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Updated: Jun 6, 2026

Monitoring of Nanodrug Accumulation in Murine Breast Cancer Metastases
Published on: August 23, 2024
[Tumor permeability of nanocarriers observed by dynamic contrast-enhanced magnetic resonance imaging]
1Institute of Medicinal Chemistry, Hoshi University, Tokyo, Japan. kkumi@hoshi.ac.jp
Abstract:
The structure of tumor vasculature is crucial for the nanocarrier-mediated chemotherapy. Recently, transforming growth factor-β (TGF-β) inhibitor was reported to increase the tumor accumulation of nanocarriers by changing the structure of tumor vasculature. To identify the parameters of tumor vasculature function following TGF-β inhibitor (A-83-01) treatment, dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) was performed using Gd-DTPA and its liposomal formulation (Gd-L) as contrast agents. Observation of tumor MR image before, during, and after injection of contrast agent could calculate the parameters of vascular function, such as volume transfer constant between blood plasma and extracellular space (K(trans)) and fractional plasma volume (v(p)). A-83-01 treatment significantly increased these parameters within 24 h that was positively related to pericyte coverage and tumor cell proliferation. Furthermore, apparent diffusion coefficient (ADC) determined by diffusion-weighed imaging was decreased by A-83-01 treatment, suggesting the decrease of tumor interstitial fluid pressure. Vascular function of the tumor improved by A-83-01 treatment well assessed on post-Gd-L-enhanced MR images, which predicted delivery of liposomal drug to the tumor. These findings suggest that DCE-MRI and, in particular, K(trans) and v(p) quantitation, provide important additional information about tumor vasculature by A-83-01 treatment.
Insights
Transforming growth factor-β (TGF-β) inhibitor treatment improved tumor vasculature, enhancing nanocarrier delivery. Dynamic contrast-enhanced MRI (DCE-MRI) revealed increased vascular function parameters, predicting improved drug delivery.
Area of Science:
- Oncology
- Radiology
- Nanomedicine
Context:
- Tumor vasculature significantly impacts nanocarrier chemotherapy efficacy.
- Transforming growth factor-β (TGF-β) inhibitors can alter tumor vasculature, potentially improving nanocarrier accumulation.
- Understanding these vascular changes is key to optimizing nanomedicine delivery.
Purpose:
- To quantify the effects of TGF-β inhibitor (A-83-01) on tumor vascular function using dynamic contrast-enhanced MRI (DCE-MRI).
- To correlate vascular parameter changes with pericyte coverage and tumor cell proliferation.
- To assess the predictive value of DCE-MRI for liposomal drug delivery.
Summary:
- Dynamic contrast-enhanced MRI (DCE-MRI) with Gd-DTPA and liposomal Gd-L was used to evaluate tumor vasculature after A-83-01 treatment.
- A-83-01 significantly increased vascular parameters (K(trans), v(p)) within 24 hours, correlating with pericyte coverage and proliferation.
- Diffusion-weighed imaging showed decreased apparent diffusion coefficient (ADC), indicating reduced interstitial fluid pressure.
Impact:
- DCE-MRI, particularly K(trans) and v(p) quantitation, provides crucial insights into A-83-01-induced tumor vasculature modifications.
- Improved vascular function assessed by DCE-MRI predicts successful liposomal drug delivery to the tumor.
- These findings support the use of DCE-MRI for monitoring therapeutic responses in nanocarrier-based chemotherapy.

