CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Increased Anti-Inflammatory Therapeutic Potential and Progenitor Marker Expression of Corneal Mesenchymal Stem Cells Cultured in an Optimized Propagation Medium.
Increased Anti-Inflammatory Therapeutic Potential and Progenitor Marker Expression of Corneal Mesenchymal Stem Cells Cultured in an Optimized Propagation Medium.
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干眼病和睑板腺功能障碍等眼表炎症性疾病(OSID)迫切需要新的治疗方式。间充质干细胞疗法可能提供解决方案,因为其免疫调节能力强、免疫原性低,并能调节先天性和适应性免疫应答。从角膜基质中分离的间充质干细胞样细胞(C-MSC)是一种潜在的新疗法,但需开发优化培养基,以制备适用于治疗OSID的理想细胞表型。
本研究比较体外扩增人C-MSC时使用含胎牛血清(FBS)的M199培养基与干细胞培养基(SCM;含敲除血清替代物[KSR]、碱性成纤维细胞生长因子[bFGF]和人白血病抑制因子[LIF])的效果,检测细胞活性、蛋白和基因表达。研究还考察分选CD34表达细胞群或使用siRNA敲低CD34的效果。
最后,通过与体外角膜上皮细胞损伤模型共培养评估C-MSC作为细胞疗法的潜力,并使用血管和淋巴内皮细胞评估C-MSC条件培养液的促血管生成作用。两种培养基均支持C-MSC增殖;SCM提高CD34、ABCG2、PAX6、NANOG、REX1、SOX2和THY1表达,并伴随相关蛋白表达增加。分选表达CD34蛋白的细胞群对基因表达影响较小,但敲低CD34基因会降低祖细胞基因表达。C-MSC提高受损角膜上皮细胞存活率,同时降低细胞毒性以及IL-6和IL-8水平。未见C-MSC具有促血管生成作用。培养基可显著影响C-MSC表型;使用SCM培养得到的细胞表型更适合进一步开发为抗炎细胞疗法。C-MSC通过抗炎作用治疗OSID具有相当潜力。
There is a huge unmet need for new treatment modalities for ocular surface inflammatory disorders (OSIDs) such as dry eye disease and meibomian gland dysfunction. Mesenchymal stem cell therapies may hold the answer due to their potent immunomodulatory properties, low immunogenicity, and ability to modulate both the innate and adaptive immune response. MSC-like cells that can be isolated from the corneal stroma (C-MSCs) offer a potential new treatment strategy; however, an optimized culture medium needs to be developed to produce the ideal phenotype for use in a cell therapy to treat OSIDs.
The effects of in vitro expansion of human C-MSC in a medium of M199 containing fetal bovine serum (FBS) was compared to a stem cell medium (SCM) containing knockout serum replacement (KSR) with basic fibroblast growth factor (bFGF) and human leukemia inhibitory factor (LIF), investigating viability, protein, and gene expression. Isolating populations expressing CD34 or using siRNA knockdown of CD34 were investigated.
Finally, the potential of C-MSC as a cell therapy was assessed using co-culture with an in vitro corneal epithelial cell injury model and the angiogenic effects of C-MSC conditioned medium were evaluated with blood and lymph endothelial cells. Both media supported proliferation of C-MSC, with SCM increasing expression of CD34 , ABCG2 , PAX6, NANOG, REX1, SOX2 , and THY1 , supported by increased associated protein expression. Isolating cell populations expressing CD34 protein made little difference to gene expression, however, knockdown of the CD34 gene led to decreased expression of progenitor genes.
C-MSC increased viability of injured corneal epithelial cells whilst decreasing levels of cytotoxicity and interleukins-6 and -8. No pro-angiogenic effect of C-MSC was seen. Culture medium can significantly influence C-MSC phenotype and culture in SCM produced a cell phenotype more suitable for further consideration as an anti-inflammatory cell therapy. C-MSC show considerable potential for development as therapies for OSIDs, acting through anti-inflammatory action.
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