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May 7, 2026Current Medicinal Chemistry0 citations

Uncovering Cancer-Associated Adipocytes: An Emerging Force Reshaping the Immunotherapy Landscape for Breast Cancer

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KQKe QianSir Run Run Shaw HospitalSXShujun XuUniversity of TorontoKZKe ZhangShaoxing People's Hospital

Key Points

  • To analyze the role of cancer-associated adipocytes (CAAs) in breast cancer and their impact on immunotherapy outcomes.
  • Review of current literature on the interaction between CAAs and breast cancer
  • Analysis of CAAs' influence on the Tumor Immune Microenvironment and therapeutic responses
  • Evaluation of CAA-targeted therapeutic strategies
  • CAAs enhance tumor invasion and angiogenesis in breast cancer
  • CAAs promote immunosuppressive environments through adipokine and cytokine profiles
  • Adipokine-mediated and lipid metabolic pathways are potential therapeutic targets

Abstract

The progression of breast cancer is intricately linked to the dynamic crosstalk between tumor cells and stromal cells. Within this complex interplay, Cancer-Associated Adipocytes (CAAs) have emerged as pivotal stromal components driving breast cancer malignancy by establishing a unique "adipose-immune" interface-one that integrates adipose-derived metabolic cues with immune cell dynamics to create a niche that accelerates tumor invasion, angiogenesis, and treatment resistance. This review systematically analyzes the roles of CAAs in breast cancer pathogenesis, focusing on how CAAs regulate the Tumor Immune Microenvironment (TIME) and the Adipose Tissue Microenvironment (ATME) individually and how they influence therapeutic responses through their interplay. A particular emphasis is placed on the functional heterogeneity of CAAs across different breast cancer subtypes and metabolic contexts, and its implications for shaping immunosuppressive niches and immunotherapy resistance. Specific mechanisms include: reshaping adipokine and inflammatory cytokine profiles to foster a pro-tumorigenic secretory landscape; inducing metabolic reprogramming in tumor cells to sustain aggressive growth; mediating intercellular signaling via exosomes to propagate malignant traits; altering immune cell functional states to shift toward an immunosuppressive phenotype; and promoting the establishment of immune escape pathways. Based on these mechanisms, the review synthesizes CAA-targeted therapeutic strategies for breast cancer, including: disrupting key adipokine-mediated signaling cascades to interrupt tumor-stroma communication, modulating CAA-secreted factors to reorient immune cell activities toward anti-tumor functions, and rewiring lipid metabolic pathways in the TIME to enhance therapeutic sensitivity. In-depth dissection of CAA functional networks is crucial for elucidating their pathogenic significance in breast cancer and fueling precision immunotherapy innovation, as such insights may open avenues for rebalancing TIME immune interactions and boosting immunotherapeutic efficacy.

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Cite This Study

Qian et al. (2026) studied this question.

synapsesocial.com/papers/69fbe2b3164b5133a91a2280https://doi.org/10.2174/0109298673424411251204102903
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Also Consider

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

  1. 1Cancer-associated adipocytes: metabolic reprogramming, crosstalk and therapeutic implications in tumor progression2026
  2. 2Matter of Fat: Cancer‐Associated Adipocytes as Mediators of Tumor Progression and Immune Evasion2025
  3. 3Editorial: The adipose tissue microenvironment in cancer: Molecular mechanisms and targets for treatment2022 · 5 citations
  4. 4The specific roles of adipose tissue in breast cancer2026
  5. 5Cancer-associated adipocyte promote progression and immunosuppression in triple-negative breast cancer2026 · 1 citations