Wang Tao, Huang Qiting, Rao Zilong, Liu Fan, Su Xinyun, Zhai Xuefan, Ma Jingxin, Liang Yujie, Quan Daping, Liao Guiqing, Bai Ying, Zhang Sien
Hospital of Stomatology, Guanghua School of Stomatology, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Stomatology, Guangzhou, 510055, China.
Guangdong Engineering Technology Research Centre for Functional Biomaterials, PCFM Lab, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou, 510006, China.
Acta Biomater. 2023 Oct 1;169:256-272. doi: 10.1016/j.actbio.2023.08.003. Epub 2023 Aug 7.
Saliva is key to the maintenance of oral homeostasis. However, several forms of salivary gland (SG) disorders, followed by hyposalivation, often result in dental caries, oral infection, and decreased taste, which dramatically affect the quality of patient's life. Functional biomaterials hold great potential for tissue regeneration in damaged or dysfunctional SGs and maintaining the good health of oral cavity. Herein, we prepared an injectable hydrogel derived from decellularized porcine submandibular glands (pDSG-gel), the material and biological properties of the hydrogel were systematically investigated. First, good biocompatibility and bioactivities of the pDSG-gel were validated in 2D and 3D cultures of primary submandibular gland mesenchymal stem cells (SGMSCs). Especially, the pDSG-gel effectively facilitated SGMSCs migration and recruitment through the activation of PI3K/AKT signaling pathway, suggested by transcriptomic analysis and immunoblotting. Furthermore, proteomic analysis of the pDSG revealed that many extracellular matrix components and secreted factors were preserved, which may contribute to stem cell homing. The recruitment of endogenous SG cells was confirmed in vivo, upon in situ injection of the pDSG-gel into the defective SGs in rats. Acinar and ductal-like structures were evident in the injury sites after pDSG-gel treatment, suggesting the reconstruction of functional SG units. Meanwhile, histological characterizations showed that the administration of the pDSG-gel also significantly suppressed fibrogenesis within the injured SG tissues. Taken together, this tissue-specific hydrogel provides a pro-regenerative microenvironment for endogenous SG regeneration and holds great promise as a powerful and bioactive material for future treatments of SG diseases. STATEMENT OF SIGNIFICANCE: Decellularized extracellular matrix (dECM) has been acknowledged as one of the most promising biomaterials that recapitalizes the microenvironment in native tissues. Hydrogel derived from the dECM allows in situ administration for tissue repair. Herein, a tissue-specific dECM hydrogel derived from porcine salivary glands (pDSG-gel) was successfully prepared and developed for functional reconstruction of defective salivary gland (SG) tissues. The pDSG-gel effectively accelerated endogenous SG stem cells migration and their recruitment for acinar- and ductal-like regeneration, which was attributed to the activation of PI3K/AKT signaling pathway. Additionally, the introduction of the pDSG-gel resulted in highly suppressed fibrogenesis in the defective tissues. These outcomes indicated that the pDSG-gel holds great potential in clinical translation toward SG regeneration through cell-free treatments.
唾液对于维持口腔内环境稳定至关重要。然而,多种形式的唾液腺(SG)疾病,随后出现唾液分泌减少,常常导致龋齿、口腔感染和味觉减退,这极大地影响了患者的生活质量。功能性生物材料在受损或功能失调的唾液腺组织再生以及维持口腔健康方面具有巨大潜力。在此,我们制备了一种源自脱细胞猪下颌下腺的可注射水凝胶(pDSG -凝胶),并对该水凝胶的材料和生物学特性进行了系统研究。首先,在原代下颌下腺间充质干细胞(SGMSCs)的二维和三维培养中验证了pDSG -凝胶具有良好的生物相容性和生物活性。特别是,转录组分析和免疫印迹表明,pDSG -凝胶通过激活PI3K/AKT信号通路有效地促进了SGMSCs的迁移和募集。此外,对pDSG的蛋白质组分析表明,许多细胞外基质成分和分泌因子得以保留,这可能有助于干细胞归巢。在大鼠体内,将pDSG -凝胶原位注射到有缺陷的唾液腺中后,证实了内源性唾液腺细胞的募集。pDSG -凝胶处理后,损伤部位出现明显的腺泡和导管样结构,表明功能性唾液腺单位得到了重建。同时,组织学特征显示,给予pDSG -凝胶还显著抑制了受损唾液腺组织内的纤维化形成。综上所述,这种组织特异性水凝胶为内源性唾液腺再生提供了一个促进再生的微环境,作为一种强大的生物活性材料,在未来唾液腺疾病治疗中具有巨大潜力。重要性声明:脱细胞细胞外基质(dECM)已被公认为是最有前途的生物材料之一,它能够重现天然组织中的微环境。源自dECM的水凝胶允许原位给药用于组织修复。在此,成功制备并开发了一种源自猪唾液腺的组织特异性dECM水凝胶(pDSG -凝胶),用于有缺陷唾液腺(SG)组织的功能重建。pDSG -凝胶有效地加速了内源性唾液腺干细胞的迁移及其向腺泡和导管样再生的募集,这归因于PI3K/AKT信号通路的激活。此外,引入pDSG -凝胶导致缺陷组织中的纤维化形成受到高度抑制。这些结果表明,pDSG -凝胶在通过无细胞治疗实现唾液腺再生的临床转化方面具有巨大潜力。