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Updated: Aug 9, 2026

Live Imaging of Drug Responses in the Tumor Microenvironment in Mouse Models of Breast Cancer
Published on: March 24, 2013
Dynamic imaging of emerging resistance during cancer therapy
Kuei C Lee1, Daniel E Hall, Benjamin A Hoff
1Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, MI 48109, USA.
Abstract:
One of the greatest challenges in developing therapeutic regimens is the inability to rapidly and objectively assess tumor response due to treatment. Moreover, tumor response to therapeutic intervention in many cases is transient, and progressive alterations within the tumor may mask the effectiveness of an initially successful therapy. The ability to detect these changes as they occur would allow timely initiation of alternative approaches, maximizing therapeutic outcome. We investigated the ability of diffusion magnetic resonance imaging (MRI) to provide a sensitive measure of tumor response throughout the course of treatment, possibly identifying changes in sensitivity to the therapy. Orthotopic 9L gliomas were subjected to two separate therapeutic regimens, with one group receiving a single 5-day cycle (1omega) of low-dose 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU) and a second group receiving two cycles at the same dose, bisected with 2 days of rest (2omega). Apparent diffusion coefficient maps were acquired before and throughout treatment to observe changes in water mobility, and these observations were correlated to standard measures of therapeutic response and outcome. Our results showed that diffusion MRI was indeed able to detect the emergence of a drug-resistant tumor subpopulation subsequent to an initially successful cycle of BCNU therapy, leading to minimal gains from a second cycle. These diffusion MRI findings were highly correlated with tumor growth delay, animal survival, and ex vivo growth inhibition assays showing emerging resistance in excised tumors. Overall, this study highlights the ability of diffusion MRI to provide sensitive dynamic assessment of therapy-induced response, allowing early opportunities for optimization of therapeutic protocols.
Insights
Diffusion MRI can detect early tumor resistance to chemotherapy, enabling timely treatment adjustments. This imaging technique offers a sensitive, objective measure of therapeutic response and outcome in gliomas.
Area of Science:
- Oncology
- Radiology
- Biophysics
Background:
- Assessing tumor response to therapy is challenging due to transient effects and evolving resistance.
- Early detection of treatment failure is crucial for optimizing therapeutic outcomes and patient survival.
Purpose of the Study:
- To investigate diffusion magnetic resonance imaging (MRI) as a sensitive method for monitoring tumor response during therapy.
- To assess if diffusion MRI can detect emerging drug resistance in gliomas treated with 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU).
Main Methods:
- Orthotopic 9L gliomas were treated with one (1omega) or two (2omega) cycles of BCNU.
- Diffusion MRI was used to acquire apparent diffusion coefficient maps before and during treatment.
- MRI findings were correlated with tumor growth delay, animal survival, and ex vivo growth inhibition assays.
Main Results:
- Diffusion MRI detected the emergence of a BCNU-resistant tumor subpopulation after initial treatment.
- A second BCNU cycle showed minimal benefit in the presence of emerging resistance.
- Diffusion MRI findings strongly correlated with established measures of therapeutic response and outcome.
Conclusions:
- Diffusion MRI provides a sensitive, dynamic assessment of therapy-induced tumor response.
- This technique can identify early signs of treatment resistance, allowing for timely therapeutic adjustments.
- Diffusion MRI holds potential for optimizing treatment protocols in oncology.

