Issue 32, 2014

Self-programmed nanovesicle to nanofiber transformation of a dipeptide appended bolaamphiphile and its dose dependent cytotoxic behaviour

Abstract

Nanostructural transition of a small peptide bolaamphiphile via molecular self-assembly is a challenging task. Here, we report the self-programmed morphological transformation from nanovesicles to nanofibers of a smart peptide bolaamphiphile in its self-assembling hydrogel state. The nanostructural transition occurs based on the structural continuity of the β-sheet structures. Spectroscopic studies confirmed the different molecular arrangements of the two different nanostructures. Furthermore, the smart bolaamphiphile shows a dose-dependent cytotoxicity and cell-proliferation behaviour.

Graphical abstract: Self-programmed nanovesicle to nanofiber transformation of a dipeptide appended bolaamphiphile and its dose dependent cytotoxic behaviour

Supplementary files

Article information

Article type
Paper
Submitted
05 Mar 2014
Accepted
16 Jun 2014
First published
16 Jun 2014

J. Mater. Chem. B, 2014,2, 5272-5279

Author version available

Self-programmed nanovesicle to nanofiber transformation of a dipeptide appended bolaamphiphile and its dose dependent cytotoxic behaviour

I. Maity, H. S. Parmar, D. B. Rasale and A. K. Das, J. Mater. Chem. B, 2014, 2, 5272 DOI: 10.1039/C4TB00365A

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