| Literature DB >> 28885759 |
Frauke Schibilla1, Jens Voskuhl1,2, Natalie A Fokina3, Jeremy E P Dahl4, Peter R Schreiner3, Bart Jan Ravoo1.
Abstract
We report the inclusion of carboxy- and amine-substituted molecular nanodiamonds (NDs) adamantane, diamantane, and triamantane by β-cyclodextrin and γ-cyclodextrin (β-CD and γ-CD), which have particularly well-suited hydrophobicity and symmetry for an optimal fit of the host and guest molecules. We studied the host-guest interactions in detail and generally observed 1:1 association of the NDs with the larger γ-CD cavity, but observed 1:2 association for the largest ND in the series (triamantane) with β-CD. We found higher binding affinities for carboxy-substituted NDs than for amine-substituted NDs. Additionally, cyclodextrin vesicles (CDVs) were decorated with d-mannose by using adamantane, diamantane, and triamantane as non-covalent anchors, and the resulting vesicles were compared with the lectin concanavalin A in agglutination experiments. Agglutination was directly correlated to the host-guest association: adamantane showed lower agglutination than di- or triamantane with β-CDV and almost no agglutination with γ-CDV, whereas high agglutination was observed for di- and triamantane with γ-CDV.Entities:
Keywords: agglutination; cyclodextrins; host-guest systems; molecular recognition; self-assembly
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Year: 2017 PMID: 28885759 DOI: 10.1002/chem.201703392
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236