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Glyphosate: A review of its global use, environmental impact, and potential health effects on humans and other species

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  • Martha E. Richmond

    (Suffolk University)

Abstract

Glyphosate, [N-(phosphonomethyl) glycine], was synthesized in 1950 and patented as a chemical chelator, capable of binding metals such as calcium, magnesium, and manganese. Glyphosate’s ability to bind to manganese was later found to inhibit an enzyme used by plants and bacteria for biosynthesis of three amino acids found in all proteins, and the commercial value of this property led to the development and marketing of glyphosate as a broad-spectrum herbicide. In 1974, the Monsanto Chemical Company introduced the herbicide as Roundup™, a formulation of glyphosate and adjuvants. Roundup™ was originally used for weed control in specific farming and landscaping operations and around power lines and train tracks. Following introduction of Roundup Ready™ seeds, in the 1990s, glyphosate use increased significantly. Although Monsanto’s patent on glyphosate expired in 2002, the widespread and growing use of Roundup Ready™ seed globally and competitive glyphosate marketing by other chemical companies have led to glyphosate’s significant increase in the environment. Concerns about potential adverse effects have also grown. While, at present, many regulatory agencies have determined that there is little risk of adverse health effects to the general public or to farmworkers using proper handling techniques, the International Agency for Research on Cancer (IARC) assessing hazard data on glyphosate identified it in 2016 as a category 2A carcinogen (likely to cause human cancer). Response to this classification has been divided: The agribusiness industry has been forceful in its opposition, while other experts support IARC’s classification. The following article examines these issues. It also examines the basis for regulatory decisions, controversies involved, and questions of environmental justice that may or may not be addressed as glyphosate continues to be used.

Suggested Citation

  • Martha E. Richmond, 2018. "Glyphosate: A review of its global use, environmental impact, and potential health effects on humans and other species," Journal of Environmental Studies and Sciences, Springer;Association of Environmental Studies and Sciences, vol. 8(4), pages 416-434, December.
  • Handle: RePEc:spr:jenvss:v:8:y:2018:i:4:d:10.1007_s13412-018-0517-2
    DOI: 10.1007/s13412-018-0517-2
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    References listed on IDEAS

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    1. Fernandez-Cornejo, Jorge & Nehring, Richard & Osteen, Craig & Wechsler, Seth James & Martin, Andrew & Vialou, Alex, 2014. "Pesticide Use in U.S. Agriculture: 21 Selected Crops, 1960-2008," Economic Information Bulletin 178462, United States Department of Agriculture, Economic Research Service.
    2. Grabowski, Philip & Jayne, Thom, 2016. "Analyzing Trends in Herbicide Use in Sub-Saharan Africa," Food Security International Development Working Papers 245909, Michigan State University, Department of Agricultural, Food, and Resource Economics.
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    Cited by:

    1. Analena B. Bruce & Yetkin Borlu & Leland L. Glenna, 2023. "Assessing the scientific support for U.S. EPA pesticide regulatory policy governing active and inert ingredients," Journal of Environmental Studies and Sciences, Springer;Association of Environmental Studies and Sciences, vol. 13(1), pages 1-13, March.
    2. Clémentine Antier & Per Kudsk & Xavier Reboud & Lena Ulber & Philippe V. Baret & Antoine Messéan, 2020. "Glyphosate Use in the European Agricultural Sector and a Framework for Its Further Monitoring," Sustainability, MDPI, vol. 12(14), pages 1-22, July.
    3. Roberto Cazzolla Gatti, 2021. "Why We Will Continue to Lose Our Battle with Cancers If We Do Not Stop Their Triggers from Environmental Pollution," IJERPH, MDPI, vol. 18(11), pages 1-19, June.
    4. Szilvia Kisvarga & Dóra Hamar-Farkas & Katalin Horotán & Katalin Inotai & Mária Mörtl & András Neményi & András Székács & László Orlóci, 2023. "Morphological, Histological, and Glyphosate Residue Analysis of Helianthus annuus L. Plants Treated with Glyphosate," Agriculture, MDPI, vol. 13(5), pages 1-15, May.
    5. Aneta Bokšová & Jan Kazda & Jan Bartoška & Martin Kamler, 2023. "Effect of glyphosate on the foraging activity of European honey bees (Apis mellifera L.)," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 69(5), pages 195-201.

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