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The contributions of cancer cell metabolism to metastasis
Gloria Pascual1, Diana Domínguez1, Salvador Aznar Benitah2,3
1Institute for Research in Biomedicine (IRB Barcelona), Oncology Department, The Barcelona Institute of Science and Technology (BIST), 08028, Barcelona, Spain.
Abstract:
Metastasis remains the leading cause of cancer-related deaths worldwide, and our inability to identify the tumour cells that colonize distant sites hampers the development of effective anti-metastatic therapies. However, with recent research advances we are beginning to distinguish metastasis-initiating cells from their non-metastatic counterparts. Importantly, advances in genome sequencing indicate that the acquisition of metastatic competency does not involve the progressive accumulation of driver mutations; moreover, in the early stages of tumorigenesis, cancer cells harbour combinations of driver mutations that endow them with metastatic competency. Novel findings highlight that cells can disseminate to distant sites early during primary tumour growth, remaining dormant and untreatable for long periods before metastasizing. Thus, metastatic cells must require local and systemic influences to generate metastases. This hypothesis suggests that factors derived from our lifestyle, such as our diet, exert a strong influence on tumour progression, and that such factors could be modulated if understood. Here, we summarize the recent findings on how specific metabolic cues modulate the behaviour of metastatic cells and how they influence the genome and epigenome of metastatic cells. We also discuss how crosstalk between metabolism and the epigenome can be harnessed to develop new anti-metastatic therapies.
Insights
Metastasis, a major cause of cancer death, is influenced by lifestyle factors like diet. Understanding how metabolism affects cancer cells and their epigenome can lead to new anti-metastasis treatments.
Area of Science:
- Oncology
- Cancer Biology
- Metabolism
Background:
- Metastasis is the primary cause of cancer mortality globally.
- Identifying metastasis-initiating cells is crucial for developing effective anti-metastatic therapies.
- Metastatic competency can arise early in tumorigenesis, not solely from progressive mutations.
Purpose of the Study:
- To review recent findings on how metabolic cues influence metastatic cell behavior.
- To explore the impact of metabolism on the genome and epigenome of metastatic cells.
- To discuss the potential of targeting metabolism-epigenome interactions for novel anti-metastatic therapies.
Main Methods:
- Literature review of recent research on cancer metastasis.
- Analysis of studies investigating metabolic influences on cancer cells.
- Examination of research on the interplay between metabolism and epigenetics in metastasis.
Main Results:
- Metabolic cues significantly modulate the behavior of metastatic cells.
- Metabolism influences the genome and epigenome of cells capable of metastasis.
- Early dissemination and dormancy of cancer cells precede later metastatic spread.
Conclusions:
- Lifestyle factors, including diet, can influence tumor progression and metastasis.
- Targeting the crosstalk between metabolism and epigenetics offers a promising strategy for developing new anti-metastatic treatments.
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