Literature DB >> 12727546

Nitrite disrupts multiple physiological functions in aquatic animals.

Frank B Jensen1.   

Abstract

Nitrite is a potential problem in aquatic environments. Freshwater fish actively take up nitrite across the gills, leading to high internal concentrations. Seawater fish are less susceptible but do take up nitrite across intestine and gills. Nitrite has multiple physiological effects. Its uptake is at the expense of chloride, leading to chloride depletion. Nitrite also activates efflux of potassium from skeletal muscle and erythrocytes, disturbing intracellular and extracellular K(+) levels. Nitrite transfer across the erythrocytic membrane leads to oxidation of haemoglobin to methaemoglobin (metHb), compromising blood O(2) transport. Other haem proteins are also oxidised. Hyperventilation is observed, and eventually tissue O(2) shortage becomes reflected in elevated lactate concentrations. Heart rate increases rapidly, before any significant elevations in metHb or extracellular potassium occur. This suggests nitrite-induced vasodilation (possibly via nitric oxide generated from nitrite) that is countered by increased cardiac pumping to re-establish blood pressure. Nitrite can form and/or mimic nitric oxide and thereby interfere with processes regulated by this local hormone. Steroid hormone synthesis may be inhibited, while changes in ammonia and urea levels and excretion rates reflect an influence of nitrite on nitrogen metabolism. Detoxification of nitrite occurs via endogenous oxidation to nitrate, and elimination of nitrite takes place both via gills and urine. The susceptibility to nitrite varies between species and in some cases also within species. Rainbow trout fall into two groups with regard to susceptibility and physiological response. These two groups are not related to sex but show significant different nitrite uptake rates.

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Year:  2003        PMID: 12727546     DOI: 10.1016/s1095-6433(02)00323-9

Source DB:  PubMed          Journal:  Comp Biochem Physiol A Mol Integr Physiol        ISSN: 1095-6433            Impact factor:   2.320


  27 in total

Review 1.  Bioanalytical profile of the L-arginine/nitric oxide pathway and its evaluation by capillary electrophoresis.

Authors:  Dmitri Y Boudko
Journal:  J Chromatogr B Analyt Technol Biomed Life Sci       Date:  2007-02-15       Impact factor: 3.205

2.  Oxidative stress and antioxidant responses in juvenile Brazilian flounder Paralichthys orbignyanus exposed to sublethal levels of nitrite.

Authors:  Lucas Campos Maltez; Luis André Luz Barbas; Lilian Fiori Nitz; Lucas Pellegrin; Marcelo Hideo Okamoto; Luís André Sampaio; José Maria Monserrat; Luciano Garcia
Journal:  Fish Physiol Biochem       Date:  2018-06-01       Impact factor: 2.794

3.  Quantitative detection of nitrate in water and wastewater by surface-enhanced Raman spectroscopy.

Authors:  Shashikanth Gajaraj; Cui Fan; Mengshi Lin; Zhiqiang Hu
Journal:  Environ Monit Assess       Date:  2012-10-30       Impact factor: 2.513

4.  Alterations in serum electrolytes, antioxidative enzymes and haematological parameters of Labeo rohita on short-term exposure to sublethal dose of nitrite.

Authors:  Alexander Ciji; N P Sahu; A K Pal; S Dasgupta; M S Akhtar
Journal:  Fish Physiol Biochem       Date:  2012-03-03       Impact factor: 2.794

5.  The use of vertical constructed wetland and ultrasound in aquaponic systems.

Authors:  A Krivograd Klemenčič; T Griessler Bulc
Journal:  Environ Sci Pollut Res Int       Date:  2014-08-23       Impact factor: 4.223

Review 6.  Integrative and comparative reproductive biology: From alligators to xenobiotics.

Authors:  Krista A McCoy; Alison M Roark; Ashley S P Boggs; John A Bowden; Lori Cruze; Thea M Edwards; Heather J Hamlin; Theresa M Cantu; Jessica A McCoy; Nicole A McNabb; Abby G Wenzel; Cameron E Williams; Satomi Kohno
Journal:  Gen Comp Endocrinol       Date:  2016-03-21       Impact factor: 2.822

7.  Erythrocytes are the major intravascular storage sites of nitrite in human blood.

Authors:  André Dejam; Christian J Hunter; Mildred M Pelletier; Lewis L Hsu; Roberto F Machado; Sruti Shiva; Gordon G Power; Malte Kelm; Mark T Gladwin; Alan N Schechter
Journal:  Blood       Date:  2005-03-17       Impact factor: 22.113

8.  Effects of nitrite graded doses on hepatotoxicity and nephrotoxicity, histopathological alterations, and activation of apoptosis in adult rats.

Authors:  Nagla A El-Nabarawy; Ahmed S Gouda; Mohamed A Khattab; Laila A Rashed
Journal:  Environ Sci Pollut Res Int       Date:  2020-02-08       Impact factor: 4.223

9.  Intracellular conversion of environmental nitrate and nitrite to nitric oxide with resulting developmental toxicity to the crustacean Daphnia magna.

Authors:  Bethany R Hannas; Parikshit C Das; Hong Li; Gerald A LeBlanc
Journal:  PLoS One       Date:  2010-08-27       Impact factor: 3.240

10.  Regulation of nitrite transport in red blood cells by hemoglobin oxygen fractional saturation.

Authors:  Dario A Vitturi; Xinjun Teng; José C Toledo; Sadis Matalon; Jack R Lancaster; Rakesh P Patel
Journal:  Am J Physiol Heart Circ Physiol       Date:  2009-03-13       Impact factor: 4.733

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