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March 21, 20260 citationsOpen Access

In vivo MPI of HER2-targeted tumor SPIO uptake is hindered by its current dynamic signal range

AIAsif Mohd ItooASAli Shakeri-ZadehJGJanani Gurumurthy

Key Points

  • This research aims to evaluate the effectiveness of trastuzumab-conjugated SPIO nanoparticles for MPI in HER2+ breast tumors.
  • Utilized trastuzumab (Tz) for targeting HER2 in tumors.
  • Conducted in vitro immunostaining and MPI to confirm SPIO conjugation and binding.
  • Injected Tz-SPIO into a HER2+ breast cancer mouse model for in vivo MPI analysis.
  • Assessed tumor to non-tumor tissue signal ratios during MPI imaging.
  • Performed ex vivo MPI to measure tumor accumulation of Tz-SPIO.
  • In vivo MPI showed no distinct tumor signal due to interference from nearby high-signal organs.
  • Ex vivo MPI indicated Tz-SPIO accumulation in tumors was 1.7- to 3.7-fold greater than controls.
  • The dynamic range of MPI limited successful tumor visualization with ratios of 1:8 to 1:15.

Abstract

Trastuzumab (Tz, herceptin) is a clinically approved monoclonal antibody targeting HER2 on tumor cells, making it an attractive bioligand for specific tumor targeting of superparamagnetic iron oxide (SPIO) nanoparticles. We investigated if Tz-conjugated SPIO could be used for MPI of HER2+ breast tumors. Successful conjugation and preservation of specific HER2-binding of Tz after SPIO conjugation was confirmed in vitro by immunostaining and MPI. Following intravenous injection of Tz-SPIO in a transgenic (spontaneously orthotopic) HER2+ breast cancer mouse model, in vivo MPI was unable to show a distinguishable tumor signal due to the close anatomical proximity of high-signal organs (i.e., liver, spleen, and lungs) to the thoracic tumor, unlike in subcutaneous models. The pulmonary signal disappeared by day 3, indicating SPIO redistribution and/or clearance. However, ex vivo MPI confirmed that tumor accumulation of Tz-SPIO was approximately 1.7- to 3.7-fold higher than that for IgG1-SPIO and unconjugated-SPIO controls, respectively. We conclude that the limited dynamic range of the current MPI technology prevents successful in vivo tumor visualization at low tumor to non-tumor tissue ratios, which was 1:8 to 1:15 in our studies. While antibody-mediated SPIO tumor targeting works in principle, there is an urgent need to develop methods for increasing the dynamic range of MPI.

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Cite This Study

Itoo et al. (2025) studied this question.

synapsesocial.com/papers/69be38b56e48c4981c67957chttps://doi.org/10.18416/ijmpi.2026.2603028
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Also Consider

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