Magnetic Microrobots with Folate Targeting for Drug Delivery
Магнитные микророботы с фолатным таргетированием для доставки лекарственных препаратов
2023-01-01
SCID: 54.1/hkpsd3nz
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Drug deliveryFolate targetingGelMA hydrogelMagnetic MOFMagnetic microrobots
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Abstract (AI)
Untethered microrobots can be used for cargo delivery (e.g., drug molecules, stem cells, and genes) targeting designated areas. However, it is not enough to just reach the lesion site, as some drugs can only play the best therapeutic effect within the cells. To this end, folic acid (FA) was introduced into microrobots in this work as a key to mediate endocytosis of drugs into cells. The microrobots here were fabricated with biodegradable gelatin methacryloyl (GelMA) and modified with magnetic metal-organic framework (MOF). The porous structure of MOF and the hydrogel network of polymerized GelMA were used for the loading of enough FA and anticancer drug doxorubicin (DOX) respectively. Utilizing the magnetic property of magnetic MOF, these microrobots can gather around the lesion site with the navigation of magnetic fields. The combination effects of FA targeting and magnetic navigation substantially improve the anticancer efficiency of these microrobots. The result shows that the cancer cells inhibition rate of microrobots with FA can be up to 93%, while that of the ones without FA was only 78%. The introduction of FA is a useful method to improve the drug transportation ability of microrobots, providing a meaningful reference for further research.
Key Findings
1
Folate-functionalized microrobots achieved up to 93% cancer-cell inhibition, compared with 78% for microrobots without folate.
2
Folic acid was incorporated into microrobots to mediate cellular endocytosis and improve intracellular anticancer drug delivery.
3
MOF pores and the polymerized GelMA hydrogel network loaded folic acid and doxorubicin, respectively.
4
Magnetic fields concentrated the microrobots around lesion sites, while folate targeting enhanced cellular drug uptake.
5
The microrobots were fabricated from biodegradable GelMA and modified with magnetic MOF, enabling drug loading and magnetic navigation.
Research Object
folate-targeted magnetic microrobots fabricated from biodegradable GelMA and magnetic MOF for anticancer drug delivery
Research Subject
the effects of folate-mediated cellular endocytosis combined with magnetic navigation on doxorubicin delivery and cancer-cell inhibition
Publication Details
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2023-01-01
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