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Supramolecular gel formation regulated by water content in organic solvents: self-assembly mechanism and biomedical applications.


ABSTRACT: As one of the most important and fruitful methods, supramolecular self-assembly has a significant advantage in designing and fabricating functional soft materials with various nanostructures. In this research, a low-molecular-weight gelator, N,N'-di(pyridin-4-yl)-pyridine-3,5-dicarboxamide (PDA-N4), was synthesized and used to construct self-assembled gels via a solvent-mediated strategy. It was found that PDA-N4 could form supramolecular gels in mixed solvents of water and DMSO (or DMF) at high water fraction (greater than or equal to 50%). By decreasing the water fraction from 50% to 30%, the gel, suspension and solution phases appeared successively, indicating that self-assembled aggregates could be efficiently modulated via water content in organic solvents. Moreover, the as-prepared PDA-N4 supramolecular gels not only displayed solid-like behavior, and pH- and thermo-reversible characteristics, but also showed a solution-gel-crystal transition with the extension of aging time. Further analyses suggested that both the crystal and gel had similar assembled structures. The intermolecular hydrogen bonding between amide groups and the π-π stacking interactions between pyridine groups played key roles in gel formation. Additionally, the release behavior of vitamin B12 (VB12) from PDA-N4 gel (H2O/DMSO, v/v = 90/10) was evaluated, and the drug controlled release process was consistent with a first-order release mechanism. The human umbilical venous endothelial cell culture results showed that the PDA-N4 xerogel has good cytocompatibility, which implied that the gels have potential biological application in tissue engineering and controlled drug release.

SUBMITTER: Liao L 

PROVIDER: S-EPMC8695936 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Supramolecular gel formation regulated by water content in organic solvents: self-assembly mechanism and biomedical applications.

Liao Lieqiang L   Jia Xinjian X   Lou Haoxiang H   Zhong Jinlian J   Liu Huijin H   Ding Shunming S   Chen Chao C   Hong Sanguo S   Luo Xuzhong X  

RSC advances 20210319 19


As one of the most important and fruitful methods, supramolecular self-assembly has a significant advantage in designing and fabricating functional soft materials with various nanostructures. In this research, a low-molecular-weight gelator, <i>N</i>,<i>N</i>'-di(pyridin-4-yl)-pyridine-3,5-dicarboxamide (PDA-N4), was synthesized and used to construct self-assembled gels <i>via</i> a solvent-mediated strategy. It was found that PDA-N4 could form supramolecular gels in mixed solvents of water and  ...[more]

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