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作为先进治疗药品纯化的人鼻嗅干细胞可改善神经元分化。

Human nasal olfactory stem cells, purified as advanced therapy medicinal products, improve neuronal differentiation.

作者信息

Jaloux Charlotte, Bonnet Maxime, Vogtensperger Marie, Witters Marie, Veran Julie, Giraudo Laurent, Sabatier Florence, Michel Justin, Legré Regis, Guiraudie-Capraz Gaëlle, Féron François

机构信息

CNRS, INP, UMR 7051, Institut de Neuropathophysiologie, Equipe Nasal Olfactory Stemness and Epigenesis (NOSE), Aix Marseille University, Marseille, France.

Department of Hand Surgery and Reconstructive Surgery of the Limbs, La Timone University Hospital, Assistance Publique Hôpitaux de Marseille, Marseille, France.

出版信息

Front Neurosci. 2022 Nov 17;16:1042276. doi: 10.3389/fnins.2022.1042276. eCollection 2022.

Abstract

BACKGROUND

Olfactory ecto-mesenchymal stem cells (OE-MSC) are mesenchymal stem cells derived from the of the nasal mucosa. They display neurogenic and immunomodulatory properties and were shown to induce recovery in animal models of spinal cord trauma, hearing loss, Parkinsons's disease, amnesia, and peripheral nerve injury. As a step toward clinical practice, we sought to (i) devise a culture protocol that meets the requirements set by human health agencies and (ii) assess the efficacy of stem cells on neuron differentiation.

METHODS

Nasal olfactory mucosa biopsies from three donors were used to design and validate the good manufacturing process for purifying stem cells. All processes and procedures were performed by expert staff from the cell therapy laboratory of the public hospital of Marseille (AP-HM), according to aseptic handling manipulations. Premises, materials and air were kept clean at all times to avoid cross-contamination, accidents, or even fatalities. Purified stem cells were cultivated for 24 or 48 h and conditioned media were collected before being added to the culture medium of the neuroblastoma cell line Neuro2a.

RESULTS

Compared to the explant culture-based protocol, enzymatic digestion provides higher cell numbers more rapidly and is less prone to contamination. The use of platelet lysate in place of fetal calf serum is effective in promoting higher cell proliferation (the percentage of CFU-F progenitors is 15.5%), with the optimal percentage of platelet lysate being 10%. Cultured OE-MSCs do not show chromosomal rearrangement and, as expected, express the usual phenotypic markers of mesenchymal stem cells. When incorporated in standard culture medium, the conditioned medium of purified OE-MSCs promotes cell differentiation of Neuro2a neuroblastoma cells.

CONCLUSION

We developed a safer and more efficient manufacturing process for clinical grade olfactory stem cells. With this protocol, human OE-MSCs will soon be used in a Phase I clinical based on their autologous transplantation in digital nerves with a neglected injury. However, further studies are required to unveil the underlying mechanisms of action.

摘要

背景

嗅觉外胚层间充质干细胞(OE-MSC)是源自鼻粘膜的间充质干细胞。它们具有神经发生和免疫调节特性,并已在脊髓损伤、听力丧失、帕金森病、失忆和周围神经损伤的动物模型中显示出诱导恢复的作用。作为迈向临床实践的一步,我们试图(i)设计一种符合人类健康机构要求的培养方案,以及(ii)评估干细胞对神经元分化的功效。

方法

使用来自三名捐赠者的鼻嗅粘膜活检组织来设计和验证纯化干细胞的良好生产规范。所有过程和程序均由马赛公立医院(AP-HM)细胞治疗实验室的专业人员按照无菌操作进行。场所、材料和空气始终保持清洁,以避免交叉污染、事故甚至死亡。纯化的干细胞培养24或48小时,收集条件培养基,然后添加到神经母细胞瘤细胞系Neuro2a的培养基中。

结果

与基于外植体培养的方案相比,酶消化能更快地提供更多细胞,且污染风险更低。使用血小板裂解物代替胎牛血清可有效促进更高的细胞增殖(CFU-F祖细胞的百分比为15.5%),血小板裂解物的最佳百分比为10%。培养的OE-MSC未显示染色体重排,并且如预期的那样,表达间充质干细胞的常见表型标志物。当掺入标准培养基中时,纯化的OE-MSC的条件培养基可促进Neuro2a神经母细胞瘤细胞的细胞分化。

结论

我们开发了一种更安全、更高效的临床级嗅觉干细胞生产工艺。通过该方案,人类OE-MSC很快将基于其在被忽视损伤的指神经中的自体移植用于I期临床试验。然而,需要进一步研究以揭示其潜在的作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4297/9713000/dda2e29580b7/fnins-16-1042276-g001.jpg

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