Low molecular weight hydrogels derived from urea based-bolaamphiphiles as new injectable biomaterials.

Ramin, Michael A; Latxague, Laurent; Sindhu, Kotagudda Ranganath; Chassande, Olivier; Barthélémy, Philippe · Biomaterials · 2017

basic_science · Level V

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Abstract

There is a critical need for soft materials in the field of regenerative medicine and tissue engineering. However, designing injectable hydrogel scaffolds encompassing both adequate mechanical and biological properties remains a key challenge for in vivo applications. Here we use a bottom-up approach for synthesizing supramolecular gels to generate novel biomaterial candidates. We evaluated the low molecular weight gels candidates in vivo and identified one urea-containing molecule, compound 16, that avoid foreign body reactions in mice. The self-assembly of bolaamphiphiles creates a unique hydrogel supramolecular structures featuring fast gelation kinetics, high elastic moduli, thixotropic, and thermal reversibility properties. This soft material, which inhibits recognition by macrophages and fibrous deposition, exhibits long-term stability after in vivo injection.

Medical subject headings