Temozolomide

N-methylpurine DNA glycosylase ; Homo sapiens







15 Article(s)
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Title
Pub. Year
#Total Relationships
1 34336690 METTL3 Promotes the Resistance of Glioma to Temozolomide via Increasing MGMT and ANPG in a m6A Dependent Manner. 2021 1
2 33335215 Involvement of N-methylpurine DNA glycosylase in resistance to temozolomide in patient-derived glioma cells. 2020 Dec 17 2
3 28662073 APNG as a prognostic marker in patients with glioblastoma. 2017 2
4 28903334 Base excision repair imbalance in colorectal cancer has prognostic value and modulates response to chemotherapy. 2017 Aug 15 1
5 25959588 Chip-based analysis of exosomal mRNA mediating drug resistance in glioblastoma. 2015 May 11 2
6 22156195 Alkylpurine-DNA-N-glycosylase confers resistance to temozolomide in xenograft models of glioblastoma multiforme and is associated with poor survival in patients. 2012 Jan 7
7 21377995 N-methylpurine DNA glycosylase and DNA polymerase beta modulate BER inhibitor potentiation of glioma cells to temozolomide. 2011 May 6
8 21464220 A GATA4-regulated tumor suppressor network represses formation of malignant human astrocytomas. 2011 Apr 11 2
9 20025921 The effect of Msh2 knockdown on methylating agent induced toxicity in DNA glycosylase deficient cells. 2010 Jan 31 1
10 18477668 Human methyl purine DNA glycosylase and DNA polymerase beta expression collectively predict sensitivity to temozolomide. 2008 Aug 3
11 17200364 Manipulation of base excision repair to sensitize ovarian cancer cells to alkylating agent temozolomide. 2007 Jan 1 4
12 16024643 The role of base excision repair in the sensitivity and resistance to temozolomide-mediated cell death. 2005 Jul 15 2
13 16288039 Sensitization of human carcinoma cells to alkylating agents by small interfering RNA suppression of 3-alkyladenine-DNA glycosylase. 2005 Nov 15 1
14 15299078 Transient adenoviral N-methylpurine DNA glycosylase overexpression imparts chemotherapeutic sensitivity to human breast cancer cells. 2004 Aug 1
15 10360379 Treatment with temozolomide and poly(ADP-ribose) polymerase inhibitors induces early apoptosis and increases base excision repair gene transcripts in leukemic cells resistant to triazene compounds. 1999 Jun 1