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钙模拟条件培养基的趋化作用,是骨再生的有效诱导剂。

Calcium mimics the chemotactic effect of conditioned media and is an effective inducer of bone regeneration.

机构信息

Departament de Ciències Fisiològiques, Universitat de Barcelona, IDIBELL, L'Hospitalet de Llobregat, Barcelona, Spain.

Department of Medicine, Division of Endocrinology, Mayo Clinic College of Medicine, Rochester, MN, United States of America.

出版信息

PLoS One. 2019 Jan 4;14(1):e0210301. doi: 10.1371/journal.pone.0210301. eCollection 2019.

Abstract

BACKGROUND

After bone resorption, ions and degraded organic components are co-released into the extracellular space. Ions and growth factors, although different in their biological nature, induce a common and coordinated chemotactic effect. Conditioned media has been used successfully in bone regeneration by promoting endogenous cell recruitment. Likewise, calcium alone act as a paracrine chemotactic signal, inducing the host's undifferentiated progenitor cell infiltration into the implanted biomaterials. The aim of the present study was to compare the chemotactic effect of calcium and conditioned media in primary calvarial cells.

METHODS

The chemotactic cell response was evaluated in vitro using an agarose spot and a wound healing assay. In addition, we used a calvarial bone explant model ex-vivo. The healing potential was also tested through an in vivo model, a critical-size calvarial bone defect in mice. For the in vivo experiment, cell-free calcium-containing or conditioned media-containing scaffolds were implanted, and MSC's seeded scaffolds were used as positive control. After seven weeks post-implantation, samples were retrieved, and bone regeneration was evaluated by μCT and histological analysis. Osteogenic gene expression was evaluated by qPCR.

RESULTS

We found that chemotactic cell migration in response to either calcium or conditioned media was equivalent in vitro and ex vivo. Accordingly, μCT analysis showed that bone regeneration induced by the MSC's seeded scaffolds was similar to that obtained with cell-free calcium or conditioned media-containing scaffolds. Pre-treatment with SB202190, a highly selective p38 inhibitor, abrogated the chemotactic effect induced by conditioned media. In contrast, p38 activity was not essential for the calcium-induced chemotaxis. Moreover, BAPTA-AM treatment, a cytosolic calcium chelator, decreased the chemotactic effect and the expression of key osteogenic genes induced by calcium or conditioned media.

CONCLUSION

We show that calcium ions alone not only mimic the conditioned media chemotactic effect, but also induce an osteogenic effect similar to that produced by transplanted MSC's in vivo. Furthermore, the chemotactic effect induced by conditioned media is calcium and p38 dependent. The rise in cytosolic calcium might integrate the different signaling pathways triggered by conditioned media and extracellular Ca2+. This calcium-driven in situ bone regeneration is a promising and convenient alternative to promote endogenous cell recruitment into the injured bone site. This pre-clinical cell-free and growth factor-free approach might avoid the disadvantages of the ex vivo cell manipulation.

摘要

背景

在骨吸收后,离子和降解的有机成分共同释放到细胞外空间。离子和生长因子虽然在生物学性质上有所不同,但它们诱导了一种共同的、协调的趋化作用。条件培养基已成功地用于骨再生,促进内源性细胞募集。同样,单独的钙也可以作为旁分泌趋化信号,诱导宿主未分化的祖细胞浸润到植入的生物材料中。本研究的目的是比较钙和条件培养基在原代颅骨细胞中的趋化作用。

方法

使用琼脂糖点和划痕愈合试验在体外评估趋化细胞反应。此外,我们还使用了颅骨骨外植体模型进行了体外实验。通过体内模型,即小鼠临界尺寸颅骨骨缺损,也测试了愈合潜力。对于体内实验,植入不含细胞的含钙或含条件培养基的支架,并将 MSC 接种的支架作为阳性对照。植入七周后,取出样本,通过 μCT 和组织学分析评估骨再生。通过 qPCR 评估成骨基因表达。

结果

我们发现,体外和体外条件培养基或钙诱导的趋化细胞迁移是等效的。相应地,μCT 分析表明,MSC 接种支架诱导的骨再生与不含细胞的含钙或含条件培养基的支架相似。预先用 SB202190(一种高选择性的 p38 抑制剂)处理,可消除条件培养基诱导的趋化作用。相比之下,p38 活性对于钙诱导的趋化作用不是必需的。此外,细胞内钙螯合剂 BAPTA-AM 处理降低了钙或条件培养基诱导的趋化作用和关键成骨基因的表达。

结论

我们表明,单独的钙离子不仅模拟了条件培养基的趋化作用,而且还诱导了与体内移植 MSC 相似的成骨作用。此外,条件培养基诱导的趋化作用依赖于钙离子和 p38。细胞内钙的增加可能整合了条件培养基和细胞外 Ca2+ 触发的不同信号通路。这种钙驱动的原位骨再生是一种很有前途和方便的替代方法,可以促进内源性细胞募集到受损的骨部位。这种无细胞和无生长因子的临床前方法可能避免了体外细胞操作的缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5b5/6319750/ce6d5143f963/pone.0210301.g001.jpg

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