Ishizaki Motoki, Kimura Maki, Ohyama Sadao, Ando Masayuki, Nomura Sachie, Ichinohe Tatsuya, Shibukawa Yoshiyuki
Department of Physiology, Tokyo Dental College.
Department of Dental Anesthesiology, Tokyo Dental College.
Bull Tokyo Dent Coll. 2025 Jun 18;66(2):53-63. doi: 10.2209/tdcpublication.2024-0018. Epub 2025 May 15.
Endothelin (ET) is a peptide comprising 21 amino acids, and its G-protein coupled ETA and ETB receptors are expressed in both cancer cells and cancer-associated cells. Cancer cells excessively express ETA and ETB receptors, and mechanical stimulation promotes the growth and migration of these cells. The autocrine and paracrine signaling of ET is involved in several cancer metabolic pathways, but how this is mediated by the ET-axis (ET and its receptors) remains to be clarified. This study investigated ET-axis-mediated autocrine/paracrine communication in rat squamous cell carcinoma (SCC) in response to direct mechanical stimulation of such cells. Intracellular free Ca concentration ([Ca]) was determined using fura-2/AM from a rat SCC cell line (SCC-158). Direct mechanical stimulation of the SCC-158 cells using glass micropipettes to compress the cell membrane to 8 μm for 4 sec induced a transient increase in [Ca]. This increase was also observed in the neighboring cells of the stimulated SCC-158 cells. Treatment with 10 μM Gd or 1 μM GsMTx4 almost completely inhibited the mechanical stimulation-induced increase in [Ca] in the SCC-158 cells. Application of 1 μM BQ-123 (an ETA receptor antagonist) inhibited the increase in [Ca] in the stimulated SCC-158 and neighboring cells, whereas that of BQ-788 (an ETB receptor antagonist) had no such effect. These findings suggest that rat SCC cells express the Piezo1 channel. Activation of the Piezo1 channel induced endothelin release from the mechanically stimulated SCC-158 cells. Released ET activated ETA receptors in neighboring SCC-158 cells. These findings also suggest that intercellular paracrine communication among SCC-158 cells through ET signaling plays an important role in the development and metabolism of SCC cells.
内皮素(ET)是一种由21个氨基酸组成的肽,其G蛋白偶联的ETA和ETB受体在癌细胞和癌症相关细胞中均有表达。癌细胞过度表达ETA和ETB受体,机械刺激可促进这些细胞的生长和迁移。ET的自分泌和旁分泌信号传导参与多种癌症代谢途径,但ET轴(ET及其受体)如何介导这一过程仍有待阐明。本研究调查了大鼠鳞状细胞癌(SCC)中ET轴介导的自分泌/旁分泌通讯,以响应此类细胞的直接机械刺激。使用fura-2/AM从大鼠SCC细胞系(SCC-158)中测定细胞内游离钙浓度([Ca])。用玻璃微吸管对SCC-158细胞进行直接机械刺激,将细胞膜压缩至8μm持续4秒,可诱导[Ca]短暂升高。在受刺激的SCC-158细胞的相邻细胞中也观察到了这种升高。用10μM钆或1μM GsMTx4处理几乎完全抑制了SCC-158细胞中机械刺激诱导的[Ca]升高。应用1μM BQ-123(一种ETA受体拮抗剂)可抑制受刺激的SCC-158细胞及其相邻细胞中[Ca]的升高,而BQ-788(一种ETB受体拮抗剂)则没有这种作用。这些发现表明大鼠SCC细胞表达Piezo1通道。Piezo1通道的激活诱导了机械刺激的SCC-158细胞释放内皮素。释放的ET激活了相邻SCC-158细胞中的ETA受体。这些发现还表明,SCC-158细胞之间通过ET信号进行的细胞间旁分泌通讯在SCC细胞的发育和代谢中起重要作用。