Borelli Alexandra N, Schultze Courtney L, Young Mark W, Kirkpatrick Bruce E, Anseth Kristi S
Department of Chemical and Biological Engineering University of Colorado Boulder Boulder, CO 80303, USA.
The BioFrontiers Institute University of Colorado Boulder Boulder, CO, 80303, USA.
Bioact Mater. 2024 Oct 17;44:152-163. doi: 10.1016/j.bioactmat.2024.10.007. eCollection 2025 Feb.
Cell interactions with the extracellular matrix (ECM) influence intracellular signaling pathways related to proliferation, differentiation, and secretion, amongst other functions. Herein, bone-marrow derived mesenchymal stromal cells (MSCs) are encapsulated in a hydrazone crosslinked hyaluronic acid (HA) hydrogel, and the extent of stress relaxation is controlled by systemic introduction of irreversible triazole crosslinks. MSCs form elongated multicellular structures within hydrogels containing RGD peptide and formulated with elastic composition slightly higher than the hydrogel percolation threshold (12 % triazole, 88 % hydrazone). A scaling analysis is presented ( ∼N) to quantify cell-material interactions within these structures with the scaling exponent (α) describing either elongated (0.66) or globular (0.33) structures. Cellular interactions with the material were controlled through peptides to present integrin binding ECM cues (RGD) or cadherin binding cell-cell cues (HAVDI) and MSCs were observed to form highly elongated structures in RGD containing hydrogels ( ), whereases collapsed structures were observed within HAVDI containing hydrogels ( ). Finally, cytokine secretion was investigated, and a global increase in secreted cytokines was observed for collapsed structures compared to elongated. Taken together, this study presents a novel method to characterize cellular interactions within a stress relaxing hydrogel where altered cluster morphology imparts changes to cluster secretory profiles.
细胞与细胞外基质(ECM)的相互作用会影响与增殖、分化和分泌等功能相关的细胞内信号通路。在此,将骨髓来源的间充质基质细胞(MSCs)封装在腙交联的透明质酸(HA)水凝胶中,并通过全身引入不可逆的三唑交联来控制应力松弛程度。MSCs在含有RGD肽且弹性组成略高于水凝胶渗透阈值(12%三唑,88%腙)的水凝胶中形成细长的多细胞结构。提出了一种标度分析(∼N)来量化这些结构内的细胞 - 材料相互作用,标度指数(α)描述细长结构(0.66)或球状结构(0.33)。通过肽来控制细胞与材料的相互作用,以呈现整合素结合的ECM线索(RGD)或钙黏蛋白结合的细胞 - 细胞线索(HAVDI),并且观察到MSCs在含有RGD的水凝胶中形成高度细长的结构( ),而在含有HAVDI的水凝胶中观察到塌陷结构( )。最后,研究了细胞因子分泌,与细长结构相比,观察到塌陷结构的分泌细胞因子总体增加。综上所述,本研究提出了一种新方法来表征应力松弛水凝胶内的细胞相互作用,其中改变的簇形态会使簇分泌谱发生变化。