Clinical, biochemical and neurobehavioural studies of workers engaged in the manufacture of quinalphos

59 workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite similar blood acetylcholinestarase (AChE) levels in both the exposed and control subjects, a significant number of exposed subjects had alte...

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Published inFood and chemical toxicology Vol. 38; no. 1; pp. 65 - 69
Main Authors Srivastava, A.K, Gupta, B.N, Bihari, V, Mathur, N, Srivastava, L.P, Pangtey, B.S, Bharti, R.S, Kumar, P
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 2000
New York, NY Elsevier Science
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ISSN0278-6915
1873-6351
DOI10.1016/S0278-6915(99)00123-4

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Abstract 59 workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite similar blood acetylcholinestarase (AChE) levels in both the exposed and control subjects, a significant number of exposed subjects had altered plantar and ankle reflexes. Higher nervous functions such as memory, learning and vigilance were also found to be affected in these subjects. These findings were attributed to chronic low dose combined exposure to different chemicals used/formed in the manufacture of quinalphos. The study raises the doubt that monitoring of AChE alone among subjects engaged in the manufacture of OP pesticides may not be an adequate safeguard as regards to their health.
AbstractList 59 workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite similar blood acetylcholinestarase (AChE) levels in both the exposed and control subjects, a significant number of exposed subjects had altered plantar and ankle reflexes. Higher nervous functions such as memory, learning and vigilance were also found to be affected in these subjects. These findings were attributed to chronic low dose combined exposure to different chemicals used/formed in the manufacture of quinalphos. The study raises the doubt that monitoring of AChE alone among subjects engaged in the manufacture of OP pesticides may not be an adequate safeguard as regards to their health.59 workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite similar blood acetylcholinestarase (AChE) levels in both the exposed and control subjects, a significant number of exposed subjects had altered plantar and ankle reflexes. Higher nervous functions such as memory, learning and vigilance were also found to be affected in these subjects. These findings were attributed to chronic low dose combined exposure to different chemicals used/formed in the manufacture of quinalphos. The study raises the doubt that monitoring of AChE alone among subjects engaged in the manufacture of OP pesticides may not be an adequate safeguard as regards to their health.
59 Workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite similar blood acetylcholinestarase (AChE) levels in both the exposed and control subjects, a significant number of exposed subjects had altered plantar and ankle reflexes. Higher nervous functions such as memory, learning and vigilance were also found to be affected in these subjects. These findings were attributed to chronic low dose combined exposure to different chemicals used/formed in the manufacture of quinalphos. The study raises the doubt that monitoring of AChE alone among subjects engaged in the manufacture of OP pesticides may not be an adequate safeguard as regards to their health.
Author Gupta, B.N
Mathur, N
Pangtey, B.S
Kumar, P
Srivastava, A.K
Srivastava, L.P
Bharti, R.S
Bihari, V
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Issue 1
Keywords DETCN=diethyl thiaryl phosphorocyanide
QP=quinalphos
neurobehavioural
2-HQ=2-hydroxyquinoxline
OPD= O-phenylenediamine
GMHA=glyoxalic methyl hemiacetal
pesticide
quinalphos
acetylcholinesterase
OP=organophosphate
AchE-acetylcholinesterase
human studies
Human
Chemical industry
Industrial production
Nervous system diseases
Insecticide
Osteotendineous reflex
Toxicity
Pesticides
Organophosphorus compounds
Behavior
Occupational exposure
Occupational medicine
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Snippet 59 workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite...
59 Workers exposed to different chemicals during the manufacture of quinalphos, an organophosphate pesticide (OP) and 17 control subjects were studied. Despite...
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StartPage 65
SubjectTerms acetylcholinesterase
Acetylcholinesterase - blood
Adult
adverse effects
analysis
Ankle
Attention
Attention - drug effects
Biological and medical sciences
Biomarkers
Biomarkers - analysis
blood
blood chemistry
Chemical Industry
chemically induced
chronic exposure
drug effects
environmental exposure
enzyme activity
factory workers
Foot
hematology
higher nervous function
human studies
Humans
Insecticides
Insecticides - adverse effects
learning
Learning Disabilities
Learning Disorders - chemically induced
Male
Medical sciences
memory
Memory Disorders
Memory Disorders - chemically induced
neurobehavioural
neurophysiology
neurotoxicity
Occupational Exposure
Organothiophosphorus Compounds
Organothiophosphorus Compounds - adverse effects
pesticide
Pesticides, fertilizers and other agrochemicals toxicology
quinalphos
Reflex, Abnormal
reflexes
Sensitivity and Specificity
toxicity
Toxicology
vigilance function
Title Clinical, biochemical and neurobehavioural studies of workers engaged in the manufacture of quinalphos
URI https://dx.doi.org/10.1016/S0278-6915(99)00123-4
https://www.ncbi.nlm.nih.gov/pubmed/10685015
https://www.proquest.com/docview/17497685
https://www.proquest.com/docview/48780242
https://www.proquest.com/docview/70925617
Volume 38
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