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Updated: Jun 5, 2025

Using RNA-sequencing to Detect Novel Splice Variants Related to Drug Resistance in In Vitro Cancer Models
Published on: December 9, 2016
Cellular and molecular aspects of drug resistance in cancers
Rahaman Shaik1, M Shaheer Malik2, Sreevani Basavaraju3
1Department of Pharmacology, School of Pharmaceutical Education & Research, Jamia Hamdard, New Delhi, India.
Objectives:
Cancer drug resistance is a multifaceted phenomenon. The present review article aims to comprehensively analyze the cellular and molecular aspects of drug resistance in cancer and the strategies employed to overcome it.
Evidence Acquisition:
A systematic search of relevant literature was conducted using electronic databases such as PubMed, Scopus, and Web of Science using appropriate key words. Original research articles and secondary literature were taken into consideration in reviewing the development in the field.
Results And Conclusions:
Cancer drug resistance is a pervasive challenge that causes many treatments to fail therapeutically. Despite notable advances in cancer treatment, resistance to traditional chemotherapeutic agents and novel targeted medications remains a formidable hurdle in cancer therapy leading to cancer relapse and mortality. Indeed, a majority of patients with metastatic cancer experience are compromised on treatment efficacy because of drug resistance. The multifaceted nature of drug resistance encompasses various factors, such as tumor heterogeneity, growth kinetics, immune system, microenvironment, physical barriers, and the emergence of undruggable cancer drivers. Additionally, alterations in drug influx/efflux transporters, DNA repair mechanisms, and apoptotic pathways further contribute to resistance, which may manifest as either innate or acquired traits, occurring prior to or following therapeutic intervention. Several strategies such as combination therapy, targeted therapy, development of P-gp inhibitors, PROTACs and epigenetic modulators are developed to overcome cancer drug resistance. The management of drug resistance is compounded by the patient and tumor heterogeneity coupled with cancer's ability to evade treatment. Gaining further insight into the mechanisms underlying medication resistance is imperative for the development of effective therapeutic interventions and improved patient outcomes.
Insights
Cancer drug resistance is a major challenge, leading to treatment failure and mortality. Understanding its complex mechanisms is crucial for developing new therapies to overcome resistance and improve patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cancer drug resistance is a significant obstacle in effective cancer treatment.
- It affects both traditional chemotherapies and novel targeted therapies, leading to treatment failure, relapse, and mortality.
- A majority of patients with metastatic cancer face compromised treatment efficacy due to drug resistance.
Purpose of the Study:
- To comprehensively analyze the cellular and molecular mechanisms of cancer drug resistance.
- To review current strategies employed to overcome drug resistance in cancer therapy.
Main Methods:
- A systematic literature search was performed using major scientific databases (PubMed, Scopus, Web of Science).
- Both original research articles and secondary literature were reviewed to capture the latest developments.
Main Results:
- Drug resistance is multifaceted, involving tumor heterogeneity, microenvironment, immune factors, and genetic alterations.
- Mechanisms include changes in drug transporters, DNA repair, and apoptotic pathways, leading to innate or acquired resistance.
- Emergence of undruggable cancer drivers and cancer's ability to evade treatment further complicate management.
Conclusions:
- Overcoming cancer drug resistance requires a deeper understanding of its complex mechanisms.
- Strategies like combination therapy, targeted therapy, P-gp inhibitors, PROTACs, and epigenetic modulators show promise.
- Further research into resistance mechanisms is imperative for developing effective interventions and improving patient survival.
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