ArticleCancer cell international2023
Disclosing a metabolic signature of cisplatin resistance in MDA-MB-231 triple-negative breast cancer cells by NMR metabolomics.
Article in Cancer cell international, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 15 citations in OpenAlex.
- In Vitro Doxorubicin Delivery Using TPP-Folate-Dendrimer-Functionalized Gold Nanoclusters.Pharmaceuticals (Basel, Switzerland) · 2026Article
- Global research status and frontiers on autophagy in triple negative breast cancer (TNBC): a comprehensive bibliometric and visualized analysis.Discover oncology · 2025Article
- Metabolomics as a tool for understanding and treating triple-negative breast cancer.Naunyn-Schmiedeberg's archives of pharmacology · 2025Review
- Recent Prospectives of Cellular Signaling Role for Mammary Gland Carcinogenesis.Anti-cancer agents in medicinal chemistry · 2025Review
- Multi-omics dissection of tumor microenvironment-mediated drug resistance: mechanisms and therapeutic reprogramming.Frontiers in pharmacology · 2025Review
- Metabolomic profiling of childhood medulloblastoma: contributions and relevance to diagnosis and molecular subtyping.Journal of cancer research and clinical oncology · 2024Review
- PdJournal of medicinal chemistry · 2024Article
- Patterns of immune evasion in triple-negative breast cancer and new potential therapeutic targets: a review.Frontiers in immunology · 2024Review
- Suppressive Potential ofInternational journal of molecular and cellular medicine · 2024Article
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Authors and funding
7 authors at 4 institutions in 1 country.
Funding
Abstract
This work compared the metabolic profile of a parental MDA-MB-231 cisplatin-sensitive triple negative breast cancer (TNBC) cell line with that of a derived cisplatin-resistant line, to characterize inherent metabolic adaptations to resistance, as a means for marker and new TNBC therapies discovery. Supported by cytotoxic, microscopic and biochemical characterization of both lines, Nuclear Magnetic Resonance (NMR) metabolomics was employed to characterize cell polar extracts for the two cell lines, as a function of time (0, 24 and 48 h), and identify statistically relevant differences both between sensitive and resistant cells and their time course behavior. Biochemical results revealed a slight increase in activation of the NF-κB pathway and a marked decrease of the ERK signaling pathway in resistant cells. This was accompanied by lower glycolytic and glutaminolytic activities, possibly linked to glutamine being required to increase stemness capacity and, hence, higher survival to cisplatin. The TCA cycle dynamics seemed to be time-dependent, with an apparent activation at 48 h preferentially supported by anaplerotic aromatic amino acids, leucine and lysine. A distinct behavior of leucine, compared to the other branched-chain-amino-acids, suggested the importance of the recognized relationship between leucine and in mTOR-mediated autophagy to increase resistance. Suggested markers of MDA-MB-231 TNBC cisplatin-resistance included higher phosphocreatine/creatine ratios, hypotaurine/taurine-mediated antioxidant protective mechanisms, a generalized marked depletion in nucleotides/nucleosides, and a distinctive pattern of choline compounds. Although the putative hypotheses generated here require biological demonstration, they pave the way to the use of metabolites as markers of cisplatin-resistance in TNBC and as guidance to develop therapies.
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