglia. In a separate group of animals, regional brain-vascular spaces were found to increase with brain temperature. These results support previous observations indicating that reliably demonstrable increases of blood-brain barrier permeability are associated with intense, microwave-induced hyperthermia, and that the observed changes are not due to field-specific interaction.

Animals↗

Antagonistic action of retinoic acid against teleocidin and 12-O-tetradecanoyl-phorbol-13-acetate on activation of Epstein-Barr virus genomes.

Teleocidin, a new potent tumor promoter, produces biological effects similar to 12-O-tetradecanoyl-phorbol-13-acetate (TPA) on human lymphoblastoid cell lines. A wide range of concentrations (4-16 ng/ml) of teleocidin were optimal for induction of replication of latent Epstein-Barr virus (EBV) genomes in P3HR-1 cells; cell growth was significantly inhibited in this dose range. In contrast, treatment of Raji cells with an identical dose range of teleocidin did not induce replication of latent EBV genomes. As with TPA, P3HR-1 cells in the stationary phase were twice as responsive to teleocidin induction as exponentially growing cells. The activation of P3HR-1 cells both by teleocidin and TPA greatly enhanced the synthesis of EBV DNA and EBV-associated polypeptides as determined by cRNA - DNA hybridization and by analysis on polyacrylamide gels. Both drugs also increased production of biologically active virus as monitored by the synthesis of viral DNA in superinfected Raji cells. These effects were completely inhibited by retinoic acid. However, retinoic acid did not inhibit the spontaneous viral DNA replication that occurs in P3HR-1 cells not treated with the inducers. Thus, it appears that retinoic acid antagonizes the inducing effects of TPA and teleocidin, but not viral replication itself.

Alkaloids↗

Prolonged inhibitory effect of 9-(1,3-dihydroxy-2-propoxymethyl)guanine against replication of Epstein-Barr virus.

The effects of 9-(1,3-dihydroxy-2-propoxymethyl)guanine (DHPG), a new antiviral drug, and acyclovir (ACV) [9-(2-hydroxyethoxymethyl)guanine] on the replication of Epstein-Barr virus (EBV) were compared. Both drugs inhibited EBV DNA replication in P3HR-1 cells and superinfected Raji cells, but neither inhibited replication of the plasmid form of the EBV genome in latently infected Raji cells. However, DHPG had a more prolonged inhibitory effect than ACV. Although the effect of the drugs is prompt, the kinetics of inhibition of EBV replication indicated that a drug exposure of 14 days was needed to reduce the EBV genome copy number to the residual plasmid level (30 copies per cell). The inhibitory effect of ACV was readily reversed within 11 days after removal of the drug, in contrast to the more prolonged effect exerted by DHPG, which persisted for more than 21 days. The 50% inhibitory doses for cell growth of ACV and DHPG were estimated to be 250 and 200 microM, respectively. The viral 50% and 90% effective doses of inhibition were, respectively, 0.3 and 9 microM for ACV and 0.05 and 3 microM for DHPG. The therapeutic indices (50% inhibitory dose/50% effective dose) for ACV and DHPG were 833 and 4,000, respectively. Synthesis of EBV-associated polypeptides was also affected. In superinfected Raji cells, ACV (100 microM) and DHPG (30 microM) inhibited synthesis of polypeptides with molecular weights of 145,000 and 140,000; in addition, synthesis of polypeptides with molecular weights of 110,000 and 85,000 was markedly reduced by DHPG but not by ACV. However, after drug removal, the inhibitory effect of ACV on polypeptide synthesis was abolished in contrast to the more persistent effect of DHPG.

Acyclovir↗

Expression and regional assignment of Chinese hamster ESD and rRNA genes associated with translocations giving rise to chromosomes Z1 and Z6 in CHO cells.

The Chinese hamster genes ADK, NP, ESD, PGM2, PEPS, PEPB, GLO, and GSR, all of which are on Chinese hamster chromosome 1, were assigned to CHO-LA chromosomes by analysis of the segregation of CHO isozymes and chromosomes from interspecific somatic cell hybrids made with CHO cells and mouse C11D cells. One allele of each of these eight loci remained linked on the normal chromosome 1 homolog. For seven loci, the other allele remained linked on chromosome Z1, but ESD was shown to have been translocated to chromosome Z6 (Chinese hamster chromosome 5q +). Ag-NOR staining of CHO chromosomes indicated that the (1;5) translocation was very likely reciprocal, since the Chinese hamster chromosome 5, which gave rise to the CHO Z6, lacks an NOR and the Z1 now has one. These data allowed regional assignment of ESD to the distal portion of Chinese hamster chromosome 1p and provided genetic evidence for the origin of CHO chromosomes Z1 and Z6 from Chinese hamster chromosomes 1 and 5. Induced electrophoretic shift mutations of ESD and positive Ag-NOR staining for the rRNA genes on the Z1 showed that the activities of the genes lying close to the translocation breakpoints were maintained.

Alleles↗