Literature DB >> 11730559

Cholinesterase inhibition by aluminium phosphide poisoning in rats and effects of atropine and pralidoxime chloride.

S Mittra1, S S Peshin, S B Lall.   

Abstract

AIM: To investigate the cholinesterase inhibition and effect of atropine and pralidoxime (PAM) treatment on the survival time in the rat model of aluminium phosphide (AlP) poisoning.
METHODS: The rats were treated with AlP (10 mg/kg; 5.55 x LD50; ig) and the survival time was noted. The effect of atropine (1 mg/kg, ip) and PAM (5 mg/kg, ip) was noted on the above. Atropine and PAM were administered 5 min after AlP. Plasma cholinesterase levels were measured spectrophotometrically in the control and AlP treated rats 30 min after administration.
RESULTS: Treatment with atropine and PAM increased the survival time by 2.5 fold (1.4 h+/-0.3 h vs 3.4 h+/-2.5 h, P < 0.01) in 9 out of 15 animals and resulted in total survival of the 6 remaining animals. Plasma cholinesterase levels were inhibited by 47 %, (438+/-74) U/L in AlP treated rats as compared to control (840+/-90) U/L (P < 0.01).
CONCLUSION: This preliminary study concludes that AlP poisoning causes cholinesterase inhibition and responds to treatment with atropine and PAM.

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Year:  2001        PMID: 11730559

Source DB:  PubMed          Journal:  Acta Pharmacol Sin        ISSN: 1671-4083            Impact factor:   6.150


  12 in total

1.  Clinical profile and outcome of aluminum phosphide-induced esophageal strictures.

Authors:  Rakesh Kochhar; Usha Dutta; Kuchhangi Sureshchandra Poornachandra; Kim Vaiphei; Suraj Bhagat; Birinder Nagi; Kartar Singh
Journal:  J Med Toxicol       Date:  2010-09

2.  Chemical Reaction between Boric Acid and Phosphine Indicates Boric Acid as an Antidote for Aluminium Phosphide Poisoning.

Authors:  Motahareh Soltani; Seyed F Shetab-Boushehri; Seyed V Shetab-Boushehri
Journal:  Sultan Qaboos Univ Med J       Date:  2016-08-19

3.  Comparative study on pharmacokinetics of a series of anticholinergics, atropine, anisodamine, anisodine, scopolamine and tiotropium in rats.

Authors:  Fengjie Tian; Cuiyun Li; Xin Wang; Shuangxia Ren; Ning Li; Qi Liu; Sufeng Zhou; Yang Lu; Di Zhao; Xijing Chen
Journal:  Eur J Drug Metab Pharmacokinet       Date:  2014-04-20       Impact factor: 2.441

4.  A study of the predictive factors of mortality in acute poisoning with aluminum phosphide with special reference to echocardiography and SOFA score.

Authors:  Abeer A Sheta; Asmaa S El-Banna; Rania Abd Elmeguid; Hany E Mohamed; Nehad H Gad
Journal:  Environ Sci Pollut Res Int       Date:  2019-09-13       Impact factor: 4.223

Review 5.  Phosphine toxicity: a story of disrupted mitochondrial metabolism.

Authors:  Alfred M Sciuto; Benjamin J Wong; Margaret E Martens; Heidi Hoard-Fruchey; Michael W Perkins
Journal:  Ann N Y Acad Sci       Date:  2016-05-24       Impact factor: 5.691

6.  Effects of hyperbaric oxygenation on survival time of aluminum phosphide intoxicated rats.

Authors:  Hossein Saidi; Farhad Shokraneh; Hamed-Basir Ghafouri; Shayan Shojaie
Journal:  J Res Med Sci       Date:  2011-10       Impact factor: 1.852

7.  Mechanisms of phosphine toxicity.

Authors:  Nisa S Nath; Ishita Bhattacharya; Andrew G Tuck; David I Schlipalius; Paul R Ebert
Journal:  J Toxicol       Date:  2011-04-28

Review 8.  Thoughts on the current management of acute aluminum phosphide toxicity and proposals for therapy: An Evidence-based review.

Authors:  Maryam Vasheghani Farahani; Davood Soroosh; Sayed Mahdi Marashi
Journal:  Indian J Crit Care Med       Date:  2016-12

9.  Butyrylcholinesterase level in poisoned patients with phosphide compounds.

Authors:  Saeed Afzali; Seyed Kazem Taheri; Mohamadali Seifrabiei
Journal:  Caspian J Intern Med       Date:  2019

10.  An update on toxicology of aluminum phosphide.

Authors:  Ali Akbar Moghadamnia
Journal:  Daru       Date:  2012-09-03       Impact factor: 3.117

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