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建立一个鼠前腺泡细胞系,以研究 FGF2 和 α3β1 整合素在调节前腺泡特征中的作用。

Establishment of a Murine Pro-acinar Cell Line to Characterize Roles for FGF2 and α3β1 Integrins in Regulating Pro-acinar Characteristics.

机构信息

Department of Regenerative & Cancer Cell Biology, Albany Medical College, 47 New Scotland Avenue, Albany, NY, 12208, USA.

Department of Biological Sciences, University at Albany, State University of New York, 1400 Washington Avenue, Albany, NY, 12222, USA.

出版信息

Sci Rep. 2019 Jul 29;9(1):10984. doi: 10.1038/s41598-019-47387-y.

Abstract

Radiation therapy for head and neck cancers results in permanent damage to the saliva producing acinar compartment of the salivary gland. To date, a pure pro-acinar cell line to study underlying mechanisms of acinar cell differentiation in culture has not been described. Here, we report the establishment of a pro-acinar (mSG-PAC1) and ductal (mSG-DUC1) cell line, from the murine submandibular salivary gland (SMG), which recapitulate developmental milestones in differentiation. mSG-DUC1 cells express the ductal markers, keratin-7 and keratin-19, and form lumenized spheroids. mSG-PAC1 cells express the pro-acinar markers SOX10 and aquaporin-5. Using the mSG-PAC1 cell line, we demonstrate that FGF2 regulates specific steps during acinar cell maturation. FGF2 up-regulates aquaporin-5 and the expression of the α3 and α6 subunits of the α3β1 and α6β1 integrins that are known to promote SMG morphogenesis and differentiation. mSG-DUC1 and mSG-PAC1 cells were derived from genetically modified mice, homozygous for floxed alleles of the integrin α3 subunit. Similar to SMGs from α3-null mice, deletion of α3 alleles in mSG-PAC1 cells results in the up-regulation of E-cadherin and the down-regulation of CDC42. Our data indicate that mSG-DUC1 and mSG-PAC1 cells will serve as important tools to gain mechanistic insight into salivary gland morphogenesis and differentiation.

摘要

头颈部癌症的放射治疗会对唾液腺产生永久性损伤。迄今为止,还没有描述过一种专门用于研究培养中腺泡细胞分化潜在机制的纯腺泡细胞系。在这里,我们报告了从小鼠颌下腺 (SMG) 中建立的原腺泡 (mSG-PAC1) 和导管 (mSG-DUC1) 细胞系,这些细胞系再现了分化过程中的发育里程碑。mSG-DUC1 细胞表达导管标记物角蛋白-7 和角蛋白-19,并形成有腔的球体。mSG-PAC1 细胞表达原腺泡标记物 SOX10 和水通道蛋白-5。使用 mSG-PAC1 细胞系,我们证明了 FGF2 调节腺泡细胞成熟过程中的特定步骤。FGF2 上调水通道蛋白-5 和 α3β1 和 α6β1 整联蛋白的 α3 和 α6 亚基的表达,这些亚基已知可促进 SMG 形态发生和分化。mSG-DUC1 和 mSG-PAC1 细胞源自基因修饰的小鼠,这些小鼠的整合素 α3 亚基等位基因是纯合的。与 α3 基因缺失小鼠的 SMG 相似,mSG-PAC1 细胞中 α3 等位基因的缺失导致 E-钙粘蛋白的上调和 CDC42 的下调。我们的数据表明,mSG-DUC1 和 mSG-PAC1 细胞将成为研究唾液腺形态发生和分化的重要工具,以深入了解其机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f1f/6662831/9b8b28582c8f/41598_2019_47387_Fig1_HTML.jpg

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