Chao, J.K.; Sheu, J.H.
STIP symposium on physical interpretation of solar/interplanetary and cometary intervals1987
STIP symposium on physical interpretation of solar/interplanetary and cometary intervals1987
AbstractAbstract
[en] Three interplanetary shock wave events are selected from the plasma and magnetic field data of Helios 1 and 2, IMP-8, and Voyagers 1 and 2 for study of the interactions of a weak interplantary shock with a nonuniform ambient solar wind. These events occurred during the periods 22-26 November 1977, 1-7 January 1978, and 2-5 April 1979, respectively. It is found that the shock surfaces of these events are highly distorted. In addition, a portion of the shock surface may be degenerated into a disturbance which does not satisfy the Rankine-Hugoniot jump conditions
Primary Subject
Source
National Aeronautics and Space Administration, Greenbelt, MD (USA). Goddard Space Flight Center; vp; Sep 1987; vp; STIP symposium on physical interpretation of solar/interplanetary and cometary intervals; Huntsville, AL (USA); 12-15 May 1987; Available from NTIS, PC A04/MF A01
Record Type
Report
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Conference; Numerical Data
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AbstractAbstract
[en] Soft corals of the genus Sinularia are being increasingly adopted to treat a wide variety of disease processes. However, the mechanism underlying its activity against human oral cancer cells is poorly understood. This study evaluates the cyototoxicity effects of the genus Sinularia extracts (S. grandilobata, S. parva, S. triangula, S. scabra, S. nanolobata and S. gibberosa) by SCC25 and HaCaT cells. The cell adhesion assay indicates that extracts reduce the cell attachment. Extracts exhibit a dose-dependent cytotoxic effect using MTS assay.Treatment of extracts to observe the morphological alterations in cells, membrane blebbing, nuclear condensation, and apoptotic bodies is demonstrated. Flow cytometry shows that extracts sensitized the cells in the G0/G1 and G2/M phases with a concomitant significantly increased sub-G1 fraction, suggesting cell death by apoptosis. Extracts of the genus Sinularia thus apparently cause apoptosis of SCC25 and HaCaT cells, and warrant further research investigating the possible antioral cancer compounds in these soft corals.
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Record Type
Journal Article
Journal
Journal of Toxicology (Print); ISSN 1687-8191; ; v. 2009(2009); p. 8
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