Magnetically Driven Self-Degrading Zinc-Containing Cystine Microrobots for Treatment of Prostate Cancer
Autoři
USSIA, Martina, Mario URSO, Monika KRATOCHVÍLOVÁ (203 Česká republika, domácí), Jiří NAVRÁTIL (203 Česká republika, domácí), Jan BALVAN (203 Česká republika, domácí), Carmen C. C. MAYORGA-MARTINEZ, Jan VYSKOCIL (203 Česká republika), Michal MASAŘÍK (203 Česká republika, domácí) a Martin PUMERA (203 Česká republika, garant)
Vydání
SMALL, WEINHEIM, WILEY-V C H VERLAG GMBH, 2023, 1613-6810
Prostate cancer is the most commonly diagnosed tumor disease in men, and its treatment is still a big challenge in standard oncology therapy. Magnetically actuated microrobots represent the most promising technology in modern nanomedicine, offering the advantage of wireless guidance, effective cell penetration, and non-invasive actuation. Here, new biodegradable magnetically actuated zinc/cystine-based microrobots for in situ treatment of prostate cancer cells are reported. The microrobots are fabricated via metal-ion-mediated self-assembly of the amino acid cystine encapsulating superparamagnetic Fe3O4 nanoparticles (NPs) during the synthesis, which allows their precise manipulation by a rotating magnetic field. Inside the cells, the typical enzymatic reducing environment favors the disassembly of the aminoacidic chemical structure due to the cleavage of cystine disulfide bonds and disruption of non-covalent interactions with the metal ions, as demonstrated by in vitro experiments with reduced nicotinamide adenine dinucleotide (NADH). In this way, the cystine microrobots served for site-specific delivery of Zn2+ ions responsible for tumor cell killing via a "Trojan horse effect". This work presents a new concept of cell internalization exploiting robotic systems' self-degradation, proposing a step forward in non-invasive cancer therapy.
Návaznosti
EF19_073/0016943, projekt VaV
Název: Interní grantová agentura Masarykovy univerzity
MUNI/A/1343/2022, interní kód MU
Název: Zátěže kardiovaskulárního systému od A po Z
Investor: Masarykova univerzita, Zátěže kardiovaskulárního systému od A po Z
MUNI/A/1370/2022, interní kód MU
Název: Patofyziologie vybraných komplexních nemocí od molekulární do systémovou úroveň
Investor: Masarykova univerzita, Patofyziologie vybraných komplexních nemocí od molekulární do systémovou úroveň
MUNI/IGA/0954/2021, interní kód MU
Název: Mechanobiology in prostate cancer: Tumour aggressiveness associated with cell stiffness
Investor: Masarykova univerzita, Mechanobiology in prostate cancer: Tumour aggressiveness associated with cell stiffness
NU21-08-00407, projekt VaV
Název: Funkční nanoroboti pro navigovanou kombinovanou nádorovou terapii
Investor: Ministerstvo zdravotnictví ČR, Funkční nanoroboti pro navigovanou kombinovanou nádorovou terapii, Podprogram 1 - standardní