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논문 기본 정보

자료유형
학술저널
저자정보
Aekyong Kim (Catholic University of Daegu)
저널정보
한국독성학회 Toxicological Research Toxicological Research Vol.30 No.4
발행연도
2014.12
수록면
235 - 242 (8page)

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초록· 키워드

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Cancer cells are known to drastically alter cellular energy metabolism. The Warburg effect has been known for over 80 years as pertaining cancer-specific aerobic glycolysis. As underlying molecular mechanisms are elucidated so that cancer cells alter the cellular energy metabolism for their advantage, the significance of the modulation of metabolic profiles is gaining attention. Now, metabolic reprogramming is becoming an emerging hallmark of cancer. Therapeutic agents that target cancer energy metabolism are under intensive investigation, but these investigations are mostly focused on the cytosolic glycolytic processes. Although mitochondrial oxidative phosphorylation is an integral part of cellular energy metabolism, until recently, it has been regarded as an auxiliary to cytosolic glycolytic processes in cancer energy metabolism. In this review, we will discuss the importance of mitochondrial respiration in the metabolic reprogramming of cancer, in addition to discussing the justification for using mitochondrial DNA somatic mutation as metabolic determinants for cancer sensitivity in glucose limitation.

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INTRODUCTION
AN EMERGING HALLMARK OF CANCER : METABOLIC REPROGRAMMING OF CANCER CELLS
CLINICAL SIGNIFICANCE OF METABOLIC REPROGRAMMING OF CANCER
MITOCHONDRIA IN METABOLIC REPROGRAMMING OF CANCER
MITOCHONDRIAL DNA SOMATIC MUTATION : A METABOLIC DETERMINANT OF CANCER SENSITIVITY TO GLUCOSE LIMITATION
CONCLUSION
REFERENCES

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