Contribution of adipocytes in the tumor microenvironment to breast cancer metabolism

被引:24
作者
Lyu, Xiaodan [1 ]
Zhang, Qian [1 ]
Fares, Hamza M. [1 ]
Wang, Yifan [1 ]
Han, Yi [1 ]
Sun, Li [1 ]
机构
[1] China Pharmaceut Univ, Jiangsu Key Lab Drug Screening, 24 Tongjiaxiang, Nanjing 210009, Peoples R China
基金
中国国家自然科学基金;
关键词
Tumor microenvironment; Cancer-associated adipocytes; Breast carcinoma; Metabolic reprogramming; Obesity; ADIPOSE-TISSUE; ACID; CELLS; LEPTIN; METASTASIS; CROSSTALK; FAT; INHIBITION; GROWTH; PATHOPHYSIOLOGY;
D O I
10.1016/j.canlet.2022.215616
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Breast cancer is considered the most common malignancy, with the profound ability to perform a wide range of metabolic reprogramming. Within the breast cancer microenvironment, highly available cancer-associated adipocytes interact with cancer cells by releasing various adipocytokines and metabolites. Obesity is also an important factor in this manner, where the accumulation of adipose tissue next to tumor tissue is linked to the increased incidence, progression, and metastasis of breast cancer. The metabolic changes caused by the crosstalk between breast cancer cells and dysfunctional adipose tissue include glucose, lipid, and amino acid metabolism. Thus, preventing this interaction between breast cancer cells and dysfunctional adipose tissue might develop a promising therapeutic strategy against breast cancer. This review focused on the metabolic changes responsible for inducing the crosstalk between breast cancer cells and adipocytes. We also reviewed the recent updates in therapeutics designed to disrupt this interaction.
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收藏
页数:9
相关论文
共 103 条
[81]   Increased Expression of Beige/Brown Adipose Markers from Host and Breast Cancer Cells Influence Xenograft Formation in Mice [J].
Singh, Rajan ;
Parveen, Meher ;
Basgen, John M. ;
Fazel, Sayeda ;
Meshesha, Meron F. ;
Thames, Easter C. ;
Moore, Brandis ;
Martinez, Luis ;
Howard, Carolyn B. ;
Vergnes, Laurent ;
Reue, Karen ;
Pervin, Shehla .
MOLECULAR CANCER RESEARCH, 2016, 14 (01) :78-92
[82]   Impact of Diabetes, Insulin, and Metformin Use on the Outcome of Patients With Human Epidermal Growth Factor Receptor 2-Positive Primary Breast Cancer: Analysis From the ALTTO Phase III Randomized Trial [J].
Sonnenblick, Amir ;
Agbor-Tarh, Dominique ;
Bradbury, Ian ;
Di Cosimo, Serena ;
Azim, Hatem A., Jr. ;
Fumagalli, Debora ;
Sarp, Severine ;
Wolff, Antonio C. ;
Andersson, Michael ;
Kroep, Judith ;
Cufer, Tanja ;
Simon, Sergio D. ;
Salman, Pamela ;
Toi, Masakazu ;
Harris, Lyndsay ;
Gralow, Julie ;
Keane, Maccon ;
Moreno-Aspitia, Alvaro ;
Piccart-Gebhart, Martine ;
de Azambuja, Evandro .
JOURNAL OF CLINICAL ONCOLOGY, 2017, 35 (13) :1421-+
[83]   Mitochondrial metabolism in cancer metastasis Visualizing tumor cell mitochondria and the "reverse Warburg effect" in positive lymph node tissue [J].
Sotgia, Federica ;
Whitaker-Menezes, Diana ;
Martinez-Outschoorn, Ubaldo E. ;
Flomenberg, Neal ;
Birbe, Ruth C. ;
Witkiewicz, Agnieszka K. ;
Howell, Anthony ;
Philp, Nancy J. ;
Pestell, Richard G. ;
Lisanti, Michael P. .
CELL CYCLE, 2012, 11 (07) :1445-1454
[84]   EGCG Inhibits Adipose-Derived Mesenchymal Stem Cells Differentiation into Adipocytes and Prevents a STAT3-Mediated Paracrine Oncogenic Control of Triple-Negative Breast Cancer Cell Invasive Phenotype [J].
Suarez, Narjara Gonzalez ;
Torres, Sahily Rodriguez ;
Ouanouki, Amira ;
El Cheikh-Hussein, Layal ;
Annabi, Borhane .
MOLECULES, 2021, 26 (06)
[85]   A Role for p53 in the Adaptation to Glutamine Starvation through the Expression of SLC1A3 [J].
Tajan, Mylene ;
Hock, Andreas K. ;
Blagih, Julianna ;
Robertson, Neil A. ;
Labuschagne, Christiaan F. ;
Kruiswijk, Flore ;
Humpton, Timothy J. ;
Adams, Peter D. ;
Vousden, Karen H. .
CELL METABOLISM, 2018, 28 (05) :721-+
[86]   Effects of metformin on adipose-derived stromal cell (ADSC) - Breast cancer cell lines interaction [J].
Teufelsbauer, Maryana ;
Rath, Barbara ;
Plangger, Adelina ;
Staud, Clement ;
Nanobashvili, Josif ;
Huk, Ihor ;
Neumayer, Christoph ;
Hamilton, Gerhard ;
Radtke, Christine .
LIFE SCIENCES, 2020, 261
[87]   Kinome Screen Identifies PFKFB3 and Glucose Metabolism as Important Regulators of the Insulin/Insulin-like Growth Factor (IGF)-1 Signaling Pathway [J].
Trefely, Sophie ;
Khoo, Poh-Sim ;
Krycer, James R. ;
Chaudhuri, Rima ;
Fazakerley, Daniel J. ;
Parker, Benjamin L. ;
Sultani, Ghazal ;
Lee, James ;
Stephan, Jean-Philippe ;
Torres, Eric ;
Jung, Kenneth ;
Kuijl, Coenraad ;
James, David E. ;
Junutula, Jagath R. ;
Stoeckli, Jacqueline .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (43) :25834-25846
[88]  
Wang TY, 2018, CELL METAB, V27, P136, DOI [10.1016/j.cmet.2017.11.001, 10.1016/j.cmet.2018.04.018]
[89]   Mammary adipocytes stimulate breast cancer invasion through metabolic remodeling of tumor cells [J].
Wang, Yuan Yuan ;
Attane, Camille ;
Milhas, Delphine ;
Dirat, Beatrice ;
Dauvillier, Stephanie ;
Guerard, Adrien ;
Gilhodes, Julia ;
Lazar, Ikrame ;
Alet, Nathalie ;
Laurent, Victor ;
Le Gonidec, Sophie ;
Biard, Denis ;
Herve, Caroline ;
Bost, Frederic ;
Ren, Guo Sheng ;
Bono, Francoise ;
Escourrou, Ghislaine ;
Prentki, Marc ;
Nieto, Laurence ;
Valet, Philippe ;
Muller, Catherine .
JCI INSIGHT, 2017, 2 (04)
[90]   The roles of sphingosine kinases 1 and 2 in regulating the Warburg effect in prostate cancer cells [J].
Watson, David G. ;
Tonelli, Francesca ;
Alossaimi, Manal ;
Williamson, Leon ;
Chan, Edmond ;
Gorshkova, Irina ;
Berdyshev, Evgeny ;
Bittman, Robert ;
Pyne, Nigel J. ;
Pyne, Susan .
CELLULAR SIGNALLING, 2013, 25 (04) :1011-1017