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February 25, 2026Current Oncology2 citationsOpen Access

Metabolic Vulnerabilities as a Therapeutic Target in Breast Cancer

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SGSabrina GuoCAChristina Addison

Key Points

  • This research examines how metabolic pathways contribute to breast cancer progression and identifies potential therapeutic targets.
  • Review of metabolic pathways in breast cancer
  • Analysis of key enzymes involved in metabolism
  • Evaluation of therapeutic strategies targeting metabolic vulnerabilities
  • Metabolic reprogramming supports rapid tumor growth and therapy resistance
  • Targeting glycolysis and glutaminolysis shows therapeutic promise
  • Metabolic plasticity and tumor heterogeneity complicate treatment approaches

Abstract

Metabolic reprogramming is a defining feature of breast cancer, enabling tumor cells to sustain rapid proliferation, survive under stress, and resist therapy. Key pathways including glycolysis, glutaminolysis, lipid metabolism, and one-carbon metabolism, play central roles in meeting the energetic and biosynthetic demands of malignant cells. Enhanced glycolytic flux supports ATP generation and lactate production, while glutamine metabolism fuels the tricarboxylic acid cycle and provides nitrogen for nucleotide synthesis. Lipid metabolic pathways, particularly fatty acid synthesis, contribute to membrane biogenesis and signaling, and one-carbon metabolism driven by serine and glycine supplies methyl groups for epigenetic regulation and nucleotide production. These metabolic adaptations not only promote tumor growth but also create vulnerabilities that can be exploited therapeutically. Inhibiting these pathways has shown promise in preclinical models; however, challenges such as metabolic plasticity, tumor heterogeneity, and potential toxicity in normal tissues underscore the need for biomarker-driven strategies and rational combination therapies. Herein, we describe current knowledge of the role of these pathways in breast cancer progression, highlighting the role of key enzymes in promoting breast cancer tumor cell growth and in breast cancer prognoses.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/699e911bf5123be5ed04e791https://doi.org/10.3390/curroncol33020129
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mitochondrial Metabolism in Breast Cancer2026 · 1 citations
  2. 2Targeting metabolism of breast cancer and its implications in T cell immunotherapy2024 · 5 citations
  3. 3Editorial: Targeted cancer therapy through metabolic pathways2026
  4. 4Metabolic Adaptations in Cancer Progression: Optimization Strategies and Therapeutic Targets2025 · 9 citations
  5. 5Metabolic reprogramming in cancer: dysregulation of glucose, lipid, and amino acid pathways and therapeutic opportunities2026 · 15 citations