Literature DB >> 17090036

DNA condensation and cell transfection properties of guanidinium calixarenes: dependence on macrocycle lipophilicity, size, and conformation.

Francesco Sansone1, Miroslav Dudic, Gaetano Donofrio, Claudio Rivetti, Laura Baldini, Alessandro Casnati, Sara Cellai, Rocco Ungaro.   

Abstract

Calix[n]arenes functionalized with guanidinium groups at the upper rim and alkyl chains at the lower rim bind to DNA, condense it, and in some cases, promote cell transfection depending on their structure and lipophilicity. Atomic force microscopy (AFM) studies indicate that upon DNA binding the hydrophobic association of the lipophilic chains of cone guanidinium calix[4]arenes drives the formation of intramolecular DNA condensates, characterized by DNA loops emerging from a dense core. Furthermore, hexyl and octyl chains confer to these calixarenes cell transfection capabilities. Conversely, larger and conformationally mobile calix[6]- and calix[8]arene methoxy derivatives form intermolecular aggregates characterized by "gorgonlike" structures composed of multiple plectomenes. These adducts, in which interstrand connections are dominated by electrostatic interactions, fail to promote cell transfection. Finally, calix[4]arenes in a 1,3-alternate conformation show an intermediate behavior because they condense DNA, but the process is driven by charge-charge interactions.

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Year:  2006        PMID: 17090036     DOI: 10.1021/ja0634425

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  22 in total

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9.  Aggregation of p-Sulfonatocalixarene-Based Amphiphiles and Supra-Amphiphiles.

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10.  Arginine clustering on calix[4]arene macrocycles for improved cell penetration and DNA delivery.

Authors:  Valentina Bagnacani; Valentina Franceschi; Michele Bassi; Michela Lomazzi; Gaetano Donofrio; Francesco Sansone; Alessandro Casnati; Rocco Ungaro
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

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