Affiliations 

  • 1 Universiti Sains Islam Malaysia, Faculty of Medicine and Health Sciences, Department of Medical Sciences I, 71800 Nilai, Negeri Sembilan, Malaysia
  • 2 Universiti Sains Islam Malaysia, Faculty of Medicine and Health Sciences, Department of Medical Sciences II, 71800 Nilai, Negeri Sembilan, Malaysia
  • 3 Universiti Kebangsaan Malaysia, Faculty of Medicine, Department of Physiology, 56000 Kuala Lumpur, Malaysia
  • 4 Universiti Sains Islam Malaysia, Faculty of Medicine and Health Sciences, Department of Medical Sciences I, 71800 Nilai, Negeri Sembilan, Malaysia. nurfariha@usim.edu.my
Malays J Pathol, 2022 Dec;44(3):367-385.
PMID: 36591707

Abstract

Breast cancer remains a significant cause of mortality in females worldwide, despite advances in technology and treatment. MicroRNA expression in breast cancer is studied both as potential biomarkers and for therapeutic purposes. Accumulated evidence revealed microRNA profile of various types of cancer cells following antineoplastic treatment. The progression of research in this area provides better understanding on the anti-cancer mechanism of various natural compounds and drugs specifically on the microRNA regulation. Hence, we aim to systematically review differentially expressed microRNA in MCF-7, a commonly studied breast cancer cell line, after treatment with anti-neoplastic agents. Relevant keywords were used to screen for research articles that reported on the differentially expressed microRNAs in experimental models of MCF-7 before and after anti-neoplastic treatment. Target genes of microRNAs were identified from MiRTarbase and further in silico functional analysis of the target genes were performed using DAVID bioinformatic resources. Two upregulated microRNAs (mir-200c and let-7d) and 3 downregulated microRNAs (mir-27a, mir-27b and mir-203) were identified by highest number of studies. Three microRNAs (let-7a, mir-23a and mir-7) showed inconsistent direction of expression. Genes functional analysis revealed the regulatory effect of microRNA on genes related to angiogenesis, hypoxia, P53, FoxO and PI3K-AKT signalling. Clusters of genes associated to the pathway of angiogenesis, cancers, cell proliferation and apoptosis were noted through protein-protein interaction analysis. MicroRNAs, especially the mir-200c, let-7d, mir-27a, mir-27b and mir-203 from this review could be further validated experimentally to serve as molecular target or biomarkers for anti-neoplastic therapy.

* Title and MeSH Headings from MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.