首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Supramolecular assembly of tetronic-adamantane and poly(beta-cyclodextrin) as injectable shear-thinning hydrogels
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Supramolecular assembly of tetronic-adamantane and poly(beta-cyclodextrin) as injectable shear-thinning hydrogels

机译:Tetronic-Adamantane和Poly(β-环糊精)的超分子组装为可注射剪切稀疏水凝胶

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Injectable biomaterials have been widely utilized for biomedical applications because their implantation into the human body is minimally invasive and the therapeutic agents can be delivered locally. Shear-thinning hydrogels are notable because of their unique properties, whereby the viscosity decreases (solution) under shear stress and recovers (gel) after the removal of the shear stress. However, as most shear-thinning hydrogels are formed by physical crosslinking, their mechanical properties are often poor. To overcome this issue, additional secondary cross-linkages, via UV-crosslinking, thiol-ene reactions, and oxidative crosslinking, are usually applied. In this study, we developed a new shear-thinning hydrogel with improved mechanical strength, through host-guest interactions and thermo-gelling at 37 1C. Tetronic-adamantane (Tet-Ada) and b-cyclodextrin polymers (poly[ b-CD]), which can dissolve in aqueous environments, were successfully synthesized. The chemical structures of the synthesized polymers were confirmed by proton nuclear magnetic resonance spectroscopy. The hydrogels rapidly started to form, via host-guest interactions between Ada and b-CD and self-assembly of the Tet micelles at 37 1C. The elastic modulus of the hydrogels was assessed by varying both the concentrations of the polymers and the temperature. Importantly, the Tet-Ada/poly(b-CD) hydrogels showed shear-thinning behaviors, rapid recovery properties, pH-responsive properties, and long-term release of the hydrophobic drug, doxorubicin (DOX). In addition, we demonstrated the biocompatibility of the hydrogels and the anticancer effect of DOX released from the hydrogels. In conclusion, we suggest the potential usage of the Tet-Ada/poly(b-CD) hydrogels as injectable materials for various biomedical applications, including drug delivery systems.
机译:可注射的生物材料已广泛用于生物医学应用,因为它们进入人体的植入是微创的,并且治疗剂可以在本地递送。由于其独特的性质,剪切稀释水凝胶是值得注意的,由此在去除剪切应力之后,粘度降低(溶液)在剪切应力下恢复(凝胶)。然而,由于大多数剪切稀释水凝胶通过物理交联形成,它们的机械性能通常差。为了克服这个问题,通常施加额外的次级交联,硫化物 - 烯丙基反应和氧化交联。在这项研究中,通过宿主 - 客体相互作用和37 1℃的热胶凝,开发了一种具有改善的机械强度的新的剪切稀疏水凝胶。可以溶解在水性环境中的Tetronic-Adamantane(TET-ADA)和B-环糊精聚合物(Poly [B-CD])被成功地合成。通过质子核磁共振光谱法确认合成聚合物的化学结构。水凝胶通过ADA和B-CD之间的宿主 - 客体相互作用以及37 1℃的TET胶束的自组装来迅速开始形成。通过改变聚合物和温度的浓度来评估水凝胶的弹性模量。重要的是,TET-ADA / POLY(B-CD)水凝胶显示出剪切稀疏行为,快速回收性质,pH响应性,以及疏水药物,多柔比星(DOX)的长期释放。此外,我们证明了水凝胶的生物相容性和DOX从水凝胶中释放的抗癌效果。总之,我们建议TET-ADA / poly(B-CD)水凝胶作为各种生物医学应用的可注射材料的潜在用途,包括药物递送系统。

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