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1.
Braz. arch. biol. technol ; 53(1): 235-240, Jan.-Feb. 2010. ilus, tab
Article in English | LILACS | ID: lil-543210

ABSTRACT

The cadmium(Cd), copper(Cu) and lead(Pb) accumulation, as well as their relative content of different chemical forms in Sagittaria sagittifolia L. and Potamogeton crispus L. were determined. The results showed that both the plants had the ability to accumulate large amounts of Cd, Cu and Pb, and they absorbed metals in dose-dependent manners. The roots of S. sagittifolia appeared more sensitive to Cd and Pb than the leaves of P. crispus. The potential of Cu uptake by these two plant tissues was similar. Under the same concentration, the uptake of Cu for both the plants was higher than Pb and Cd, while that of Pb was lowest. The Cd, Cu and Pb existed with various forms in the plants. Cd and Pb were mainly in the NaCl extractable form in S. sagittifolia and P. crispus. The HAc and ethanol extractable Cu were the main forms in the root, whereas the ethanol extractable form was the dominant chemical form in the caulis and bulb of the S. sagittifolia L.

2.
Acta Nutrimenta Sinica ; (6)1956.
Article in Chinese | WPRIM | ID: wpr-561270

ABSTRACT

Objective: To observe the effects of carotenoids extracts from Potamogoton crispus L. (CEPC) on proliferation and apoptosis of Hela cell line. Method: The cell growth inhibition was tested in MTT assay and cell cycle arrest was measured by flow cytometry (FCM). Apoptotic cells were observed by fluorescent microscope and Laser scanning confocal microscopy (LSCM). LSCM was also used to determine the Ca2+ concentration in cells. Results: CEPC had strong inhibition effects on the cell growth. The cell cycle progression was arrested at G2/M phase. The typical characteristics of apoptotic cells such as chromatin condensation were observed by the fluorescent microscope and LSCM. The concentration of intracellular Ca2+ was remarkably increased after treatment of CEPC as compared with the control. Conclusion: Apoptosis of Hela cell line is the important anticancer mechanism of CEPC and the increase of intracellular Ca2+ level might participate in the process.

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