Models based on nucleic acid methylation regulators will contribute to facilitating cancer precision medicine
Background With the development of molecular biology techniques, it is possible to explore the tumorigenesis and cancer development mechanisms and intrinsic characteristics of single cancer types from the perspectives of chromosome, genome, transcriptome, protein expression, and epigenetics, and on...
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Published in | BMC medicine Vol. 19; no. 1; pp. 295 - 3 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
England
BioMed Central Ltd
01.12.2021
BioMed Central BMC |
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Abstract | Background With the development of molecular biology techniques, it is possible to explore the tumorigenesis and cancer development mechanisms and intrinsic characteristics of single cancer types from the perspectives of chromosome, genome, transcriptome, protein expression, and epigenetics, and on this basis, molecular subtypes can be classified [1, 2]. [...]the 5mC score was significantly related to the cancer stemness and could reflect TME heterogeneity. Usually, a higher cancer stemness indicates a decrease in anti-cancer immunity and lower ICB response. [...]the 5mC score could effectively stratify the immune phenotypes of BLCA. |
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AbstractList | Keywords: 5mC, m.sup.6A, Methylation regulator, Bladder cancer, Small-cell lung cancer, Immunotherapy response, Precision medicine Background With the development of molecular biology techniques, it is possible to explore the tumorigenesis and cancer development mechanisms and intrinsic characteristics of single cancer types from the perspectives of chromosome, genome, transcriptome, protein expression, and epigenetics, and on this basis, molecular subtypes can be classified [1, 2]. [...]the 5mC score was significantly related to the cancer stemness and could reflect TME heterogeneity. Usually, a higher cancer stemness indicates a decrease in anti-cancer immunity and lower ICB response. [...]the 5mC score could effectively stratify the immune phenotypes of BLCA. |
ArticleNumber | 295 |
Audience | Academic |
Author | Zhang, Wen |
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Cites_doi | 10.1186/s12916-021-02163-6 10.3389/fphar.2021.690057 10.1186/s12916-021-02148-5 10.15252/embj.2020104514 10.1186/s12943-019-1099-7 10.1016/j.cell.2017.05.045 10.1016/j.trecan.2020.02.003 10.1158/0008-5472.CAN-18-2965 10.1097/PPO.0000000000000281 10.1039/c6cs00599c |
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Keywords | Precision medicine m6A 5mC Immunotherapy response Bladder cancer Small-cell lung cancer Methylation regulator |
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References | 2171_CR9 2171_CR6 J Cao (2171_CR4) 2020; 6 L Wang (2171_CR10) 2020; 39 Y Chen (2171_CR2) 2017; 46 RJ Werner (2171_CR1) 2017; 23 2171_CR3 WM Zhou (2171_CR5) 2021; 12 IA Roundtree (2171_CR7) 2017; 169 Q Lan (2171_CR8) 2019; 79 |
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Snippet | Keywords: 5mC, m.sup.6A, Methylation regulator, Bladder cancer, Small-cell lung cancer, Immunotherapy response, Precision medicine Background With the development of molecular biology techniques, it is possible to explore the tumorigenesis and cancer development mechanisms and intrinsic... |
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SubjectTerms | 5mC Acids Biomarkers Bladder cancer Cancer Cancer therapies Care and treatment Chemotherapy Chromosomes DNA methylation Drug therapy Epigenetics Gene expression Genetic aspects Genomes Health aspects Heterogeneity Humans Immunotherapy Immunotherapy response Lung cancer Lung cancer, Small cell m6A Medical prognosis Medical research Methylation Methylation regulator Molecular biology Neoplasms - drug therapy Neoplasms - genetics Nucleic acids Phenotypes Precision Medicine Prognosis RNA, Neoplasm - metabolism Small-cell lung cancer Transcriptomes Tumorigenesis |
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Title | Models based on nucleic acid methylation regulators will contribute to facilitating cancer precision medicine |
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