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Mechanisms for Modulating Anoikis Resistance in Cancer and the Relevance of Metabolic Reprogramming

Frontiers in Oncology · 2021 · Vol. 11 · pp. 626577–626577
Funmilayo O. AdeshakinAdeleye O. AdeshakinLukman O. AfolabiDehong YanGuizhong ZhangXiaochun Wan

Abstract

The attachment of cells to the extracellular matrix (ECM) is the hallmark of structure-function stability and well-being. ECM detachment in localized tumors precedes abnormal dissemination of tumor cells culminating in metastasis. Programmed cell death (PCD) is activated during tumorigenesis to clear off ECM-detached cells through "anoikis." However, cancer cells develop several mechanisms for abrogating anoikis, thus promoting their invasiveness and metastasis. Specific factors, such as growth proteins, pH, transcriptional signaling pathways, and oxidative stress, have been reported as drivers of anoikis resistance, thus enhancing cancer proliferation and metastasis. Recent studies highlighted the key contributions of metabolic pathways, enabling the cells to bypass anoikis. Therefore, understanding the mechanisms driving anoikis resistance could help to counteract tumor progression and prevent metastasis. This review elucidates the dynamics employed by cancer cells to impede anoikis, thus promoting proliferation, invasion, and metastasis. In addition, the authors have discussed other metabolic intermediates (especially amino acids and nucleotides) that are less explored, which could be crucial for anoikis resistance and metastasis.

Cancer, Hypoxia, and MetabolismEpigenetics and DNA MethylationRNA modifications and cancerAnoikisMetastasisReprogrammingCancer cellCarcinogenesisCancer researchCell biologyExtracellular matrixBiologyProgrammed cell death

Funding

  • Chinese Academy of Sciences
  • University of Chinese Academy of Sciences
  • Chinese Government Scholarship
  • National Key Research and Development Program of China
Citations
282
FWCI
19.57
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References
231
Percentile
100%
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