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February 22, 2026Plants1 citationsOpen Access

Antimutagenic and Anticarcinogenic Evidence of the Genus Ficus L.

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EMEduardo Madrigal‐SantillánJPJacqueline Portillo-ReyesLGLuis Fernando García-Melo

Key Points

  • The aim was to gather and analyze research on the genoprotective potential of the Ficus genus.
  • Conducted a comprehensive literature search across multiple scientific databases.
  • Compiled studies focusing on both in vitro and in vivo evidence related to Ficus species.
  • Reviewed traditional ethnomedicinal uses of various Ficus species.
  • Identified over 30 traditional uses of Ficus linked to bioactive compounds.
  • Highlighted significant antimutagenic and anticarcinogenic properties across multiple studies.
  • Promoted the need for further scientific investigation into genetic protection via Ficus.

Abstract

Among the most important species of Ficus L. genus are F. deltoidea, F. exasperata, F. sycomorus, F. religiosa, F. microcarpa, F. hirta Vahl., F. benghalensis, F. racemosa, F. elastica, and F. carica. The genus has more than 30 traditional ethnomedicinal uses, attributed to the combination of different bioactive compounds, including flavonoids, (flavanols, flavones, flavonols, isoflavones, chalcones, anthocyanins), phenolic acids (hydroxycinnamic acids, hydroxybenzoic acids), terpenes (triterpenes, tetraterpenes, diterpenes, sesquiterpenes, monoterpenes), phytosterols, coumarins, hydroxybenzoates, phenylpropanoids, chlorins, pheophytins, megastigmans, chitinases, organic acids, fatty acids, amino acids, alkaloids, and glycosides. With this in mind, the objective of this manuscript was to conduct a scientific search in the main electronic databases (PubMed, SciELO, Latindex, Redalyc, BiologyBrowser, ScienceResearch, ScienceDirect, World Wide Science, Web of Science, Academic Journals, Etnobotany, Scopus, and Google Scholar) to gather information on published research regarding the genoprotective potential of the Ficus L. genus. Unlike most scientific articles, which primarily describe the individual characteristics and properties of each species, this document compiles the largest number of studies (in vitro and in vivo) on Ficus plants described by different authors. Thus, we aim to promote more detailed scientific research and expand studies on the protective capacity of these angiosperm plants to the genetic material.

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Cite This Study

Madrigal‐Santillán et al. (2026) studied this question.

synapsesocial.com/papers/699a9d27482488d673cd2db0https://doi.org/10.3390/plants15040654
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