Therapeutic Potential of Tumor Metabolic Reprogramming in Triple-Negative Breast Cancer

被引:12
作者
Munkacsy, Gyongyi [1 ,2 ]
Santarpia, Libero [3 ]
Gyorffy, Balazs [4 ,5 ]
机构
[1] Natl Lab Drug Res & Dev, Magyar Tudosok Korutja 2, H-1117 Budapest, Hungary
[2] Inst Enzymol, Res Ctr Nat Sci, Oncol Biomarker Res Grp, Magyar Tudosok Korutja 2, H-1117 Budapest, Hungary
[3] Seagen, Dammstr 23, CH-6300 Zug, Switzerland
[4] Semmelweis Univ, Dept Bioinformat, Tuzolto u 5-7, H-1094 Budapest, Hungary
[5] Semmelweis Univ, Dept Pediat, Tuzolto u 5-7, H-1094 Budapest, Hungary
关键词
triple-negative breast cancer; cancer metabolism; reprogramming; signaling pathway; tumor microenvironment; therapeutic signaling; FATTY-ACID OXIDATION; INFILTRATING LYMPHOCYTES; NITRIC-OXIDE; T-CELLS; FIBROBLASTS; PROGRESSION; MICROENVIRONMENT; EXPRESSION; GROWTH; MACROPHAGES;
D O I
10.3390/ijms24086945
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Triple-negative breast cancer (TNBC) is the most aggressive subtype of breast cancer, with clinical features of high metastatic potential, susceptibility to relapse, and poor prognosis. TNBC lacks the expression of the estrogen receptor (ER), progesterone receptor (PR), and human epidermal growth factor receptor 2 (HER2). It is characterized by genomic and transcriptional heterogeneity and a tumor microenvironment (TME) with the presence of high levels of stromal tumor-infiltrating lymphocytes (TILs), immunogenicity, and an important immunosuppressive landscape. Recent evidence suggests that metabolic changes in the TME play a key role in molding tumor development by impacting the stromal and immune cell fractions, TME composition, and activation. Hence, a complex inter-talk between metabolic and TME signaling in TNBC exists, highlighting the possibility of uncovering and investigating novel therapeutic targets. A better understanding of the interaction between the TME and tumor cells, and the underlying molecular mechanisms of cell-cell communication signaling, may uncover additional targets for better therapeutic strategies in TNBC treatment. In this review, we aim to discuss the mechanisms in tumor metabolic reprogramming, linking these changes to potential targetable molecular mechanisms to generate new, physical science-inspired clinical translational insights for the cure of TNBC.
引用
收藏
页数:21
相关论文
共 163 条
  • [1] Composite analysis of immunological and metabolic markers defines novel subtypes of triple negative breast cancer
    Adams, Thomas A.
    Vail, Paris J.
    Ruiz, Amanda
    Mollaee, Mehri
    McCue, Peter A.
    Knudsen, Erik S.
    Witkiewicz, Agnieszka K.
    [J]. MODERN PATHOLOGY, 2018, 31 (02) : 288 - 298
  • [2] Potential Nanotechnology-Based Therapeutics to Prevent Cancer Progression through TME Cell-Driven Populations
    Ali, Rafia
    Shao, Huimin
    Varamini, Pegah
    [J]. PHARMACEUTICS, 2023, 15 (01)
  • [3] Cancer-associated fibroblast-secreted CXCL16 attracts monocytes to promote stroma activation in triple-negative breast cancers
    Allaoui, Roni
    Bergenfelz, Caroline
    Mohlin, Sofie
    Hagerling, Catharina
    Salari, Kiarash
    Werb, Zena
    Anderson, Robin L.
    Ethier, Stephen P.
    Jirstrom, Karin
    Pahlman, Sven
    Bexell, Daniel
    Tahin, Balazs
    Johansson, Martin E.
    Larsson, Christer
    Leandersson, Karin
    [J]. NATURE COMMUNICATIONS, 2016, 7
  • [4] Targeting mTOR and DNA repair pathways in residual triple negative breast cancer post neoadjuvant chemotherapy
    Anand, Kartik
    Patel, Tejal
    Niravath, Polly
    Rodriguez, Angel
    Darcourt, Jorge
    Belcheva, Anna
    Boone, Toniva
    Ensor, Joe
    Chang, Jenny
    [J]. SCIENTIFIC REPORTS, 2021, 11 (01)
  • [5] The Omega-3 Docosahexaenoyl Ethanolamide Reduces CCL5 Secretion in Triple Negative Breast Cancer Cells Affecting Tumor Progression and Macrophage Recruitment
    Augimeri, Giuseppina
    Fiorillo, Marco
    Morelli, Catia
    Panza, Salvatore
    Giordano, Cinzia
    Barone, Ines
    Catalano, Stefania
    Sisci, Diego
    Ando, Sebastiano
    Bonofiglio, Daniela
    [J]. CANCERS, 2023, 15 (03)
  • [6] Mitochondrial oxidative stress in cancer-associated fibroblasts drives lactate production, promoting breast cancer tumor growth Understanding the aging and cancer connection
    Balliet, Renee M.
    Capparelli, Claudia
    Guido, Carmela
    Pestell, Timothy G.
    Martinez-Outschoorn, Ubaldo E.
    Lin, Zhao
    Whitaker-Menezes, Diana
    Chiavarina, Barbara
    Pestell, Richard G.
    Howell, Anthony
    Sotgia, Federica
    Lisanti, Michael P.
    [J]. CELL CYCLE, 2011, 10 (23) : 4065 - 4073
  • [7] Quantification of regulatory T cells enables the identification of high-risk breast cancer patients and those at risk of late relapse
    Bates, Gaynor J.
    Fox, Stephen B.
    Han, Cheng
    Leek, Russell D.
    Garcia, Jose F.
    Harris, Adrian L.
    Banham, Alison H.
    [J]. JOURNAL OF CLINICAL ONCOLOGY, 2006, 24 (34) : 5373 - 5380
  • [8] The isomiR-140-3p-regulated mevalonic acid pathway as a potential target for prevention of triple negative breast cancer
    Bhardwaj, Anjana
    Singh, Harpreet
    Trinidad, Celestine Marie
    Albarracin, Constance T.
    Hunt, Kelly K.
    Bedrosian, Isabelle
    [J]. BREAST CANCER RESEARCH, 2018, 20
  • [9] An immune stratification reveals a subset of PD-1/LAG-3 double-positive triple-negative breast cancers
    Bottai, Giulia
    Raschioni, Carlotta
    Losurdo, Agnese
    Di Tommaso, Luca
    Tinterri, Corrado
    Torrisi, Rosalba
    Reis-Filho, Jorge S.
    Roncalli, Massimo
    Sotiriou, Christos
    Santoro, Armando
    Mantovani, Alberto
    Loi, Sherene
    Santarpia, Libero
    [J]. BREAST CANCER RESEARCH, 2016, 18
  • [10] Supernatants of Adipocytes From Obese Versus Normal Weight Women and Breast Cancer Cells: In Vitro Impact on Angiogenesis
    Bougaret, Lauriane
    Delort, Laetitia
    Billard, Hermine
    Lequeux, Charlotte
    Goncalves-Mendes, Nicolas
    Mojallal, Ali
    Damour, Odile
    Vasson, Marie-Paule
    Caldefie-Chezet, Florence
    [J]. JOURNAL OF CELLULAR PHYSIOLOGY, 2017, 232 (07) : 1808 - 1816