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Updated: Jul 3, 2025

Implementation of In Vitro Drug Resistance Assays: Maximizing the Potential for Uncovering Clinically Relevant Resistance Mechanisms
Published on: December 9, 2015
Unveiling the mechanisms and challenges of cancer drug resistance
Sameer Ullah Khan1,2,3, Kaneez Fatima4,5, Shariqa Aisha4,5
1Division of Genitourinary Medical Oncology, The University of Texas MD Anderson Cancer Center, Holcombe Blvd, Houston, TX, 77030, USA. muminsameer@gmail.com.
Abstract:
Cancer treatment faces many hurdles and resistance is one among them. Anti-cancer treatment strategies are evolving due to innate and acquired resistance capacity, governed by genetic, epigenetic, proteomic, metabolic, or microenvironmental cues that ultimately enable selected cancer cells to survive and progress under unfavorable conditions. Although the mechanism of drug resistance is being widely studied to generate new target-based drugs with better potency than existing ones. However, due to the broader flexibility in acquired drug resistance, advanced therapeutic options with better efficacy need to be explored. Combination therapy is an alternative with a better success rate though the risk of amplified side effects is commonplace. Moreover, recent groundbreaking precision immune therapy is one of the ways to overcome drug resistance and has revolutionized anticancer therapy to a greater extent with the only limitation of being individual-specific and needs further attention. This review will focus on the challenges and strategies opted by cancer cells to withstand the current therapies at the molecular level and also highlights the emerging therapeutic options -like immunological, and stem cell-based options that may prove to have better potential to challenge the existing problem of therapy resistance. Video Abstract.
Insights
Cancer cells develop resistance to treatments through various mechanisms. Emerging therapies like immunotherapy and stem cell treatments show promise in overcoming this challenge.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Cancer treatment resistance arises from genetic, epigenetic, proteomic, metabolic, or microenvironmental factors.
- This resistance allows cancer cells to survive and progress despite therapeutic interventions.
- Understanding these mechanisms is crucial for developing more effective anti-cancer strategies.
Discussion:
- Drug resistance in cancer is a complex, multifaceted problem.
- Combination therapies offer improved success rates but may increase side effects.
- Precision immunotherapy has revolutionized cancer treatment but is highly individual-specific.
Key Insights:
- Cancer cells employ diverse strategies to evade current therapies at the molecular level.
- Acquired drug resistance presents a significant hurdle, necessitating advanced therapeutic options.
- Novel approaches are essential to overcome the limitations of existing treatments.
Outlook:
- Emerging immunological and stem cell-based therapies hold significant potential for challenging cancer therapy resistance.
- Further research is needed to optimize these advanced therapeutic options for broader application.
- Developing next-generation cancer treatments requires a focus on overcoming resistance mechanisms.
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