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肿瘤组学与精准医学在乳腺癌和卵巢癌中的应用

Omics sciences and precision medicine in breast and ovarian cancer.

机构信息

MAGI'S LAB, Rovereto (TN), Italy.

Department of Pharmaceutical Sciences, University of Perugia, Perugia, Italy.

出版信息

Clin Ter. 2023 Nov-Dec;174(Suppl 2(6)):104-118. doi: 10.7417/CT.2023.2477.

Abstract

BACKGROUND

Human breast carcinoma is a complex disease, affecting 1 in 8 women worldwide. The seriousness of the disease increases when the definite cause of the disease remains obscure, thus making prognosis challenging. Researchers are emphasizing on adapting more advanced and targeted therapeutic approaches to address the multifaceted impacts of the disease. Hence, modern multi-omics systems have gained popularity among clinicians, as they offer insights into the genomic, pharmacogenomic, metabolomic, and microbiomic factors, thus allowing researchers to develop targeted and personalized approaches for breast cancer prevention and early detection, and eventually improving patient outcomes.

AIM

The primary focus of this study is to elucidate, through the integration of multi-omics research findings, the inherent molecular origins of diverse subtypes of breast cancer and to evaluate the effectiveness of these findings in reducing breast cancer-related mortalities.

METHODS

Thorough investigation was conducted by reviewing reputable and authoritative medical journals, e-books, and online databases dedicated to cancer research. The Mendelian inheritance in man database (OMIM) was used to scrutinize specific genes and their respective loci associated with the development of different types of breast cancer.

RESULTS

Our present research revealed the holistic picture of sundry molecular, genomic, pharmacogenomic, metabolomic, and microbiomic features of breast cancer. Such findings, like genetic alterations in highly penetrant genes, plus metabolomic and microbiomic signatures of breast cancer, unveil valuable insights and show great potential for multi-omics research in breast oncology.

CONCLUSION

Further research in omics sciences pertaining to breast cancer are at the forefront of shaping precise treatment and bolstering patient survival.

摘要

背景

人类乳腺癌是一种复杂的疾病,全球每 8 名女性中就有 1 人受到影响。当疾病的确切原因仍不清楚时,疾病的严重性会增加,从而使预后具有挑战性。研究人员正在强调采用更先进和针对性的治疗方法来应对疾病的多方面影响。因此,现代多组学系统在临床医生中越来越受欢迎,因为它们提供了对基因组、药物基因组学、代谢组学和微生物组学因素的深入了解,从而使研究人员能够针对乳腺癌预防和早期检测制定有针对性和个性化的方法,并最终改善患者的结局。

目的

本研究的主要重点是通过整合多组学研究结果,阐明不同亚型乳腺癌的固有分子起源,并评估这些发现在降低乳腺癌相关死亡率方面的有效性。

方法

通过查阅权威医学期刊、电子书和癌症研究在线数据库,对研究进行了全面调查。孟德尔遗传在线数据库(OMIM)用于仔细检查与不同类型乳腺癌发展相关的特定基因及其各自的基因座。

结果

我们目前的研究揭示了乳腺癌各种分子、基因组、药物基因组学、代谢组学和微生物组学特征的全貌。这些发现,如高外显率基因的遗传改变,以及乳腺癌的代谢组学和微生物组学特征,揭示了有价值的见解,并显示了多组学研究在乳腺癌肿瘤学中的巨大潜力。

结论

乳腺癌领域的组学科学研究处于制定精确治疗和提高患者生存率的前沿。

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