Page last updated: 2024-08-18

isomethyleugenol and Bilateral Wilms Tumor

isomethyleugenol has been researched along with Bilateral Wilms Tumor in 23 studies

Research

Studies (23)

TimeframeStudies, this research(%)All Research%
pre-19902 (8.70)18.7374
1990's14 (60.87)18.2507
2000's5 (21.74)29.6817
2010's1 (4.35)24.3611
2020's1 (4.35)2.80

Authors

AuthorsStudies
Chang, M; Gao, H; Jia, C; Liu, X; Ma, W; Sun, F1
Bliek, J; Bouc, YL; Brioude, F; Coze, C; Eggermann, T; Ferrero, GB; Hennekam, R; Kratz, C; Maas, SM; Mackay, DJG; Maher, ER; Mussa, A; Netchine, I1
Astuti, D; Cooper, WN; Gentle, D; Grundy, R; Hesson, LB; Kishida, T; Latif, F; Lee, J; Lees, RD; Macdonald, F; Maher, ER; Morgan, NV; Morris, MR; Wagner, KJ; Yao, M1
Brown, KW; Dallosso, AR; Hancock, AL; Jackson, S; Malik, K; Williams, AC1
Bliek, J; Gaston, V; Gicquel, C; Le Bouc, Y; Maas, S; Mannens, M1
Fukuzawa, M; Haruta, M; Izumi, H; Kaneko, Y; Matsumoto, Y; Matsuura, S; Watanabe, N1
Ogawa, O; Reeve, AE; Sullivan, MJ; Taniguchi, T1
Deal, CL1
Kondo, M; Osada, H; Suzuki, H; Takagi, K; Takahashi, T; Ueda, R1
Bliek, J; Boavida, M; Coad, N; Feinberg, AP; Hoovers, JM; Little, P; Mannens, M; Redeker, E; Steenman, M; Verjaal, M1
Dobry, CJ; Feinberg, AP; Grundy, P; Horon, IL; Rainier, S; Steenman, MJ1
Crenshaw, T; Dembitzer, F; Gerald, W; Hao, Y; Hensle, T; Kraus, W; Lin, N; Loew, T; McMorrow, L; Moosikasuwan, J; Moulton, T; Tycko, B; Weiss, L1
Polychronakos, C1
Crenshaw, T; Hao, Y; Moulton, T; Shields, T; Tycko, B; Zhang, Y1
Becroft, DM; Morison, IM; Reeve, AE; Taniguchi, T; Woods, CG1
Brown, KW; Charles, A; Hancock, A; Jackson, S; Malik, K; Moorwood, K; Salpekar, A1
Buckley, JD1
Ford, HL; Grigorian, M; Kramerov, D; Lukanidin, E; Reshetnyak, E; Tulchinsky, E; Zain, S1
Boland, CR; Feinberg, AP; Johnson, LA; Koi, M; Kuehn, SE; Law, DJ; Rainier, S; Steenman, M; Thomas, G; Williams, BR1
Royer-Pokora, B; Schneider, S1
Call, K; Glaser, T; Heckl-Ostreicher, B; Held, M; Housman, D; Loos, U; Ragg, S; Royer-Pokora, B; Saunders, G; Zabel, B1
Greene, LA; Pellicer, A; Thomson, TM1
Evans, HJ1

Reviews

3 review(s) available for isomethyleugenol and Bilateral Wilms Tumor

ArticleYear
Parental genomic imprinting.
    Current opinion in pediatrics, 1995, Volume: 7, Issue:4

    Topics: Angelman Syndrome; Animals; Beckwith-Wiedemann Syndrome; Diabetes Mellitus, Type 1; Genomic Imprinting; Humans; Insulin-Like Growth Factor II; Kidney Neoplasms; Methylation; Mice; Muscle Proteins; Neoplasms; Prader-Willi Syndrome; RNA, Long Noncoding; RNA, Untranslated; Transcription, Genetic; Wilms Tumor

1995
Parental imprinting of the genes for IGF-II and its receptor.
    Advances in experimental medicine and biology, 1993, Volume: 343

    Topics: Animals; Beckwith-Wiedemann Syndrome; Chromosomes, Human, Pair 11; DNA; Female; Humans; Insulin-Like Growth Factor II; Kidney Neoplasms; Male; Methylation; Mice; Mice, Transgenic; Placenta; Pregnancy; Receptor, IGF Type 2; Wilms Tumor

1993
Genetic and molecular aspects of human multigenerational carcinogenesis.
    IARC scientific publications, 1989, Issue:96

    Topics: Animals; Eye Neoplasms; Humans; Kidney Neoplasms; Methylation; Mutation; Neoplasms; Retinoblastoma; Wilms Tumor

1989

Other Studies

20 other study(ies) available for isomethyleugenol and Bilateral Wilms Tumor

ArticleYear
Identification of the expression patterns and potential prognostic role of m6A-RNA methylation regulators in Wilms Tumor.
    BMC medical genomics, 2023, 09-21, Volume: 16, Issue:1

    Topics: Humans; Kidney Neoplasms; Methylation; Prognosis; RNA; Tumor Microenvironment; Wilms Tumor

2023
Revisiting Wilms tumour surveillance in Beckwith-Wiedemann syndrome with IC2 methylation loss, reply.
    European journal of human genetics : EJHG, 2018, Volume: 26, Issue:4

    Topics: Beckwith-Wiedemann Syndrome; DNA Methylation; Genomic Imprinting; Humans; Methylation; Wilms Tumor

2018
Multigene methylation analysis of Wilms' tumour and adult renal cell carcinoma.
    Oncogene, 2003, Oct-02, Volume: 22, Issue:43

    Topics: Carcinoma, Renal Cell; DNA Methylation; DNA Repair; Gene Expression Regulation, Neoplastic; Humans; Kidney Neoplasms; Methylation; Polymerase Chain Reaction; Promoter Regions, Genetic; Sulfites; Wilms Tumor

2003
Genomic imprinting at the WT1 gene involves a novel coding transcript (AWT1) that shows deregulation in Wilms' tumours.
    Human molecular genetics, 2004, Feb-15, Volume: 13, Issue:4

    Topics: Alternative Splicing; Base Sequence; Cells, Cultured; Exons; Genomic Imprinting; Humans; Introns; Kidney; Kidney Neoplasms; Loss of Heterozygosity; Methylation; Molecular Sequence Data; Mutation; Wilms Tumor; WT1 Proteins

2004
Epigenotyping as a tool for the prediction of tumor risk and tumor type in patients with Beckwith-Wiedemann syndrome (BWS).
    The Journal of pediatrics, 2004, Volume: 145, Issue:6

    Topics: Beckwith-Wiedemann Syndrome; Child, Preschool; France; Genes, Wilms Tumor; Genotype; Humans; Incidence; Kidney Neoplasms; Membrane Proteins; Methylation; Neoplasms; Netherlands; Potassium Channels, Voltage-Gated; Predictive Value of Tests; Risk Factors; Wilms Tumor

2004
Combined BubR1 protein down-regulation and RASSF1A hypermethylation in Wilms tumors with diverse cytogenetic changes.
    Molecular carcinogenesis, 2008, Volume: 47, Issue:9

    Topics: Cell Cycle Proteins; Child; Child, Preschool; Chromosome Mapping; Diploidy; Down-Regulation; Gene Expression Regulation, Neoplastic; Humans; Infant; Methylation; Mutation; Nucleic Acid Hybridization; Protein Serine-Threonine Kinases; Reverse Transcriptase Polymerase Chain Reaction; Tumor Suppressor Proteins; Wilms Tumor

2008
Epigenetic changes encompassing the IGF2/H19 locus associated with relaxation of IGF2 imprinting and silencing of H19 in Wilms tumor.
    Proceedings of the National Academy of Sciences of the United States of America, 1995, Mar-14, Volume: 92, Issue:6

    Topics: Alleles; DNA, Neoplasm; Female; Gene Expression; Genomic Imprinting; Humans; Insulin-Like Growth Factor II; Kidney Neoplasms; Male; Methylation; Polymerase Chain Reaction; Polymorphism, Genetic; Repetitive Sequences, Nucleic Acid; RNA; Wilms Tumor

1995
Frequent loss of imprinting of the H19 gene is often associated with its overexpression in human lung cancers.
    Oncogene, 1995, Mar-16, Volume: 10, Issue:6

    Topics: Adult; Autoantigens; Base Sequence; Chromosomes, Human, Pair 11; DNA Primers; Genomic Imprinting; Humans; Insulin-Like Growth Factor II; Lung Neoplasms; Methylation; Molecular Sequence Data; Ribonucleoproteins, Small Nuclear; snRNP Core Proteins; Wilms Tumor

1995
Parental imprinting of human chromosome region 11p15.3-pter involved in the Beckwith-Wiedemann syndrome and various human neoplasia.
    European journal of human genetics : EJHG, 1994, Volume: 2, Issue:1

    Topics: Beckwith-Wiedemann Syndrome; Child; Chromosome Aberrations; Chromosome Mapping; Chromosomes, Human, Pair 11; DNA; Female; Gene Expression; Genes, Tumor Suppressor; Humans; In Situ Hybridization, Fluorescence; Insulin; Insulin-Like Growth Factor II; Karyotyping; Male; Methylation; Neoplastic Syndromes, Hereditary; Parents; Pedigree; Polymorphism, Restriction Fragment Length; Sex Factors; Translocation, Genetic; Trisomy; Wilms Tumor

1994
Loss of imprinting of IGF2 is linked to reduced expression and abnormal methylation of H19 in Wilms' tumour.
    Nature genetics, 1994, Volume: 7, Issue:3

    Topics: DNA, Neoplasm; Embryonic and Fetal Development; Female; Gene Expression Regulation, Neoplastic; Genes; Genes, Tumor Suppressor; Genomic Imprinting; Humans; Insulin-Like Growth Factor II; Kidney Neoplasms; Male; Methylation; Organ Specificity; Promoter Regions, Genetic; RNA, Messenger; RNA, Neoplasm; Transcription, Genetic; Wilms Tumor

1994
Epigenetic lesions at the H19 locus in Wilms' tumour patients.
    Nature genetics, 1994, Volume: 7, Issue:3

    Topics: Alleles; DNA, Neoplasm; Enhancer Elements, Genetic; Female; Gene Expression Regulation, Neoplastic; Genes; Genes, ras; Genes, Tumor Suppressor; Genomic Imprinting; Genotype; Humans; Insulin-Like Growth Factor II; Kidney; Kidney Neoplasms; Male; Methylation; Oncogenes; Repetitive Sequences, Nucleic Acid; RNA, Messenger; RNA, Neoplasm; Transcription, Genetic; Wilms Tumor

1994
Imprinting of human H19: allele-specific CpG methylation, loss of the active allele in Wilms tumor, and potential for somatic allele switching.
    American journal of human genetics, 1993, Volume: 53, Issue:1

    Topics: Adult; Alleles; Base Sequence; Chromosomes, Human, Pair 11; Dinucleoside Phosphates; DNA, Neoplasm; Female; Fetus; Humans; Methylation; Molecular Sequence Data; Ovarian Neoplasms; Promoter Regions, Genetic; Teratoma; Wilms Tumor

1993
Somatic overgrowth associated with overexpression of insulin-like growth factor II.
    Nature medicine, 1996, Volume: 2, Issue:3

    Topics: Base Sequence; Beckwith-Wiedemann Syndrome; Child; Child, Preschool; DNA Primers; Female; Gene Expression; Genomic Imprinting; Growth Disorders; Humans; Infant; Insulin-Like Growth Factor II; Kidney; Kidney Neoplasms; Male; Methylation; Molecular Sequence Data; Mosaicism; Muscle Proteins; Promoter Regions, Genetic; RNA, Long Noncoding; RNA, Untranslated; Wilms Tumor

1996
Identification of differential methylation of the WT1 antisense regulatory region and relaxation of imprinting in Wilms' tumor.
    Cancer research, 2000, May-01, Volume: 60, Issue:9

    Topics: Alleles; Blotting, Southern; Chromosomes, Human, Pair 11; CpG Islands; DNA-Binding Proteins; Genomic Imprinting; Humans; Introns; Kidney; Loss of Heterozygosity; Methylation; Models, Genetic; Reverse Transcriptase Polymerase Chain Reaction; RNA, Antisense; Transcription Factors; Wilms Tumor; WT1 Proteins

2000
The aetiology of cancer in the very young.
    The British journal of cancer. Supplement, 1992, Volume: 18

    Topics: Base Sequence; Carcinoma, Hepatocellular; Case-Control Studies; Child, Preschool; DNA; DNA Replication; Eye Neoplasms; Humans; Incidence; Infant; Kidney Neoplasms; Leukemia, Myeloid, Acute; Liver Neoplasms; Methylation; Models, Genetic; Registries; Retinoblastoma; United States; Wilms Tumor

1992
Transcriptional analysis of the mts1 gene with specific reference to 5' flanking sequences.
    Proceedings of the National Academy of Sciences of the United States of America, 1992, Oct-01, Volume: 89, Issue:19

    Topics: Animals; Base Sequence; Humans; Kidney Neoplasms; Methylation; Mice; Molecular Sequence Data; Neoplasm Metastasis; Promoter Regions, Genetic; Sequence Homology, Nucleic Acid; Transcription, Genetic; Tumor Cells, Cultured; Wilms Tumor

1992
Multiple tumor suppressor genes in multistep carcinogenesis.
    The Tohoku journal of experimental medicine, 1992, Volume: 168, Issue:2

    Topics: Colorectal Neoplasms; DNA, Neoplasm; Gene Deletion; Genes, Tumor Suppressor; Humans; Kidney Neoplasms; Methylation; Wilms Tumor

1992
Wilms' tumor-specific methylation pattern in 11p13 detected by PFGE.
    Genes, chromosomes & cancer, 1992, Volume: 5, Issue:2

    Topics: Blotting, Northern; Chromosomes, Human, Pair 11; DNA-Binding Proteins; DNA, Neoplasm; Electrophoresis, Gel, Pulsed-Field; Genes, Wilms Tumor; Humans; Kidney Neoplasms; Methylation; Repetitive Sequences, Nucleic Acid; Wilms Tumor; WT1 Proteins; Zinc Fingers

1992
Direct pulsed field gel electrophoresis of Wilms' tumors shows that DNA deletions in 11p13 are rare.
    Genes, chromosomes & cancer, 1991, Volume: 3, Issue:2

    Topics: Alleles; Aniridia; Chromosome Deletion; Chromosome Mapping; Chromosomes, Human, Pair 11; DNA Probes; DNA, Neoplasm; Electrophoresis, Agar Gel; Genes, Wilms Tumor; Humans; Kidney Neoplasms; Methylation; Restriction Mapping; Syndrome; Urogenital Abnormalities; Wilms Tumor

1991
Functional receptors for nerve growth factor on Ewing's sarcoma and Wilm's tumor cells.
    Journal of cellular physiology, 1989, Volume: 141, Issue:1

    Topics: Carbazoles; Deoxyadenosines; Gene Amplification; Gene Expression Regulation; Humans; In Vitro Techniques; Indole Alkaloids; Methylation; Nerve Growth Factors; Proto-Oncogene Proteins; Proto-Oncogene Proteins c-fos; Proto-Oncogene Proteins c-myc; Receptors, Cell Surface; Receptors, Nerve Growth Factor; RNA, Neoplasm; Sarcoma, Ewing; Thionucleosides; Time Factors; Tumor Cells, Cultured; Wilms Tumor

1989