Fowler Eric W, Witt Robert L, Jia Xinqiao
Department of Materials Science and Engineering, University of Delaware, Newark, Delaware, 19716, USA.
Helen F. Graham Cancer Center and Research Institute, Christiana Care, Newark, Delaware, 19713, USA.
Adv Nanobiomed Res. 2023 Nov;3(11). doi: 10.1002/anbr.202300088. Epub 2023 Oct 8.
Successful engineering of functional salivary glands necessitates the creation of cell-instructive environments for expansion and lineage specification of primary human salivary gland stem cells (hS/PCs). Herein, basement membrane mimetic hydrogels were prepared using hyaluronic acid, cell adhesive peptides, and hyperbranched polyglycerol (HPG), with or without sulfate groups, to produce "hyperGel+" or "hyperGel", respectively. Differential scanning fluorescence experiments confirmed the ability of the sulphated HPG precursor to stabilize fibroblast growth factor 10. The hydrogels were nanoporous, cytocompatibile and cell-permissive, enabling the development of multicellular hS/PC spheroids in 14 days. Incorporation of sulfated HPG species in the hydrogel enhanced cell proliferation. Culture of hS/PCs in hyperGel+ in the presence of a Rho kinase inhibitor, Y-27632 (Y-27), led to the development of spheroids with a central lumen, increased the expression of acinar marker aquaporin-3 at the transcript level (), and decreased the expression of ductal marker keratin 7 at both the transcript () and the protein levels (K7). Reduced expression of transforming growth factor beta (TGF-β) targets SMAD2/3 was also observed in Y27-treated cultures, suggesting attenuation of TGF-β signaling. Thus, hyperGel+ cooperates with the ROCK inhibitor to promote the development of lumened spheroids with enhanced expression of acinar markers.
成功构建功能性唾液腺需要为原代人唾液腺干细胞(hS/PCs)的扩增和谱系定向创造具有细胞指导作用的环境。在此,使用透明质酸、细胞黏附肽和带有或不带有硫酸基团的超支化聚甘油(HPG)制备基底膜模拟水凝胶,分别产生“hyperGel+”或“hyperGel”。差示扫描荧光实验证实了硫酸化HPG前体稳定成纤维细胞生长因子10的能力。这些水凝胶具有纳米多孔性、细胞相容性且允许细胞通过,能够在14天内形成多细胞hS/PC球体。水凝胶中硫酸化HPG成分的加入增强了细胞增殖。在Rho激酶抑制剂Y-27632(Y-27)存在的情况下,将hS/PCs培养于hyperGel+中,导致形成具有中央管腔的球体,在转录水平上增加了腺泡标志物水通道蛋白-3的表达(),并在转录()和蛋白水平(K7)上降低了导管标志物角蛋白7的表达。在Y27处理的培养物中还观察到转化生长因子β(TGF-β)靶点SMAD2/3的表达降低,提示TGF-β信号传导减弱。因此,hyperGel+与ROCK抑制剂协同作用,促进具有增强腺泡标志物表达的有管腔球体的形成。