Depuration of microcystin-LR from the red swamp crayfish Procambarus clarkii with assessment of its food quality
In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish Procambarus clarkii is known to accumulate the toxins (microcystins) produced by Microcystis aeruginosa. Our aims here were to (1) quantify microcystin-LR in P...
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Published in | Aquaculture Vol. 285; no. 1; pp. 90 - 95 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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Amsterdam
Elsevier B.V
07.12.2008
Amsterdam: Elsevier Science Elsevier Elsevier Sequoia S.A |
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Abstract | In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish
Procambarus clarkii is known to accumulate the toxins (microcystins) produced by
Microcystis aeruginosa. Our aims here were to (1) quantify microcystin-LR in
P. clarkii's organs/tissues; (2) analyse differences in its content between size classes and between sexes; (3) develop protocols for the depuration of the toxin from crayfish; and (4) assess the quality of the crayfish abdominal muscle during depuration. The study was composed of two phases. In the first, the concentration of microcystin-LR in the hepatopancreas, stomach, intestine, and abdominal muscle of 102 crayfish was measured by the means of ELISA and was compared between small and large individuals and between sexes. In the second phase, 136 crayfish (64 males and 64 females) were subject to depuration for a maximum period of 21 days under two feeding regimes (
ad libitum, i.e. fed every day or restricted, i.e. once every third day). Sixteen crayfish were sacrificed at different times from the start of the treatment (3, 6, 9, 14, 17, and 21 days). Microcystin-LR was measured in the intestines and in the abdominal muscles of the treated crayfish and was compared to the values obtained from individuals sacrificed immediately upon capture. The abdominal muscle was also analysed for its quality by quantifying colour, water holding capacity, and composition (qualitative and quantitative) of the total lipids and fatty acids. The results showed that (1)
P. clarkii accumulates more toxin in the intestine and less in the abdominal muscle (the edible part); (2) microcystin-LR is less abundant in large (the marketable size) than in small individuals; and (3) its content differs between sexes in the hepatopancreas only. Besides, (4) microcystin-LR content decreased in the abdominal muscle, but not in the intestine, after a short period of depuration in the two feeding regimes and (5) depuration did not reduce the overall quality of crayfish meat. |
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AbstractList | In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish Procambarus clarkii is known to accumulate the toxins (microcystins) produced by Microcystis aeruginosa. Our aims here were to (1) quantify microcystin-LR in P. clarkii's organs/tissues; (2) analyse differences in its content between size classes and between sexes; (3) develop protocols for the depuration of the toxin from crayfish; and (4) assess the quality of the crayfish abdominal muscle during depuration. The study was composed of two phases. In the first, the concentration of microcystin-LR in the hepatopancreas, stomach, intestine, and abdominal muscle of 102 crayfish was measured by the means of ELISA and was compared between small and large individuals and between sexes. In the second phase, 136 crayfish (64 males and 64 females) were subject to depuration for a maximum period of 21 days under two feeding regimes (ad libitum, i.e. fed every day or restricted, i.e. once every third day). Sixteen crayfish were sacrificed at different times from the start of the treatment (3, 6, 9, 14, 17, and 21 days). Microcystin-LR was measured in the intestines and in the abdominal muscles of the treated crayfish and was compared to the values obtained from individuals sacrificed immediately upon capture. The abdominal muscle was also analysed for its quality by quantifying colour, water holding capacity, and composition (qualitative and quantitative) of the total lipids and fatty acids. The results showed that (1) P. clarkii accumulates more toxin in the intestine and less in the abdominal muscle (the edible part); (2) microcystin-LR is less abundant in large (the marketable size) than in small individuals; and (3) its content differs between sexes in the hepatopancreas only. Besides, (4) microcystin-LR content decreased in the abdominal muscle, but not in the intestine, after a short period of depuration in the two feeding regimes and (5) depuration did not reduce the overall quality of crayfish meat. In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish Procambarus clarkii is known to accumulate the toxins (microcystins) produced by Microcystis aeruginosa. Our aims here were to (1) quantify microcystin-LR in P. clarkii's organs/tissues; (2) analyse differences in its content between size classes and between sexes; (3) develop protocols for the depuration of the toxin from crayfish; and (4) assess the quality of the crayfish abdominal muscle during depuration. The study was composed of two phases. In the first, the concentration of microcystin-LR in the hepatopancreas, stomach, intestine, and abdominal muscle of 102 crayfish was measured by the means of ELISA and was compared between small and large individuals and between sexes. In the second phase, 136 crayfish (64 males and 64 females) were subject to depuration for a maximum period of 21 days under two feeding regimes (ad libitum, i.e. fed every day or restricted, i.e. once every third day). Sixteen crayfish were sacrificed at different times from the start of the treatment (3, 6, 9, 14, 17, and 21 days). Microcystin-LR was measured in the intestines and in the abdominal muscles of the treated crayfish and was compared to the values obtained from individuals sacrificed immediately upon capture. The abdominal muscle was also analysed for its quality by quantifying colour, water holding capacity, and composition (qualitative and quantitative) of the total lipids and fatty acids. The results showed that (1) P. clarkii accumulates more toxin in the intestine and less in the abdominal muscle (the edible part); (2) microcystin-LR is less abundant in large (the marketable size) than in small individuals; and (3) its content differs between sexes in the hepatopancreas only. Besides, (4) microcystin-LR content decreased in the abdominal muscle, but not in the intestine, after a short period of depuration in the two feeding regimes and (5) depuration did not reduce the overall quality of crayfish meat. [PUBLICATION ABSTRACT] Depuration of microcystin-LR from the red swamp crayfish, Procambarus clarkii with assessment of its food quality was investigated. The frequency and intensity of cynobacterial blooms increased due to the growing water eutrophication, with consequent threats to the ecology of the affected waterbodies and to human health. Consumption of toxin-contaminated water was implicated in the loss of livestock and wild animals in several countries, as well as in human intoxication. The results showed that microcystin content was significantly higher in small than in large crayfish in all the organs/tissues analysed. It was concluded that there was a need to adopt an appropriate diet that might reduce the negative effects recorded on some indicators of food quality. In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish Procambarus clarkii is known to accumulate the toxins (microcystins) produced by Microcystis aeruginosa. Our aims here were to (1) quantify microcystin-LR in P. clarkii's organs/tissues; (2) analyse differences in its content between size classes and between sexes; (3) develop protocols for the depuration of the toxin from crayfish; and (4) assess the quality of the crayfish abdominal muscle during depuration. The study was composed of two phases. In the first, the concentration of microcystin-LR in the hepatopancreas, stomach, intestine, and abdominal muscle of 102 crayfish was measured by the means of ELISA and was compared between small and large individuals and between sexes. In the second phase, 136 crayfish (64 males and 64 females) were subject to depuration for a maximum period of 21 days under two feeding regimes ( ad libitum, i.e. fed every day or restricted, i.e. once every third day). Sixteen crayfish were sacrificed at different times from the start of the treatment (3, 6, 9, 14, 17, and 21 days). Microcystin-LR was measured in the intestines and in the abdominal muscles of the treated crayfish and was compared to the values obtained from individuals sacrificed immediately upon capture. The abdominal muscle was also analysed for its quality by quantifying colour, water holding capacity, and composition (qualitative and quantitative) of the total lipids and fatty acids. The results showed that (1) P. clarkii accumulates more toxin in the intestine and less in the abdominal muscle (the edible part); (2) microcystin-LR is less abundant in large (the marketable size) than in small individuals; and (3) its content differs between sexes in the hepatopancreas only. Besides, (4) microcystin-LR content decreased in the abdominal muscle, but not in the intestine, after a short period of depuration in the two feeding regimes and (5) depuration did not reduce the overall quality of crayfish meat. |
Author | Tricarico, Elena Gherardi, Francesca Giorgi, Gianluca Brusconi, Sara Mastromei, Giorgio Bertocchi, Silvia Casalone, Enrico Parisi, Giuliana |
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Keywords | Procambarus clarkii Food quality Depuration Microcystin-LR Cyanobacteria Elimination Crayfish Macrura Feeding Crustacea Arthropoda Quality Bacteria Marsh Decapoda Invertebrata Aquaculture |
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Snippet | In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish
Procambarus... In the latest years, blooms of toxic Cyanobacteria have intensified worldwide, causing serious problems to human health. The edible crayfish Procambarus... Depuration of microcystin-LR from the red swamp crayfish, Procambarus clarkii with assessment of its food quality was investigated. The frequency and intensity... |
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SubjectTerms | Animal aquaculture Animal productions Aquaculture Bacteria Biological and medical sciences body size Cambaridae crayfish crayfish culture Crustacea Cyanobacteria Cyanophyta Depuration detoxification (processing) Digestive system fatty acid composition Fish Food Food quality Freshwater Fundamental and applied biological sciences. Psychology General aspects Invertebrates lipid composition Microcystin-LR Microcystis aeruginosa muscle tissues Procambarus clarkii quantitative analysis tissue distribution Toxicology Toxins Zoology |
Title | Depuration of microcystin-LR from the red swamp crayfish Procambarus clarkii with assessment of its food quality |
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