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April 30, 2026Marine Drugs1 citationsOpen Access

Smart Secondary Metabolites in Marine Environments: Exploring the Oxasqualenoid Dehydrothyrsiferol

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FCFrancisco Cen-PachecoADAna R. Díaz-MarreroJFJosé J. Fernández

Key Points

  • To investigate dehydrothyrsiferol as a smart secondary metabolite in marine ecosystems.
  • Conducted a review on dehydrothyrsiferol from Laurencia viridis
  • Analyzed its molecular structure and biosynthesis pathways
  • Assessed its bioactivity against kinetoplastids and drug-resistant tumors
  • Identified a high metabolic yield of 0.42% w/w from crude extract
  • Demonstrated selective bioactivity against kinetoplastids and resistant tumors
  • Showed effective reduction of lesion size by 87% in murine models of cutaneous leishmaniasis

Abstract

Dehydrothyrsiferol (DT), a brominated oxasqualenoid from the red alga Laurencia viridis, represents a compelling example of this framework. This review establishes DT as a model Smart Secondary Metabolite based on the convergence of a unique molecular architecture of rigid stereogroups connected by flexible bonds; a high metabolic yield (0.42% w/w of crude extract); potent selective bioactivity against kinetoplastids and drug-resistant tumors; multi-target modulation of protein phosphatase 2A (PP2A) and cell-surface integrins; and distinctive chemotaxonomic relevance within Macaronesian communities. Its biosynthesis proceeds through stereocontrolled epoxide-opening cascades, generating an evolutionarily refined scaffold. Ecologically, DT operates as a multifunctional shield, providing antifouling protection and deterring herbivory. Pharmacologically, it acts as a selective signaling modulator, triggering integrin-mediated cell death (IMD) in resistant cancer cells and inducing mitochondrial collapse in protozoa. In vivo studies in murine models of cutaneous leishmaniasis have demonstrated an 87% reduction in lesion size, reinforcing its promise as a lead structure.

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Cite This Study

Cen-Pacheco et al. (2026) studied this question.

synapsesocial.com/papers/69f2a49d8c0f03fd677639b6https://doi.org/10.3390/md24050155
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