Dendrimer ‘protein corona’: mechanism of interaction, characterization, and implications in drug delivery

behavior. Dendrimers are ultrasmall, highly branched nanocarriers whose physicochemical properties and cargo conjugation can be precisely tailored for drug delivery. Unlike larger nanoparticles, dendrimers are comparable in size to many plasma proteins, and their interactions in biological fluids give rise to 'dendrimer-protein complexes' that depart from the conventional coronal structure. These interactions redefine the biological identity of dendrimers and, in turn, modulate their pharmacological behavior. In this review, we first survey the broader roles of the protein corona in nanomedicine and then examine the functional consequences of dendrimer-protein interactions for cellular targeting, systemic clearance, and toxicity. We subsequently evaluate current models of dendrimer-protein binding kinetics and complex formation, emphasizing how dendrimer physicochemical properties govern these interactions and their downstream effects. Finally, we review the analytical and separation methods available for studying dendrimer-protein interactions and propose asymmetric flow field-flow fractionation (AF4) coupled with enrichment analysis as a promising strategy for resolving dendrimer-associated proteins. A mechanistic understanding of dendrimer-protein interactions will be essential for the rational design and clinical translation of dendrimer-based therapeutics.

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Publication Details

Journal
Nanomedicine
Published
2026-09-29
DOI
https://doi.org/10.1080/17435889.2026.2729126
Primary Topic
Dendrimers and Hyperbranched Polymers
Type
article
Field-Weighted Citation Impact
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article

Dendrimer ‘protein corona’: mechanism of interaction, characterization, and implications in drug delivery

Evelyn Chang, Hongyu Feng, Andy Yang, Elijah J. Walthall et al.
Nanomedicine
Dendrimers and Hyperbranched Polymers
article

Dendrimer ‘protein corona’: mechanism of interaction, characterization, and implications in drug delivery

Evelyn Chang, Hongyu Feng, Andy Yang, Elijah J. Walthall, Fan Zhang
article en

Abstract

behavior. Dendrimers are ultrasmall, highly branched nanocarriers whose physicochemical properties and cargo conjugation can be precisely tailored for drug delivery. Unlike larger nanoparticles, dendrimers are comparable in size to many plasma proteins, and their interactions in biological fluids give rise to 'dendrimer-protein complexes' that depart from the conventional coronal structure. These interactions redefine the biological identity of dendrimers and, in turn, modulate their pharmacological behavior. In this review, we first survey the broader roles of the protein corona in nanomedicine and then examine the functional consequences of dendrimer-protein interactions for cellular targeting, systemic clearance, and toxicity. We subsequently evaluate current models of dendrimer-protein binding kinetics and complex formation, emphasizing how dendrimer physicochemical properties govern these interactions and their downstream effects. Finally, we review the analytical and separation methods available for studying dendrimer-protein interactions and propose asymmetric flow field-flow fractionation (AF4) coupled with enrichment analysis as a promising strategy for resolving dendrimer-associated proteins. A mechanistic understanding of dendrimer-protein interactions will be essential for the rational design and clinical translation of dendrimer-based therapeutics.

Nanomedicine
University of Florida (US)
Good health and well-being
Openalex Percentile: Top 24%
Dendrimers and Hyperbranched Polymers
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Dendrimer ‘protein corona’: mechanism of interaction, characterization, and implications in drug delivery — Evelyn Chang, Hongyu Feng, et al. · Nanomedicine (2026) | TGRS Research Map | TGRS