[Tumor permeability of nanocarriers observed by dynamic contrast-enhanced magnetic resonance imaging]

Kumi Kawano1, Yoshie Maitani

  • 1Institute of Medicinal Chemistry, Hoshi University, Tokyo, Japan. kkumi@hoshi.ac.jp

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.

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