LBN, Univ Montpellier, Montpellier, France.
LBN, Univ Montpellier, Montpellier, France.
Neurochem Int. 2021 Mar;144:104961. doi: 10.1016/j.neuint.2021.104961. Epub 2021 Jan 16.
With their potent regenerative and protective capacities, stem cell-derived conditioned media emerged as an effective alternative to cell therapy, and have a prospect to be manufactured as pharmaceutical products for tissue regeneration applications. Our study investigates the neuroregenerative potential of human dental pulp cells (DPCs) conditioned medium (CM) and defines an optimization strategy of DPC-CM for enhanced neuronal outgrowth. Primary sensory neurons from mouse dorsal root ganglia were cultured with or without DPC-CM, and the lengths of βIII-tubulin positive neurites were measured. The impacts of several manufacturing features as the duration of cell conditioning, CM storage, and preconditioning of DPCs with some factors on CM functional activity were assessed on neurite length. We observed that DPC-CM significantly enhanced neurites outgrowth of sensory neurons in a concentration-dependent manner. The frozen storage of DPC-CM had no impact on experimental outcomes and 48 h of DPC conditioning is optimal for an effective activity of CM. To further understand the regenerative feature of DPC-CM, we studied DPC secretome by human growth factor antibody array analysis and revealed the presence of several factors involved in either neurogenesis, neuroprotection, angiogenesis, and osteogenesis. The conditioning of DPCs with the B-27 supplement enhanced significantly the neuroregenerative effect of their secretome by changing its composition in growth factors. Here, we show that DPC-CM significantly stimulate neurite outgrowth in primary sensory neurons. Moreover, we identified secreted protein candidates that can potentially promote this promising regenerative feature of DPC-CM.
具有强大的再生和保护能力,干细胞来源的条件培养基作为细胞治疗的有效替代方法出现,并有望作为组织再生应用的药物产品进行生产。我们的研究调查了人牙髓细胞(DPC)条件培养基(CM)的神经再生潜力,并定义了一种优化策略,以增强 DPC-CM 促进神经元生长的作用。将来自小鼠背根神经节的原代感觉神经元与或不与 DPC-CM 一起培养,并测量βIII-微管蛋白阳性神经突的长度。评估了几种制造特征(例如细胞培养持续时间、CM 储存以及用某些因素对 DPC 进行预处理)对神经突长度上 CM 功能活性的影响。我们观察到 DPC-CM 以浓度依赖性方式显著增强感觉神经元的神经突生长。DPC-CM 的冷冻储存对实验结果没有影响,48 小时的 DPC 培养是 CM 有效活性的最佳条件。为了进一步了解 DPC-CM 的再生特征,我们通过人类生长因子抗体阵列分析研究了 DPC 分泌组,并揭示了几种参与神经发生、神经保护、血管生成和成骨的因子的存在。用 B-27 补充剂对 DPC 进行预处理可显著改变其生长因子组成,从而增强其分泌组的神经再生作用。在这里,我们表明 DPC-CM 可显著刺激原代感觉神经元的神经突生长。此外,我们鉴定了潜在的分泌蛋白候选物,这些候选物可能有助于增强 DPC-CM 的这种有前途的再生特征。