Skip to content
Open access

Isolation of the new polyketide (−)-R-talaropinophiloic acid guided by an integrated metabolomics-dereplication approach

Jul 2026 · World Journal of Microbiology & Biotechnology · Vol 42 · 0 citations · 58 references
Medicine

TL;DR

The results expand knowledge of the chemical diversity of the Talaromyces genus and underscore its potential as a promising source of new bioactive polyketides.

Abstract

As part of our ongoing bioprospecting program targeting endophytic fungi, the strain Talaromyces pinophilus J6 was isolated from Euphorbia umbellata. The endophyte metabolic potential was evaluated through a combined metabolomics-dereplication workflow based on an in-house high-resolution mass spectrometry (HRMS) database of Talaromyces metabolites. The strategy enabled rapid annotation of seven metabolites (a-g), allowing rapid characterization of the fungal metabolome and guiding the isolation of potentially new specialized metabolites. Chromatographic fractionation of the crude extract from T. pinophilus J6 cultivated on potato dextrose agar supplemented with ammonium sulfate afforded two polyketides: the new (-)-R-talaropinophiloic acid (1) and the known 3-O-methylfunicone (2). Their chemical structures were determined by Nuclear Magnetic Resonance (NMR), Circular Dichroism (CD), and HRMS analyses. The cytotoxic activities were assessed against the muscle-invasive bladder cancer cell line T24 by MTT assay, yielding IC₅₀ values of 204.70 µM for 1 and 59.68 µM for 2, compared with 6.4 µM for the positive control cisplatin. Assays against the non-tumor RPE-1 cell line showed that 2 displayed a CC₅₀ of 16.62 µM, whereas 1 was non-toxic, highlighting 1 as highly selective for cancer cells. Overall, our results expand knowledge of the chemical diversity of the Talaromyces genus and underscore its potential as a promising source of new bioactive polyketides. A metabolomics–dereplication approach applied to Talaromyces pinophilus J6 from Euphorbia umbellata led to the isolation of 3-O-methylfunicone and the new (–)-R-talaropinophiloic acid with selective cytotoxic activity against T24 cancer cells. A metabolomics–dereplication approach applied to Talaromyces pinophilus J6 from Euphorbia umbellata led to the isolation of 3-O-methylfunicone and the new (–)-R-talaropinophiloic acid with selective cytotoxic activity against T24 cancer cells.

Read PDF

Similar papers

Open access Sep 2026

Integrated molecular networking-guided discovery of antimicrobial secondary metabolites from Thyronectria pinicola

Using an LC-MS/MS-based molecular networking-guided approach, three previously undescribed chlorinated resorcylic acid lactone derivatives (5–7), two new cleistanthane-type diterpenoids (11–12) and a new dimeric derivative (13), together with seven known metabolites, were isolated from a cereal culture of Thyronectria...

M. Alilou, Javad Mottaghipisheh, E. M. Moghadam et al. · 0 citations
Open access Aug 2026

Canalesolide A, a Structurally Unique Polyhydroxy Macrolide from the Marine Cyanobacterium Okeania sp. with Potent Antitrypanosomal Activity

Canalesolide A displays potent, low nanomolar antitrypanosomal activity against human-infective subspecies of T. brucei with rapid elimination of parasites within 1 h at 1 μM, and preliminary in vivo efficacy/toxicity studies in infected mice suggest a narrow therapeutic window highlighting the need for improved select...

Thaiz R. Teixeira, Byeol Ryu, Richard Cox et al. · 0 citations
Aug 2026

N -Acetylcysteine-Conjugated Benzoxazomycins and Hydroxymycotrienin Derivatives from a Hymenoptera-Associated Streptomyces sp. SID10815

As part of our continuing search for antifungal natural products, we investigated the secondary metabolites of Streptomyces sp. SID10815, an actinomycete isolated from a ground-nesting bee-associated environment that exhibited notable antifungal activity in preliminary screenings. Herein, we report the discovery of f...

Won Se Suh, Alexander J. Smith, Allan Artavia-León et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.