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一种 TGFβR 抑制剂抑制了人唾液腺祖细胞 3D 培养物中角蛋白-7 的表达。

A TGFβR inhibitor represses keratin-7 expression in 3D cultures of human salivary gland progenitor cells.

机构信息

Department of Materials Science and Engineering, University of Delaware, Newark, DE, 19716, USA.

Department of Biological Sciences, University of Delaware, Newark, DE, 19716, USA.

出版信息

Sci Rep. 2022 Sep 2;12(1):15008. doi: 10.1038/s41598-022-19253-x.

Abstract

Salivary gland tissue engineering offers an attractive alternative for the treatment of radiation-induced xerostomia. Key to the success of this approach is the maintenance and expansion of secretory acinar cells in vitro. However, recent studies revealed that in vitro culture of primary salivary gland epithelial cells led to undesirable upregulation of the expression of keratin-7 (K7), a marker of ductal phenotype and frequently associated with cellular stress. We have previously shown that hyaluronic acid (HA)-based, RGDSP-decorated hydrogels support the 3D growth and assembly of primary human salivary gland stem/progenitor cells (hS/PCs). Here, we investigate whether the RGDSP culture also promotes K7 expression, and if so, what factors govern the K7 expression. Compared to hS/PCs maintained in blank HA gels, those grown in RGDSP cultures expressed a significantly higher level of K7. In other tissues, various transforming growth factor-β (TGF-β) superfamily members are reported to regulate K7 expression. Similarly, our immunoblot array and ELISA experiments confirmed the increased expression of TGF-β1 and growth/differentiation factor-15 (GDF-15) in RGDSP cultures. However, 2D model studies show that only TGF-β1 is required to induce K7 expression in hS/PCs. Immunocytochemical analysis of the intracellular effectors of TGF-β signaling, SMAD 2/3, further confirmed the elevated TGF-β signaling in RGDSP cultures. To maximize the regenerative potential of h/SPCs, cultures were treated with a pharmacological inhibitor of TGF-β receptor, A83-01. Our results show that A83-01 treatment can repress K7 expression not only in 3D RGDSP cultures but also under 2D conditions with exogenous TGF-β1. Collectively, we provide a link between TGF-β signaling and K7 expression in hS/PC cultures and demonstrate the effectiveness of TGF-β inhibition to repress K7 expression while maintaining the ability of RGDSP-conjugated HA gels to facilitate the rapid development of amylase expressing spheroids. These findings represent an important step towards regenerating salivary function with a tissue-engineered salivary gland.

摘要

唾液腺组织工程为治疗放射性口干症提供了一种有吸引力的替代方法。这种方法成功的关键是在体外维持和扩增分泌性腺细胞。然而,最近的研究表明,原代唾液腺上皮细胞的体外培养导致角蛋白-7(K7)的表达上调,角蛋白-7是导管表型的标志物,常与细胞应激有关。我们之前已经表明,基于透明质酸(HA)的、RGDSP 修饰的水凝胶支持原代人唾液腺干细胞/祖细胞(hS/PC)的 3D 生长和组装。在这里,我们研究了 RGDSP 培养是否也促进 K7 的表达,如果是,哪些因素控制 K7 的表达。与在空白 HA 凝胶中维持的 hS/PC 相比,在 RGDSP 培养物中生长的细胞表达了更高水平的 K7。在其他组织中,据报道各种转化生长因子-β(TGF-β)超家族成员调节 K7 的表达。同样,我们的免疫印迹和 ELISA 实验证实 RGDSP 培养物中 TGF-β1 和生长/分化因子-15(GDF-15)的表达增加。然而,2D 模型研究表明,只有 TGF-β1 是诱导 hS/PC 中 K7 表达所必需的。TGF-β 信号转导的细胞内效应物 SMAD 2/3 的免疫细胞化学分析进一步证实了 RGDSP 培养物中 TGF-β 信号的升高。为了最大限度地发挥 h/SPC 的再生潜力,培养物用 TGF-β 受体的药理学抑制剂 A83-01 处理。我们的结果表明,A83-01 处理不仅可以抑制 3D RGDSP 培养物中的 K7 表达,还可以抑制外源性 TGF-β1 下的 2D 条件下的 K7 表达。总的来说,我们在 hS/PC 培养物中建立了 TGF-β 信号与 K7 表达之间的联系,并证明了 TGF-β 抑制的有效性,它可以抑制 K7 表达,同时保持 RGDSP 缀合的 HA 凝胶促进快速形成表达淀粉酶的球体的能力。这些发现代表了朝着用组织工程化唾液腺再生唾液功能迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/835d/9440137/dd0fb259d2de/41598_2022_19253_Fig1_HTML.jpg

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