Multimodality imaging of tumor and bone response in a mouse model of bony metastasis
Benjamin A Hoff1, Komal Chughtai, Yong Hyun Jeon
1Department of Radiology, University of Michigan, Ann Arbor, MI.
Abstract:
Cancer drug development generally performs in vivo evaluation of treatment effects that have traditionally relied on detection of morphologic changes. The emergence of new targeted therapies, which may not result in gross morphologic changes, has spurred investigation into more specific imaging methods to quantify response, such as targeted fluorescent probes and bioluminescent cells. The present study investigated tissue response to docetaxel or zoledronic acid (ZA) in a mouse model of bony metastasis. Intratibial implantations of breast cancer cells (MDA-MB-231) were monitored throughout this study using several modalities: molecular resonance imaging (MRI) tumor volume and apparent diffusion coefficient (ADC), micro-computed tomography (µCT) bone volume, bioluminescence imaging (BLI) reporting cancer cell apoptosis, and fluorescence using Osteosense 800 and CatK 680-FAST. Docetaxel treatment resulted in tumor cell kill reflected by ADC and BLI increases and tumor volume reduction, with delayed bone recovery seen in µCT prefaced by increased osteoblastic activity (Osteosense 800). In contrast, the ZA treatment group produced similar values in MRI, BLI, and Osteosense 800 fluorescence imaging readouts when compared to controls. However, µCT bone volume increased significantly by the first week post-treatment and the CatK 680-FAST signal was slightly diminished by 4 weeks following ZA treatment. Multimodality imaging provides a more comprehensive tool for new drug evaluation and efficacy screening through identification of morphology as well as function and apoptotic signaling.
Insights
Multimodality imaging effectively tracks cancer drug efficacy in bone metastasis models. This approach quantifies treatment response by assessing tumor cell apoptosis and bone changes, improving drug evaluation.
Area of Science:
- Oncology
- Medical Imaging
- Pharmacology
Background:
- Traditional cancer drug evaluation relies on morphologic changes, which are insufficient for targeted therapies.
- Newer imaging methods are needed to quantify treatment response for novel cancer drugs.
Purpose of the Study:
- To investigate tissue response to docetaxel and zoledronic acid (ZA) in a mouse model of bone metastasis.
- To evaluate the efficacy of multimodality imaging in assessing cancer drug response.
Main Methods:
- Utilized molecular resonance imaging (MRI), micro-computed tomography (µCT), bioluminescence imaging (BLI), and fluorescence imaging.
- Monitored tumor volume, apparent diffusion coefficient (ADC), bone volume, cancer cell apoptosis, and osteoblastic activity.
Main Results:
- Docetaxel reduced tumor volume and increased ADC/BLI, indicating cell kill, with delayed bone recovery.
- Zoledronic acid (ZA) showed increased bone volume and decreased CatK 680-FAST signal, suggesting bone formation and reduced osteoclast activity.
Conclusions:
- Multimodality imaging offers a comprehensive assessment of new drug efficacy by evaluating morphology, function, and apoptotic signaling.
- This integrated imaging approach enhances drug evaluation and efficacy screening in preclinical cancer models.
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