Literature DB >> 7900959

Bioaccumulative potential and toxicity of endosulfan insecticide to non-target animals.

S M Naqvi1, C Vaishnavi.   

Abstract

1. Endosulfan insecticide is a polychlorinated compound used for controlling a variety of insects; it is practically water-insoluble, but readily adheres to clay particles and persists in soil and water for several years. Its mode of action involves repetitive nerve-discharges positively correlated to increase in temperature. This compound is extremely toxic to most fish and can cause massive mortalities. In fish, it causes marked changes in Na and K concentrations, decrease in blood Ca(2+) and Mg levels and inhibits Na, K and Mg-dependent ATPase (in brain). 2. Bioaccumulation of endosulfan is reported for marine animals; however, freshwater animals (e.g., crayfish) accumulate it to some extent, but they lose the compound rapidly during depuration. Endosulfan is generally less toxic to aquatic invertebrates than fish. However, it causes decreases in adenylate energy charge, oxygen consumption, hemolymph amino acids, succinate dehydrogenase, heart-beat (mussel) and altered osmoregulation. 3. Generally, mammals are less susceptible to endosulfan's toxicity than aquatic animals. The majority of studies conducted on laboratory mammals can be summarized. (a) Neurotoxicity: male rats are more sensitive than females to endosulfan, which decreases brain and plasma acetylcholinesterase activity. Endosulfan I (a metabolite) causes a significant change in norepinephrine, 5-HT and GABA. (b) Renal toxicity: inhibition of MFOs activity was noticed in rats; other effects included changes in proximal convoluted tubules and necrosis of the tubular epithelium. (c) Hepatotoxicity: chemically-induced aminopyrine N-demethylase and aniline hydrolase were found in rat liver, and reduction in the glycogen level occurred. (d) Hematologic toxicity: endosulfan exposure resulted in a significant decrease in the level occurred. (d) Hematologic toxicity: endosulfan exposure resulted in a significant decrease in the erythrocyte glutathione reductase, hemoglobin amount, RBC number and mean corpuscular volume. 4. Respiratory toxicity: involved dyspnea, acute emphysema, cyanosis and hemorrhages in teh interalveolar portions of rat's lungs. 5. Biochemical: in rats, endosulfan caused increased glucose-6-phosphate dehydrogenase activity, blood glucose level, phospholipid contents of the microsomal and surfactant system, and profoundly induced the activity of alcohol dehydrogenase and cytosolic glutathione S-transferases. It also decreased significantly Na+, K+ and Mg(2+) ATPases, plasma calcium level and alkaline phosphatase in the intestinal epithelium. 6. Immunologic toxicity: rat serum antibody titer to tetanus toxin, IgG, IgM and gammaglobulins were significantly reduced. 7. Reproductive toxicity: degenerative changes in the seminiferous epithelium, induction of the rate-limiting enzyme in testosterone production (3beta-hydroxysteroid transferase and 17 beta-hydroxysteroid transferase), histological changes in reproductive organs, testicular atrophy and the occurrence of ovarian cysts were noticed in rat. Reduction in the weight of secondary sex organ was also observed.(ABSTRACT TRUNCATED AT 400 WORDS)

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Year:  1993        PMID: 7900959     DOI: 10.1016/0742-8413(93)90071-r

Source DB:  PubMed          Journal:  Comp Biochem Physiol C        ISSN: 0742-8413


  13 in total

1.  Dietary choline, betaine and lecithin mitigates endosulfan-induced stress in Labeo rohita fingerlings.

Authors:  Neeraj Kumar; S B Jadhao; N K Chandan; Kundan Kumar; A K Jha; S Bhushan; Saurav Kumar; R S Rana
Journal:  Fish Physiol Biochem       Date:  2011-12-13       Impact factor: 2.794

2.  Effect of Roundup® (glyphosate formulation) in the energy metabolism and reproductive traits of Hyalella castroi (Crustacea, Amphipoda, Dogielinotidae).

Authors:  Bibiana Kaiser Dutra; Felipe Amorim Fernandes; Daniela Motta Failace; Guendalina Turcato Oliveira
Journal:  Ecotoxicology       Date:  2010-11-18       Impact factor: 2.823

3.  Reproductive Toxicity of Endosulfan: Implication From Germ Cell Apoptosis Modulated by Mitochondrial Dysfunction and Genotoxic Response Genes in Caenorhabditis elegans.

Authors:  Hua Du; Meimei Wang; Lei Wang; Hui Dai; Min Wang; Wei Hong; Xinxin Nie; Lijun Wu; An Xu
Journal:  Toxicol Sci       Date:  2015-02-09       Impact factor: 4.849

4.  Health risk associated with the consumption of duck egg containing endosulfan residues.

Authors:  Butsayanan Ketyam; Kanjana Imsilp; Amnart Poapolathep; Saranya Poapolathep; Usuma Jermnak; Napasorn Phaochoosak; Phanwimol Tanhan
Journal:  Environ Monit Assess       Date:  2016-04-06       Impact factor: 2.513

5.  Acute and chronic effects of endosulfan on the haemato-immunological and histopathological responses of a threatened freshwater fish, spotted murrel, Channa punctatus.

Authors:  Kamal Sarma; A K Pal; N P Sahu; R S Dalvi; Nirupama Chatterjee; S C Mukherjee; Kartik Baruah
Journal:  Fish Physiol Biochem       Date:  2011-06-17       Impact factor: 2.794

6.  Mechanistic Interplay Between Autophagy and Apoptotic Signaling in Endosulfan-Induced Dopaminergic Neurotoxicity: Relevance to the Adverse Outcome Pathway in Pesticide Neurotoxicity.

Authors:  Chunjuan Song; Adhithiya Charli; Jie Luo; Zainab Riaz; Huajun Jin; Vellareddy Anantharam; Arthi Kanthasamy; Anumantha G Kanthasamy
Journal:  Toxicol Sci       Date:  2019-06-01       Impact factor: 4.849

7.  Endosulfan I and endosulfan sulfate disrupts zebrafish embryonic development.

Authors:  Kerri A Stanley; Lawrence R Curtis; Staci L Massey Simonich; Robert L Tanguay
Journal:  Aquat Toxicol       Date:  2009-10-14       Impact factor: 4.964

8.  Oxidative stress-mediated cytotoxicity of Endosulfan is causally linked to the inhibition of NADH dehydrogenase and Na+, K+-ATPase in Ehrlich ascites tumor cells.

Authors:  Megha Murali; Mary Sweeta Carvalho; T Shivanandappa
Journal:  Mol Cell Biochem       Date:  2020-03-16       Impact factor: 3.396

9.  Behavioral and metabolic effects of sublethal doses of two insecticides, chlorpyrifos and methomyl, in the Egyptian cotton leafworm, Spodoptera littoralis (Boisduval) (Lepidoptera: Noctuidae).

Authors:  Youssef Dewer; Marie-Anne Pottier; Lisa Lalouette; Annick Maria; Matthieu Dacher; Luc P Belzunces; Guillaume Kairo; David Renault; Martine Maibeche; David Siaussat
Journal:  Environ Sci Pollut Res Int       Date:  2015-11-14       Impact factor: 4.223

10.  Differential regulation of dopamine transporter function and location by low concentrations of environmental estrogens and 17beta-estradiol.

Authors:  Rebecca A Alyea; Cheryl S Watson
Journal:  Environ Health Perspect       Date:  2009-01-05       Impact factor: 9.031

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