Aucubin is a widely distributed iridoid glycoside that has gained increasing attention as a multifunctional scaffold in natural product-based drug discovery. Occurring predominantly in Plataginaceae and related medicinal plant families, aucubin is biosynthesized through a modified monoterpenoid pathway and stored as a stable glycoside that undergoes enzymatic activation to yield its aglycone aucubigenin. This prodrug-like behavior underlies its context-dependent biological activity. Accumulating preclinical evidence demonstrates anti-oxidant, anti-inflammatory, anti-fibrotic, metabolic-regulatory, cytoprotective, and immunomodulatory effects across models of cardiovascular disease, diabetes, chronic kidney injury, liver fibrosis, neurodegeneration, respiratory disorders, osteoporosis, wound healing, and cancer. Mechanistically, aucubin consistently modulates convergent stress-response pathways, including suppression of NF-κB signaling, activation of Nrf2/ARE anti-oxidant defense, regulation of AMPK-mediated metabolic homeostasis, preservation of mitochondrial integrity, and inhibition of TGF-β/Smad-driven fibrogenesis. In bone and metabolic disorders, aucubin restores redox balance and supports osteoblast function while limiting osteoclastogenesis. In cancer models, it suppresses proliferation and modulates tumor-associated immune signaling, including PD-L1 expression. These pathways are central to the global burden of non-communicable diseases, directly aligning aucubin research with Sustainable Development Goal 3 (Good Health and Well-being). While the breadth and internal consistency of experimental findings support its value as a multi-target cytoprotective template, translation toward clinical application remains limited by the scarcity of human studies, standardized pharmacokinetic data, and comprehensive toxicological evaluation. Collectively, this review positions aucubin as a biologically informative iridoid glycoside with substantial scaffold-level relevance for future natural-product-inspired therapeutic development, rather than as a near-term clinical drug candidate.
M. Arafat, Mostafa K. Mohammad, Kareem A. Attallah et al.· European Journal of Pharmaco...· 0 citations
Covering: 2005-2025Pyrrocidines and hirsutellones are a fascinating class of fungal natural products that possess an intricate chemical structure characterized by a distinctive macrocyclic ring fused to a decahydrofluorene core. Known for their complex architectures as PKS-NRPS hybrids, these metabolites are isolated from various fungi and have attracted significant attention due to their potent pharmacological properties, including antimicrobial, antifungal, and anticancer effects. This review article aims to shed light on the structural diversities of 52 fungal-derived pyrrocidines and hirsutellones reported over the period of 2005-2025, providing insights into their chemistry, biosynthetic origins, pharmacokinetic profiles, and structure-activity relationships (SARs). Furthermore, we critically evaluate their promising therapeutic potential, highlighting the opportunities they present for modern drug discovery and development.
M. Tammam, Islam El‐Awaad, A. Aouidate et al.· Natural product reports (Pri...· 0 citations
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