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Long noncoding RNAs as potential targets for overcoming chemoresistance in upper gastrointestinal cancers
Mostafa Vaghari-Tabari1, Durdi Qujeq2, Mohammad Sadegh Hashemzadeh3
1Department of Paramedicine, Amol School of Paramedical Sciences, Mazandaran University of Medical Sciences, Sari, Iran.
Abstract:
In the last decade, researchers have paid much attention to the role of noncoding RNA molecules in human diseases. Among the most important of these molecules are LncRNAs, which are RNA molecules with a length of more than 200 nucleotides. LncRNAs can regulate gene expression through various mechanisms, such as binding to DNA sequences and interacting with miRNAs. Studies have shown that LncRNAs may be valuable therapeutic targets in treating various cancers, including upper-gastrointestinal cancers. Upper gastrointestinal cancers, mainly referring to esophageal and gastric cancers, are among the deadliest gastrointestinal cancers. Despite notable advances, traditional chemotherapy remains a common strategy for treating these cancers. However, chemoresistance poses a significant obstacle to the effective treatment of upper gastrointestinal cancers, resulting in a low survival rate. Chemoresistance arises from various events, such as the enhancement of efflux and detoxification of chemotherapy agents, reduction of drug uptake, alteration of drug targeting, reduction of prodrug activation, strengthening of EMT and stemness, and the attenuation of apoptosis in cancerous cells. Tumor microenvironment also plays an important role in chemoresistance. Interestingly, a series of studies have revealed that LncRNAs can influence important mechanisms associated with some of the aforementioned events and may serve as promising targets for mitigating chemoresistance in upper gastrointestinal cancers. In this review paper, following a concise overview of chemoresistance mechanisms in upper gastrointestinal cancers, we will review the most intriguing findings of these investigations in detail.
Insights
Long noncoding RNAs (LncRNAs) show promise in overcoming chemoresistance in upper gastrointestinal cancers. These molecules regulate gene expression and can be targeted to improve treatment efficacy for esophageal and gastric cancers.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Long noncoding RNAs (LncRNAs) are key regulators of gene expression implicated in human diseases.
- Upper gastrointestinal cancers, including esophageal and gastric cancers, have poor survival rates partly due to chemoresistance.
- Chemoresistance mechanisms involve drug efflux, altered drug uptake, and evasion of apoptosis.
Purpose of the Study:
- To review the role of LncRNAs in modulating chemoresistance mechanisms in upper gastrointestinal cancers.
- To highlight LncRNAs as potential therapeutic targets for overcoming treatment resistance.
Main Methods:
- Literature review of studies investigating LncRNAs and chemoresistance in esophageal and gastric cancers.
- Analysis of LncRNA regulatory mechanisms in cancer cell survival and drug response.
Main Results:
- LncRNAs influence multiple chemoresistance pathways, including drug metabolism and apoptosis.
- Specific LncRNAs have been identified that promote or inhibit chemoresistance.
- The tumor microenvironment's role in LncRNA-mediated chemoresistance is significant.
Conclusions:
- LncRNAs represent promising biomarkers and therapeutic targets for combating chemoresistance in upper gastrointestinal cancers.
- Targeting LncRNAs could enhance the effectiveness of chemotherapy and improve patient outcomes.
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