1.Cancer Metabolism as a Mechanism of Treatment Resistance and Potential Therapeutic Target in Hepatocellular Carcinoma.
Misu LEE ; Haeyong KO ; Mijin YUN
Yonsei Medical Journal 2018;59(10):1143-1149
Various molecular targeted therapies and diagnostic modalities have been developed for the treatment of hepatocellular carcinoma (HCC); however, HCC still remains a difficult malignancy to cure. Recently, the focus has shifted to cancer metabolism for the diagnosis and treatment of various cancers, including HCC. In addition to conventional diagnostics, the measurement of enhanced tumor cell metabolism using F-18 fluorodeoxyglucose (18F-FDG) for increased glycolysis or C-11 acetate for fatty acid synthesis by positron emission tomography/computed tomography (PET/CT) is well established for clinical management of HCC. Unlike tumors displaying the Warburg effect, HCCs vary substantially in terms of 18F-FDG uptake, which considerably reduces the sensitivity for tumor detection. Accordingly, C-11 acetate has been proposed as a complementary radiotracer for detecting tumors that are not identified by 18F-FDG. In addition to HCC diagnosis, since the degree of 18F-FDG uptake converted to standardized uptake value (SUV) correlates well with tumor aggressiveness, 18F-FDG PET/CT scans can predict patient outcomes such as treatment response and survival with an inverse relationship between SUV and survival. The loss of tumor suppressor genes or activation of oncogenes plays an important role in promoting HCC development, and might be involved in the “metabolic reprogramming” of cancer cells. Mutations in various genes such as TERT, CTNNB1, TP53, and Axin1 are responsible for the development of HCC. Some microRNAs (miRNAs) involved in cancer metabolism are deregulated in HCC, indicating that the modulation of genes/miRNAs might affect HCC growth or metastasis. In this review, we will discuss cancer metabolism as a mechanism for treatment resistance, as well as an attractive potential therapeutic target in HCC.
Carcinoma, Hepatocellular*
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Diagnosis
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Drug Resistance
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Electrons
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Fluorodeoxyglucose F18
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Genes, Tumor Suppressor
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Glycolysis
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Humans
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Metabolism*
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MicroRNAs
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Molecular Targeted Therapy
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Neoplasm Metastasis
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Oncogenes
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Positron-Emission Tomography and Computed Tomography
2.3-Dimensional Micro-Computed Tomography Study on Bone Regeneration with Silk Fibroin, rh-Bone Morphogenetic Protein Loaded-Silk Fibroin and Tricalcium Phosphate Coated-Silk Fibroin in Rat Calvaria Defect
Eun O PANG ; Young Ju PARK ; Su Hyun PARK ; Eung Sun KANG ; Haeyong KWEON ; Soeng Gon KIM ; Chang Yong KO ; Han Sung KIM ; Jeong Hun NAM ; Jang Hun AHN ; Ji Hyun CHUN ; Byeong Min LEE
Journal of the Korean Association of Maxillofacial Plastic and Reconstructive Surgeons 2012;34(1):1-11
Adult
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Animals
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Bone Regeneration
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Calcium Phosphates
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Female
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Fibrin
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Fibroins
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Foreign-Body Reaction
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Humans
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Inflammation
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Membranes
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Rats
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Silk
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Skull
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Tissue Engineering
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Transplants