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M J Mattina

Publications and source records attributed to M J Mattina.

3 recordsLinked to original sources

Chlordane uptake and its translocation in food crops.

Chlordane is a member of the persistent organic pollutants (POPs), a group of chemicals characterized by extremely long residence in the environment after application. Technical chlordane, composed of a large number of components, is a synthetic organochlorine substance that was used primarily as an insecticide. Uptake by root crops of persistent soil residues of chlordane was noted early in the chronology of the material. The present report is the first comprehensive study of the uptake of weathered soil residues of chlordane and its translocation throughout the tissues of food crops under both greenhouse and field conditions. The data show that for all 12 crops chlordane is not limited to root tissue but is translocated from the root to some of the aerial tissues. Chlordane accumulation in edible aerial tissue appears to be dependent on plant physiology. As expected, chlordane was detected in the edible root tissue of the three root crops examined, carrots, beets, and potatoes. In the remaining crops chlordane was detected in the edible aerial tissue of spinach, lettuce, dandelion, and zucchini, whereas it was not detected in edible aerial tissue of tomatoes, peppers, and corn; trace amounts of chlordane were detected in the edible aerial tissue of bush beans and eggplant. Under the conditions of the field trial the data indicate that for weathered chlordane residues, the soil-to-plant uptake route dominates over the air-to-plant uptake route. This is the case even when the soil concentration of the recalcitrant, weathered residues, for which volatilization is expected to be minimal, is as high as it would be directly following application. Greenhouse trials confirm this observation for zucchini, a member of the Cucurbitaceae family, which bioaccumulates weathered chlordane very efficiently in its edible fruits.

Biological Transport↗

Extraction, purification by solid-phase extraction and high-performance liquid chromatographic analysis of taxanes from ornamental Taxus needles.

Needles from ornamental yews (Taxus spp.) are known to contain significant amounts of the anticancer agent Taxol (paclitaxel), as well as other analogous taxane compounds. Methanol extracts the taxanes from the needles efficiently, but the crude methanolic extract contains large amounts of co-extractives in addition to the taxanes of interest. The crude extract may be fractionally partitioned using C18 solid-phase extraction (SPE), permitting the collection of a fraction in which the taxanes elute quantitatively. This fraction can then be analyzed directly by means of high-performance liquid chromatography. We have successfully scaled-up the quantity of crude extract partitioned by means of the SPE technique, using larger SPE cartridges prepared in our laboratory as well as using Empore extraction disks. SPE using the Empore disks permits us to collect large quantities of the taxane fraction for studies on its cytostatic effect on non-mammalian eukaryotic cells.

Chromatography, High Pressure Liquid↗