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人牙髓中通过电偶联形成的成牙本质细胞合胞体。

Odontoblastic syncytium through electrical coupling in the human dental pulp.

机构信息

Pulp Biology and Endodontics, Department of Oral Health Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8549, Japan.

出版信息

J Dent Res. 2013 Apr;92(4):371-5. doi: 10.1177/0022034513478430. Epub 2013 Feb 12.

Abstract

We have previously reported a dye-coupling network between odontoblasts (OBs). However, it is still unclear how the information detected by the odontoblasts is transmitted. The aim of this study was to characterize the odontoblastic syncytium electrophysiologically in the human dental pulp. Pulpal cells were freshly isolated from human premolars immediately after extraction. Under a light microscope, coupled or small clusters (3-20) of odontoblasts, each of which had a monopolar process (95-280 µm) and an oval cell body, were easily observed to be lined up in parallel. Cells were used for electrophysiological recording within 3 hrs in the dual patch-clamp configuration. Electrical couplings were found between odontoblasts (37/40 pairs). Voltage gating showed directional independence between pairs of odontoblasts. The time constant to a current decay increased with the number of clustered odontoblasts. Nine of 37 pairs isolated from young patients were electrically coupled, but could not be voltage-clamped. Transjunctional currents were blocked by octanol. These results suggest that odontoblasts form a syncytium that is directionally independent via symmetric gap junction channels in the odontoblastic layer. Young odontoblasts with a high electrical conductance to neighboring cells may be related to high potential of information transmission or calcification.

摘要

我们之前曾报道过成牙本质细胞(OBs)之间的染料偶联网络。然而,目前尚不清楚 OB 检测到的信息是如何传递的。本研究旨在从人磨牙牙髓中分离的牙髓细胞中,对成牙本质细胞合胞体进行电生理学特征分析。在光镜下,很容易观察到成牙本质细胞排列成平行的偶联或小簇(3-20 个),每个细胞都有一个单极突起(95-280 µm)和一个椭圆形的细胞体。在双膜片钳配置下,在 3 小时内即可对细胞进行电生理记录。在 40 对细胞中发现了电偶联。电压门控显示成对的成牙本质细胞之间具有方向独立性。电流衰减的时间常数随聚集的成牙本质细胞数量的增加而增加。从年轻患者中分离的 37 对中的 9 对是电偶联的,但不能进行电压钳制。跨连接电流被辛醇阻断。这些结果表明,成牙本质细胞通过成牙本质层中的对称间隙连接通道形成具有方向独立性的合胞体。与邻近细胞具有高电导的年轻成牙本质细胞可能与高信息传递或钙化潜力有关。

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