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Paralytic shellfish poisoning toxins

Kvitek, R. G. (1991). Sequestered paralytic shellfish poisoning toxins mediate glaucouswinged gull predation on bivalve prey. Auk 108,381-392. [Pg.480]

Determination of Paralytic Shellfish Poisoning Toxins by High Pressure Liquid Chromatography... [Pg.197]

Kvitek, R., DeGange, A. R., and Beitler, M. K., Paralytic shellfish poisoning toxins mediate feeding behaviours of sea otters, Limnol. Oceanog., 36, 393, 1991. [Pg.102]

Kvitek, R. G. and Beitler, M. K., Relative insensitivity of butter clam neurons to saxitoxin a preadaptation for sequestering paralytic shellfish poisoning toxins as a chemical defense, Mar. Ecol. Prog. Ser., 69, 47, 1991. [Pg.145]

P. Thibault, Ionspray mass spectrometry of marine toxins. III. Analysis of paralytic shellfish poisoning toxins by flow-injection analysis, liquid chromatography/mass spectrometry and capillary electrophoresis/mass spectrometry, Rapid Commun. Mass Spectrom., 6, 14-24 (1992). [Pg.319]

E. Jaime, C. Hummert, P. Hess and B. Luckas, Determination of paralytic shellfish poisoning toxins by high-performance ion-exchange chromatography, 7. Chromatogr., A, 929, 43-49 (2001). [Pg.319]

S.J. Locke and P. Thibault, Improvement in detection limits for the determination of paralytic shellfish poisoning toxins in shellfish tissue using capillary electrophoresis electrospray mass spectrometry and discontinuous buffer systems, Anal. Chem., 66, 3436-3446 (1994). [Pg.401]

Gago-Martinez, A., Rodriguez-Vazquez, J.A., andThibault, P, and Quilliam, M.A, 1996. Simultaneous occurrence of diarrhetic and paralytic shellfish poisoning toxins in Spanish mussels in 1993. Nat Toxins, 4(2), 72-79. [Pg.219]

Usup, G., Leaw, C. P., Cheah, M. Y, Ahmad, A. and Ng, B. K. Analysis of paralytic shellfish poisoning toxin congeners by a sodium channel receptor binding assay. Toxicon, 44, 37 3 (2004). [Pg.196]

Taleb, H., Vale, P., Jaime, E., Blaghen, M., 2001. Study of paralytic shellfish poisoning toxin profile in shellfish from the Mediterranean shore of Morocco". Toxicon, 39 (12) 1855-1861. [Pg.320]

Garthwaite, L, Ross, K.M., Miles, C.O., Briggs, L.R., Towers, N.R., Borrell, T., and Busby, R, Integrated enzyme-linked immunosorbent assay screening system for amnesic, neurotoxic, diarrhetic, and paralytic shellfish poisoning toxins found in New Zealand. J. AOACInt., 84, 1643, 2001. [Pg.46]

Lawrence, J.F. et al.. Quantitative determination of paralytic shellfish poisoning toxins in shellfish using prechromatographic oxidation and liquid chromatography with fluorescence detection interlaboratory study, JAOAC Int 87, 83, 2004. [Pg.161]

Stability and Chemical Transformation of Paralytic Shellfish Poisoning Toxins. 165... [Pg.165]

STABILITY AND CHEMICAL TRANSFORMATION OF PARALYTIC SHELLFISH POISONING TOXINS... [Pg.165]

Paralytic shellfish poisoning toxins consist of a group of toxin components, the structures of which are similar to each other. Since Schantz et al. [3] succeeded in determining the chemical structure of saxitoxin (STX), various derivatives of STX have been isolated from toxic dinoflagellates and toxin-contaminated shellfish [4-16]. Currently, more than 20 components are known [17]. [Pg.165]

Montojo, U.M., et al.. Remarkable difference in accumulation of paralytic shellfish poisoning toxins among bivalve species exposed to Pyrodinium bahamense var. compressum bloom in Masinloc bay, Philippines, Toxicon, 48, 85, 2006. [Pg.175]

Indrasena, W.M. and Gill, T.A., Fluorometric detection of paralytic shellfish poisoning toxins, Anal. Biochem. 264, 230, 1998. [Pg.193]

Sullivan, J.J. and Wekell M.M., Determination of paralytic shellfish poisoning toxins by high pressure liquid chromatography, in Seafood Toxins, Ragelis E.P., Ed., ACS, Washington DC, 1984, 197. [Pg.194]

Lawrence, J.F., Menard, C., and Cleroux, C., Evaluation of prechromatographic oxidation for hqnid chromatographic determination of paralytic shellfish poisoning toxins in shellfish, J. AOAC Int, 78, 514, 1995. [Pg.194]

Gago-Martmez, A. et al.. Effect of pH on the oxidation of paralytic shellfish poisoning toxins for analysis by liquid chromatography, J. Chromatogr. A., 905, 351, 2001. [Pg.195]

Quilliam, M.A., Janecek, M., and Lawrence, J.R, Characterization of the oxidation products of paralytic shellfish poisoning toxins by hquid chromatography/mass spectrometry. Rapid Commun Mass Spectrom., 1, 482, 1993. [Pg.195]

Buzy, A., Thibault, R, and Layccok, M.V., Development of a capillary electrophoresis method for the characterisation of enzymatic products arising from the carbamoylase digestion of paralytic shellfish poisoning toxins, J. Chromatogr. A, 688, 301, 1994. [Pg.195]

Chn, E.S. et al.. Screening of paralytic shellfish poisoning toxins in natnraUy occnrring samples with three different direct competitive enzyme-finked immnnosorbent assays, Agric. Food Chem., 44,4043, 1996. [Pg.196]

Usleber, E. et al.. Comparison of enzyme immnnoassay and monse bioassay for determining paralytic shellfish poisoning toxins in shellfish, FoodAddit. Contam., 14, 193, 1997. [Pg.196]

Okomura, M., Tsuzuk, H., and Tomita, B-I. A rapid detection method for paralytic shellfish poisoning toxins by cell bioassay. Toxicon, 46, 93, 2005. [Pg.206]


See other pages where Paralytic shellfish poisoning toxins is mentioned: [Pg.186]    [Pg.184]    [Pg.40]    [Pg.105]    [Pg.141]    [Pg.146]    [Pg.3]    [Pg.5]    [Pg.205]   
See also in sourсe #XX -- [ Pg.310 , Pg.397 ]




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