An overview of the main factors in the CAA-cancer cell cross-talk is provided, with a focus on the metabolic consequences of this interaction.
Abstract
Metabolic plasticity and flexibility are key characteristics that allow cancer cells to adapt and thrive in different environments. Specifically, cancer cells can dynamically change the routing of metabolic pathways in response to environmental changes and adapt their metabolic activity depending on local nutrient availability. The tumor microenvironment (TME) plays crucial roles in cancer development and progression. It is now widely accepted that different stromal cells, as well as soluble factors, including metabolites, derived from the TME support cancer cell proliferation and survival and drive migration, invasion, and the formation of metastases. Some cancer types grow in the proximity of adipose tissue (AT), which is mostly composed of mature adipocytes, a specialized cell type responsible for the storage and controlled release of lipids. In response to specific stimuli released by cancer cells, adipocytes can transform into cancer-associated adipocytes (CAAs). CAAs release signaling molecules, and provide fatty acids to cancer cells and other cell types in the TME, which can then utilize these fatty acids as fuel. The interaction between cancer cells and adipocytes creates a dynamic cross-talk that promotes disease progression through multiple mechanisms. In this review, we aim to provide an overview of the main factors in the CAA-cancer cell cross-talk, with a focus on the metabolic consequences of this interaction.
Molecular changes within the cancer cells are not enough to explain the metastatic potential of malignant tumors. The communication between the malignant cells and their cellular and extracellular milieu is crucial for the progression of the tumor. The mediators that participate in this communication have received a lo...
Nebras Rada Mohammed, M. Ibrahim· International Journal of Bio...· 0 citations
Adipose tissue, once considered a passive fuel store, is now recognized as a dynamic endocrine organ that shapes cancer behavior. Within the tumor microenvironment (TME), cancer-associated adipocytes (CAAs) undergo marked reprogramming—losing large lipid droplets, adopting fibroblast-like features, and intensifying lip...
Jin-Min Shi, S. Abdel-Ghany, Mariam M Abdelfattah et al.· Signal Transduction and Targ...· 0 citations
This review clarifies the metabolic crosstalk mechanisms between ECM, CAFs and tumor cells, providing a theoretical basis for developing combinatorial therapeutic designs integrating metabolism-targeted agents, stroma-directed therapies and immunotherapy to amplify anti-tumor efficacy.
Chen-Yu Wei, Hao-Lin Sun, Jiang-Lan Long et al.· International Immunopharmaco...· 0 citations
Various epigenetic mechanisms controlling cancer cell‐intrinsic states, cancer cell–TME crosstalk, current epigenetic therapies, and future research directions that may lead to the discovery of new biomarkers and the development of effective epigenetic anticancer therapeutics are discussed.
Ji Hoon Park, Mi-Young Kim· Molecular Oncology· 1 citation
This review systematically elaborates on the central role of "tumor-host" metabolic crosstalk in reshaping both the TME and the broader host macroenvironment, suggesting the need for multiscale metabolic interventions to improve cancer treatment efficacy.
Yi Zhang, Caixia Suo, Linchong Sun· Chinese Medical Journal· 0 citations
Metabolism, a network of biochemical reactions, provides cells with energy and the building blocks necessary to maintain their growth and function. Moreover, metabolites can act as signaling molecules that are exchanged across cells which impact events both inside and outside a cell. In cancer, these normal processes a...
Thi Tran Ngoc Minh· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.