Risks of metal toxycoses from the reception of food of natural origin in the coastal line of the Northern Seas
- Authors: Andreev V.P.1, Andriyanov A.I.1, Plakhotskaya Z.V.1
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Affiliations:
- S.M. Kirov Military Medical Academy
- Issue: Vol 97, No 3 (2018)
- Pages: 254-258
- Section: FOOD HYGIENE
- Published: 14.10.2020
- URL: https://rjsocmed.com/0016-9900/article/view/640355
- DOI: https://doi.org/10.47470/0016-9900-2018-97-3-254-258
- ID: 640355
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Full Text
Abstract
Due to the multifold gain of industrial emissions of heavy metals in the world the danger of the use wild plants and animals in food has increased. Seaweed and shellfish have the high ability to accumulate toxins in their bodies. There is considered the intake of aquatic organisms of the Northern seas with food, taken directly from their habitats. The analysis of available literature data showed that in the conditions of the White and Barents seas, the probability of metal toxicosis seem to be negligible.
About the authors
Vladimir P. Andreev
S.M. Kirov Military Medical Academy
Author for correspondence.
Email: vpandreev@mail.ru
MD, PhD, Senior researcher of the Research Department of Nutrition and Water Supply of the Research Center of the S.M. Kirov Military Medical Academy, St. Petersburg, 194044, Russian Federation.
e-mail: vpandreev@mail.ru
Russian FederationA. I. Andriyanov
S.M. Kirov Military Medical Academy
Email: noemail@neicon.ru
Russian Federation
Z. V. Plakhotskaya
S.M. Kirov Military Medical Academy
Email: noemail@neicon.ru
Russian Federation
References
- Andreev V.P., Andriyanov A.I. Food Resources of a Coastal Zone of the North Seas [Pishchevye resursy beregovoy zony Severnykh morey]. St. Petersburg: RGPU im. A.I. Gertsena; 2014. (in Russian)
- Clemens S. Toxic metal accumulation, responses to exposure and mechanisms of tolerance in plants. Biochimic. 2006; 88 (11): 1707–19.
- Korovkina N.V., Bogdanovich N.I., Kutakova N.A. Research of structure of brown seaweed of the White sea for the purpose of the further processing. Khimiya rastitel’nogo syr’ya. 2007; (1): 59–64. (in Russian)
- Podkorytova A.V. Modern lines and aspects in technology of sea seaweed-makrofitov. In: The Collection of Theses of the International Seminar «Development of Water Biological Resources of Arctic Regions and the International Cooperation» [Sbornik tezisov mezhdunarodnogo seminara «Osvoenie vodnykh biologicheskikh resursov Arktiki i mezhdunarodnoe sotrudnichestvo»]. Murmansk: MGTU; 2010. (in Russian)
- Potapov V.V., Muradov S.V., Kaplina A.M. Seaweed makrofity as concentrators of heavy metals. In: Materials of I All-Russia Scientifically-practical Conference «Ecology of Kamchatka and a Region Sustainable Development» [Materialy I Vserossiyskoy nauchno-prakticheskoy konferentsii «Ekologiya Kamchatki i ustoychivoe razvitie regiona»]. Petropavlovsk-Kamchatskiy; 2013: 230–3. (in Russian)
- Bailey R.S., Stokes P.M. Evaluation of filamentous algae as biomonitors of metal accumunation on softwater lakes: A multivariateapproach. Aquat. Toxicol. and Hazard Assessment 7th symp., Milvaukee. Wis. Phyladelphia; 1985.
- Saenko G.N. Metals and Halogens in Sea Organisms [Metally i galogeny v morskikh organizmakh]. Moscow: Nauka; 1992: 200.
- Kaixing L., Tang J.J., Jiang D. Yingyong shengtai xuebao. Chin. J. Appl. Ecol. 2006; 17 (1): 118–22.
- Costa S., Crespo D., Henriques B.M.G., Pereira E., Duarte A.C., Pardal M.A. Kinetics of mercury accumulation and its effects on Ulva lactuca growth rate at two salinities and exposure conditions. Water, Air, and Soil Pollut. 2011; 217 (1-4): 689–99.
- Kang K.H., Sui Z. Removal of eutrophication factors and heavy metal from a closed cultivation system using the macroalgae, Gracilaria sp. (Rhodophyta). Oceanol. and limnol. 2010; 28 (6): 1127–30.
- Kumar K., Ganesan K., Rao P.V. Heavy metal chelation by non-living biomass of three colc forms of Kappaphycus alvarezii (Doty) Doty. J. Appl. Phycol. 2008; 2 (1): 63–6.
- Patron-Prado M., Casas-Valdez M., Serviere-Zaragoza E., Zenteno-Savín T., Lluch-Cota D.B., Méndez-Rodríguez L. Biosorption capacity for cadmium of brown seawed Sargassum sinicola and Sargassum lapazeanum in the Gulf of California. Water, Air and Soil Pollut. 2011; 221 (1-4): 137–44.
- Ipatova V.I. Adaptation of Water Plants to Stressful Abiotic to Factors of Environment [Adaptatsiya vodnykh rasteniy k stressovym abioticheskim faktoram sredy]. Moscow: Grafikon-print; 2005. (in Russian)
- Wang J.M., de Souza R., Kendall C.W., Emam A., Jenkins D.J. Colonic health: fermentation and short chain fatty acids. J. Clin. Gastroenterol. 2006; 40 (3): 235–43.
- Aminina N.M., Vishnevskaya T.I. Research of processes of extraction biogene and toxic elements from the brown seaweed growing in various on impurity water areas of Sea of Japan. Izvestiya TINRO (Tikhookeanskogo nauchno-issledovatel’skogo rybokhozyaystvennogo tsentra). 2011; 164: 384–91. (in Russian)
- Bryan G.W., Hummerstone L.G. Brown seawed as indicator of heavy metals in estuaries in south-west England. J. Mar. Biol. Assoc. 1973; 53: 705–20.
- Kal’chenko E.I. Assessment of some laminariyevykh the seaweed growing at east coast of Kamchatka, as source of biologically active substances. In: Theses of reports of 3 International scientifically-practical conferences «Sea coastal ecosystems» [Tezisy dokladov 3 Mezhdunarodnoy nauchno-prakticheskoy konferentsii «Morskie pribrezhnye ekosistemy»]. Vladivostok; 2008: 321. (in Russian)
- Khotimchenko M.Yu. Sorption properties and pharmacological activity not starched polysaccharides: Diss. Vladivostok; 2011. (in Russian)
- Pomin V.H., Mouräo P.A.S. Structure, biology, evolution and medical importance of sulfated fucans and galactans. Glycobiology. 2008; 18: 1016–27.
- Collén P.N., Lemoine M., Daniellou R., Guégan J.P., Paoletti S., Helbert W. Enzymatic degradation of κ-carrageenan in aqueous solution. Biomacromolecules. 2009; 10: 1757–67.
- Caffall K.H., Mohnen D. The structure, function, and biosynthesis of plant cell wall pectic polysaccharides. Carbohydr. Res. 2009; 344: 1879–900.
- Vijayaraghavan K., Mahadevan Arun., Umid Man J., Balasubramanian R. Biosorption of As (V) onto the shells of the crab (Portunus sanguinolentus): Equilibrium and kinetic studies. Ind. Eng. Chem. Res. 2009; 48 (7): 3589–94.
- Golikov A.N., Sirenko B.I., Golikov A.A., Petryashev V.V., Gagaev S.Yu. Distribution of ground biocenoses shoal of sea of Chukotsk by results of diving researches. Ekosistemy i bioresursy Chukotskogo morya i sopredel’nykh akvatoriy. 2009; (64): 56–62. (in Russian)
- Slobodenyuk A.F., Chelomin V.P., Bel’cheva N.N, Kumeyko V.V. Research of mechanisms of accumulation and detoxication cadmium at a seaside comb Mizuhopecten yessoensis. In: Materials of 2 scientific conferences with participation of the CIS countries «Modern problems of physiology and biochemistry of water organisms» [Materialy 2 nauchnoy konferentsii s uchastiem stran SNG «Sovremennye problemy fiziologii i biokhimii vodnykh organizmov»]. Petrozavodsk; 2007: 143–4. (in Russian)
- Syasina I.G., Chernova E.N., Kumeyko V.V., Tabakova E.V., Zyumchenko N.E., Shved N.A., et al. Complex biomonitoring of a condition kambat and molluscs from the protected and polluted areas of Peter the Great bay and bay Kievka. In: Materials of the International scientifically-practical conference «Problems of immunology, a pathology and health protection гидробионтов» [Materialy Mezhdunarodnoy nauchno-prakticheskoy konferentsii «Problemy immunologii, patologii i okhrany zdorov’ya gidrobiontov»]. Moscow; 2007: 419–23. (in Russian)
- Garcia-Luque E. Biological adverse effects on bivalves associated with trace metals under estuarine environments. Environ. Monit. Assess. 2007; 129 (1-3): 315–20.
- Ruelas-Inzunza J. Mercury in biota and surfical sediments from Coatzacoalcos estuary, Gulf of Mexico: distribution and seasonal variation. Water, Air, and Soil Pollut. 2009; 197 (1-4): 165–74.
- Sorokołowski A. Abnormal features of Macoma balthica (Bivalvia) in the Baltic Sea: alerting symptoms of environmental adversity. Mar. Pollut. Bull. 2004; 49 (1-2): 17–22.
- Liang L.N. Evaluation of mollusks as biomonitors to investigate heavy metal contaminations along the Chinese Bohai Sea. Sci. Total Environ. 2004; 324 (1-3): 105–13.
- Abdallah Maha A.M., Abdallah Aly M.A. Biomonitoring study of heavy metals in biota and sediments in the South Eastern coast of Mediterrranean sea, Egypt. Environ. Monit. aAssess. 2008; 146 (1-3): 139–45.
- Chernova E.N., Khristoforova N.K. Comparative estimation of microelement structure of mussels of the Japanese and White seas. Problemy regional’noy ekologii. 2008; (1): 64–68. (in Russian)
- Huang H., Wu J.Y., Wu J.H. Heavy metal monitoring using bivalved shellfishfrom Zhejiang coastal waters, East China Sea. Environ. Monit. Assess. 2007; 129 (1-3): 315–20.
- Fattorini D., Notti A., Regoli F. Characterization of arsenic content in marine organisms from temperate, tropical and polar environments. Chem. Ecol. 2006; 22 (5): 405–14.
- Nemirovskaya I.A. The maintenance and structure of hydrocarbons in water and ground deposits of Kara sea. Okeanologiya. 2010; 50 (5): 758–70. (in Russian)
- Savinov V., Savinova T., Dahle S., Berger V., eds. Contaminants. White Sea. Ecology and Environment. Tromso; 2001: 123–37.
- Naumov A.D. Abnormal Emission of Starfishes in the Dvinsky Gulf in the Spring of 1990 g [Anomal’nyy vybros morskikh zvezd v Dvinskom zalive vesnoy 1990 g]. St. Petersburg; 2011. (in Russian)
- The newsletter. A condition of the geological environment of a continental shelf Baltic, White and the seas Barentseva. St. Petersburg; 2007. (in Russian)
- Matishov G.G., ed. Biology and Oceanography of Northern Sea Way: Barents and Karsky Exhausting [Biologiya i okeanografiya Severnogo morskogo puti: Barentsevo i Karskoe morya]. Moscow: Nauka; 2007. (in Russian)
- Berger V.Ya., Naumov A.D., Sukhotin A.A. Biological resources of the White sea: studying and use. Issledovaniya fauny morey. 2012; 69 (77): 320–5. (in Russian)
- Sharina Z.N., Chernova V.G., Shchetinina G.A. Estimation of size of accumulation of heavy metals Laminaria saccharina depending on age. In: Theses of reports of 3 International scientifically-practical conferences «Sea coastal ecosystems» [Tezisy dokladov 3 Mezhdunarodnoy nauchno-prakticheskoy konferentsii «Morskie pribrezhnye ekosistemy»]. Vladivostok; 2008: 217–18. (in Russian)
- Demina L.L. Heavy metals in global biofilters of ocean. In: Materials of 18 International conference (Schools) on sea geology «Geology of the seas and oceans» [Tyazhelye metally v global’nykh biofil’trakh okeana Geologiya morey i okeanov. V kn.: Materialy 18 Mezhdunarodnoy konferentsii (Shkoly) po morskoy geologi]. Moscow; 2009; (4): 56–61. (in Russian)
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