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Multicomponent Self-Assembly of a Giant Heterometallic Polyoxotungstate Supercluster with Antitumor Activity.


ABSTRACT: The hierarchical aggregation of molecular nanostructures from multiple components is a grand synthetic challenge, which requires highly selective linkage control. We demonstrate how two orthogonal linkage groups, that is, organotin and lanthanide cations, can be used to drive the aggregation of a giant molecular metal oxide superstructure. The title compound {[(Sn(CH3 )2 )2 O]4 {[CeW5 O18 ] [TeW4 O16 ][CeSn(CH3 )2 ]4 [TeW8 O31 ]4 }2 }46- (1 a) features dimensions of ca. 2.2×2.3×3.4 nm3 and a molecular weight of ca. 25 kDa. Structural analysis shows the hierarchical aggregation from several independent subunits. Initial biomedical tests show that 1 features an inhibitory effect on the proliferation of HeLa cells based on an apoptosis pathway. In vivo experiments in mice reveal the antiproliferative activity of 1 and open new paths for further development of this new compound class.

SUBMITTER: Liu JC 

PROVIDER: S-EPMC8252014 | biostudies-literature | 2021 May

REPOSITORIES: biostudies-literature

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Multicomponent Self-Assembly of a Giant Heterometallic Polyoxotungstate Supercluster with Antitumor Activity.

Liu Jian-Cai JC   Wang Jie-Fei JF   Han Qing Q   Shangguan Ping P   Liu Lu-Lu LL   Chen Li-Juan LJ   Zhao Jun-Wei JW   Streb Carsten C   Song Yu-Fei YF  

Angewandte Chemie (International ed. in English) 20210409 20


The hierarchical aggregation of molecular nanostructures from multiple components is a grand synthetic challenge, which requires highly selective linkage control. We demonstrate how two orthogonal linkage groups, that is, organotin and lanthanide cations, can be used to drive the aggregation of a giant molecular metal oxide superstructure. The title compound {[(Sn(CH<sub>3</sub> )<sub>2</sub> )<sub>2</sub> O]<sub>4</sub> {[CeW<sub>5</sub> O<sub>18</sub> ] [TeW<sub>4</sub> O<sub>16</sub> ][CeSn(C  ...[more]

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