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人血小板裂解液比施万细胞样细胞更能刺激人脂肪来源干细胞的神经营养特性。

Human platelet lysate stimulates neurotrophic properties of human adipose-derived stem cells better than Schwann cell-like cells.

机构信息

Cell and Tissue Engineering Laboratory, IRCCS Istituto Ortopedico Galeazzi, Via C. Belgioioso 173, 20157, Milan, Italy.

Department of Plastic and Hand Surgery, Centre Hospitalier Universitaire Vaudois (CHUV), University of Lausanne (UNIL), Lausanne, Switzerland.

出版信息

Stem Cell Res Ther. 2023 Jul 21;14(1):179. doi: 10.1186/s13287-023-03407-3.

Abstract

BACKGROUND

Trauma-associated peripheral nerve injury is a widespread clinical problem causing sensory and motor disabilities. Schwann cells (SCs) contribute to nerve regeneration, mainly by secreting nerve growth factor (NGF) and brain-derived neurotrophic factor. In the last years, adipose-derived stem cells (ASCs) differentiated into SCs (SC-ASCs) were considered as promising cell therapy. However, the cell trans-differentiation process has not been effectively showed and presents several drawbacks, thus an alternative approach for increasing ASCs neurotrophic properties is highly demanded. In the context of human cell-based therapies, Good Manufacturing Practice directions indicate that FBS should be substituted with a xenogeneic-free supplement, such as Human Platelet Lysate (HPL). Previously, we demonstrated that neurotrophic properties of HPL-cultured ASCs were superior compared to undifferentiated FBS-cultured ASCs. Therefore, as following step, here we compared the neurotrophic properties of differentiated SC-like ASCs and HPL-cultured ASCs.

METHODS

Both cell groups were investigated for gene expression level of neurotrophic factors, their receptors and neuronal markers. Moreover, the expression of nestin was quantitatively evaluated by flow cytometry. The commitment toward the SC phenotype was assessed with immunofluorescence pictures. Proteomics analysis was performed on both cells and their conditioned media to compare the differential protein profile. Finally, neurotrophic abilities of both groups were evaluated with a functional co-culture assay, assessing dorsal root ganglia survival and neurite outgrowth.

RESULTS

HPL-cultured ASCs demonstrated higher gene expression of NGF and lower expression of S100B. Moreover, nestin was present in almost all HPL-cultured ASCs and only in one quarter of SC-ASCs. Immunofluorescence confirmed that S100B was not present in HPL-cultured ASCs. Proteomics analysis validated the higher expression of nestin and the increase in cytoskeletal and ECM proteins involved in neural regeneration processes. The co-culture assay highlighted that neurite outgrowth was higher in the presence of HPL-ASCs or their conditioned medium compared to SC-ASCs.

CONCLUSIONS

All together, our results show that HPL-ASCs were more neurotrophic than SC-ASCs. We highlighted that the HPL triggers an immature neuro-induction state of ASCs, while keeping their stem properties, paving the way for innovative therapies for nerve regeneration.

摘要

背景

创伤相关周围神经损伤是一种广泛存在的临床问题,会导致感觉和运动功能障碍。施万细胞(SCs)通过分泌神经生长因子(NGF)和脑源性神经营养因子(BDNF)来促进神经再生。在过去的几年中,脂肪来源的干细胞(ASCs)分化为SCs(SCs-ASCs)被认为是一种很有前途的细胞治疗方法。然而,细胞转分化过程尚未得到有效证实,并且存在一些缺点,因此迫切需要一种提高 ASC 神经营养特性的替代方法。在人类细胞治疗的背景下,良好生产规范指南表明,应将胎牛血清(FBS)替换为无动物源的补充物,如人血小板裂解液(HPL)。先前,我们证明了 HPL 培养的 ASCs 的神经营养特性优于未分化的 FBS 培养的 ASCs。因此,作为下一步,我们比较了分化的 SC 样 ASCs 和 HPL 培养的 ASCs 的神经营养特性。

方法

我们研究了两组细胞的神经营养因子及其受体和神经元标志物的基因表达水平。此外,通过流式细胞术定量评估巢蛋白的表达。通过免疫荧光图片评估向 SC 表型的分化程度。对两种细胞及其条件培养基进行蛋白质组学分析,以比较差异蛋白谱。最后,通过功能性共培养实验评估两组细胞的神经营养能力,评估背根神经节的存活和神经突生长。

结果

HPL 培养的 ASCs 表现出更高的 NGF 基因表达和更低的 S100B 表达。此外,巢蛋白几乎存在于所有 HPL 培养的 ASCs 中,而仅存在于四分之一的 SC-ASCs 中。免疫荧光证实 HPL 培养的 ASCs 中不存在 S100B。蛋白质组学分析证实巢蛋白表达增加,以及参与神经再生过程的细胞骨架和细胞外基质蛋白增加。共培养实验表明,与 SC-ASCs 相比,HPL-ASCs 或其条件培养基存在时神经突生长更高。

结论

综上所述,我们的结果表明 HPL-ASCs 比 SC-ASCs 具有更强的神经营养作用。我们发现 HPL 触发了 ASCs 的不成熟神经诱导状态,同时保持了其干细胞特性,为神经再生的创新治疗方法铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa91/10362751/6af2facd0ab2/13287_2023_3407_Fig1_HTML.jpg

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