Related Experiment Video
Updated: Mar 20, 2026

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Rationally Designed 2-in-1 Nanoparticles Can Overcome Adaptive Resistance in Cancer
Aaron Goldman1,2,3,4, Ashish Kulkarni1,2,3, Mohammad Kohandel5
1Department of Medicine, Harvard Medical School , Boston, Massachusetts 02115, United States.
Abstract:
The development of resistance is the major cause of mortality in cancer. Combination chemotherapy is used clinically to reduce the probability of evolution of resistance. A similar trend toward the use of combinations of drugs is also emerging in the application of cancer nanomedicine. However, should a combination of two drugs be delivered from a single nanoparticle or should they be delivered in two different nanoparticles for maximal efficacy? We explored these questions in the context of adaptive resistance, which emerges as a phenotypic response of cancer cells to chemotherapy. We studied the phenotypic dynamics of breast cancer cells under cytotoxic chemotherapeutic stress and analyzed the data using a phenomenological mathematical model. We demonstrate that cancer cells can develop adaptive resistance by entering into a predetermined transitional trajectory that leads to phenocopies of inherently chemoresistant cancer cells. Disrupting this deterministic program requires a unique combination of inhibitors and cytotoxic agents. Using two such combinations, we demonstrate that a 2-in-1 nanomedicine can induce greater antitumor efficacy by ensuring that the origins of adaptive resistance are terminated by deterministic spatially constrained delivery of both drugs to the target cells. In contrast, a combination of free-form drugs or two nanoparticles, each carrying a single payload, is less effective, arising from a stochastic distribution to cells. These findings suggest that 2-in-1 nanomedicines could emerge as an important strategy for targeting adaptive resistance, resulting in increased antitumor efficacy.
Insights
Single nanoparticles delivering two cancer drugs (2-in-1 nanomedicine) are more effective than separate nanoparticles at overcoming adaptive resistance and improving antitumor efficacy.
Area of Science:
- Oncology
- Nanomedicine
- Cancer Biology
Background:
- Drug resistance is a major cause of cancer mortality.
- Combination chemotherapy and nanomedicine aim to reduce resistance evolution.
- Adaptive resistance involves phenotypic changes in cancer cells.
Purpose of the Study:
- To compare the efficacy of single vs. dual nanoparticle drug delivery for overcoming adaptive resistance.
- To investigate the role of drug delivery methods in cancer nanomedicine.
- To explore strategies for maximizing antitumor efficacy.
Main Methods:
- Studied phenotypic dynamics of breast cancer cells under chemotherapy.
- Analyzed data using a phenomenological mathematical model.
- Tested two drug combinations using 2-in-1 nanomedicine and separate nanoparticles.
Main Results:
- Cancer cells develop adaptive resistance via a predetermined trajectory.
- 2-in-1 nanomedicine effectively disrupts this trajectory and enhances efficacy.
- Separate nanoparticles or free drugs showed reduced efficacy due to stochastic distribution.
Conclusions:
- 2-in-1 nanomedicines are a promising strategy for targeting adaptive resistance.
- Spatially constrained delivery of drug combinations is crucial for efficacy.
- This approach could significantly increase antitumor effects in cancer treatment.
More Related Videos
Related Concept Videos
Adaptive Mechanisms in Cancer Cells
Adaptive Mechanisms in Cancer Cells
Some of the advantages that cancer cells have on normal cells include - enhanced ability to divide without terminally differentiating, induce new blood vessel formation,...
Treatment Resistant Cancers
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
Targeted Cancer Therapies
There are several types of targeted therapies against...

