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Updated: Jul 14, 2026

Methyl-binding DNA capture Sequencing for Patient Tissues
Published on: October 31, 2016
Analysis of methylation features associated with neoadjuvant efficacy in HER2-positive breast cancer
Zibai Guo1, Jinhong Wei1, Anping Gui1
1Breast Center Zone One, Zhongshan City People's Hospital, Zhongshan, China.
Background:
Response to trastuzumab-based neoadjuvant therapy in human epidermal growth factor receptor type 2 (HER2)-positive breast cancer is affected by multiple features of the tumor. Few studies have investigated epigenetic features in these patients. This study investigates whether changes in deoxyribonucleic acid (DNA) methylation patterns are linked to response to neoadjuvant therapy in HER2-positive breast cancer and aims to identify epigenetic markers of treatment resistance.
Methods:
28 tumor samples were obtained from 20 HER2-positive breast cancer patients treated with neoadjuvant therapy: 12 from patients who achieved pathological complete response (pCR) before treatment, and 8 from patients who did not (non-pCR). For the non-pCR group, matched post-treatment samples were also collected, enabling paired pre- and post-treatment comparisons. After whole-genome methylation sequencing of all samples, the methylation differences between the pre-treatment pCR and non-pCR groups, as well as the methylation differences in non-pCR groups between pre-treatment and post-treatment samples were compared.
Results:
Before treatment, tumors in the non-pCR group showed slightly more hypomethylation events compared to the pCR group. After treatment, the same non-pCR tumors showed increased hypermethylation. Notably, immune-related pathways in these tumors were found to be hypermethylated, suggesting possible immune dysregulation. Methylation changes in the oncogenes MOS and RET were associated with potential resistance mechanisms. Additionally, four genes-KIT, LAD1, FAM110C, and DAPP1-were identified as candidate resistance markers based on their altered methylation patterns.
Conclusions:
These findings highlight how DNA methylation changes may influence treatment outcomes in HER2-positive breast cancer and suggest novel epigenetic markers that could help predict or overcome therapy resistance.
Insights
DNA methylation changes impact treatment response in HER2-positive breast cancer. Altered methylation patterns in key genes may indicate resistance to neoadjuvant therapy, offering potential new markers for treatment strategies.
Area of Science:
- Oncology
- Epigenetics
- Genomics
Background:
- Response to trastuzumab-based neoadjuvant therapy for HER2-positive breast cancer is complex.
- Epigenetic factors, specifically DNA methylation, are understudied in this context.
- Understanding these epigenetic changes is crucial for improving treatment outcomes.
Purpose of the Study:
- To investigate the link between DNA methylation patterns and response to neoadjuvant therapy in HER2-positive breast cancer.
- To identify epigenetic markers associated with treatment resistance.
- To explore potential mechanisms of therapy resistance.
Main Methods:
- Whole-genome methylation sequencing was performed on 28 tumor samples from 20 HER2-positive breast cancer patients.
- Samples included pre-treatment and post-treatment specimens from patients with complete response (pCR) and non-complete response (non-pCR).
- Comparative analysis of methylation differences between groups and within non-pCR patients before and after treatment.
Main Results:
- Pre-treatment tumors in the non-pCR group exhibited more hypomethylation than the pCR group.
- Post-treatment, non-pCR tumors showed increased hypermethylation, particularly in immune-related pathways.
- Altered methylation in oncogenes (MOS, RET) and candidate genes (KIT, LAD1, FAM110C, DAPP1) was linked to resistance.
Conclusions:
- DNA methylation alterations play a significant role in treatment response and resistance in HER2-positive breast cancer.
- Identified epigenetic markers may aid in predicting or overcoming therapy resistance.
- Findings suggest novel therapeutic targets for improving neoadjuvant treatment efficacy.
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