Department of Stomatology, Beijing Friendship Hospital, Capital Medical University, China.
Central Laboratory, Peking University School and Hospital of Stomatology, China.
Int J Biol Macromol. 2024 Oct;277(Pt 3):134427. doi: 10.1016/j.ijbiomac.2024.134427. Epub 2024 Aug 2.
Salivary glands are the principal organs responsible for secreting saliva in the oral cavity. Tumors, trauma, inflammation, and other factors can cause functional or structural damage to the glands, leading to reduced saliva secretion. In this study, we innovatively prepared a acinar-mimetic silk fibroin-collagen-astragalus polysaccharide (SCA) scaffold using low-temperature three-dimensional (3D) printing and freeze-drying techniques. We evaluated the material properties and cell compatibility of the scaffold in vitro and implanted it into the damaged parotid glands (PG) of rats to assess its efficacy in tissue reconstruction and functional repair. The results demonstrated that the SCA scaffold featured a porous structure resembling natural acini, providing an environment conducive to cell growth and orderly aggregation. It exhibited excellent porosity, water absorption, mechanical properties, and biocompatibility, fulfilling the requirements for tissue engineering scaffolds. In vitro, the scaffold facilitated adhesion, proliferation, orderly polarization, and spherical aggregation of PG cells. In vivo, the SCA scaffold effectively recruited GECs locally, forming gland-like acinar structures that matured gradually, promoting the regeneration of damaged PGs. The SCA scaffold developed in this study supports tissue reconstruction and functional repair of damaged PGs, making it a promising implant material for salivary gland regeneration.
唾液腺是口腔中分泌唾液的主要器官。肿瘤、创伤、炎症等因素可导致腺体的功能或结构受损,导致唾液分泌减少。本研究创新性地采用低温三维(3D)打印和冷冻干燥技术制备了一种仿生丝素蛋白-胶原蛋白-黄芪多糖(SCA)支架。我们在体外评估了支架的材料特性和细胞相容性,并将其植入大鼠损伤的腮腺(PG)中,评估其在组织重建和功能修复方面的疗效。结果表明,SCA 支架具有类似于天然腺泡的多孔结构,为细胞生长和有序聚集提供了有利环境。它具有优异的孔隙率、吸水性、机械性能和生物相容性,满足组织工程支架的要求。体外实验中,支架促进了 PG 细胞的黏附、增殖、有序极化和球体聚集。体内实验中,SCA 支架能有效地募集局部的 GECs,形成逐渐成熟的腺泡样结构,促进受损 PG 的再生。本研究开发的 SCA 支架支持受损 PG 的组织重建和功能修复,是一种有前途的唾液腺再生植入材料。