A light-driven molecular motor-polypeptide conjugate supports controlled cell uptake

Camilla Pegoraro, Ainoa Guinart, Esther Masiá Sanchis, Daniel Doellerer, Marc C A Stuart, Inmaculada Conejos-Sánchez*, Ben L Feringa*, María J Vicent*

*Corresponding author voor dit werk

OnderzoeksoutputAcademicpeer review

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Samenvatting

While light-driven molecular motors (MMs) hold immense potential to control cell function, low biocompatibility and solubility have hampered their implementation. We developed a novel polypeptide-conjugated MM by linking a propargyl-derivatized light-driven MM to a poly-L-glutamic acid-based carrier (P) with inherent mitochondria tropism through click chemistry, denoted P-MM. P-MM effectively maintained the parental stability and unidirectional rotational capabilities of MM upon irradiation at 405 nm. Light-induced supramolecular conformational changes significantly increased cell uptake compared to non-irradiated controls while retaining the subcellular targeting capacity of P. P-MM exhibited minimal cytotoxicity and reactive oxygen species production, suggesting a non-disruptive interaction with cell membranes. Overall, we establish a connection between irradiation and enhanced biological responses, demonstrating the potential of integrating MMs with targeted polymeric nanocarriers for controlled, light-responsive behavior in biological systems and innovative applications in advanced therapeutic/diagnostic strategies.

Originele taal-2English
Artikelnummerd4tb02434f
Pagina's (van-tot)2658-2665
Aantal pagina's8
TijdschriftJournal of materials chemistry b
Volume13
Nummer van het tijdschrift8
Vroegere onlinedatum11-feb.-2025
DOI's
StatusPublished - 28-feb.-2025

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