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K Woo

Publications and source records attributed to K Woo.

24 records · Page 2Linked to original sources

Fate maps of the zebrafish embryo.

In the past few years, we have seen a surge of interest in the zebrafish as a model system for the study of embryonic induction and patterning. This review summarizes our current knowledge of the organization of zebrafish fate maps during early development. Recent advances have addressed the relationship between early cleavage planes and the future dorsal axis, the pattern of cell mixing during blastula and gastrula stages, and the morphogenesis of the trunk neural keel. In addition, refined fate maps have become available for the embryonic shield, the central nervous system, and the heart. In combination with recent advances in molecular and genetic manipulations, these fate maps set the stage for new, more incisive, experimental approaches.

Animals↗

Order and coherence in the fate map of the zebrafish nervous system.

The zebrafish is an excellent vertebrate model for the study of the cellular interactions underlying the patterning and the morphogenesis of the nervous system. Here, we report regional fate maps of the zebrafish anterior nervous system at two key stages of neural development: the beginning (6 hours) and the end (10 hours) of gastrulation. Early in gastrulation, we find that the presumptive neurectoderm displays a predictable organization that reflects the future anteroposterior and dorsoventral order of the central nervous system. The precursors of the major brain subdivisions (forebrain, midbrain, hindbrain, neural retina) occupy discernible, though overlapping, domains within the dorsal blastoderm at 6 hours. As gastrulation proceeds, these domains are rearranged such that the basic order of the neural tube is evident at 10 hours. Furthermore, the anteroposterior and dorsoventral order of the progenitors is refined and becomes aligned with the primary axes of the embryo. Time-lapse video microscopy shows that the rearrangement of blastoderm cells during gastrulation is highly ordered. Cells near the dorsal midline at 6 hours, primarily forebrain progenitors, display anterior-directed migration. Cells more laterally positioned, corresponding to midbrain and hindbrain progenitors, converge at the midline prior to anteriorward migration. These results demonstrate a predictable order in the presumptive neurectoderm, suggesting that patterning interactions may be well underway by early gastrulation. The fate maps provide the basis for further analyses of the specification, induction and patterning of the anterior nervous system, as well as for the interpretation of mutant phenotypes and gene-expression patterns.

Animals↗

Fatigue in COPD.

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Chronic Disease↗

Cortical hyperostosis: a complication of prolonged prostaglandin infusion in infants awaiting cardiac transplantation.

BACKGROUND: Infants awaiting heart transplantation for congenital heart disease frequently require prostaglandin E1 (PGE1) infusion for prolonged periods. As a result, complications of prolonged PGE1 infusion, such as cortical hyperostosis, are being encountered more commonly. OBJECTIVE: To determine the incidence and severity of cortical hyperostosis in newborns requiring prolonged PGE1 infusion. METHODS: Chest radiographs of 86 infants receiving PGE1 infusion awaiting heart transplantation were reviewed. The chest radiographs were graded for the severity of cortical hyperostosis (no bony changes, minimal hyperostosis, or severe hyperostosis). Duration of PGE1 infusion, total PGE1 dose, and highest alkaline phosphatase were recorded for each patient. Infants were arbitrarily divided into three groups according to the duration of PGE1 infusion (< 30 days, 30 to 60 days, > 60 days). RESULTS: Fifty-three of the 86 infants (62%) had radiologic evidence of cortical hyperostosis. Forty-two of 80 infants (53%) had elevated alkaline phosphatase. The percentage of infants with hyperostosis increased with increasing duration of PGE1 infusion (42% at < 30 days; 87% at 30 to 60 days; 100% at > 60 days). The incidence and severity of cortical hyperostosis were related (by Kruskal-Wallis) to the duration of PGE1 infusion (P < .0001) and the total dose of PGE1 received (P < .0001). The highest alkaline phosphatase levels were observed in infants with the most severe grades of hyperostosis (P < .0001). The percentage of infants with elevated alkaline phosphatase increased with greater severity of hyperostosis (26% of infants with no bony changes, 59% with minimal changes, and 85% with severe changes). Two infants had symptomatic bone tenderness or swelling mimicking osteomyelitis. CONCLUSION: It is concluded that cortical hyperostosis is a frequent, often asymptomatic, side effect of prolonged PGE1 infusion that should be evaluated in any infant on long-term PGE1 therapy. When symptoms occur in infants awaiting transplantation, osteomyelitis must be excluded rapidly to avoid an unnecessary delay in transplantation.

Alprostadil↗

Inactivation of human hepatitis B virus DNA polymerase by pyridoxal 5'-phosphate.

Human hepatitis B virus (HBV) DNA polymerase activity was inhibited by pyridoxal 5'-phosphate (PLP) specifically and noncompetitively with respect to deoxythymidine triphosphate (DTTP). NaBH4 reduction of PLP-HBV core proteins resulted in the complete inactivation of HBV DNA polymerase, and PLP modification of the enzyme was though to be mediated through Schiff-base formation. HBV DNA polymerase has a Michaelis constant (Km) of 0.31 microM for dTTP and an apparent inhibition constant (Ki) of 0.2 mM for PLP. Its inactivation and modification by PLP may be useful in the study of not only the reaction mechanism of catalysis, but also the physicochemical nature of the enzyme.

Binding, Competitive↗