Impact of mechanical cues on key cell functions and cell-nanoparticle interactions

Autor
Elblová, Petra
Lunova, Mariia
Dejneka, Alexandr
Jirsa, Milan
Lunov, Oleg
Datum vydání
2024Publikováno v
Discover NanoNakladatel / Místo vydání
Springer USRočník / Číslo vydání
19 (1)ISBN / ISSN
ISSN: 2731-9229ISBN / ISSN
eISSN: 2731-9229Informace o financování
UK//COOP
Metadata
Zobrazit celý záznamKolekce
Tato publikace má vydavatelskou verzi s DOI 10.1186/s11671-024-04052-2
Abstrakt
In recent years, it has been recognized that mechanical forces play an important regulative role in living organisms and possess a direct impact on crucial cell functions, ranging from cell growth to maintenance of tissue homeostasis. Advancements in mechanobiology have revealed the profound impact of mechanical signals on diverse cellular responses that are cell type specific. Notably, numerous studies have elucidated the pivotal role of different mechanical cues as regulatory factors influencing various cellular processes, including cell spreading, locomotion, differentiation, and proliferation. Given these insights, it is unsurprising that the responses of cells regulated by physical forces are intricately linked to the modulation of nanoparticle uptake kinetics and processing. This complex interplay underscores the significance of understanding the mechanical microenvironment in shaping cellular behaviors and, consequently, influencing how cells interact with and process nanoparticles. Nevertheless, our knowledge on how localized physical forces affect the internalization and processing of nanoparticles by cells remains rather limited. A significant gap exists in the literature concerning a systematic analysis of how mechanical cues might bias the interactions between nanoparticles and cells. Hence, our aim in this review is to provide a comprehensive and critical analysis of the existing knowledge regarding the influence of mechanical cues on the complicated dynamics of cell-nanoparticle interactions. By addressing this gap, we would like to contribute to a detailed understanding of the role that mechanical forces play in shaping the complex interplay between cells and nanoparticles.
Klíčová slova
Nanomedicine, Nanoparticles, Mechanotransduction, Mechanical cues, Extracellular matrix,
Trvalý odkaz
https://hdl.handle.net/20.500.14178/3536Licence
Licence pro užití plného textu výsledku: Creative Commons Uveďte původ 4.0 International