Characterization and Immunomodulation of Canine Amniotic Membrane Stem Cells.

IF 1.7 Q4 CELL BIOLOGY Stem Cells and Cloning-Advances and Applications Pub Date : 2020-05-07 eCollection Date: 2020-01-01 DOI:10.2147/SCCAA.S237686
Alessandra de Oliveira Pinheiro, Valéria M Lara, Aline F Souza, Juliana B Casals, Fabiana F Bressan, Paulo Fantinato Neto, Vanessa C Oliveira, Daniele S Martins, Carlos E Ambrosio
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Abstract

Purpose: Amniotic membrane stem cells have a high capacity of proliferation, cell expansion, and plasticity, as well as immunomodulatory properties that contribute to maternal-fetal tolerance. Owing to the lack of research on human amniotic membrane at different gestational stages, the canine model is considered ideal because of its genetic and physiological similarities. We aimed to characterize the canine amniotic membrane (CAM) cell lineage in different gestational stages and evaluate the expression of immunomodulatory genes.

Materials and methods: Twenty CAMs from early (20-30 days) (n=7), mid- (31-45 days) (n=7), and late gestation (46-63 days) (n=6) stages were studied. The cell features were assessed by cell viability tests, growth curve, colony-forming units, in vitro differentiation, cell labeling for different immunophenotypes, and pluripotent potential markers. The cells were subjected to RT-PCR and qPCR analysis to determine the expression of IDO, HGF, EGF, PGE2, and IL-10 genes.

Results: CAM cells exhibited a fibroblastoid morphology and adherence to plastic with an average cell viability of 78.5%. The growth curve indicated a growth peak in the second passage and we obtained an average of 138.2 colonies. Osteogenic, chondrogenic, and adipogenic lineages were confirmed by in vitro differentiation assays. Cellular immunophenotyping experiments confirmed the presence of positive mesenchymal markers (CD90 and CD105) and the low or negative expression of hematopoietic markers (CD45 and CD34). Qualitative analysis of the immunomodulatory functions indicated the expression of the IDO, HGF, EGF5, and PGE2 genes. When stimulated by interferon-gamma, CAM cells exhibited higher IDO levels throughout gestation.

Conclusion: The CAMs from different gestational stages presented features consistent with mesenchymal stem cell lineage; better results were observed during the late gestation stage. Therefore, the gestational stage is a key factor that may influence the functionality of therapies when using fetal membrane tissues from different periods of pregnancy.

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犬羊膜干细胞的特征和免疫调节作用
目的:羊膜干细胞具有很强的增殖、细胞扩增和可塑性,以及免疫调节特性,有助于母胎耐受。由于缺乏对不同妊娠阶段人类羊膜的研究,犬模型因其遗传和生理相似性而被认为是理想的模型。我们的目的是描述不同妊娠阶段犬羊膜(CAM)细胞系的特征,并评估免疫调节基因的表达:研究了来自妊娠早期(20-30 天)(n=7)、妊娠中期(31-45 天)(n=7)和妊娠晚期(46-63 天)(n=6)的 20 个 CAM。细胞特征通过细胞活力测试、生长曲线、集落形成单位、体外分化、不同免疫表型的细胞标记和多能潜能标记进行评估。对细胞进行 RT-PCR 和 qPCR 分析,以确定 IDO、HGF、EGF、PGE2 和 IL-10 基因的表达:结果:CAM 细胞呈现成纤维细胞形态,并粘附在塑料上,细胞平均存活率为 78.5%。生长曲线显示,细胞在第二阶段达到生长高峰,平均获得 138.2 个菌落。体外分化实验证实了成骨、成软骨和成脂肪系。细胞免疫分型实验证实了间充质标志物(CD90 和 CD105)的阳性表达和造血标志物(CD45 和 CD34)的低表达或阴性表达。免疫调节功能的定性分析显示,IDO、HGF、EGF5 和 PGE2 基因均有表达。在γ干扰素的刺激下,CAM细胞在整个妊娠期都表现出较高的IDO水平:结论:不同妊娠阶段的CAM细胞表现出与间充质干细胞系一致的特征;妊娠晚期的结果更好。因此,在使用不同孕期的胎膜组织进行治疗时,孕期是影响治疗功能的关键因素。
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来源期刊
CiteScore
6.50
自引率
0.00%
发文量
10
审稿时长
16 weeks
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