Inhibiting Autophagy by Chemicals During SCAPs Osteodifferentiation Elicits Disorganized Mineralization, While the Knock-Out of Atg5/7 Genes Leads to Cell Adaptation.

IF 5.2 2区 生物学 Q2 CELL BIOLOGY Cells Pub Date : 2025-01-20 DOI:10.3390/cells14020146
Damien Le Nihouannen, Claudine Boiziau, Sylvie Rey, Nicole Agadzhanian, Nathalie Dusserre, Fabrice Cordelières, Muriel Priault, Helene Boeuf
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Abstract

SCAPs (Stem Cells from Apical Papilla), derived from the apex of forming wisdom teeth, extracted from teenagers for orthodontic reasons, belong to the MSCs (Mesenchymal Stromal Cells) family. They have multipotent differentiation capabilities and are a potentially powerful model for investigating strategies of clinical cell therapies. Since autophagy-a regulated self-eating process-was proposed to be essential in osteogenesis, we investigated its involvement in the SCAP model. By using a combination of chemical and genetic approaches to inhibit autophagy, we studied early and late events of osteoblastic differentiation. We showed that blocking the formation of autophagosomes with verteporfin did not induce a dramatic alteration in early osteoblastic differentiation monitored by ALP (alkaline phosphatase) activity. However, blocking the autophagy flux with bafilomycin A1 led to ALP repression. Strikingly, the mineralization process was observed with both compounds, with calcium phosphate (CaP) nodules that remained inside cells under bafilomycin A1 treatment and numerous but smaller CaP nodules after verteporfin treatment. In contrast, deletion of Atg5 or Atg7, two genes involved in the formation of autophagosomes and essential to trigger canonical autophagy, indicated that both genes could be involved differently in the mineralization process with a modification of the ALP activity while final mineralization was not altered.

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在SCAPs骨分化过程中,化学物质抑制自噬引发无序矿化,而敲除Atg5/7基因导致细胞适应。
SCAPs (Stem Cells from Apical Papilla)是一种来自智齿形成顶端的干细胞,从青少年身上提取用于正畸治疗,属于间充质间质细胞(Mesenchymal Stromal Cells, MSCs)家族。它们具有多能分化能力,是研究临床细胞治疗策略的潜在强大模型。由于自噬-一种受调节的自噬过程-被认为在成骨过程中是必不可少的,我们研究了它在SCAP模型中的作用。通过化学和遗传相结合的方法抑制自噬,我们研究了成骨细胞分化的早期和晚期事件。我们发现,用维替泊芬阻断自噬体的形成不会引起碱性磷酸酶活性监测的早期成骨细胞分化的显著改变。然而,用巴菲霉素A1阻断自噬通量导致ALP抑制。引人注目的是,这两种化合物都观察到了矿化过程,在巴菲霉素A1处理下,磷酸钙(CaP)结节仍留在细胞内,而在维替波芬处理后,磷酸钙结节数量众多,但较小。相反,Atg5或Atg7这两个基因参与自噬体的形成,是触发典型自噬的必要基因的缺失表明,这两个基因可能通过改变ALP活性而不同地参与矿化过程,但最终的矿化并未改变。
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来源期刊
Cells
Cells Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
9.90
自引率
5.00%
发文量
3472
审稿时长
16 days
期刊介绍: Cells (ISSN 2073-4409) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to cell biology, molecular biology and biophysics. It publishes reviews, research articles, communications and technical notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided.
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