Insecticidal and Antiprotozoal Properties of Lichen Secondary Metabolites on Insect Vectors and Their Transmitted Protozoal Diseases to Humans

Author:

Muhoro Arthur M.,Farkas Edit É.ORCID

Abstract

Since the long-term application of synthetic chemicals as insecticides and the chemotherapy of protozoal diseases have had various negative effects (non-target effects, resistance), research on less harmful biological products is underway. This review is focused on lichens with potential insecticidal and antiprotozoal activity. Literature sources (27) were surveyed from five bibliographic databases and analyzed according to the taxonomic group of the insect, the protozoal disease and the lichen, the type of bioactive compounds (including method of application and mount applied), and the potential bioactivity based on mortalities caused after 24 h of exposure on insects and on parasitic protozoa. Six species of protozoa and five species of mosquitoes, three kinds of larval stages of insects and three protozoa stages were tested. Insecticidal and antiprotozoal effects of crude extracts and seven lichen secondary metabolites (mostly usnic acid) of 32 lichen species were determined. Physiological and morphological changes on parasitic protozoa were observed. Mortality rates caused by LSMs on insect vectors closer to (or somewhat above) the WHO threshold were considered to be insecticides. The results are based on laboratory experiments; however, the efficacy of metabolites should be confirmed in the field and on non-human primates to control the insect vectors and human protozoal diseases transmitted by insects.

Funder

Nemzeti Kutatási Fejlesztési és Innovációs Hivatal

Stipendium Hungaricum Scholarship

Publisher

MDPI AG

Subject

Nature and Landscape Conservation,Agricultural and Biological Sciences (miscellaneous),Ecological Modelling,Ecology

Reference60 articles.

1. Insecticidal effect of Usnea longissima (Parmeliaceae) extract against Sitophilus granarius (Coleoptera: Curculionidae);Yildirim;Int. J. Agric. Biol.,2012

2. WHO 2020, World Health Organization/News Room/ Fact Sheets/Detail/Malaria, 1 April 2021 https://www.who.int/news-room/fact-sheets/detail/malaria

3. Non-vector transmission of dengue and other mosquito-borne Flaviviruses;Chen;Dengue Bull.,2005

4. Environmental changes and emerging vectorborne diseases: A review;Dar;Biol. Forum Int. J.,2010

5. Termite Damage to Buildings: Nature of Attacks and Preventive Construction Methods

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