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Engineered Nanotopographies Induce Transient Openings in the Nuclear Membrane.

Authors :
Sarikhani, Einollah
Patel, Vrund
Li, Zhi
Meganathan, Dhivya Pushpa
Rahmani, Keivan
Sadr, Leah
Hosseini, Ryan
Visda, Diether
Shukla, Shivani
Naghsh‐Nilchi, Hamed
Balaji, Adarsh
McMahon, Gillian
Chen, Shaoming
Schöneberg, Johannes
McHugh, Colleen A.
Shi, Lingyan
Jahed, Zeinab
Source :
Advanced Functional Materials. Sep2024, p1. 10p. 5 Illustrations.
Publication Year :
2024

Abstract

Materials with engineered nano‐scale surface topographies, such as nanopillars, nanoneedles, and nanowires, mimic natural structures like viral spike proteins, enabling them to bypass biological barriers like the plasma membrane. These properties have led to applications in nanoelectronics for intracellular sensing and drug delivery platforms, some of which are already in clinical trials. Here, evidence is present that nanotopographic materials can induce transient openings in the nuclear membranes of various cell types without penetrating the cells, breaching the nucleo‐cytoplasmic barrier, and allowing uncontrolled molecular exchange across the nuclear membrane. These openings, induced by nanoscale curvature, are temporary and repaired through the Endosomal Sorting Complexes Required for Transport (ESCRT)‐mediated mechanisms. The findings suggest a potential for nano\topographic materials to temporarily breach the nuclear membrane with potential applications in direct nuclear sensing and delivery. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1616301X
Database :
Academic Search Index
Journal :
Advanced Functional Materials
Publication Type :
Academic Journal
Accession number :
179347584
Full Text :
https://doi.org/10.1002/adfm.202410035