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Caveolar Endocytosis Governs Nanoneedle Transfection




TekijätSun, Ningjia; Wang, Cong; Wang, Yikai; Edwards, William; Dimitrievska, Marija; Li, Yike; Vasovic, Nemanja; McLennan, Samuel; Zhu, Hongting; Mäkilä, Ermei; Salonen, Jarno; Shen, Jiefei; Peng, Qi; Scottà, Cristiano; Lombardi, Giovanna; Chiappini, Ciro

Julkaisuvuosi2026

Lehti: ACS Nano

Vuosikerta20

Numero6

Aloitussivu4663

Lopetussivu4676

ISSN1936-0851

eISSN1936-086X

DOIhttps://doi.org/10.1021/acsnano.5c11011

Julkaisun avoimuus kirjaamishetkelläAvoimesti saatavilla

Julkaisukanavan avoimuus Osittain avoin julkaisukanava

Verkko-osoitehttps://doi.org/10.1021/acsnano.5c11011

Rinnakkaistallenteen osoitehttps://research.utu.fi/converis/portal/detail/Publication/515618193

Rinnakkaistallenteen lisenssiCC BY

Rinnakkaistallennetun julkaisun versioKustantajan versio


Tiivistelmä

Nanoneedles are emerging as a safe and scalable strategy for the genetic modification of primary human cells. However, a limited understanding of how interactions at the biointerface lead to functional gene expression continues to hinder clinical translation. While direct membrane penetration, permeabilization, and endocytosis have been proposed as intracellular delivery avenues, the mechanistic connection between delivery and successful transfection remains unclear. Here, we identify caveolae-mediated endocytosis, dependent on Caveolin-1, as a key mechanism enabling nanoneedle transfection. By selectively modulating Caveolin-1 expression in primary human regulatory T cells and MG63 cells and investigating endolysosomal processing, we show that although nucleic acids can be efficiently delivered in the absence of Caveolin-1, gene expression occurs only when caveolar endocytosis is present. These findings reveal a mechanistic basis and establish a broader design principle for nanoneedle transfection: interfacing must be accompanied by the engagement of permissive cellular trafficking pathways to achieve gene expression.


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Julkaisussa olevat rahoitustiedot
C.C. acknowledges funding from the European Union under the ERC Starting Grant ENBION 759577 and the Medical Research Council under the Confidence in Concept award (MC_PC_18052) and King’s-China Scholarship Council (202106230065).


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