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Biomedical subjects

Y Doida

Publications and source records attributed to Y Doida.

At least 19 recordsLinked to original sources

Association of neonatal hyperbilirubinemia with bilirubin UDP-glucuronosyltransferase polymorphism.

OBJECTIVE: The incidence of nonphysiologic neonatal hyperbilirubinemia is twice as high in East Asians as in whites. We studied whether the condition was associated with mutations in the gene for bilirubin uridine 5'-diphosphate-glucuronosyltransferase (UGT1A1), a key enzyme of bilirubin catabolism. DESIGN: We analyzed the UGT1A1 gene in 25 Japanese neonates who had nonphysiologic hyperbilirubinemia (serum bilirubin >257 micromol/L) with no obvious cause. They had all received phototherapy. The background control population consisted of 50 Japanese neonates whose transcutaneous jaundice index was monitored during the first week of life. We detected mutations by direct sequencing of polymerase chain reaction-amplified fragments of the gene. RESULTS: We found a polymorphism for UGT1A1 in exon 1; a G-->A transition at nucleotide 211 caused arginine to replace glycine at position 71 of corresponding protein product (G71R). The frequency of the mutated allele in the hyperbilirubinemic group (0.34) was significantly higher (chi2 = 5.56) than in the control group (0.16). In the control group the peak transcutaneous jaundice index of the carriers of G71R was significantly higher than it was in the normal infants. CONCLUSIONS: The missense mutation causing G71R is the first reported polymorphism for UGT1A1, and the mutation is a risk factor for nonphysiologic neonatal hyperbilirubinemia. The high incidence of hyperbilirubinemia in the Japanese may be attributable to the high frequency of this missense mutation.

Alleles↗

Contribution of two missense mutations (G71R and Y486D) of the bilirubin UDP glycosyltransferase (UGT1A1) gene to phenotypes of Gilbert's syndrome and Crigler-Najjar syndrome type II.

In our mutation analyses of bilirubin UDP glycosyltransferase (UGT1A1) gene, we encountered six patients with Crigler-Najjar syndrome type II who were double homozygotes for G71R and Y486D, a patient with Gilbert's syndrome who was a single homozygote for G71R and six patients with Gilbert's syndrome who were single heterozygote for G71R. To clarify the role of each mutation in the occurrence of the two syndromes, we made four mutant expression models. Relative UGT1A1 activity of a single homozygous model of G71R was 32.2+/-1.6% of normal, that of a single homozygous model of Y486D was 7.6+/-0.5%, that of a double homozygous model of G71R and Y486D was 6.2+/-1.6% and that of a heterozygous model of G71R was 60.2+/-3.5%. The decreased activities of the single homozygous model of G71R and the double homozygous model were at an appropriate level to be diagnosed as Gilbert's syndrome and CN-II, respectively. The activity of a single heterozygous model of G71R was somewhat high to develop to the phenotype of Gilbert's syndrome, suggesting the presence of additional factors for the etiology of Gilbert's syndrome.

Animals↗

Gilbert syndrome caused by a homozygous missense mutation (Tyr486Asp) of bilirubin UDP-glucuronosyltransferase gene.

We report a case of Gilbert syndrome caused by a homozygous missense mutation (Tyr486Asp) of the bilirubin UDP-glucuronosyltransferase gene. Homozygous missense mutations of the gene have previously been recognized as responsible for Crigler-Najjar syndrome type II. We conclude that Gilbert syndrome in some patients results from homozygous missense mutations of the UDP-glucuronosyltransferase gene.

Child↗

Sonochemicals increase the mutation frequency of V79 cells in vitro.

Phosphate buffered saline (PBS) was insonated or sham-insonated (1 MHz, 35 W/cm2, continuous wave, 30 min) in rotating (200 rpm) sterile polystyrene culture tubes. After treatment, the PBS was used immediately to suspend washed Chinese hamster V79 cells in vitro. Cells were incubated in the PBS at 37 degrees C for 15 min and then transferred to complete growth medium. Some insonation regimens also involved the inclusion of Albunex (ALX; an ultrasound microbubble contrast agent) to enhance ultrasound-induced inertial cavitation. Following exposure to the pretreated PBS and 6 d of subculture in complete medium, the cells were assayed for plating efficiencies and mutation frequencies (resistance to 6-thioguanine). X-rays (3 Gy) served as a positive control. Cells exposed to insonated PBS with or without ALX or x-rays had statistically significantly elevated mean mutation frequencies (4.37+/-0.97, 4.54+/-1.00, and 24.28+/-3.83 mutant colonies/10(6) viable cells, respectively) relative to corresponding control regimens (ultrasound sham, 2.44+/-0.56; x-ray sham, 2.96+/-0.88 mutant colonies/10(6) viable cells. The data supported the hypothesis that sonochemicals resulting from inertial cavitation have mutagenic potential.

Albumins↗

Serum IgA1 and IgA2 subclass antibodies against collagens in patients with ankylosing spondylitis.

We measured IgA1 and IgA2 subclass antibody levels against human type I, II, III and IV collagens in patients with ankylosing spondylitis (AS) by enzyme linked immunosorbent assay (ELISA). Significant elevations of IgA1 antibodies against type II collagen (p < 0.01) and IgA2 antibodies against type I (p < 0.001), III (p < 0.001), and IV (p < 0.01) collagens were observed in AS patients compared with those of healthy controls. These findings suggest that serum IgA antibodies against type I, III and IV collagens were mainly produced in secretory lesions in AS patients.

Adult↗

A test of the hypothesis that ELF magnetic fields affect calcium uptake in rat thymocytes in vitro.

The experiment's objective was to test the statistical hypothesis that a 60-min exposure of rat thymocytes in vitro to a unique combination of static and a.c. magnetic fields results in suppression of calcium influx triggered by concanavalin A (Con A). Con A (10 micrograms/ml) induced about a 50% increase in 45Ca2+ uptake relative to no Con A (control). Magnetic field exposures had no statistically significant effect on Con A-stimulated calcium uptake. The data did not support the hypothesis.

Animals↗

Failure to confirm increase in unscheduled DNA synthesis in sonicated mammalian cells in vitro.

Two in vitro mammalian cell lines (HeLa, mouse L5178Y) were exposed/sham exposed to ultrasound (2.3 or 2.6 MHz, I-SPTA 35 W cm-2, 10 microseconds burst duration, 200 Hz pulse repetition frequency) for 20 min and subsequently autoradiographically scored for unscheduled DNA synthesis (UDS). A positive control (20 and 40 J m-2 germicidal ultraviolet at a flux density of 1 J m-2 s-1) yielded statistically significant increases in UDS; no such increase was observed for the ultrasound regimens. The results fail to confirm an earlier report by Liebeskind et al. of ultrasound-induced increases in UDS.

Autoradiography↗

The effect of constant direct electrical current on intrinsic healing in the flexor tendon in vitro. An ultrastructural study of differing attitudes in epitenon cells and tenocytes.

Light and electron microscopy were performed in a study of the effects of electrical stimulation upon the reparative processes in flexor tendons cultured in vitro. After one or two weeks of incubation, the unstimulated control tendons were covered with fibroblastic surface cells, thought to have originated from the epitenon. In contrast, the tendons subjected to electrical stimulation had no proliferation of the epitenon cells in the surface layer. The results indicate that electrical currents of low amperage suppress adhesion-causing synovial proliferation in the epitenon and promote active collagen synthesis in the tenocytes. This suggests the potential value of electrical stimulation in the control of adhesion formation after flexor tendon repair.

Animals↗

Modest enhancement of ultrasound-induced mutations in V79 cells in vitro.

V79 cells were insonated (1 MHz, 35 W/cm2, 2 min continuous wave) under temperature conditions previously reported to cause a large increase in acoustic cavitation. The goal was to increase the ease of detecting ultrasound-induced mutations. The data supported the hypothesis that a 3 degrees C gas-equilibration period followed by insonation at 37 degrees C resulted in a detectable increase in resistance to 6-thioguanine with 6 trials per regimen.

Animals↗

Apparent contribution of respiratory gas exchange to the in vitro "cell density effect" in ultrasonic cell lysis.

Ultrasonic damage to cells in vitro has been reported to vary dramatically with cell density; the particle density per se has been proposed to be responsible for this effect via interference with gas body activity. Reported here are the results of experiments designed to test the general postulate that the "cell density effect" can be explained in part by cellular modification of the suspension medium by respiratory gas exchange. Ultrasonic cell lysis is shown to occur at a much higher level in suspensions supplemented with the respiratory inhibitor NaCN than in control suspensions when suspension densities exceed 2 x 10(7) cells/mL. Moreover, at constant cell density, cell lysis diminishes with increasing pre-insonation incubation time at 37 degrees C. The rate of change in cell lysis with incubation time was diminished significantly by cyanide treatment. These observations are consistent with the postulate that respiratory O2:CO2 exchange enriches the medium in CO2 while depleting the medium of oxygen, which cavitates more readily than CO2, thereby diminishing the potential for cavitation-related cellular damage. However, this is only a partial explanation of the cell concentration dependence of cell lysis; cell density per se is an important factor in the "cell density effect."

Animals↗

Ultrasonically induced in vitro cell lysis: node-antinode interactions.

An attempt was made to discriminate between two hypotheses (standing wave, bubble recycling) of the mechanism of ultrasonically induced cell lysis in a rotating tube. A tube containing an aqueous suspension of P-388 cells was moved back and forth (+/- 3 or +/- 7 mm) during insonation (1 MHz, 5 W/cm2, continuous wave, 5 min). Cell lysis (approximately 20%) occurred. As a positive control, some tubes were also partially or completely rotated during insonation; considerable cell lysis (approximately 60%) occurred. The results are interpreted to suggest that both hypotheses are simultaneously useful in explaining the observed effect of cell lysis in a rotating tube.

Air↗

[Experimental study of intrinsic healing of the flexor tendon: collagen synthesis of the cultured flexor tendon cells of the canine].

The roles of the tendon cells, such as epitenon cells and tenocytes, through the reparative process of the flexor tendon are controversial. This study was performed to investigate the collagen synthesis of cultured tendon cells derived from the sheathed flexor tendons of the canine under electron microscopy using "Floating Sheet" method introduced by Arnold, J. R., et al (1983). Morphologically epitenon cells gave an appearance of large and oval fibroblasts, while tenocytes were small, spindle shaped fibroblasts. Electron microscopy revealed large amount of collagen and non-collagen fibers in the intercellular spaces of both cell populations. The collagen fibers produced by tenocyte populations were 200 A to 400 A in thickness, whereas those of the cultured epitenon cells ranged from 150 A to 300 A. These results indicated that tenocytes secreted larger and more matured collagen fibers than epitenon cells. Promotion of collagen synthesis by the tenocytes in the early stage of the flexor tendon repair was thought to be more favorable for its quality of the healing process.

Animals↗

Confirmation of an ultrasound-induced mutation in two in-vitro mammalian cell lines.

In-vitro V79 and L5178Y cells were exposed in a rotating test tube to continuous-wave (CW) 1 MHz 35 W/cm2 ultrasound (0-4 or 0-3 min, respectively) and subsequently assayed for mutation as evidenced by resistance to 6-thioguanine (6-TG). There was a modest but statistically significant increase in mutation frequency in both cell types with increase in ultrasound exposure duration. X-ray exposures (3-9 Gy, a "positive control") yielded a large increase in 6-TG resistance. The data support an earlier report by Kaufman (1985) of an ultrasound-induced increase in mutation to 6-TG resistance in in-vitro mammalian cells.

Analysis of Variance↗

Na/K pump activity in the new membrane formed at first cleavage in Cynops pyrrhogaster eggs.

Resting membrane potentials (Em) increased in the negative direction during first cleavage in Cynops pyrrhogaster eggs whose new membranes formed at first cleavage were exposed to bathing solutions by removing the vitelline envelopes. Em was -11.4 and -87.2 mV at the one- and two-cell stages, respectively. Na/K pump activity contributed to Em at the two-cell stage by about -30 mV. The distribution of Na/K ATPase activity was cytochemically studied by Ernst's method (S. A. Ernst, 1972, J. Histochem. Cytochem. 20, 23-38). The new membrane of the eggs at the two-cell stage showed the pump activity. But the activity was detected neither in the preexisting outer membrane of the eggs at the two-cell stage nor in the membrane at the one-cell stage.

Animals↗

Potentiation of sister chromatid exchange by 3-aminobenzamide is not modulated by topoisomerases or proteases.

Poly(ADP-ribose) is synthesized in response to DNA strand breaks and covalently modifies numerous intracellular proteins. We have proposed that this modification regulates, i.e., inhibits, the activity of these enzymes, e.g., topoisomerases and proteases, which could otherwise cause additional DNA damage or alterations in chromatin structure. Inhibition of poly(ADP-ribose) polymerase by 3-amino-benzamide (3AB) in cells exposed to DNA-damaging agents would, according to this proposal, eliminate the regulatory role of ADP-ribosylation. When Chinese hamster ovary cells are cultured with methyl methanesulfonate (MMS) and 3AB, a synergistic increase in sister chromatid exchange frequency is observed. We investigated the regulatory role of poly(ADP-ribose) polymerase to see if topoisomerases or proteases are involved in this synergistic increase. Cells were exposed to MMS or the intercalating agent 4'-(9-acridinylamino)methanesulfon-m-anisidide (m-AMSA), 3AB, and either the topoisomerase inhibitor novobiocin or the protease inhibitor antipain. Neither novobiocin nor antipain affected the synergistic response of MMS and 3AB or the additive response of m-AMSA and 3AB. These results suggest that topoisomerases or proteases do not account for the effect of 3AB on sister chromatid exchange frequency after DNA damage.

Aminoacridines↗

Spontaneous and 3-aminobenzamide-induced sister-chromatid exchange frequencies estimated by ring chromosome analysis.

Ring chromosomes offer an opportunity to measure sister-chromatid exchange (SCE) frequencies without the use of an agent to differentiate sister chromatids: SCE frequencies can be determined from the number of dicentric rings formed in cells from a cell line carrying a monocentric ring chromosome. Ash is a pseudotetraploid Chinese hamster ovary cell line in which approximately 40% of metaphase cells have a large ring chromosome. We have used this cell line to investigate the spontaneous rate of SCE by determining the rate of dicentric ring formation and have compared this with the rate of loss of the ring chromosomes over time. In the absence of both [3H]thymidine and bromodeoxyuridine, the spontaneous rate of SCE in Ash cells was 0.12 SCEs/ring/cell cycle; this rate was increased by bromodeoxyuridine, by the polyfunctional alkylating agent mitomycin C, and by the poly(ADP-ribose) polymerase inhibitor 3-aminobenzamide. This indicates that spontaneous SCE occurs in this line and that not all 3-amino-benzamide-induced SCEs are dependent upon incorporated bromodeoxyuridine. Ring chromosomes were not lost over time as rapidly as predicted by the SCE frequencies observed. Non-disjunction of the dicentric ring, or anaphase bridge breakage followed by reunion to form one or two monocentric rings, are the most likely explanations for this discrepancy.

Animals↗

Passive electrical properties of cultured murine lymphoblast (L5178Y) with reference to its cytoplasmic membrane, nuclear envelope, and intracellular phases.

Dielectric dispersion measurements over a frequency range 0.01-100 MHz were made with the suspensions of a cultured cell line, mouse lymphoma L5178Y, and an attempt to explain the observed dielectric behavior by taking explicitly into consideration the possible involvement of cell nucleus has been presented. The use of a conventional "single-shell" model in which the cell is represented by a homogeneous sphere coated with a thin limiting shell phase did not duplicate the observed dispersion curves, whereas a "double-shell" model in which one additional concentric shell is incorporated into the "single-shell" model gave a much better fit between the observed and the predicted dispersion curves. Based on the latter model, we analyzed the raw data of dielectric measurements to yield a set of plausible electrical parameters for the lymphoma cell: CM approximately or equal to 1.0 muF/cm2, CN approximately or equal to 0.4 muF/cm2, epsilonk approximately or equal to 300, kc/ka approximately to or equal to 0.9, and kk/kc approximately or equal to 0.7. Here, CM and CN are the specific capacities of plasma and nuclear membranes; epsilon and k are the dielectric constant and conductivity with subscript a, c and k referring respectively to the extracellular, the cytoplasmic and the karyoplasmic phases.

Cell Line↗