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Citations to this article

Targeting lactate metabolism for cancer therapeutics
Joanne R. Doherty, John L. Cleveland
Joanne R. Doherty, John L. Cleveland
Published September 3, 2013
Citation Information: J Clin Invest. 2013;123(9):3685-3692. https://doi.org/10.1172/JCI69741.
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Review Series Article has an altmetric score of 28

Targeting lactate metabolism for cancer therapeutics

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Abstract

Lactate, once considered a waste product of glycolysis, has emerged as a critical regulator of cancer development, maintenance, and metastasis. Indeed, tumor lactate levels correlate with increased metastasis, tumor recurrence, and poor outcome. Lactate mediates cancer cell intrinsic effects on metabolism and has additional non–tumor cell autonomous effects that drive tumorigenesis. Tumor cells can metabolize lactate as an energy source and shuttle lactate to neighboring cancer cells, adjacent stroma, and vascular endothelial cells, which induces metabolic reprogramming. Lactate also plays roles in promoting tumor inflammation and in functioning as a signaling molecule that stimulates tumor angiogenesis. Here we review the mechanisms of lactate production and transport and highlight emerging evidence indicating that targeting lactate metabolism is a promising approach for cancer therapeutics.

Authors

Joanne R. Doherty, John L. Cleveland

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2009 Total
Citations: 30 60 54 67 81 54 53 42 36 54 38 12 2 1 584
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2014 (12)

Title and authors Publication Year
Fibroblast heterogeneity in the cancer wound
D Ohlund, E Elyada, D Tuveson
Journal of Experimental Medicine 2014
Heterogeneity of glycolysis in cancers and therapeutic opportunities
MO Warmoes, JW Locasale
Biochemical Pharmacology 2014
Restricting carbohydrates to fight head and neck cancer-is this realistic?
Rainer J Klement
Cancer biology & medicine 2014
Association of cancer metabolism-related proteins with oral carcinogenesis - indications for chemoprevention and metabolic sensitizing of oral squamous cell carcinoma?
M Grimm, M Cetindis, M Lehmann, T Biegner, A Munz, P Teriete, W Kraut, S Reinert
Journal of Translational Medicine 2014
Redox control of glutamine utilization in cancer
L Alberghina, D Gaglio
Cell Death and Disease 2014
NMR-based evaluation of the metabolic profile and response to dichloroacetate of human prostate cancer cells: METABOLIC PROFILE AND RESPONSE TO DCA OF HUMAN PROSTATE CANCER CELLS
M Kailavasan, I Rehman, S Reynolds, A Bucur, G Tozer, M Paley
NMR in Biomedicine 2014
MUC1: A novel metabolic master regulator
K Mehla, PK Singh
Biochimica et Biophysica Acta (BBA) - Reviews on Cancer 2014
In vitro model suggests oxidative stress involved in keratoconus disease
D Karamichos, AE Hutcheon, CB Rich, V Trinkaus-Randall, JM Asara, JD Zieske
Scientific Reports 2014
Lactate oxidation at the mitochondria: a lactate-malate-aspartate shuttle at work
DA Kane
Frontiers in neuroscience 2014
[Advances in the relationship between tumor cell metabolism and tumor metastasis]
Yalong Zhang, Nianzhen Fang, Jiacong You, Qinghua Zhou
Zhongguo fei ai za zhi = Chinese journal of lung cancer 2014
Different effects of LDH-A inhibition by oxamate in non-small cell lung cancer cells
Yang Y, Su D, Zhao L, Zhang D, Xu J, Wan J, Fan S, Chen M
Oncotarget 2014
Dichloroacetate blocks aerobic glycolytic adaptation to attenuated measles virus and promotes viral replication leading to enhanced oncolysis in glioblastoma
Li C, Meng G, Su L, Chen A, Xia M, Xu C, Yu D, Jiang A, Wei J
Oncotarget 2014

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