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Contemporary Insights into the Biological Mechanisms of Parkia biglobosa

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  • Kayode Komolafe

    (RCMI Center for Environmental Health, College of Science, Engineering and Technology, Jackson State University, 1400 Lynch Street, Box 18750, Jackson, MS 39217, USA
    Environmental Science PhD Program, College of Science, Engineering and Technology, Jackson State University, 1400 Lynch Street, Jackson, MS 39217, USA)

  • Mary Tolulope Olaleye

    (Department of Biochemistry, School of Sciences, The Federal University of Technology, P.M.B. 704, Akure 340110, Nigeria)

  • Hung-Chung Huang

    (Department of Biology, College of Science, Engineering and Technology, Jackson State University, Jackson, MS 39217, USA)

  • Maricica Pacurari

    (RCMI Center for Environmental Health, College of Science, Engineering and Technology, Jackson State University, 1400 Lynch Street, Box 18750, Jackson, MS 39217, USA
    Department of Biology, College of Science, Engineering and Technology, Jackson State University, Jackson, MS 39217, USA)

Abstract

For a long time, traditional medicine has relied on the use of medicinal plants and herbal products which have served as the basis for numerous pharmaceuticals. Parkia biglobosa (Jacq) R.Br.ex. G. Don., commonly called the African locust bean tree, is a perennial deciduous plant native to West Africa where it is highly esteemed for its nutritional and traditional medicinal benefits. Parkia biglobosa ’s ethnomedicinal uses include microbial infections such as diarrhea and chronic diseases like hypertension and type 2 diabetes mellitus. This article presents the current understanding of the molecular mechanisms underlying Parkia biglobosa ’s biological effects. An electronic database search was conducted using P. biglobosa and its synonyms as keywords in Scientific Electronic Library Online, ISI Web of Knowledge, PubMed, Scopus, Science Direct, and Google Scholar. Consistently, scientific research has confirmed the medicinal effects of the plant’s extracts and active phytochemicals, including antimicrobial, analgesic, antidiabetic, antihypertensive, hypolipidemic, and neuroprotective properties, among others. It highlights the contributions of identified innate phytochemicals and existing limitations to therapeutic applications, as well as the need for and prospects for further research. Advancing our understanding of the medicinal plant’s biological mechanisms and the contributions of the active phytochemicals would allow for more effective exploration of its vast pharmacological potential and facilitate clinical applications.

Suggested Citation

  • Kayode Komolafe & Mary Tolulope Olaleye & Hung-Chung Huang & Maricica Pacurari, 2024. "Contemporary Insights into the Biological Mechanisms of Parkia biglobosa," IJERPH, MDPI, vol. 21(4), pages 1-20, March.
  • Handle: RePEc:gam:jijerp:v:21:y:2024:i:4:p:394-:d:1362854
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    References listed on IDEAS

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    1. Maria Miklasińska-Majdanik & Małgorzata Kępa & Robert D. Wojtyczka & Danuta Idzik & Tomasz J. Wąsik, 2018. "Phenolic Compounds Diminish Antibiotic Resistance of Staphylococcus Aureus Clinical Strains," IJERPH, MDPI, vol. 15(10), pages 1-18, October.
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