Effects of Surface IR783 Density on the In Vivo Behavior and Imaging Performance of Liposomes.

Pharmaceutics

School of Pharmacy, Department of Thoracic Medical Oncology, Fudan University Shanghai Cancer Center, Shanghai Medical College, Fudan University, Shanghai 200032, China.

Published: May 2024

AI Article Synopsis

  • Nanoparticles with fluorescent probes are useful for targeted imaging and assessing their behavior in living organisms, but the effect of fluorophore density on nanoparticle function is not well understood.
  • Researchers created IR783-modified liposomes to study how IR783 density affected cellular uptake and performance in vivo through various tests, including flow cytometry and imaging.
  • While higher IR783 density improved cellular uptake in lab settings, it negatively affected blood retention and tumor imaging effectiveness in live models, indicating that simply increasing fluorophore density may not enhance imaging outcomes.

Article Abstract

Nanoparticles conjugated with fluorescent probes have versatile applications, serving not only for targeted fluorescent imaging but also for evaluating the in vivo profiles of designed nanoparticles. However, the relationship between fluorophore density and nanoparticle behavior remains unexplored. The IR783-modified liposomes (IR783-sLip) were prepared through a modified ethanol injection and extrusion method. The cellular uptake efficiency of IR783-sLip was characterized by flow cytometry and fluorescence microscope imaging. The effects of IR783 density on liposomal in vivo behavior were investigated by pharmacokinetic studies, biodistribution studies, and in vivo imaging. The constitution of protein corona was analyzed by the Western blot assay. Dense IR783 modification improved cellular uptake of liposomes in vitro but hindered their blood retention and tumor imaging performance in vivo. We found a correlation between IR783 density and protein corona absorption, particularly IgM, which significantly impacted the liposome performance. Meanwhile, we observed that increasing IR783 density did not consistently improve the effectiveness of tumor imaging. Increasing the density of modified IR783 on liposomes is not always beneficial for tumor near-infrared (NIR) imaging yield. It is not advisable to prematurely evaluate novel nanomaterials through fluorescence dye conjugation without carefully optimizing the density of the modifications.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11206891PMC
http://dx.doi.org/10.3390/pharmaceutics16060744DOI Listing

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Effects of Surface IR783 Density on the In Vivo Behavior and Imaging Performance of Liposomes.

Pharmaceutics

May 2024

School of Pharmacy, Department of Thoracic Medical Oncology, Fudan University Shanghai Cancer Center, Shanghai Medical College, Fudan University, Shanghai 200032, China.

Article Synopsis
  • Nanoparticles with fluorescent probes are useful for targeted imaging and assessing their behavior in living organisms, but the effect of fluorophore density on nanoparticle function is not well understood.
  • Researchers created IR783-modified liposomes to study how IR783 density affected cellular uptake and performance in vivo through various tests, including flow cytometry and imaging.
  • While higher IR783 density improved cellular uptake in lab settings, it negatively affected blood retention and tumor imaging effectiveness in live models, indicating that simply increasing fluorophore density may not enhance imaging outcomes.
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