自愈水凝胶
三维细胞培养
细胞包封
化学
细胞外基质
生物正交化学
细胞培养
组织工程
纳米技术
生物物理学
细胞
生物化学
点击化学
材料科学
组合化学
生物医学工程
生物
高分子化学
医学
遗传学
作者
Gema Durá,Maria Crespo-Cuadrado,Helen Waller,Daniel T. Peters,Ana Marina Ferreira,Jeremy H. Lakey,Jeremy H. Lakey
标识
DOI:10.1002/mabi.202200134
摘要
There is a growing realization that 3D cell culture better mimics complex in vivo environments than 2D, lessening aberrant cellular behaviors and ultimately improving the outcomes of experiments. Chemically crosslinked hydrogels which imitate natural extracellular matrix (ECM) are proven cell culture platforms, but the encapsulation of cells within these hydrogel networks requires bioorthogonal crosslinking chemistries which can be cytotoxic, synthetically demanding, and costly. Capsular antigen fragment 1 (Caf1) is a bacterial, polymeric, fimbrial protein which can be genetically engineered to imitate ECM. Furthermore, it can, reversibly, thermally interconvert between its polymeric and monomeric forms even when chemically crosslinked within a hydrogel network. It is demonstrated that this meltable feature of Caf1 hydrogels can be utilized to encapsulate neonatal human dermal fibroblasts at a range of cell densities (2 × 105 -2 × 106 cells mL-1 of hydrogel) avoiding issues with chemical cytotoxicity. These hydrogels supported cell 3D culture for up to 21 d, successfully inducing cellular functions such as proliferation and migration. This work is significant because it further highlights the potential of simple, robust, Caf1-based hydrogels as a cell culture platform.
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