Organophosphorous pesticides are currently widely used in China to help boost agricultural production. However, these pesticides pose various threats to organisms, including humans, and are thus a cause of concern. Five organophosphorous pesticides, monocrotophos, omethoate, parathion-methyl, phoxim and dichlorvos, were examined for their effects on mammalian cell lines to determine their potential impact on physiological functions in vivo. Results show an increased proliferation of MCF-7 cells treated with 0.2 microM monocrotophos or 0.4 microM omethoate, suggesting that these compounds can induce breast cancer cell proliferation at relatively low concentrations. Murine primary spleen cells markedly decreased in number starting at a pesticide concentration of 0.01 microM; no cytotoxicity was observed below 0.001 microM. BALB/c3T3 murine fibroblasts treated with 0.25 microM monocrotophos showed enhanced DNA synthesis, while those treated with the other pesticides showed results similar to that of the control. The different pesticides reduced the acetylcholinesterase (AChE) activity of the rat neuronal cell line PC12 in a dose-dependent manner up to 100 microM. Parathion-methyl and phoxim showed acute toxicity at 0.01 microM. Finally, phoxim and parathion-methyl significantly reduced the transepithelial electrical resistance (TEER) of human intestinal Caco-2 cells, indicating that these pesticides can disrupt the tight-junction permeability of cell monolayers. These in vitro assays, which are rapid, reproducible, simple and inexpensive, clearly show the effects of organophosphorous pesticides on mammalian cells and suggest the potential impact of these pesticides on organisms in vivo.
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Int J Mol Sci
July 2024
Institute of Fundamental Medicine and Biology, Kazan Federal University, 18 Kremlyovskaya St., 420008 Kazan, Russia.
Mining of organophosphorous (OPs)-degrading bacterial enzymes in collections of known bacterial strains and in natural biotopes are important research fields that lead to the isolation of novel OP-degrading enzymes. Then, implementation of strategies and methods of protein engineering and nanobiotechnology allow large-scale production of enzymes, displaying improved catalytic properties for medical uses and protection of the environment. For medical applications, the enzyme formulations must be stable in the bloodstream and upon storage and not susceptible to induce iatrogenic effects.
View Article and Find Full Text PDFBasic Clin Pharmacol Toxicol
August 2024
Department of Toxicology and Food Safety, Institute of Rural Health, Lublin, Poland.
F1000Res
March 2024
Poison Information Center, Department of Forensic Medicine and Toxicology, Kasturba Medical College, Manipal, Manipal Academy of Higher Education (MAHE), Manipal, 576104, India.
Pesticides are chemicals that have become common household products in developing countries. The purpose of pesticides is to manage agricultural work. The majority of pesticides for indoor and agricultural use are carbamate and organophosphorus.
View Article and Find Full Text PDFInt J Mol Sci
October 2023
Institute of Fundamental Medicine and Biology, Kazan Federal University, 420008 Kazan, Russia.
Encapsulated phosphotriesterase nanoreactors show their efficacy in the prophylaxis and post-exposure treatment of poisoning by paraoxon. A new enzyme nanoreactor (E-nRs) containing an evolved multiple mutant (L72C/Y97F/Y99F/W263V/I280T) of phosphotriesterase (PTE) for in vivo detoxification of organophosphorous compounds (OP) was made. A comparison of nanoreactors made of three- and di-block copolymers was carried out.
View Article and Find Full Text PDFClin Chim Acta
November 2023
Department of Experimental Medicine and Biotechnology, PGIMER, Chandigarh 160012, India. Electronic address:
Population and food requirements are increasing daily throughout the world. To fulfil these requirements application of pesticides is also increasing. Organophosphorous (OP) and Organocarbamate (OC) compounds are widely used pesticides.
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