2022
DOI: 10.1002/adhm.202201585
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Enhanced Tumor Accumulation of Multimodal Magneto‐Plasmonic Nanoparticles via an Implanted Micromagnet‐Assisted Delivery Strategy

Abstract: One of the major shortcomings of nano carriers-assisted cancer therapeutic strategies continues to be the inadequate tumor penetration and retention of systemically administered nanoformulations and its off-target toxicity. Stromal parameters-related heterogeneity in enhanced permeability and retention effect and physicochemical properties of the nanoformulations immensely contributes to their poor tumor extravasation. Herein, a novel tumor targeting strategy, where an intratumorally implanted micromagnet can … Show more

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Cited by 3 publications
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“…Multiple parameters of FHNPs (shape, size, and concentration) and pMWA (power, frequency, duration) influence heat generation and can be systematically tested. Recently developed targeted systemic nanoparticle delivery strategies can increase tumor uptake [34][35][36] -if combined with MWA, these could be compared with the local injection method described here. Finally, our results show that FHNPs may enable lethal heating of tissues remote from the MW energy source (Figure 3).…”
Section: Discussionmentioning
confidence: 99%
“…Multiple parameters of FHNPs (shape, size, and concentration) and pMWA (power, frequency, duration) influence heat generation and can be systematically tested. Recently developed targeted systemic nanoparticle delivery strategies can increase tumor uptake [34][35][36] -if combined with MWA, these could be compared with the local injection method described here. Finally, our results show that FHNPs may enable lethal heating of tissues remote from the MW energy source (Figure 3).…”
Section: Discussionmentioning
confidence: 99%