4.8 Article

Molecular magnetic resonance imaging of Alpha-v-Beta-3 integrin expression in tumors with ultrasound microbubbles

期刊

BIOMATERIALS
卷 275, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2021.120896

关键词

Molecular imaging; Angiogenesis; MRI; Ultrasound; Microbubbles

资金

  1. German Research Foundation [DFG: GRK2375, 331065168, 403039938]
  2. German Academic Exchange Program [DAAD 57214224]
  3. Research Unit 2591 Severity assessment in animal based research [321137804]
  4. European Union (ERANET-Euro-NanoMedIII: NSC4DIPG)

向作者/读者索取更多资源

This study investigated the use of microbubbles containing superparamagnetic iron oxide nanoparticles as molecular MRI contrast agents targeted against angiogenesis in breast cancer. Results indicated that RGD-SPION-MB showed higher retention in angiogenic vessels compared to SPION-MB and RAD-SPION-MB, demonstrating their potential as effective molecular MR/US contrast agents for assessing integrin expression in neovasculature.
Microbubbles (MB) are used as ultrasound (US) contrast agents and can be efficiently targeted against markers of angiogenesis and inflammation. Due to their gas core, MB locally alter susceptibilities in magnetic resonance imaging (MRI), but unfortunately, the resulting contrast is low and not sufficient to generate powerful molecular MRI probes. Therefore, we investigated whether a potent molecular MR agent can be generated by encapsulating superparamagnetic iron oxide nanoparticles (SPION) in the polymeric shell of poly (n-butylcyanoacrylate) (PBCA) MB and targeted them against alpha v beta 3 integrins on the angiogenic vasculature of 4T1 murine breast carcinomas. SPION-MB consist of an air core and a multi-layered polymeric shell enabling efficient entrapment of SPION. The mean size of SPION-MB was 1.61 +/- 0.32 mu m. Biotin-streptavidin coupling was employed to functionalize the SPION-MB with cyclic RGDfK (Arg-Gly-Asp) and RADfK (Arg-Ala-Asp) peptides. Cells incubated with RGD-SPION-MB showed enhanced transverse relaxation rates compared with SPION-MB and blocking alpha v beta 3 integrin receptors with excess free cRGDfK significantly reduced RGD-SPION-MB binding. Due to the fast binding of RGD-SPION-MB in vivo, dynamic susceptibility contrast MRI was employed to track their retention in tumors in real-time. Higher retention of RGD-SPION-MB was observed compared with SPION-MB and RAD-SPION-MB. To corroborate our MRI results, molecular US was performed the following day using the destruction-replenishment method. Both imaging modalities consistently indicated higher retention of RGD-SPION-MB in angiogenic vessels compared with SPION-MB and RAD-SPION-MB. Competitive blocking experiments in mice further confirmed that the binding of RGD-SPION-MB to alpha v beta 3 integrin receptors is specific. Overall, this study demonstrates that RGD-SPION-MB can be employed as molecular MR/US contrast agents and are capable of assessing the alpha v beta 3 integrin expression in the neovasculature of malignant tumors.

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