Combined Importance of Non-Specific and Specific Interactions on the Cellular Uptake Kinetics of Peptide-Functionalized Mesoporous Silica Nanoparticles Targeting Integrins In Vitro

Abstract Determination of optimum ligand densities on nanoparticles that result in the highest nanoparticle uptake by the target cells has been the focus of many recent reports. However, analysis of the parallel influence of other important parameters affecting nanoparticle uptake, for example, charge, has achieved less attention. Here, we report results related to the influence of targeting peptide surface concentration on the cellular uptake of mesoporous silica nanoparticles, MSNs, targeting αvβ3 integrins on the cell lines differing in receptor density. For each particle system, the total peptide surface concentration was kept constant, and the targeting peptide concentration was varied through variations of the ratio of the targeting peptide to scrambled peptide. Both anionic carboxylated and cationic aminated MSNs were used. Clear differences in the cellular uptake kinetics as well as the degree of active targeting were observed, which are rationalized through a combination of nanoparticle adhesion strength to the cellular membrane influenced both by the presence of targeting ligand and particle surface charge and of receptor density on the target cells. Our results highlight the important influence of non-specific nanoparticle−cell interactions on active targeting outcomes.

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Publication Details

Journal
Molecular Pharmaceutics
Published
2026-09-25
DOI
https://doi.org/10.1021/acs.molpharmaceut.6c00721
Primary Topic
Cell Adhesion Molecules Research
Type
article
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Combined Importance of Non-Specific and Specific Interactions on the Cellular Uptake Kinetics of Peptide-Functionalized Mesoporous Silica Nanoparticles Targeting Integrins In Vitro

Mika Lindén, Janina Hald, Bianca Leutfeldt
Molecular Pharmaceutics
Cell Adhesion Molecules Research
article

Combined Importance of Non-Specific and Specific Interactions on the Cellular Uptake Kinetics of Peptide-Functionalized Mesoporous Silica Nanoparticles Targeting Integrins In Vitro

Mika Lindén, Janina Hald, Bianca Leutfeldt
article en

Abstract

Abstract Determination of optimum ligand densities on nanoparticles that result in the highest nanoparticle uptake by the target cells has been the focus of many recent reports. However, analysis of the parallel influence of other important parameters affecting nanoparticle uptake, for example, charge, has achieved less attention. Here, we report results related to the influence of targeting peptide surface concentration on the cellular uptake of mesoporous silica nanoparticles, MSNs, targeting αvβ3 integrins on the cell lines differing in receptor density. For each particle system, the total peptide surface concentration was kept constant, and the targeting peptide concentration was varied through variations of the ratio of the targeting peptide to scrambled peptide. Both anionic carboxylated and cationic aminated MSNs were used. Clear differences in the cellular uptake kinetics as well as the degree of active targeting were observed, which are rationalized through a combination of nanoparticle adhesion strength to the cellular membrane influenced both by the presence of targeting ligand and particle surface charge and of receptor density on the target cells. Our results highlight the important influence of non-specific nanoparticle−cell interactions on active targeting outcomes.

Molecular Pharmaceutics
Openalex Percentile: Top 14%
Cell Adhesion Molecules Research
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Combined Importance of Non-Specific and Specific Interactions on the Cellular Uptake Kinetics of Peptide-Functionalized Mesoporous Silica Nanoparticles Targeting Integrins In Vitro — Mika Lindén, Janina Hald, et al. · Molecular Pharmaceutics (2026) | TGRS Research Map | TGRS