Hematological Indices of Pesticide Exposure Rice Farmers in Southern Thailand

Wiyada Kwanhian, Supabhorn Yimthiang, Siriuma Jawjit, Junjira Mahaboon, Udomratana Vattanasit, Phiman Thirarattanasunthon

Abstract


The most common pesticides used in rice farming are organophosphates and carbamates. These pesticides inhibit acetylcholinesterase (AChE) activity, resulting in excessive levels of acetylcholine accumulation and disrupted neurotransmission. This study compared AChE activity and hematological parameters between pesticide-using rice farmers, non-pesticide using rice farmers, and non-agricultural occupational groups (non-farmers). Pesticide residues that accumulated in rice and the water and soil of the study area were also determined. AChE activity of all participants showed 10 from 87 samples (11.49%) as borderline depressed, with 50% of these being pesticide-using farmers. Most of the hematological parameters were normal in all samples. However, platelet numbers of pesticide self-spraying rice farmers were significantly lower than non-self-spraying rice farmers. The results suggested that the use of pesticides during rice farming affected AChE activity and some hematological cells. In addition, pesticide residues in soil, water and rice in rice fields using pesticides were higher than in non-pesticide use areas. Results confirmed that the exposure rates of farmers using pesticides were at higher risk than farmers who did not use pesticides

Keywords


Pesticide, acetylcholinesterase, rice farmer, organophosphate, hematological indices

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References


Thepent V, editor. Agricultural mechanization in Thailand The 16th TSAE National Conference and 8th TSAE International Conference; 2015 March 17-19; Bangkok, Thailand.

World Health Organization. The WHO recommended classification of pesticides by hazard and guidelines to classification. Wissenchaftliche Verlagsgesellschaft mbH, Stuttgart, Germany; 2010.

Colovic MB, Krstic DZ, Lazarevic-Pasti TD, Bondzic AM, Vasic VM. Acetylcholinesterase inhibitors: Pharmacology and toxicology. Current Neuropharmacology. 2013;11(3):315-35.

Araoud M, Neffeti F, Douki W, Hfaiedh HB, Akrout M, Hassine M, et al. Adverse effects of pesticides on biochemical and haematological parameters in Tunisian agricultural workers. Journal of Exposure Science and Environmental Epidemiology. 2012;22(3):243-7.

Hu R, Huang X, Huang J, Li Y, Zhang C, Yin Y, et al. Long- and short-term health effects of pesticide exposure: A cohort study from China. PLoS One. 2015;10(6):e0128766.

Tawatsin A. Pesticides used in Thailand and toxic effects to human health. Medical Research Archives. 2015;1(3):1-10.

Panuwet P, Siriwong W, Prapamontol T, Ryan PB, Fiedler N, Robson MG, et al. Agricultural pesticide management in Thailand: Situation and population health risk. Environmental Science & Policy. 2012;17:72-81.

Tongpoo A, Sriapha C, Wongvisawakorn S, Rittilert P, Trakulsrichai S, Wananukul W. Occupational carbamate poisoning in Thailand. The Southeast Asian Journal of Tropical Medicine and Public Health.

;46(4):798-804.

Wongta A, Sawarng N, Tongchai P, Sutan K, Kerdnoi T, Prapamontol T, et al. The pesticide exposure of people living in agricultural community, Northern Thailand. Journal of Toxicology. 2018:Article ID 4168034.

Jawjit S, Kwanhian W, Vattanasit U, Thirarattanasunthon P, Yimthiang S, Mahaboon J, et al. A Comparison of knowledge, attitudes, and practices of rice farmers and levels of pesticide residues in the environment in Nakhon si Thammarat Province. Journal of Safety and Health. 2017;10(37):10-20.

Abdullah Khalil K, Sakran Abass K. The measurements of the cholinesterase activity of brain and plasma in rabbits by using modified Michel and Ellman assays. Insights in Enzyme Research. 2017;1.

Estefan G, Sommer R, Ryan J. Methods of soil and plant, and water analysis: A manual for the West Asia and North Africa region. 3rd, editor: Jointly published by the International Center for Agricultural Research in the Dry Areas (ICARDA); 2014.

Rice EW, Bridgewater L. Standard methods for the examination of water and wastewater: American Public Health Association, American Water Works Association, Water Environment Federation; 2012.

GT Pesticide test kit [homepage on the Internet]. Bangkok: GT trading; 2004 [updated 2018; cited 2019 Apr 15]. Available from: http://www.gttestkit.com/gttestkit_eng/contact_address.htm.

Kumpa L. Guidline for policies and agricultural development (power point presentation). Office of The National Economic and Social Development Board, Thailand; 2015.

Ayoola J, Dangbegnon C, Daudu C, Mando A, Kudi T, Amapu I, et al. Socio-economic factors influencing rice production among male and female farmers in Northern Guinea Savanna Nigeria: Lessons for promoting gender equity in action research. Agriculture and Biology Journal of North America. 2011;2(6):1010–4.

Kennvidy S. Organic rice farming systems in Cambodia: Socio-economic impact of smallholder systems in Takeo province. International Journal of Environmental and Rural Development. 2012;2(1):115-9.

Fakkhong S, Suwanmaneepong S. Socio-economic factors influencing rice production in peri-urban area, Bangkok, Thailand. International Journal of Agricultural Technology. 2015;11(8):2053-62.

Bajgar J. Laboratory examination in nerve agent intoxication. Acta Medica (Hradec Kralove). 2013;56(3):89-96.

Hayden KM, Norton MC, Darcey D, Ostbye T, Zandi PP, Breitner JC, et al. Occupational exposure to pesticides increases the risk of incident AD: The cache county study. Neurology. 2010;74(19):1524-30.

Ntow WJ, Tagoe LM, Drechsel P, Kelderman P, Nyarko E, Gijzen HJ. Occupational exposure to pesticides: Blood cholinesterase activity in a farming community in Ghana. Archives of Environmental Contamination and Toxicology. 2009;56(3):623-30.

Thetkathuek A, Yenjai P, Jaidee W, Jaidee P, Sriprapat P. Pesticide exposure and cholinesteraselevels in migrant farm workers in Thailand. Journal of Agromedicine. 2017;22(2):118-30.

Varma A, Neupane D, Ellekilde Bonde J, Jørs E. Is prevention of acute pesticide poisoning effective and efficient, with locally adapted personal protective equipment? A randomized crossover study among farmers in Chitwan, Nepal. La Medicina del Lavoro. 2016;107(4):271-83.

Akta rM, Sengupta D, Chowdhury A. Impact of pesticides use in agriculture: Their benefits and hazards. Interdisciplinary Toxicology. 2009;2(1):1-12.

Fareed M, Pathak MK, Bihari V, Kamal R, Srivastava AK, Kesavachandran CN. Adverse respiratory health and hematological alterations among agricultural workers occupationally exposed to organophosphate pesticides: A cross-sectional study in North India. PLoS One. 2013;8(7):e69755.

Mandala WL, Gondwe EN, MacLennan JM, Molyneux ME, MacLennan CA. Age- and sex-related changes in hematological parameters in healthy Malawians. Journal of Blood Medicine. 2017;8:123-30.




DOI: http://dx.doi.org/10.21109/kesmas.v14i1.2812

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