Comparative Metabolite Profiling and Bioactivity Evaluation of Pneumatophore-Derived Aspergillus Strains From Three Geographically Distinct Mangrove Ecosystems of India: Isolation of a New Dahejpyrone Derivative
Jul 2026· Current Microbiology· Vol 83· 0 citations· 37 references
Medicine
TL;DR
The land use land cover classes reveal a strong correlation of mangroves with microbial nature, and a first time report, new dahejpyrone (kavapyrone analog, 5) from Aspergillus niger.
Inflammation-driven disorders such as rheumatoid arthritis require safer and more effective therapeutic alternatives to conventional immunosuppressive drugs. In this study, we purified and identified a soil-derived fungal isolate. Its anti-inflammatory and anti-arthritic potential was evaluated using integrated chemical, biological, and computational approaches. Morphological characteristics combined with 18 S rRNA gene sequencing confirmed the isolate as Penicillium chrysogenum (GenBank accession: PV110187.1), validating its taxonomic identity for downstream investigations. Gas chromatography–mass spectrometry (GC–MS) profiling of the methanolic extract revealed a chemically diverse metabolome dominated by polyunsaturated fatty acid esters and terpenoid constituents. The most abundant constituents were methyl 5,8,11,14-eicosatetraenoate (43.21%), caryophyllene oxide (17.68%), and docosahexaenoic acid methyl ester (6.84%). Additionally, several other known anti-inflammatory metabolites—including costunolide, reynosin, lupeol, and valerenol—were also identified in the extract. In vitro evaluation demonstrated potent inhibition of heat-induced protein denaturation, with an IC₅₀ value of 10.07 ± 0.07 µg/mL, supporting strong anti-inflammatory activity. The IC₅₀ value guided the selection of rational in vivo doses. These were subsequently validated using a complete Freund’s adjuvant-induced arthritis model. Administration of the fungal extract at 10, 20, and 40 mg/kg significantly alleviated paw swelling in a dose-dependent manner. The highest dose exhibited efficacy comparable to methotrexate. Histopathological analyses confirmed marked preservation of joint cartilage, synovial architecture, and muscle integrity. Extract treatment restored the cytokine balance by significantly suppressing the pro-inflammatory cytokines IFN-γ, IL-1β, and IL-17. Conversely, levels of the anti-inflammatory cytokine IL-4 were markedly enhanced. Besides, biochemical assessments demonstrated hepatic and renal safety. Molecular docking studies supported these findings, revealing strong binding affinities of key metabolites to the JAK2 receptor. Therefore, these results support the potential of P. chrysogenum extract as a biologically active anti-inflammatory preparation, pending additional mechanistic and translational studies.
Ahmed Sadoun, Hussien H. Elshikh, M. Elaasser et al.· Journal of Basic and Applied...· 0 citations
The genus Plenodomus remains relatively understudied, with limited reports regarding its specialized metabolites. In this study, the endophytic strain Plenodomus sp. IQ-2000, isolated from Tanacetum parthenium (L.) Schultz-Bip, was investigated following preliminary screenings that revealed a promising capacity to produce chemically diverse entities and inhibit human protein tyrosine phosphatase 1B (hPTP1B1-400). Using a strategy based on Feature-Based Molecular Networking (FBMN) integrated with the bioactivity of active fractions, five secondary metabolites (1-5) were prioritized and isolated. Their structures were elucidated through extensive NMR spectroscopy and high-resolution mass spectrometry (HRESIMS). Among the isolates, two undescribed phomanolide-type meroterpenoids, 7,8-epoxy-prephomanolide (1) and prephomanolide (2), are reported, whose absolute configuration were assigned via electronic circular dichroism (ECD) supported by time-dependent density functional theory (TDDFT) calculations. The isolation of 2 provides crucial experimental evidence for the previously hypothesized biosynthesis of this class of compounds. Compounds 2 and 3 exhibited moderate inhibitory potential against the evaluated target, with inhibition rates of 73.0 ± 3.5% and 51.5 ± 4.5% at 20 μg/mL, respectively. Notably, all isolated compounds are reported from the genus Plenodomus for the first time, expanding the known chemical space of this fungal genus.
Carlos A. Fajardo-Hernández, Martha Isela Romero-Bazán, V. Reyes-Pérez et al.· Fitoterapia· 0 citations
Chemical investigation of the endophytic fungus Aspergillus sp. FH-1 from Valeriana officinalis L., guided by GNPS molecular networking, afforded six compounds. These included two rare open-chain butenolides, designated as terrusnolides D (1) and F (2), together with four known analogues: terrusnolide A (3), versiol (4), decumbenone A (5), and decumbenone B (6). Their structures were unequivocally determined through extensive spectroscopic methods (HRESIMS, 1D/2D NMR, and ECD). Antifungal evaluation against the phytopathogen Colletotrichum gloeosporioides demonstrated that compounds 1 and 3 exhibited significant inhibitory activity, with EC50 values of 32.77 ± 1.12 μg/mL and 42.81 ± 1.01 μg/mL, respectively, both outperforming the positive control carbendazim.
H. Fan, Yinhan Teng, Jingjing Su et al.· Natural Product Research· 0 citations
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