Maruyama C L M, Leigh N J, Nelson J W, McCall A D, Mellas R E, Lei P, Andreadis S T, Baker O J
School of Dentistry, University of Utah, Salt Lake City, UT, USA.
Department of Oral Biology, School of Dental Medicine, University at Buffalo, The State University of New York, Buffalo, NY, USA.
J Dent Res. 2015 Nov;94(11):1610-7. doi: 10.1177/0022034515600157. Epub 2015 Aug 18.
Saliva plays a major role in maintaining oral health. Patients with salivary hypofunction exhibit difficulty in chewing and swallowing foods, tooth decay, periodontal disease, and microbial infections. At this time, treatments for hyposalivation are limited to medications (e.g., muscarinic receptor agonists: pilocarpine and cevimeline) that induce saliva secretion from residual acinar cells as well as artificial salivary substitutes. Therefore, advancement of restorative treatments is necessary to improve the quality of life in these patients. Our previous studies indicated that salivary cells are able to form polarized 3-dimensional structures when grown on growth factor-reduced Matrigel. This basement membrane is rich in laminin-III (L1), which plays a critical role in salivary gland formation. Mitotically inactive feeder layers have been used previously to support the growth of many different cell types, as they provide factors necessary for cell growth and organization. The goal of this study was to improve salivary gland cell differentiation in primary cultures by using a combination of L1 and a feeder layer of human hair follicle-derived mesenchymal stem cells (hHF-MSCs). Our results indicated that the direct contact of mouse submandibular (mSMG) cell clusters and hHF-MSCs was not required for mSMG cells to form acinar and ductal structures. However, the hHF-MSC conditioned medium enhanced cell organization and multilumen formation, indicating that soluble signals secreted by hHF-MSCs play a role in promoting these features.
唾液在维持口腔健康方面发挥着重要作用。唾液功能减退的患者在咀嚼和吞咽食物、龋齿、牙周病以及微生物感染方面存在困难。此时,唾液分泌过少的治疗方法仅限于诱导残余腺泡细胞分泌唾液的药物(如毒蕈碱受体激动剂:毛果芸香碱和西维美林)以及人工唾液替代品。因此,推进修复性治疗对于改善这些患者的生活质量是必要的。我们之前的研究表明,唾液细胞在生长于生长因子减少的基质胶上时能够形成极化的三维结构。这种基底膜富含层粘连蛋白 -III(L1),其在唾液腺形成中起关键作用。有丝分裂不活跃的饲养层此前已被用于支持许多不同细胞类型的生长,因为它们提供细胞生长和组织所需的因子。本研究的目的是通过联合使用L1和人毛囊来源的间充质干细胞(hHF - MSCs)饲养层来改善原代培养中唾液腺细胞的分化。我们的结果表明,小鼠下颌下腺(mSMG)细胞簇与hHF - MSCs的直接接触对于mSMG细胞形成腺泡和导管结构并非必需。然而,hHF - MSC条件培养基增强了细胞组织化和多腔形成,表明hHF - MSCs分泌的可溶性信号在促进这些特征方面发挥作用。