1. Academic Validation
  2. Natural Products as a Major Source of Candidates for Potential Senolytic Compounds obtained by in silico Screening

Natural Products as a Major Source of Candidates for Potential Senolytic Compounds obtained by in silico Screening

  • Med Chem. 2023;19(7):653-668. doi: 10.2174/1573406419666221019153537.
Oscar S Barrera-Vázquez 1 Gil A Magos-Guerrero 1 Juan L Escobar-Ramírez 1 Juan C Gomez-Verjan 2
Affiliations

Affiliations

  • 1 Departamento de Farmacología, Facultad de Medicina, Universidad Nacional Autónoma de México (UNAM), Mexico City, Mexico.
  • 2 Dirección de Investigación, Instituto Nacional de Geriatría, Mexico City, Mexico.
Abstract

Background: Preclinical studies suggest that senolytic compounds such as quercetin (a natural product) and dasatinib (a synthetic product) decrease senescent cells, reduce inflammation, and alleviate human frailty. This evidence has opened a new field of research for studying the effect of these compounds on age-related dysfunction and diseases.

Objective: The present study performed in silico and we identified new potential senolytic candidates from an extensive database that contains Natural Products (NPs) and semi-synthetic products (SMSs).

Methods: Computer programs Chemminer and rcdk packages, which compared the fingerprints of numerous molecules (40,383) with reference senolytics, and the creation of a pharmacological network built with signaling pathways and targets involved in senescence processes were used to identify compounds with a potential activity.

Results: Six drug-like candidates (3,4'-dihydroxypropiophenone, baicalein, α, β-dehydrocurvularin, lovastatin, luteolin, and phloretin) were identified.

Conclusion: To our knowledge, this is the first time that these six natural molecules have been proposed to have senolytic activity. To validate the methodology employed in the identification of new drug-like senolytics, experimental evidence is needed with models that evaluate senolytic activity.

Keywords

Chemoinformatics; aging; database; natural products; semi-synthetics; senescence; senolytics.

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