AI Article Synopsis

  • Mesoporous silica Al-MCM-41 nanoparticles have been developed as carriers for encasing both a CO-releasing molecule (ALF472) and the chemotherapy drug cisplatin, resulting in two new hybrid materials.
  • The new hybrid materials significantly enhance cisplatin loading, with ALF472@Al-MCM-41 and ALF472-cisplatin@Al-MCM-41 showing impressive dispersion in solution and controlled CO release over time.
  • Metal retention studies indicate that these nanoparticles effectively hold onto toxic substances like manganese and release minimal amounts of cisplatin, showing their potential safety and efficacy in drug delivery applications.

Article Abstract

Mesoporous silica Al-MCM-41 nanoparticles have been used, for the first time, as vehicles for the single and dual encapsulation of the cationic CO-releasing molecule (CORM) [Mn(1,4,7-triazacyclononane)(CO)] (ALF472) and the well-known antineoplastic drug, cis-[PtCl(NH)] (cisplatin). Thus, two new hybrid materials, namely, ALF472@Al-MCM-41 and ALF472-cisplatin@Al-MCM-41, have been isolated and fully characterized. The results reveal that the presence of CORM molecules enhances cisplatin loading 3-fold, yielding a cargo of 0.45 mmol g of ALF472 and 0.12 mmol g of the platinum complex for ALF472-cisplatin@Al-MCM-41. It is worth noting that ALF472@Al-MCM-41 shows a good dispersion in phosphate buffered saline solution, while the dual hybrid material slightly aggregates in this simulated physiological medium (hydrodynamic size: 112 ± 23 and 336 ± 50 nm, respectively). In addition, both hybrid materials (ALF472@Al-MCM-41 and ALF472-cisplatin@Al-MCM-41) behave as photoactive CO-releasing materials, delivering 0.25 and 0.11 equiv of CO, respectively, after 24 h and exhibiting a more controlled CO delivery than that of the free CORM. Finally, metal leaching studies have confirmed the good retention capacity of Al-MCM-41 toward the potentially toxic manganese fragments (86% of retention after 72 h) as well as the low release of cisplatin (ca. 7% after 72 h).

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Source
http://dx.doi.org/10.1021/acs.inorgchem.7b01475DOI Listing

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