Yaniv Adi, Neumann Yoav, David Ran, Stiubea-Cohen Raluca, Orbach Yoav, Lang Stephan, Rotter Nicole, Dvir-Ginzberg Mona, Aframian Doron J, Palmon Aaron
1 Faculty of Dental Medicine, Institute of Dental Sciences, The Hebrew University of Jerusalem , Jerusalem, Israel .
Tissue Eng Part C Methods. 2011 Jan;17(1):69-78. doi: 10.1089/ten.TEC.2010.0228. Epub 2010 Sep 21.
Adult salivary gland stem cells are promising candidates for cell therapy and tissue regeneration in cases of irreversible damage to salivary glands in head and neck cancer patients undergoing irradiation therapy. At present, the major restriction in handling such cells is their relatively limited life span during in vitro cultivation, resulting in an inadequate experimental platform to explore the salivary gland-originated stem cells as candidates for future clinical application in therapy. We established a spontaneous immortal integrin α6β1-expressing cell line of adult salivary progenitor cells from rats (rat salivary clone [RSC]) and investigated their ability to sustain cellular properties. This line was able to propagate for more than 400 doublings without loss of differentiation potential. RSC could differentiate in vitro to both acinar- and ductal-like structures and could be further manipulated upon culturing on a 3D scaffolds with different media supplements. Moreover, RSC expressed salivary-specific mRNAs and proteins as well as epithelial stem cell markers, and upon differentiation process their expression was changed. These results suggest RSC as a good model for further studies exploring cellular senescence, differentiation, and in vitro tissue engineering features as a crucial step toward reengineering irradiation-impaired salivary glands.
对于接受放射治疗的头颈癌患者,若其唾液腺发生不可逆损伤,成人唾液腺干细胞有望成为细胞治疗和组织再生的候选细胞。目前,处理这类细胞的主要限制在于它们在体外培养过程中的寿命相对有限,导致缺乏一个足够的实验平台来探索唾液腺来源的干细胞作为未来临床治疗应用候选细胞的潜力。我们从大鼠中建立了一种自发永生化的、表达整合素α6β1的成人唾液祖细胞系(大鼠唾液克隆细胞系[RSC]),并研究了它们维持细胞特性的能力。该细胞系能够传代超过400次而不丧失分化潜能。RSC在体外可分化为腺泡样和导管样结构,并且在使用不同培养基补充剂在三维支架上培养时可进一步调控。此外,RSC表达唾液特异性的mRNA和蛋白质以及上皮干细胞标志物,在分化过程中其表达会发生变化。这些结果表明,RSC是进一步研究细胞衰老、分化以及体外组织工程特性的良好模型,是重建受辐射损伤唾液腺的关键一步。