Yu Xu, Hu Yuwei, Kahn Jason S, Cecconello Alessandro, Willner Itamar
Institute of Chemistry and the Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.
Chemistry. 2016 Oct 4;22(41):14504-7. doi: 10.1002/chem.201603653. Epub 2016 Aug 19.
DNA-based shape-memory hydrogels revealing switchable shape recovery in the presence of two orthogonal triggers are described. In one system, a shaped DNA/acrylamide hydrogel is stabilized by duplex nucleic acids and pH-responsive cytosine-rich, i-motif, bridges. Separation of the i-motif bridges at pH 7.4 transforms the hydrogel into a quasi-liquid, shapeless state, that includes the duplex bridges as permanent shape-memory elements. Subjecting the quasi-liquid state to pH 5.0 or Ag(+) ions recovers the hydrogel shape, due to the stabilization of the hydrogel by i-motif or C-Ag(+) -C bridged i-motif. The cysteamine-induced transformation of the duplex/C-Ag(+) -C bridged i-motif hydrogel into a quasi-liquid shapeless state results in the recovery of the shaped hydrogel in the presence of H(+) or Ag(+) ions as triggers. In a second system, a shaped DNA/acrylamide hydrogel is generated by DNA duplexes and bridging Pb(2+) or Sr(2+) ions-stabilized G-quadruplex subunits. Subjecting the shaped hydrogel to the DOTA or KP ligands eliminates the Pb(2+) or Sr(2+) ions from the respective hydrogels, leading to shapeless, memory-containing, quasi-liquid states that restore the original shapes with Pb(2+) or Sr(2+) ions.
本文描述了基于DNA的形状记忆水凝胶,其在存在两种正交触发因素的情况下展现出可切换的形状恢复特性。在一个系统中,一种成型的DNA/丙烯酰胺水凝胶由双链核酸和富含胞嘧啶的pH响应性i-基序桥稳定。在pH 7.4时i-基序桥的分离将水凝胶转变为准液态的无形状状态,其中双链桥作为永久形状记忆元件。将准液态状态置于pH 5.0或Ag(+)离子中会使水凝胶形状恢复,这是由于i-基序或C-Ag(+) -C桥接的i-基序使水凝胶稳定。半胱胺诱导双链/C-Ag(+) -C桥接的i-基序水凝胶转变为准液态无形状状态,导致在H(+)或Ag(+)离子作为触发因素存在时成型水凝胶恢复。在第二个系统中,一种成型的DNA/丙烯酰胺水凝胶由DNA双链和桥接的Pb(2+)或Sr(2+)离子稳定的G-四链体亚基产生。将成型水凝胶置于DOTA或KP配体中会从各自的水凝胶中去除Pb(2+)或Sr(2+)离子,导致形成无形状、含记忆的准液态状态,在Pb(2+)或Sr(2+)离子存在时恢复原始形状。