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在无血清/无外源物条件下鉴定源自人牙髓干细胞的神经球。

Identification of neurospheres generated from human dental pulp stem cells in xeno-/serum-free conditions.

作者信息

Kawase-Koga Yoko, Fujii Yasuyuki, Yamakawa Daiki, Sato Marika, Chikazu Daichi

机构信息

Department of Oral and Maxillofacial Surgery, Tokyo Medical University Hospital, 6-7-1 Nishishinjuku, Shinjuku-ku, Tokyo 160-0023, Japan.

Department of Oral Health and Diagnostic Sciences, School of Dental Medicine, University of Connecticut Health, Farmington, CT, 06030, United States.

出版信息

Regen Ther. 2020 Feb 17;14:128-135. doi: 10.1016/j.reth.2019.11.006. eCollection 2020 Jun.

Abstract

INTRODUCTION

Cell-based therapies require an emerging alternative treatment using easily harvested cell sources. Neural stem cells derived from various tissues, including brain, bone marrow, skin and retina can give rise to both neurons and glial cells. Recently, human dental pulp stem cells (DPSCs) and stem cells from human exfoliated deciduous teeth (SHED) were demonstrated to have mesenchymal stem cell-like abilities such as self-renewal and multi-lineage differentiation, including neuron and glial cells. Moreover, DPSCs and SHED show a higher proliferation rate and a higher number of population doublings compared with adult bone marrow stromal stem cells. Therefore, DPSCs are a useful source that can be applied in cell replacement therapy for various neurological disorders. Generally, the conventional culture methods for DPSCs have used serum, therefore the undefined components in culture medium may complicate investigations of the molecular mechanisms that control the self-renewal and differentiation of DPSCs. However, neural stem cells proliferate to form 'neurospheres' in suspension in the presence of epidermal growth factor (EGF) and basic fibroblast growth factor (bFGF). No study to date has obtained neurospheres from DPSCs in serum-free conditions in primary culture. Thus, the aim of this study was to establish a method for the proliferation and neural differentiation of DPSCs in xeno- and serum-free conditions in primary culture.

METHODS

DPSCs were obtained from the dental pulp of wisdom teeth from healthy individuals (18-41 years old) and cultured in conventional medium containing 15% fetal bovine serum and xeno-/serum-free medium. We evaluated the proliferation of DPSCs, neurosphere generation, and neural differentiation under xeno-/serum-free conditions by flow cytometry, immunohistochemistry, and real-time polymerase chain reaction.

RESULTS

In proliferation medium without xeno/serum, DPSCs can proliferate and generate neurospheres, however, the neurospheres had limited self-renewal ability. Under differentiation conditions, class III β-tubulin (TUBB3) and microtubule-associated protein (MAP2) were more significantly expressed in neurospheres derived from DPSCs in xeno-/serum-free culture conditions than in DPSCs in conventional culture conditions.

CONCLUSIONS

Our result demonstrated that neurosphere generation from DPSCs in xeno-/serum-free culture may be an accessible source for clinical cell replacement therapies for neuronal degenerative diseases.

摘要

引言

基于细胞的疗法需要一种新兴的替代治疗方法,使用易于获取的细胞来源。源自各种组织(包括脑、骨髓、皮肤和视网膜)的神经干细胞可分化为神经元和神经胶质细胞。最近,人类牙髓干细胞(DPSCs)和人脱落乳牙干细胞(SHED)被证明具有间充质干细胞样的能力,如自我更新和多谱系分化,包括向神经元和神经胶质细胞分化。此外,与成人骨髓基质干细胞相比,DPSCs和SHED显示出更高的增殖率和更多的群体倍增次数。因此,DPSCs是一种可用于各种神经疾病细胞替代治疗的有用细胞来源。一般来说,DPSCs的传统培养方法使用血清,因此培养基中未定义的成分可能会使控制DPSCs自我更新和分化的分子机制的研究变得复杂。然而,神经干细胞在表皮生长因子(EGF)和碱性成纤维细胞生长因子(bFGF)存在的情况下,在悬浮培养中可增殖形成“神经球”。迄今为止,尚无研究在原代培养的无血清条件下从DPSCs获得神经球。因此,本研究的目的是建立一种在原代培养的无血清和无动物源成分条件下使DPSCs增殖和向神经细胞分化的方法。

方法

从健康个体(18 - 41岁)的智齿牙髓中获取DPSCs,并在含有15%胎牛血清的传统培养基和无动物源成分/无血清培养基中培养。我们通过流式细胞术、免疫组织化学和实时聚合酶链反应评估了在无动物源成分/无血清条件下DPSCs的增殖、神经球生成和神经分化情况。

结果

在无动物源成分/无血清的增殖培养基中,DPSCs可以增殖并生成神经球,然而,这些神经球的自我更新能力有限。在分化条件下,III类β-微管蛋白(TUBB3)和微管相关蛋白(MAP2)在无动物源成分/无血清培养条件下由DPSCs生成的神经球中的表达比在传统培养条件下的DPSCs中更显著。

结论

我们的结果表明,在无动物源成分/无血清培养中由DPSCs生成神经球可能是用于神经元退行性疾病临床细胞替代治疗的一种可行细胞来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ddd/7029376/bf5c61dd57c6/gr1.jpg

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