Purpose Glioblastoma is the most aggressive form of brain tumors. A better understanding of the molecular mechanisms leading to its evolution is essential for the development of treatments more effective than the available modalities. Here, we aim to identify molecular drivers of glioblastoma development and recurrence by analyzing DNA CpG methylation patterns in sequential samples. Methods DNA was isolated from 22 pairs of primary and recurrent formalin-fixed, paraffin-embedded glioblastoma specimens, and subjected to reduced representation bisulfite sequencing. Bioinformatic analyses were conducted to identify differentially methylated sites and pathways, and biostatistics was used to test correlations among clinical and pathological parameters. Results Differentially methylated pathways likely involved in primary tumor development included those of neuronal differentiation, myelination, metabolic processes, synapse organization and endothelial cell proliferation, while pathways differentially active during glioblastoma recurrence involved those associated with cell processes and differentiation, immune response, Wnt regulation and catecholamine secretion and transport. Conclusion DNA CpG methylation analyses in sequential clinical specimens revealed hypomethylation in certain pathways such as neuronal tissue development and angiogenesis likely involved in early tumor development and growth, while suggested altered regulation in catecholamine secretion and transport, Wnt expression and immune response contributing to glioblastoma recurrence. These pathways merit further investigations and may represent novel therapeutic targets.
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Univ Roma La Sapienza, Sez Biochim Clin, Dipartimento Biotecnol Cellulari & Ematol, I-00161 Rome, ItalyUniv Roma La Sapienza, Sez Biochim Clin, Dipartimento Biotecnol Cellulari & Ematol, I-00161 Rome, Italy
Caiafa, P
Zampieri, M
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Univ Roma La Sapienza, Sez Biochim Clin, Dipartimento Biotecnol Cellulari & Ematol, I-00161 Rome, ItalyUniv Roma La Sapienza, Sez Biochim Clin, Dipartimento Biotecnol Cellulari & Ematol, I-00161 Rome, Italy
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Soonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South KoreaSoonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South Korea
Bae, Da-Jeong
Jun, Ji Ae
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Soonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South KoreaSoonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South Korea
Jun, Ji Ae
Chang, Hun Soo
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Soonchunhyang Univ, Dept Environm Hlth Sci, Asan, South KoreaSoonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South Korea
Chang, Hun Soo
Park, Jong Sook
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Soonchunhyang Univ, Genome Res Ctr, Div Allergy & Resp Med, Bucheon Hosp, 170 Jomaru Ro, Bucheon 14584, South KoreaSoonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South Korea
Park, Jong Sook
Park, Choon-Sik
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Soonchunhyang Univ, Genome Res Ctr, Div Allergy & Resp Med, Bucheon Hosp, 170 Jomaru Ro, Bucheon 14584, South KoreaSoonchunhyang Grad Sch, Dept Interdisciplinary Program Biomed Sci Major, Bucheon, South Korea
机构:
Natl Res Council Italy, Inst Syst Anal & Comp Sci Antonio Ruberti, Via Taurini 19, I-00185 Rome, ItalyNatl Res Council Italy, Inst Syst Anal & Comp Sci Antonio Ruberti, Via Taurini 19, I-00185 Rome, Italy