том 21 издание 40 номер публикации 2500903

The Internal Nanostructure of Lipid Nanoparticles Influences Their Diverse Cellular Uptake Pathways

Тип публикацииJournal Article
Дата публикации2025-05-20
scimago Q1
Tоп 10% SciMago
wos Q1
white level БС1
SJR3.301
CiteScore16.1
Impact factor12.1
ISSN16136810, 16136829
Краткое описание

Lipid nanoparticles have emerged as critical platforms for bioactive agent delivery, with their success in COVID‐19 vaccines highlighting the urgent need to address gaps in understanding their biological interactions. Lyotropic liquid crystalline nanoparticles (LLCNPs) represent promising nanocarriers for bioactive agent delivery. In this study, it is revealed for the first time how internal nanostructures of LLCNPs – liposomes, cubosomes, hexosomes, and micellar cubosomes – influence their cellular uptake pathways. By isolating the effects of mesophase while maintaining consistent particle size, charge, and surface coating, it is demonstrated that non‐lamellar LLCNPs, particularly cubosomes, significantly enhance cellular uptake via distinct endocytic and non‐endocytic mechanisms. These nanoparticles predominantly utilize passive non‐endocytic pathways, such as membrane fusion, bypassing endocytic recycling challenges faced by most nanomaterials, including lamellar liposomes. Among active endocytic pathways, macropinocytosis emerges as the dominant route for non‐lamellar particles. The findings establish a direct link between LLCNP internal nanostructure and cellular internalization mechanisms, highlighting the critical role of mesophase design in optimizing nanocarrier performance. This knowledge enables the rational engineering of LLCNPs tailored to target specific uptake pathways, facilitating precision delivery for diverse therapeutic applications and addressing key barriers in intracellular drug transport.

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Small
2 публикации, 12.5%
Journal of Colloid and Interface Science
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Journal of Drug Delivery Science and Technology
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Journal of the American Chemical Society
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Advanced Materials
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Therapeutic Delivery
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Nanomedicine
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Biomaterials
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Accounts of Chemical Research
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Communications Materials
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BioDrugs
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American Chemical Society (ACS)
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ГОСТ |
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Yap S. L. et al. The Internal Nanostructure of Lipid Nanoparticles Influences Their Diverse Cellular Uptake Pathways // Small. 2025. Vol. 21. No. 40. 2500903
ГОСТ со всеми авторами (до 50) Скопировать
Yap S. L., Dyett B., Hobro A. J., Nguyen H., Smith N. I., Drummond C. J., Conn C. E., Tran N. D. The Internal Nanostructure of Lipid Nanoparticles Influences Their Diverse Cellular Uptake Pathways // Small. 2025. Vol. 21. No. 40. 2500903
RIS |
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TY - JOUR
DO - 10.1002/smll.202500903
UR - https://onlinelibrary.wiley.com/doi/10.1002/smll.202500903
TI - The Internal Nanostructure of Lipid Nanoparticles Influences Their Diverse Cellular Uptake Pathways
T2 - Small
AU - Yap, Sue Lyn
AU - Dyett, Brendan
AU - Hobro, Alison J
AU - Nguyen, Han
AU - Smith, Nicholas I.
AU - Drummond, Calum J
AU - Conn, Charlotte E
AU - Tran, Nhiem Duc
PY - 2025
DA - 2025/05/20
PB - Wiley
IS - 40
VL - 21
SN - 1613-6810
SN - 1613-6829
ER -
BibTex
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BibTex (до 50 авторов) Скопировать
@article{2025_Yap,
author = {Sue Lyn Yap and Brendan Dyett and Alison J Hobro and Han Nguyen and Nicholas I. Smith and Calum J Drummond and Charlotte E Conn and Nhiem Duc Tran},
title = {The Internal Nanostructure of Lipid Nanoparticles Influences Their Diverse Cellular Uptake Pathways},
journal = {Small},
year = {2025},
volume = {21},
publisher = {Wiley},
month = {may},
url = {https://onlinelibrary.wiley.com/doi/10.1002/smll.202500903},
number = {40},
pages = {2500903},
doi = {10.1002/smll.202500903}
}
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