Department of Orthodontics, Medical Faculty, University of Bonn, 53111 Bonn, Germany.
Department of Oral & Maxillofacial Plastic Surgery, University of Bonn, 53105 Bonn, Germany.
Ann Anat. 2020 Sep;231:151517. doi: 10.1016/j.aanat.2020.151517. Epub 2020 Mar 27.
Periodontal ligament (PDL) cell cultures are classically maintained in serum-containing media. However, unwanted side-effects of these conditions on cellular and molecular characteristics demand a serum-free alternative. Even though these limitations are well known and efforts for the development of adequate serum-free alternatives have been made, these approaches for replacement remained unsuccessful so far. This study aimed at developing a well-defined, serum-free formulation supporting both isolation from tissue samples and efficient expansion of PDL cells. Here, of particular focus was the perpetuation of tissue-characteristic markers detectable in primary tissues and of stemness features.
Primary PDL cell cultures from generally healthy human donors (n = 3) were maintained in basal media N2B27 and E6 together with different concentrations of growth and attachment factors. Cell proliferation was recorded via microscopy and WST assay. Gene expression of RUNX2, Periostin, ALP, CD73, CD90, CD105, CD45, SOX10 and SOX2 was compared to primary PDL explants via qRT-PCR. Immunocytochemistry was performed for anti-CD105, SSEA-3, CD271, HNK1. Serum-containing sDMEM medium served as control.
N2B27 medium substituted with 25 ng/mL EGF, 25 ng/mL IGF1, 0.5 mg/mL Fetuin plus gelatine coating (designated N2B27-PDLsf) emerged as potent serum-free formulation ensuring adequate culture isolation and expansion. Here, PDL primary tissue signature markers RUNX2 and Periostin remained stable in N2B27-PDLsf compared to controls (229.0-fold ±101.0 and 83.2-fold ±9.6 increase). Additionally, stemness markers ALP and CD105 were significantly upregulated on transcriptional, and CD105 and SOX2 on protein level.
This investigation identified a novel serum-free medium for the isolation, and expansion of primary human PDL cells with constantly high proliferation rates. Here, purity and stemness properties are maintained. Thus, N2B27-PDLsf represents a valid replacement for serum-containing media in PDL cultures.
牙周膜(PDL)细胞培养通常在含血清的培养基中进行。然而,这些条件对细胞和分子特征的不良影响需要一种无血清的替代方法。尽管这些限制是众所周知的,并且已经为开发合适的无血清替代品做出了努力,但迄今为止,这些替代方法仍然没有成功。本研究旨在开发一种定义明确的、无血清的配方,既能支持从组织样本中分离,又能有效扩增 PDL 细胞。这里特别关注的是在原代组织中可检测到的组织特征标记物和干性特征的延续。
从一般健康的人类供体(n = 3)中分离的原代 PDL 细胞在 N2B27 和 E6 基础培养基中,与不同浓度的生长和附着因子一起培养。通过显微镜和 WST 测定法记录细胞增殖。通过 qRT-PCR 将 RUNX2、Periostin、ALP、CD73、CD90、CD105、CD45、SOX10 和 SOX2 的基因表达与原代 PDL 外植体进行比较。通过免疫细胞化学检测抗 CD105、SSEA-3、CD271、HNK1。含血清的 sDMEM 培养基作为对照。
N2B27 培养基中添加 25ng/mL EGF、25ng/mL IGF1、0.5mg/mL 胎球蛋白加明胶涂层(命名为 N2B27-PDLsf),成为一种有效的无血清配方,可确保适当的培养分离和扩增。在这里,与对照相比,RUNX2 和 Periostin 等 PDL 原代组织特征标记物在 N2B27-PDLsf 中保持稳定(229.0 倍±101.0 和 83.2 倍±9.6 增加)。此外,在转录水平上,ALP 和 CD105 标志物显著上调,CD105 和 SOX2 蛋白水平也显著上调。
本研究鉴定了一种用于分离和扩增原代人牙周膜细胞的新型无血清培养基,具有始终保持较高增殖率的特性。在这里,纯度和干性特性得以维持。因此,N2B27-PDLsf 是牙周膜培养中含血清培养基的有效替代品。