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Influence of Discrete and Continuous Culture Conditions on Human Mesenchymal Stem Cell Lineage Choice in RGD Concentration Gradient Hydrogels

机译:离散和连续培养条件对RGD浓度梯度水凝胶中人间充质干细胞谱系选择的影响

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Stem cells have shown lineage-specific differentiation when cultured on substrates possessing signaling groups derived from the native tissue. A distinct determinant in this process is the concentration of the signaling motif. While several groups have been working actively to determine the specific factors, concentrations, and mechanisms governing the differentiation process, many have been turning to combinatorial and gradient approaches in attempts to optimize the multiple chemical and physical parameters needed for the next advance. However, there has not been a direct comparison between the cellular behavior and differentiation of human mesenchymal stem cells cultured in gradient and discrete substrates, which quantitates the effect of differences caused by cell-produced, soluble factors due to design differences between the culture systems. In this study, the differentiation of human mesenchymal stem cells in continuous and discrete polyethylene glycol dimethacrylate (PEGDM) hydrogels containing an RGD concentration gradient from 0 to 14 mM were examined to study the effects of the different culture conditions on stem-cell behavior. Culture condition was found to affect every osteogenic (alkaline phosphatase, Rum 2, type 1 collagen, bone sailoprotein, and calcium content) and adipogenic marker (oil red and peroxisome prolrferator-activated receptor gamma) examined regardless of RGD concentration. Only in the continuous gradient culture did RGD concentration affect human mesenchymal stem-cell lineage commitment with low RGD concentrations expressing higher osteogenic differentiation than high RGD concentrations. Conversely, high RGD concentrations expressed higher adipogenic differentiation than low RGD concentrations. Cytoskeletal actin organization was only affected by culture condition at low RGD concentrations, indicating that it played a limited role in the differences in lineage commitment observed. Therefore, the role of discrete versus gradient strategies in high-throughput experimentation needs to be considered when designing experiments as we show that the respective strategies alter cellular outcomes even though base scaffolds have similar material and chemical properties.
机译:当干细胞在具有衍生自天然组织的信号传导基团的底物上培养时,干细胞已显示出谱系特异性分化。在此过程中一个独特的决定因素是信号基序的浓度。尽管有几个小组一直在积极努力确定决定分化过程的具体因素,浓度和机制,但许多小组已转向组合和梯度方法,以尝试优化下一步应用所需的多个化学和物理参数。然而,在梯度和离散底物中培养的人间充质干细胞的细胞行为和分化之间没有直接的比较,它可以量化由于培养系统之间设计差异而由细胞产生的可溶性因子引起的差异的影响。在这项研究中,研究了人间充质干细胞在RGD浓度梯度从0到14 mM的连续和离散聚乙二醇二甲基丙烯酸酯(PEGDM)水凝胶中的分化,以研究不同培养条件对干细胞行为的影响。发现培养条件会影响所检查的每个成骨性(碱性磷酸酶,朗姆酒2、1型胶原蛋白,骨帆蛋白和钙含量)和成脂标记(油红和过氧化物酶体增生激活受体gamma),而与RGD浓度无关。仅在连续梯度培养中,RGD浓度会影响人间充质干细胞谱系定型,低RGD浓度比高RGD浓度表达更高的成骨分化。相反,高RGD浓度比低RGD浓度表现出更高的成脂分化。细胞骨架肌动蛋白组织仅受低RGD浓度的培养条件影响,表明其在观察到的谱系承诺差异中仅发挥有限的作用。因此,在设计实验时,需要考虑离散策略与梯度策略在高通量实验中的作用,因为我们表明,即使基础支架具有相似的材料和化学性质,各自的策略也会改变细胞的结果。

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