Last piece of the puzzle: lead-assisted assembly of an arsenopalladate nanostar as an antitumor metallodrug

It is tough, but worth it, to break the simple and inflexible structure of high symmetry and low energy, such as the cuboid topology of polyoxopalladates (POPs). In this work, the heterometal-templated scaffold of arsenopalladates has afforded three nanocubes of [M IV Pd 12 O 8 (AsO 4 ) 8 ] 12− (M =...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Inorganic chemistry frontiers 2024-02, Vol.11 (5), p.1413-1422
Hauptverfasser: Zhao, Yue, Li, Cheng-Lan, Chen, Chao-Qin, Du, Jing, Kortz, Ulrich, Gong, Teng, Yang, Peng
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:It is tough, but worth it, to break the simple and inflexible structure of high symmetry and low energy, such as the cuboid topology of polyoxopalladates (POPs). In this work, the heterometal-templated scaffold of arsenopalladates has afforded three nanocubes of [M IV Pd 12 O 8 (AsO 4 ) 8 ] 12− (M = Sn IV , Ce IV , and Pb IV ) and the long-sought nanostar of [Pb IV Pd 15 O 10 (AsO 4 ) 10 ] 16− . The appropriate charge and radius of Pb IV satisfied the uncommon host-guest assembly of both cubic and star archetypes simultaneously. More than that is the successful preparation of the methylphosphonate-capped [Pd 15 O 10 (MePO 3 ) 10 ] 10− POP for the first time. According to the adjustable heterometals and heterogroups, the as-made POPs represent ideal subjects to reveal structure-dependent antitumor activity. It turns out that ROS-induced apoptosis mediated by arsenate functions is mainly responsible for the significant inhibition against cancers of different types, which heralds the design philosophy of POP-based antitumor metallodrugs of the next generation. Access to the long-sought nanostar of arsenopalladate is workable via host-guest assembly. The arsenate functions of such POP metallodrugs drive the ROS-induced apoptosis with great antitumor potential.
ISSN:2052-1553
2052-1545
2052-1553
DOI:10.1039/d4qi00026a