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March 19, 2026ACS Applied Materials & Interfaces2 citations

Magnetic Field-Responsive Smart bioMOF Composites Based on Bi(III)-Ellagate SU-101

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DPDarina Francesca PicchiCBCatalina BiglioneJMJulie Charlotte Pauline Mellerin

Key Points

  • The research aims to develop magneto-responsive bioMOF composites with enhanced functionality for biomedical use.
  • Synthesis of Bi(III)-ellagate bioMOF SU-101
  • Integration of ultrasmall magnetic nanoparticles into the bioMOF framework
  • Characterization of magnetic properties under various magnetic field frequencies
  • Assessment of cargo release efficacy and cancer cell viability
  • MRI relaxivity measurements to evaluate contrast agent potential.
  • Successful integration of magnetic nanoparticles without compromising bioMOF structure
  • Significant cargo release observed in response to external magnetic fields
  • Marked reduction in cancer cell viability due to activated release mechanism
  • Demonstrated potential as MRI contrast agents through relaxivity measurements.

Abstract

Bioderived metal-organic frameworks (bioMOFs) have attracted interest as functional materials for medical-related applications due to their biocompatibility and structural tunability. However, the integration of external stimulus responsiveness into bioMOF architectures while preserving the framework integrity remains a significant challenge. Herein, we report the synthesis and comprehensive characterization of magneto-responsive nanocomposites based on the microporous Bi(III)-ellagate bioMOF SU-101 incorporating ultrasmall magnetic nanoparticles. We demonstrate the successful integration of magnetic nanoparticles and the loading of fluorescent cargo within the MOF matrix without compromising its structural integrity. The resulting magnetic nanocomposites exhibit a well-defined magnetic response under high-frequency alternating (AMF) and low-frequency rotating (RMF) magnetic fields that enable remote modulation of thermal and mechanical effects, leading to significant cargo release and a marked reduction in cancer cell viability. Moreover, magnetic resonance imaging (MRI) relaxivity measurements confirm the potential of these nanocomposites as magnetic resonance contrast agents. Overall, these results highlight the strong potential of magnetically responsive bioMOF SU-101-based nanocomposites as multifunctional platforms for biomedical applications.

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Cite This Study

Picchi et al. (2026) studied this question.

synapsesocial.com/papers/69bb9321496e729e62980fe4https://doi.org/10.1021/acsami.6c02794
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