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Updated: May 24, 2026

A Comprehensive Procedure to Evaluate the In Vivo Performance of Cancer Nanomedicines
Published on: March 4, 2017
Recent trends in cancer drug resistance reversal strategies using nanoparticles
Srinath Palakurthi1, Venkata Kashyap Yellepeddi, Kiran Kumar Vangara
1Irma Lerma Rangel College of Pharmacy, Texas A&M Health Science Center, Kingsville, TX 78363, USA. Palakurthi@pharmacy.tamhsc.edu
Introduction:
Resistance to chemotherapy is a major obstacle in the successful amelioration of tumors in many cancer patients. Resistance is either intrinsic or acquired, involving mechanisms such as genetic aberrations, decreased influx and increased efflux of drugs. Strategies for the reversal of resistance involve the alteration of enzymes responsible for drug resistance, the modulation of proteins regulating apoptosis mechanisms and improving the uptake of drugs using nanotechnology. Novel strides in the reversal of drug resistance are emerging, involving the use of nanotechnology, targeting stem cells, etc.
Areas Covered:
This paper reviews the most recent cancer drug reversal strategies involving nanotechnology for targeting cancer cells and cancer stem cells (CSCs), for enhanced uptake of micro- and macromolecular inhibitors.
Expert Opinion:
Nanotechnology used in conjunction with existing therapies, such as gene therapy and P-glycoprotein inhibition, has been shown to improve the reversal of drug resistance; the mechanisms involved in this include specific targeting of drugs and nucleotide therapeutics, enhanced cellular uptake of drugs and improved bioavailability of drugs with poor physicochemical characteristics. Important strategies in the reversal of drug resistance include: a multifunctional nanoparticulate system housing a targeting moiety; therapeutics to kill resistant cancer cells and CSCs; cytotoxic drugs and a tumor microenvironment stimuli-responsive element, to release the encapsulated therapeutics.
Insights
Nanotechnology enhances chemotherapy effectiveness by improving drug delivery and targeting cancer stem cells, overcoming drug resistance in cancer treatment. This approach aids in overcoming resistance for better patient outcomes.
Area of Science:
- Oncology
- Nanomedicine
- Drug Discovery
Background:
- Chemotherapy resistance is a significant challenge in cancer treatment.
- Mechanisms include genetic changes and altered drug transport.
- Current strategies focus on altering resistance mechanisms and improving drug uptake.
Purpose of the Study:
- To review recent advancements in reversing cancer drug resistance using nanotechnology.
- To explore nanotechnology's role in targeting cancer cells and cancer stem cells (CSCs).
Main Methods:
- Review of current literature on nanotechnology-based cancer drug resistance reversal strategies.
- Focus on targeting cancer cells and CSCs for enhanced inhibitor uptake.
Main Results:
- Nanotechnology combined with therapies like gene therapy and P-glycoprotein inhibition improves drug resistance reversal.
- Mechanisms include targeted drug delivery, enhanced cellular uptake, and improved bioavailability.
- Multifunctional nanoparticles with targeting moieties and stimuli-responsive elements are key strategies.
Conclusions:
- Nanotechnology offers promising strategies to overcome chemotherapy resistance.
- Targeted delivery and enhanced uptake are crucial benefits.
- Future directions involve multifunctional nanoparticles for precise cancer therapy.
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