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Fast and Autonomous Mannosylated Nanomotors for Dynamic Cancer Cell Targeting

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Samenvatting

An attractive strategy in cancer cell therapy is to employ motile nanoparticles that can actively search for their target. Herein, we introduce mannosylated compartmentalized cross-linked enzyme-driven nanomotors (c-CLEnM), which exhibit specific and efficient targeting of Hep G2 cells through elevated autonomous motion. In this design, we constructed biodegradable bowl-shaped stomatocytes encapsulating the enzymes glucose oxidase (GOx) and catalase (CAT) within their nanocavity. A subsequent enzyme crosslinking reaction was performed to guarantee their stability. Furthermore, the c-CLEnM were surface modified with a mannose-functional glycopolymer, enabling binding with receptors expressed on Hep G2 cells. Interestingly, the targeting ligands on the nanomotors not only improved their specificity toward cancer cells but also enhanced motility. Compared to the non-mannosylated nanomotors, mannosylated c-CLEnM exhibited enhanced motion and higher targeting efficiency to cells in glucose-containing ionic environments. The unexpected acceleration in speed resulted from the surface modification of these nanomotors with a glycopolymer layer, which increased the zeta potential and created a shielding effect that mitigated the influence of the surrounding ions. This nanomotor design highlights the synergistic effect of functional glycopolymer modification on cellular uptake, adding an additional level of control to nanomotors for application in cancer therapy.

Originele taal-2Engels
Artikelnummeranie.202505717
Aantal pagina's9
TijdschriftAngewandte Chemie - International Edition
Volume64
Nummer van het tijdschrift23
Vroegere onlinedatum1 apr 2025
DOI's
StatusGepubliceerd - 2 jun 2025

Financiering

Y.L. and R.T. received funding from the European Union's Horizon 2020 research and innovation program under the Marie Sk\u0142odowska\u2010Curie grant agreement no 859416 (BIOMOLMACS). J.H. furthermore acknowledges funding by The Dutch Ministry of Education, Culture and Science, Gravitation Program, grant number 024.005.020, and the Spinoza premium SPI 72\u2013259. Y.L. and R.T. received funding from the European Union's Horizon 2020 research and innovation program under the Marie Sk\u0142odowska-Curie grant agreement no 859416 (BIOMOLMACS). J.H. furthermore acknowledges funding by The Dutch Ministry of Education, Culture and Science, Gravitation Program, grant number 024.005.020, and the Spinoza premium SPI 72\u2013259.

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