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◆ Plants (Basel, Switzerland)2026-08-21

Secondary Metabolite Profiling, Antiproliferative Evaluation, and Terpenoid Prioritization of Indonesian Cardamom (Amomum compactum) Accessions.

Waras Nurcholis, Tamimah Shafwatul Ishlah, Chairunnisa Nur Amanda, Irmanida Batubara, Mohamad Rafi, Rudi Heryanto, Mira Dewi, Heru Cahya Rustamaji, Aryo Tedjo, Bambang Pontjo Priosoeryanto, Wisnu Ananta Kusuma

原始摘要(英文原文)· Original abstract
This study compared secondary-metabolite profiles, IC50-based antiproliferative activity, and relative selectivity of four Indonesian cardamom (Amomum compactum Soland. ex Maton) accessions: Bogor white, Bogor red, Sukabumi, and Ciamis. Ethanol and ethyl acetate extracts were evaluated in MCF-7, MCM-B2, and MCA-B1 tumor-derived cells, with Vero cells as a non-tumor-derived reference and profiled by untargeted LC-MS/MS. Putatively annotated metabolites were further assessed using chemometrics, terpenoid-focused network pharmacology, molecular docking, and 50 ns molecular dynamics simulation. Extract IC50 values ranged from 0.959 to 2.210 mg mL-1 in MCF-7, 0.818 to 2.733 mg mL-1 in MCM-B2, and 1.382 to 3.426 mg mL-1 in MCA-B1 cells, while Vero values ranged from 2.762 to 4.000 mg mL-1. MCF-7 cells generally showed the greatest overall sensitivity, although the lowest individual IC50 occurred with Sukabumi ethyl acetate extract in MCM-B2 cells. Ciamis ethyl acetate extract showed higher relative selectivity toward MCF-7 and MCM-B2 cells. LC-MS/MS putatively annotated 36 metabolites, with terpenoid-related compounds predominating. Kaur-16-ene was computationally prioritized based on predicted interactions with ESR1, EGFR, SCN5A, and CCND1 and short-timescale ESR1-complex stability. These findings demonstrate accession- and solvent-associated differences and support kaur-16-ene for further experimental validation.
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Secondary Metabolite Profiling, Antiproliferative Evaluation, and Terpenoid Prioritization of Indonesian Cardamom (Amomum compactum) Accessions. — 科研速览 Science Skim