Widener Adrienne E, Bhatta Mallika, Angelini Thomas E, Phelps Edward A
J. Crayton Pruitt Family Department of Biomedical Engineering, University of Florida, Gainesville, FL, USA.
Biomater Sci. 2021 Apr 7;9(7):2480-2493. doi: 10.1039/d0bm01499k. Epub 2021 Jan 12.
We report the development of a polyethylene glycol (PEG) hydrogel scaffold that provides the advantages of conventional bulk PEG hydrogels for engineering cellular microenvironments and allows for rapid cell migration. PEG microgels were used to assemble a densely packed granular system with an intrinsic interstitium-like negative space. In this material, guest-host molecular interactions provide reversible non-covalent linkages between discrete PEG microgel particles to form a cohesive bulk material. In guest-host chemistry, different guest molecules reversibly and non-covalently interact with their cyclic host molecules. Two species of PEG microgels were made, each with one functional group at the end of the four arm PEG-MAL functionalized using thiol click chemistry. The first was functionalized with the host molecule β-cyclodextrin, a cyclic oligosaccharide of repeating d-glucose units, and the other functionalized with the guest molecule adamantane. These two species provide a reversible guest-host interaction between microgel particles when mixed, generating an interlinked network with a percolated interstitium. We showed that this granular configuration, unlike conventional bulk PEG hydrogels, enabled the rapid migration of THP-1 monocyte cells. The guest-host microgels also exhibited shear-thinning behavior, providing a unique advantage over current bulk PEG hydrogels.
我们报告了一种聚乙二醇(PEG)水凝胶支架的研发情况,该支架兼具传统块状PEG水凝胶在构建细胞微环境方面的优势,并能实现细胞的快速迁移。PEG微凝胶用于组装一个紧密堆积的颗粒系统,该系统具有类似组织间隙的固有负空间。在这种材料中,客体-主体分子相互作用在离散的PEG微凝胶颗粒之间提供可逆的非共价键连接,从而形成一种具有粘性的块状材料。在客体-主体化学中,不同的客体分子与其环状主体分子发生可逆的非共价相互作用。制备了两种PEG微凝胶,通过硫醇点击化学在四臂PEG-MAL的末端各引入一个官能团。第一种用主体分子β-环糊精(一种由重复的d-葡萄糖单元组成的环状寡糖)进行功能化,另一种用客体分子金刚烷进行功能化。这两种微凝胶混合时,微凝胶颗粒之间会产生可逆的客体-主体相互作用,形成一个具有渗透间隙的交联网络。我们发现,与传统块状PEG水凝胶不同,这种颗粒结构能够使THP-1单核细胞快速迁移。客体-主体微凝胶还表现出剪切变稀行为,这是相对于目前的块状PEG水凝胶的一个独特优势。