Dr. Jiun  Kang

Dr. Jiun Kang

Professor
Korea Nazarene University, South Korea


Highest Degree
PostDoc Fellow in Cancer Genetics from Columbia University Medical Center, New York, USA

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Area of Interest:

Molecular Sciences
100%
Cancer Genetics
62%
Cytogenetics
90%
Biochemistry
75%
Oncology
55%

Selected Publications

  1. Kang, J.U., 2017. High level amplifications of AKT3, SDCCAG8 and SLC35F3 genes at chromosomal 1q42.2-44 region in non-small cell lung cancer: Early and prognostic implications. Int. J. Cancer Res., 13: 1-8.
  2. Kang, J.U., 2015. Clinical implications of microarray in cancer medicine. Int. J. Cancer Res., 11: 150-158.
  3. Kang, J.U., 2014. Microarray approaches in clinical oncology: Potential and perspectives. Biomed. Sci. Lett., 20: 185-193.
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  4. Kang, J.U., 2014. Chromosome 8q as the most frequent target for amplification in early gastric carcinoma. Oncol. Lett., 7: 1139-1143.
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  5. Kang, J.U., 2013. Characterization of amplification patterns and target genes on the short arm of chromosome 7 in early-stage lung adenocarcinoma. Mol. Med. Rep., 8: 1373-1378.
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  6. Kang, J.U. and S.H. Koo, 2012. ORAOV1 is a probable target within the 11q13.3 amplicon in lymph node metastases from gastric adenocarcinoma. Int. J. Mol. Med., 29: 81-87.
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  7. Kang, J.U. and S.H. Koo, 2012. Evolving applications of microarray technology in postnatal diagnosis. Int. J. Mol. Med., 30: 223-228.
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  8. Kang, J.U. and S.H. Koo, 2012. Clinical implementation of chromosomal microarray technology in prenatal diagnosis. Mol. Med. Rep., 6: 1219-1222.
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  9. Narayan, G., A.J. Freddy, D. Xie, H. Liyanage and L. Clark et al., 2011. Promoter methylation‐mediated inactivation of PCDH10 in acute lymphoblastic leukemia contributes to chemotherapy resistance. Genes Chromosomes Cancer, 50: 1043-1053.
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  10. Kang, J.U. and S.H. Koo, 2011. Assessment of the beneficial loci and prognostic implications of microsatellite instability in gastric carcinoma. Mol. Med. Rep., 4: 1175-1181.
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  11. Kang, J.U., S.H. Koo, K.C. Kwon and J.W. Park, 2010. Frequent silence of chromosome 9p, homozygous DOCK8, DMRT1 and DMRT3 deletion at 9p24.3 in squamous cell carcinoma of the lung. Int. J. Oncol., 37: 327-335.
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  12. Kang, J.U., S.H. Koo, K.C. Kwon and J.W. Park, 2010. AMY2A: A possible tumor-suppressor gene of 1p21.1 loss in gastric carcinoma. Int. J. Oncol., 36: 1429-1435.
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  13. Kang, J.U., S.H. Koo, K.C. Kwon, J.W. Park and J.M. Kim, 2009. Identification of novel candidate target genes, including EPHB3, MASP1 and SST at 3q26.2-q29 in squamous cell carcinoma of the lung. BMC Cancer, Vol. 9. 10.1186/1471-2407-9-237.
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  14. Kang, J.U., S.H. Koo, K.C. Kwon, J.W. Park and S.S. Jung, 2008. Gain of the EGFR gene located on 7p12 is a frequent and early event in squamous cell carcinoma of the lung. Cancer Genet. Cytogenet., 184: 31-37.
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  15. Kang, J.U., S.H. Koo, K.C. Kwon, J.W. Park and J.M. Kim, 2008. Gain at chromosomal region 5p15. 33, containing TERT, is the most frequent genetic event in early stages of non-small cell lung cancer. Cancer Genet. Cytogenet., 182: 1-11.
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  16. Kang, J.U., S.H. Koo, K.C. Kwon, J.W. Park, S.Y. Shin, J.M. Kim and S.S. Jung, 2007. High frequency of genetic alterations in non-small cell lung cancer detected by multi-target fluorescence in situ hybridization. J. Korean Med. Sci., 22: S47-S51.
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  17. Kang, J.U., S.H. Koo, T.E. Jeong, K.C. Kwon, J.W. Park and C.H. Jeon, 2006. Multitarget fluorescence in situ hybridization and melanoma antigen genes analysis in primary bladder carcinoma. Cancer Genet. Cytogenet., 164: 32-38.
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  18. Kang, J.U., J.J. Kang, K.C. Kwon, J.W. Park, T.E. Jeong, S.M. Noh and S.H. Koo, 2006. Genetic alterations in primary gastric carcinomas correlated with clinicopathological variables by array comparative genomic hybridization. J. Korean Med. Sci., 21: 656-665.
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  19. Koo, S.H., T.E. Jeong, J.U. Kang, K.C. Kwon, J.W. Park and S.M. Noh, 2004. Prognostic implications for gastric carcinoma based on loss of heterozygosity genotypes correlation with clinicopathologic variables. Cancer Genet. Cytogenet., 153: 26-31.
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