Radiogenomic analysis of prediction HER2 status in breast cancer by linking ultrasound radiomic feature module with biological functions

无线电技术 乳腺癌 医学 肿瘤科 癌症 计算生物学 放射科 内科学 生物
作者
Hao Cui,Yue Sun,Dantong Zhao,Xudong Zhang,Hanqing Kong,Nana Hu,Panting Wang,Xiaoxuan Zuo,Wei Fan,Yuan Yao,Baiyang Fu,Jiawei Tian,Meixin Wu,Yue Gao,Shangwei Ning,Lei Zhang
出处
期刊:Journal of Translational Medicine [Springer Nature]
卷期号:21 (1) 被引量:22
标识
DOI:10.1186/s12967-022-03840-7
摘要

Abstract Background Human epidermal growth factor receptor 2 (HER2) overexpressed associated with poor prognosis in breast cancer and HER2 has been defined as a therapeutic target for breast cancer treatment. We aimed to explore the molecular biological information in ultrasound radiomic features (URFs) of HER2-positive breast cancer using radiogenomic analysis. Moreover, a radiomics model was developed to predict the status of HER2 in breast cancer. Methods This retrospective study included 489 patients who were diagnosed with breast cancer. URFs were extracted from a radiomics analysis set using PyRadiomics. The correlations between differential URFs and HER2-related genes were calculated using Pearson correlation analysis. Functional enrichment of the identified URFs-correlated HER2 positive-specific genes was performed. Lastly, the radiomics model was developed based on the URF-module mined from auxiliary differential URFs to assess the HER2 status of breast cancer. Results Eight differential URFs ( p < 0.05) were identified among the 86 URFs extracted by Pyradiomics. 25 genes that were found to be the most closely associated with URFs. Then, the relevant biological functions of each differential URF were obtained through functional enrichment analysis. Among them, Zone Entropy is related to immune cell activity, which regulate the generation of calcification in breast cancer. The radiomics model based on the Logistic classifier and URF-module showed good discriminative ability (AUC = 0.80, 95% CI). Conclusion We searched for the URFs of HER2-positive breast cancer, and explored the underlying genes and biological functions of these URFs. Furthermore, the radiomics model based on the Logistic classifier and URF-module relatively accurately predicted the HER2 status in breast cancer.
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