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Biomedical subjects

J C Shih

Publications and source records attributed to J C Shih.

At least 19 recordsLinked to original sources

Three-dimensional ultrasound diagnosis of Larsen syndrome with further characterization of neurological sequelae.

Larsen syndrome consists of skeletal dysplasia with multiple joint dislocations and a characteristic facies. The basis of this abnormality is a generalized mesenchymal disorder involving connective tissues. We describe our findings in a woman who was referred at 28 weeks' gestation due to multiple fetal anomalies suspected initially at an 18-week ultrasound examination. On three-dimensional (3D) ultrasound we found the fetus had bilateral genu recurvatum. Further 3D examination at 36 weeks confirmed the lower limb anomaly and revealed facial anomalies that led to the diagnosis of Larsen syndrome. An elective Cesarean section was performed at 38 weeks' gestation to minimize neurological sequelae. Magnetic resonance imaging was performed postnatally and showed pachygyria, colpocephaly and agenesis of the corpus callosum. In this case, 3D ultrasound facilitated the prenatal diagnosis of Larsen syndrome. A careful prenatal investigation for other associated anomalies such as those of the cardiovascular or neurological systems is warranted with this diagnosis. These associated lesions are likely to have a greater impact on prognosis than the classic symptoms of Larsen syndrome and a collaborative approach is necessary to optimize delivery and postnatal management of an affected fetus.

Adult↗

Quantitative three-dimensional power Doppler ultrasound predicts the outcome of placental chorioangioma.

The relationship of large and vascularized chorioangiomas to adverse pregnancy outcome is well recognized. We present a patient with a large placental tumor and signs of impending fetal cardiac failure. The angioarchitecture of the tumor depicted by three-dimensional (3D) power Doppler ultrasound enabled us to accurately diagnose a placental chorioangioma. During the follow-up period, quantitative flow data obtained using 3D power Doppler indicated altered hemodynamics in the tumor and concomitant improvement in the condition of the fetus, enabling us to manage the mother conservatively. Spontaneous delivery occurred at 38 weeks without any complications. This report demonstrates the potential value of 3D power Doppler in prenatal diagnosis and monitoring of pregnancies complicated by large, vascularized chorioangioma.

Adult↗

MAO-B knockout mice exhibit deficient habituation of locomotor activity but normal nicotine intake.

Low levels of monoamine oxidase-B (MAO-B) activity, such as those observed in smokers, are also associated with behavioral traits such as a heightened responsiveness to novelty. However, the exact mechanism by which low MAO-B activity influences smoking and heightened responsiveness to novelty is still poorly understood. We used MAO-B knockout (KO) mice to test the hypothesis that MAO-B concomitantly affects locomotor responses in a novel inescapable open field and nicotine intake. Male wild-type (WT) and MAO-B KO mice were placed in an inescapable open field and their horizontal locomotor activity was measured for 30 min per day for 5 days. MAO-B KO mice exhibited impaired within-session habituation of locomotor activity, as compared to WT mice. Separate groups of male WT and MAO-B KO mice were individually housed in their home cages with two water bottles. One of the bottles contained tap water and the other contained nicotine (0, 3.125, 6.25, 12.5, 25, 50 or 100 micro g/ml). The total amount of water and nicotine solution consumed was measured every three days for 16 days. MAO-B KO mice and WT mice consumed equal amounts of nicotine and exhibited comparable concentration-dependent nicotine preference and aversion over a period of 16 days. The data suggest that the absence of MAO-B impairs the ability of mice to habituate in the inescapable environment, but does not alter their nicotine intake.

Administration, Oral↗

Regulation of MAO-A and MAO-B gene expression.

MAO A and B genes are made of 15 exons with identical exon-intron organization. They are located on X-chromosome organized in opposite direction, tail to tail with 24 kb apart. Both promoters are GC-rich and regulated by transcription factor Sp1. However, they have distinctly different features. MAO B gene, but not MAO A gene, has TATA box. MAO B promoter contains two clusters of overlapping Sp1 sites, the CACCC repressor element. Transcription factors Sp1 and Sp4 can activate MAO B promoter activity through the proximal cluster of Sp1 sites and its activation can be repressed by the over-expression of Sp3 and a related family member, BTEB2. Decreased methylation and transcription repressor Sp3 upregulate human MAO B, but not MAO A, gene expression during Caco-2 differentiation. MAO B, but not MAO A gene, could be activated by PMA (phorbol 12-myristate 13-acetate) by protein kinase C, MAPkinase signal transduction pathway involves cJun and Egr-1. The differences in MAO A and B gene regulation may explain the different tissue-specific expression and functions of these two important isoenzymes.

Animals↗

Increased baroreceptor response in mice deficient in monoamine oxidase A and B.

The recent development of mice doubly deficient for monoamine oxidase A and B (MAO-A/B, respectively) has raised questions about the impact of these mutations on cardiovascular function, in so far as these animals demonstrate increased tissue levels of the vasoactive amines serotonin, norepinephrine, dopamine, and phenylethylamine. We recorded femoral arterial pressures and electrocardiograms in adult MAO-A/B-deficient mice during halothane-nitrous oxide anesthesia as well as 30 min postoperatively. During both anesthesia and recovery, systolic, diastolic, and mean arterial pressures were 10-15 mmHg lower in MAO-A/B-deficient mice compared with normal controls (P < 0.01). Mutants also showed a greater baroreceptor-mediated reduction in heart rate in response to hypertension after intravenous pulses of phenylephrine or angiotensin II. Tachycardia elicited in response to hypotension after nitroprusside was greater in mutants than in controls. Heart rate responsiveness to changes in arterial pressure was abolished after administration of glycopyrrolate, with no differences in this phenomenon noted between genotypes. These data suggest that prevention of hypertension may occur in chronic states of catecholaminergic/indoleaminergic excess by increased gain of the baroreflex.

Adrenergic beta-Antagonists↗

Heart rate dynamics in monoamine oxidase-A- and -B-deficient mice.

Heart rate (HR) dynamics were investigated in mice deficient in monoamine oxidase A and B, whose phenotype includes elevated tissue levels of norepinephrine, serotonin, dopamine, and phenylethylamine. In their home cages, spectral analysis of R-R intervals revealed more pronounced fluctuations at all frequencies in the mutants compared with wild-type controls, with a particular enhancement at 1-4 Hz. No significant genotypic differences in HR variability (HRV) or entropies calculated from Poincaré plots of the R-R intervals were noted. During exposure to the stress of a novel environment, HR increased and HRV decreased in both genotypes. However, mutants, unlike controls, demonstrated a rapid return to baseline HR during the 10-min exposure. Such modulation may result from an enhanced vagal tone, as suggested by the observation that mutants responded to cholinergic blockade with a decrease in HRV and a prolonged tachycardia greater than controls. Monoamine oxidase-deficient mice may represent a useful experimental model for studying compensatory mechanisms responsible for changes in HR dynamics in chronic states of high sympathetic tone.

Animals↗

Modulation of [3H]quinpirole binding at striatal D2 dopamine receptors by a monoamine oxidaseA-like site: evidence from radioligand binding studies and D2 receptor- and MAO(A)-deficient mice.

[3H]Quinpirole is a dopamine agonist with high affinity for the D2 and D3 dopamine receptors. A variety of monoamine oxidase inhibitors (MAOIs) inhibit equilibrium binding of [3H]quinpirole binding in rat striatal membranes suggesting that MAOIs interact with a novel binding site that is labeled by [3H]quinpirole or that allosterically modulates [3H]quinpirole binding. To determine whether the D2 receptor is essential for [3H]quinpirole binding and/or modulation of [3H]quinpirole binding by MAOIs, D2 receptor-deficient mice were studied. [3H]Quinpirole binding was decreased in D2 receptor-deficient mice to 3% of that observed in wild-type controls indicating that [3H]quinpirole binding is associated with the D2 dopamine receptors. Then, in an attempt to label the site mediating the modulation of [3H]quinpirole binding, binding of the MAOI [3H]Ro 41-1049 was characterized in rat striatal membranes. [3H]Ro-41-1049 labeled a single binding site with a pharmacological profile with respect to MAOIs that was similar to both [3H]quinpirole binding (Spearman r=0.976) and MAO(A) activity. To determine whether MAO(A) plays a role in the modulation of [3H]quinpirole binding by MAOIs, MAO(A)-deficient mice were examined. In these mice, [3H]Ro-41-1049 binding was decreased to 7% of wild-type control. [3H]Spiperone binding was unaltered. Spiperone-displaceable [3H]quinpirole binding was decreased to 43% of wild-type control; however, the remaining [3H]quinpirole binding in MAO(A)-deficient animals was inhibited by Ro 41-1049 similar to wild-type. [3H]Ro-41-1049 binding was not decreased in D2 receptor-deficient mice. These data suggest that [3H]Ro-41-1049 labels multiple sites and that MAOIs modulate [3H]quinpirole binding to the D2 receptor via interactions at a novel, non-MAO binding site with MAO(A)-like pharmacology.

Animals↗

Biochemical, behavioral, physiologic, and neurodevelopmental changes in mice deficient in monoamine oxidase A or B.

The availability of mutant mice that lack either MAO A or MAO B has created unique profiles in the central and peripheral availability of serotonin, norepinephrine, dopamine, and phenylethylamine. This paper summarizes some of the current known phenotypic findings in MAO A knock-out mice and contrast these with those of MAO B knock-out mice. Differences are discussed in relation to the biochemical, behavioral, and physiologic changes investigated to date, as well as the role played by redundancy mechanisms, adaptational responses, and alterations in neurodevelopment.

Animals↗

Effects of carboxyl-terminal truncations on the activity and solubility of human monoamine oxidase B.

Monoamine oxidase is an outer mitochondrial membrane protein that catalyzes the deamination of a number of neurotransmitters and dietary amines. To determine the roles of the carboxyl-terminal amino acids on the activity and solubility of human monoamine oxidase (MAO B), 10 sequential mutants were made with stop codons at amino acid positions 511, 504, 498, 492, 486, 481, 476, 467, 417, and 397, respectively. All truncated mutants were expressed in Sf21 insect cells using baculovirus, and the enzyme kinetic parameters were determined. Truncations at amino acid positions 511, 504, and 498 slightly decreased MAO B catalytic activity and had no significant changes on deprenyl inhibition. Further deletions up to amino acid 417 decreased the specific activity 10--100-fold without significant changes of the K(m) for phenylethylamine or dopamine or the IC(50) for deprenyl and clorgyline. The truncation mutant C397, which lacks covalently attached FAD, was inactive. Progressive carboxyl-terminal truncations up to position 481 were correlated with increased solubility of MAO B mutants. 47% of the activity of the truncated C481 was found in the 105,000 x g supernatant in the absence of detergent. However, further truncated mutants, C476, C467, and C417, remained associated with the membrane fraction. In contrast to crude homogenate, the water-soluble C481 mutant was rapidly inactivated at 4 degrees C and 37 degrees C, which indicates that the membrane environment is required for the stability of MAO B. Expression of the green fluorescent protein-MAO B C481 fusion protein revealed that this mutant was located in the cytoplasm, whereas its counterpart in MAO A, truncated mutant C490, was located on the mitochondria. These results suggest that the carboxyl-terminal amino acid residues 417--520 of MAO B are not directly involved in the active site but are required for maintaining the appropriate conformation and interaction with the outer mitochondrial membrane. The different solubilities of the various carboxyl-terminal truncation mutants indicate that the interaction of MAO B with mitochondrial membrane is not simply anchoring through the carboxyl-terminal hydrophobic tail. Further, our results suggest that the carboxyl-terminal of MAO A and B plays different roles in mitochondrial attachment.

Amino Acid Sequence↗

Biochemical effects of the monoamine neurotoxins DSP-4 and MDMA in specific brain regions of MAO-B-deficient mice.

Previous studies reported that drugs acting as monoamine oxidase (MAO)-B inhibitors prevented biochemical effects induced by the neurotoxins N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine (DSP-4) and 3,4-methylenedioxymethamphetamine (MDMA, "ecstasy"). In this study, we administered DSP-4 (50 mg/kg) or MDMA (50 mg/kg x 2, 2 h apart) to MAO-B deficient mice. Monoamine content in various brain regions (cerebellum, frontal cortex, hippocampus, hypothalamus, striatum, substantia nigra) was assayed 1 week after neurotoxin administration. Injection of DSP-4 to wild-type mice caused a marked norepinephrine (NE) loss in specific brain regions. Unexpectedly, DSP-4 caused similar effects in MAO-B-deficient and in wild-type mice in all brain regions investigated. These results suggest that MAO-B is not involved in DSP-4 toxicity. In wild-types, the neurotoxin MDMA induced both serotonin (5HT) and dopamine (DA) depletion in specific brain areas. In MAO-B-deficient mice, 5HT depletion observed in wild-types did not occur. In contrast, MDMA produced a more pronounced DA loss in knockout mice compared with wild-types. The present findings, together with previous data obtained using selective enzyme inhibitors, suggest that MAO-B is not involved in the mechanism of action of DSP-4, whereas it plays opposite roles in MDMA-induced DA and 5HT depletions.

Animals↗

2-Naphthylamine, a compound found in cigarette smoke, decreases both monoamine oxidase A and B catalytic activity.

Cigarette smokers exhibit a lower monoamine oxidase (MAO; EC 1.4.3.4) activity than nonsmokers. MAO is located in the outer membrane of mitochondria and exists as two isoenzymes, MAO A and B. MAO A prefers 5-hydroxytryptamine (serotonin), and MAO B prefers phenylethylamine (PEA) as substrate. Dopamine is a substrate for both forms. 2-Naphthylamine is a carcinogen found in high concentrations in cigarette smoke. The results of this study show that 2-naphthylamine has the ability to inhibit mouse brain MAO A and B in vitro by mixed type inhibition (competitive and non-competitive). The Ki for MAO A was determined to be 52.0 microM and for MAO B 40.2 microM. The inhibitory effect of 2-naphthylamine on both MAO A and B catalytic activity, supports the hypothesis that smoking decreases MAO activity in vivo, instead that smokers with lower MAO activity are more prone to become a smoker.

2-Naphthylamine↗

Prenatal diagnosis and genetic analysis of type I and type II thanatophoric dysplasia.

Thanatophoric dysplasia (TD) is one of the most common neonatal lethal skeletal dysplasias. Prenatal sonographic and molecular genetic diagnoses of three cases of TD type I (TD1) and one case of TD type II (TD2) are presented here. Two fetuses of TD1 were characterized by polyhydramnios, macrocephaly, short limbs, a narrow thoracic cage and curved short femora, but without a cloverleaf skull at 27 and 31 weeks' gestation, respectively. The third fetus with TD1 was, however, not associated with macrocephaly, polyhydramnios, chest narrowing and severe femoral bowing on prenatal ultrasound at 18 weeks' gestation. The TD2 fetus was characterized by polyhydramnios, short limbs, a narrow thoracic cage, straight short femora, hydrocephalus and a cloverleaf skull at 24 weeks' gestation. Three-dimensional ultrasound was able to enhance the visualization of thickened, redundant skin folds and craniofacial and limb deformities associated with TD. Molecular analysis of the fibroblast growth factor receptor 3 (FGFR3) gene by restriction enzyme digestion analysis and direct sequencing using cultured amniotic fluid cells or cord blood cells revealed a missense mutation of 742C-->T (Arg248Cys) in all cases with TD1 and a missense mutation of 1948A-->G (Lys650Glu) in the case with TD2. The present report shows that adjunctive applications of molecular genetic analysis of the FGFR3 gene and three-dimensional ultrasound are useful for prenatal diagnosis of TD.

Adult↗

Three-dimensional ultrasonography in early pregnancy.

Three-dimensional ultrasound was introduced into clinical use over a decade ago. Early attempts on three-dimensional ultrasound were primitive and limited to experimental use only. Recently, it was used as a powerful tool to display three-dimensional fetal appearance and assess normal and pathological conditions. Because of the improvement in image resolution and reconstruction speed, three-dimensional ultrasound is now more and more popular in many centers, and used commonly as an adjunct in prenatal diagnosis. Indeed, a skillful sonographer may usually make the correct diagnosis of fetal anomaly with simply two-dimensional ultrasound. Nonetheless, the situation is gradually changing, because some anomalies have been diagnosed only based on the findings of three-dimensional ultrasound. In spite of that, the application of three-dimensional ultrasound is still less discussed in early pregnancy. In this article, the authors clarify the capability of three-dimensional ultrasound in different anatomic areas, and catalog its clinical merits in the early pregnancy to date. We also present the safety guidelines for its use in the first trimester.

Embryonic and Fetal Development↗

Regulation of human monoamine oxidase B gene by Sp1 and Sp3.

The human monoamine oxidase (MAO) B plays a major role in the degradation of biogenic and dietary amines such as phenylethylamine, benzylamine, dopamine, and tyramine. We previously showed that the -246/-99 MAO B promoter region exhibited the highest activity and contained two clusters of overlapping Sp1 sites, a CACCC element and a TATA box. Here, using a series of 10 deletion constructs of the 2-kilobase pair 5'-flanking sequence, we identified additional potential regulatory elements, including activator proteins 1 and 4, CAAT, GATA, upstream stimulatory factor (USF), estrogen receptor (ER), and sex-determining region Y-box 5 (SOX5). Analysis of nine site-directed mutations of -246/-99 region reveals that both clusters of Sp1 sites contribute positively whereas the CACCC element contributes negatively to the transcriptional activity. Gel shift analysis demonstrates that in addition to Sp1, Sp3 can interact with both clusters of Sp1 sites. Cotransfection experiments show that Sp1 and its closely related family member Sp4 can trans-activate MAO B promoter activity through the proximal cluster of Sp1 sites and its activation can be repressed by the over-expression of Sp3 and a related family member BTEB2. These results suggest that the binding to the overlapping Sp1 sites by various members of Sp family is important for the regulation of the MAO B gene expression.

Base Sequence↗

First-trimester Down's syndrome screening by fetal nuchal translucency measurement in Taiwan.

BACKGROUND: Fetal nuchal translucency (NT) measurement is now widely used in many Western countries as a screening tool for Down's syndrome during the first trimester. However, at present there is no data on its use in Taiwan. The purpose of the present study was to evaluate the efficacy of NT measurement in first-trimester Down's syndrome screening in Taiwan. METHODS: We conducted a prospective study from October 1997 to May 1999. Sonographic measurement of fetal NT was performed in 1,249 fetuses at 9-14 weeks of gestation. Transabdominal ultrasound scanning was performed to obtain a sagittal section of the fetus for measuring the crown-rump length (CRL) and the maximum thickness of the subcutaneous translucency between the skin and the soft tissue overlying the cervical spine. Two different cut-off points were used for screening: a fixed cut-off point of at least 2.5 mm and a CRL-related cut-off point. In the latter method, fetuses with an NT measurement in the 95th percentile were considered at high risk for Down's syndrome. RESULTS: Three fetuses had Down's syndrome, with NT measurements of 2.1 mm, 2.7 mm, and 4.0 mm. The false positive rates for the fixed cut-off point and CRL-related cut-off point were 6.3% and 4.6%, respectively. Both methods had a sensitivity of 66.7%. However, the screening program using the CRL-related cut-off point had two advantages: a higher specificity (95.5% vs 93.8%) and a more reasonable distribution pattern for screening. CONCLUSION: This study showed that NT measurement is a potential screening tool for Down's syndrome during the first trimester in Taiwan. Using CRL-related cut-off points for screening is more reasonable than using a fixed cut-off point.

Adult↗

In utero progressive pulmonary stenosis successfully treated with transcatheter intervention after delivery.

It is unclear whether pulmonary stenosis with intact ventricular septum is a secondary cardiac malformation. We report an infant with pulmonary stenosis (diagnosed by fetal echocardiography) with progressive obstruction in late gestation who presented with increasing transvalvular pressure gradients (15 mm Hg at 22 weeks' gestation to 47 mm Hg at 35 weeks). The tricuspid/mitral valve annulus ratio decreased from 1.25 at 24 weeks' gestation to 0.96 at 33 weeks. At 38 weeks' gestation, a male infant weighing 3,524 g, with Apgar scores of 9 and 9 at 1 and 5 minutes, respectively, was delivered by cesarean section. Critical pulmonary stenosis was confirmed by postnatal catheterization. These findings support the postulation that pulmonary stenosis is a progressive disorder. After percutaneous balloon dilatation, the transvalvular pressure gradient decreased and the right ventricular cavity increased gradually. The transvalvular pressure gradient had decreased to 15 mm Hg and the tricuspid/mitral valve annulus ratio was 0.93 at the age of 2 years.

Adult↗

Substrate and inhibitor specificities for human monoamine oxidase A and B are influenced by a single amino acid.

Monoamine oxidase (MAO) is responsible for the oxidation of biogenic and dietary amines. It exists as two isoforms, A and B, which have a 70% amino acid identity and different substrate and inhibitor specificities. This study reports the identification of residues responsible for conferring this specificity in human MAO A and B. Using site-directed mutagenesis we reciprocally interchanged three pairs of corresponding nonconserved amino acids within the central portion of human MAO. Mutant MAO A-I335Y became like MAO B, which exhibits a higher preference for beta-phenylethylamine than for the MAO A preferred substrate serotonin (5-hydroxytryptamine), and became more sensitive to deprenyl (MAO B-specific inhibitor) than to clorgyline (MAO A-specific inhibitor). The reciprocal mutant MAO B-Y326I exhibited an increased preference for 5-hydroxytryptamine, a decreased preference for beta-phenylethylamine, and, similar to MAO A, was more sensitive to clorgyline than to deprenyl. These mutants also showed a distinct shift in sensitivity for the MAO A- and B-selective inhibitors Ro 41-1049 and Ro 16-6491. Mutant pair MAO A-T245I and MAO B-I236T and mutant pair MAO A-D328G and MAO B-G319D reduced catalytic activity but did not alter specificity. Our results indicate that Ile-335 in MAO A and Tyr-326 in MAO B play a critical role in determining substrate and inhibitor specificities in human MAO A and B.

Amino Acid Sequence↗