Edible Insects Consumption in Africa towards Environmental Health and Sustainable Food Systems: A Bibliometric Study.

Newton R Matandirotya, Walter Leal Filho, Gaathier Mahed, Basil Maseko, Cleophas V Murandu
Author Information
  1. Newton R Matandirotya: Department of Geosciences, Faculty of Science, Nelson Mandela University, Port Elizabeth 6000, South Africa.
  2. Walter Leal Filho: Research and Transfer Centre "Sustainable Development and Climate Change Management", Hamburg University of Applied Sciences, Ulmenliet 20, D-21033 Hamburg, Germany. ORCID
  3. Gaathier Mahed: Department of Geosciences, Faculty of Science, Nelson Mandela University, Port Elizabeth 6000, South Africa.
  4. Basil Maseko: Department of Food Science and Nutrition, Midlands State University, Gweru Private Bag 9055, Zimbabwe.
  5. Cleophas V Murandu: National Anglican Theological College of Zimbabwe, 11 Thornburg Avenue, Mount Pleasant, Harare Private Bag 2503, Zimbabwe.

Abstract

Africa is home to an estimated wild edible insect population of 1000 species that offer an opportunity for sustainable food systems while also improving food and nutrition security on the continent. Edible insect consumption has been part of African communities for a long time and forms part of their diets and cuisines, particularly within low-income households with limited resources. The purpose of our study was to investigate and review the contribution that edible insects can make towards the realisation of sustainable food systems, and environmental/planetary health including the fulfilment of Sustainable Development Goal number 2 (zero hunger). Our study applied a bibliometric analysis approach using VOS Viewer, a data mining software. The study established that the consumption of edible insects is still widespread across many African countries and therefore can be used as an avenue for improving environmental health and enhancing food systems on the continent through a reduction in meat-based diets. This, in the long term, will also reduce the emission of greenhouse gases such as carbon dioxide and methane from livestock production-related activities. Edible insects are also known to contain a high percentage nutrient content of proteins, fats and iron and, thus, can also play a vital role in reducing food insecurity and malnutrition, particularly within low-income households. Due to the existence of a high number of edible insect species on the continent, communities in Africa can easily access sources that can further be preserved using various indigenous techniques while also having minimal impact on the environment. In addition, being a source of nutritious food, edible insects can also be a source of establishing sustainable livelihoods, as well as being able to be commercialised, thus further creating employment opportunities and economic growth. Some of the notable edible insects in abundance on the continent include termites, ants, crickets and caterpillars. Our study recommends that Africa should commercialise edible insect production, in addition to preservation processing that leads to the eradication of perennial food insecurity and malnutrition and improves environmental health, as well as developing sustainable food systems. We also further recommend the establishment of food safety guidelines on edible insects as most African countries do not have such a plan in place currently.

Keywords

References

  1. PLoS One. 2010 Dec 29;5(12):e14445 [PMID: 21206900]
  2. Foods. 2020 Apr 16;9(4): [PMID: 32316132]
  3. Int J Food Sci Nutr. 2006 May-Jun;57(3-4):198-203 [PMID: 17127470]
  4. Proc Nutr Soc. 2016 Aug;75(3):294-305 [PMID: 26908196]
  5. Curr Opin Insect Sci. 2021 Dec;48:64-71 [PMID: 34649017]
  6. Biol Lett. 2011 Dec 23;7(6):847-9 [PMID: 21632622]
  7. Best Pract Res Clin Gastroenterol. 2016 Apr;30(2):161-72 [PMID: 27086883]
  8. J Ethnobiol Ethnomed. 2022 Mar 26;18(1):24 [PMID: 35346258]
  9. BMC Med Inform Decis Mak. 2017 May 30;17(1):72 [PMID: 28558687]
  10. Nutr Rev. 2003 May;61(5 Pt 1):168-75 [PMID: 12822705]
  11. Insects. 2021 May 11;12(5): [PMID: 34064777]
  12. Mol Nutr Food Res. 2013 May;57(5):802-23 [PMID: 23471778]
  13. Medicine (Baltimore). 2020 May 29;99(22):e20406 [PMID: 32481432]
  14. Foods. 2021 Dec 03;10(12): [PMID: 34945528]
  15. PLoS One. 2017 May 11;12(5):e0177338 [PMID: 28494007]
  16. Int J Environ Res Public Health. 2021 Jun 17;18(12): [PMID: 34204332]
  17. Insects. 2020 Dec 31;12(1): [PMID: 33396313]
  18. Crit Rev Food Sci Nutr. 2019;59(14):2169-2188 [PMID: 29446643]
  19. Sci Rep. 2022 May 3;12(1):7182 [PMID: 35505193]
  20. Nat Commun. 2021 Oct 28;12(1):6224 [PMID: 34711857]
  21. Agron Sustain Dev. 2016;36(4):57 [PMID: 32010238]
  22. Scientometrics. 2010 Aug;84(2):523-538 [PMID: 20585380]
  23. Sci Total Environ. 2022 Sep 10;838(Pt 3):156438 [PMID: 35660578]
  24. J Ethnobiol Ethnomed. 2017 Jan 26;13(1):8 [PMID: 28126033]
  25. Sci Rep. 2022 Jan 28;12(1):1576 [PMID: 35091646]
  26. J Ethnobiol Ethnomed. 2018 Sep 14;14(1):59 [PMID: 30217159]
  27. Insects. 2021 Jun 15;12(6): [PMID: 34203968]
  28. Environ Chall (Amst). 2021 Dec;5:100263 [PMID: 37519332]
  29. Front Vet Sci. 2021 Feb 19;8:601386 [PMID: 33681322]
  30. Int J Environ Res Public Health. 2011 Apr;8(4):1174-205 [PMID: 21695035]
  31. Nat Rev Dis Primers. 2017 Sep 21;3:17067 [PMID: 28933421]

MeSH Term

Animals
Edible Insects
Food
Environmental Health
Bibliometrics
Malnutrition

Word Cloud

Created with Highcharts 10.0.0foodediblealsoinsectscansustainablesystemsAfricainsectcontinentstudyhealthEdibleAfricanenvironmentalinsecuritymalnutritionspeciesimprovingconsumptionpartcommunitieslongdietsparticularlywithinlow-incomehouseholdstowardsSustainablenumberbibliometricusingcountrieshighthusadditionsourcewellhomeestimatedwildpopulation1000offeropportunitynutritionsecuritytimeformscuisineslimitedresourcespurposeinvestigatereviewcontributionmakerealisationenvironmental/planetaryincludingfulfilmentDevelopmentGoal2zerohungerappliedanalysisapproachVOSViewerdataminingsoftwareestablishedstillwidespreadacrossmanythereforeusedavenueenhancingreductionmeat-basedtermwillreduceemissiongreenhousegasescarbondioxidemethanelivestockproduction-relatedactivitiesknowncontainpercentagenutrientcontentproteinsfatsironplayvitalrolereducingDueexistenceeasilyaccesssourcespreservedvariousindigenoustechniquesminimalimpactenvironmentnutritiousestablishinglivelihoodsablecommercialisedcreatingemploymentopportunitieseconomicgrowthnotableabundanceincludetermitesantscricketscaterpillarsrecommendscommercialiseproductionpreservationprocessingleadseradicationperennialimprovesdevelopingrecommendestablishmentsafetyguidelinesplanplacecurrentlyInsectsConsumptionEnvironmentalHealthFoodSystems:BibliometricStudy

Similar Articles

Cited By