Decoding Insulin-Like Growth Factor Signaling Pathway From a Non-coding RNAs Perspective: A Step Towards Precision Oncology in Breast Cancer.
Yousra Ahmed ZeinElAbdeenAmna AbdAlSeedRana Ahmed YounessPublished in: Journal of mammary gland biology and neoplasia (2022)
Breast cancer (BC) is a highly complex and heterogenous disease. Several oncogenic signaling pathways drive BC oncogenic activity, thus hindering scientists to unravel the exact molecular pathogenesis of such multifaceted disease. This highlights the urgent need to find a key regulator that tunes up such intertwined oncogenic drivers to trim the malignant transformation process within the breast tissue. The Insulin-like growth factor (IGF) signaling pathway is a tenacious axis that is heavily intertwined with BC where it modulates the amplitude and activity of vital downstream oncogenic signaling pathways. Yet, the complexity of the pathway and the interactions driven by its different members seem to aggravate its oncogenicity and hinder its target-ability. In this review, the authors shed the light on the stubbornness of the IGF signaling pathway and its potential regulation by non-coding RNAs in different BC subtypes. Nonetheless, this review also spots light on the possible transport systems available for efficient delivery of non-coding RNAs to their respective targets to reach a personalized treatment code for BC patients.
Keyphrases
- signaling pathway
- pi k akt
- transcription factor
- induced apoptosis
- epithelial mesenchymal transition
- growth hormone
- end stage renal disease
- ejection fraction
- cell proliferation
- newly diagnosed
- chronic kidney disease
- prognostic factors
- palliative care
- peritoneal dialysis
- young adults
- oxidative stress
- patient reported outcomes
- density functional theory