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低频超声敏感的 Piezo1 通道调节成纤维细胞的瘢痕疙瘩相关特征。

Low-Frequency Ultrasound Sensitive Piezo1 Channels Regulate Keloid-Related Characteristics of Fibroblasts.

机构信息

Department of Dermatology, Xiangya Hospital, Central South University, Changsha, 410008, China.

Furong Laboratory (Precision Medicine), Changsha, 410008, China.

出版信息

Adv Sci (Weinh). 2024 Apr;11(14):e2305489. doi: 10.1002/advs.202305489. Epub 2024 Feb 4.

Abstract

Keloids are benign fibroproliferative tumors that severely diminish the quality of life due to discomfort, dysfunction, and disfigurement. Recently, ultrasound technology as a noninvasive adjuvant therapy is developed to optimize treatment protocols. However, the biophysical mechanisms have not yet been fully elucidated. Here, it is proposed that piezo-type mechanosensitive ion channel component 1 (Piezo1) plays an important role in low-frequency sonophoresis (LFS) induced mechanical transduction pathways that trigger downstream cellular signaling processes. It is demonstrated that patient-derived primary keloid fibroblasts (PKF), NIH 3T3, and HFF-1 cell migration are inhibited, and PKF apoptosis is significantly increased by LFS stimulation. And the effects of LFS is diminished by the application of GsMTx-4, the selective inhibitor of Piezo1, and the knockdown of Piezo1. More importantly, the effects of LFS can be imitated by Yoda1, an agonist of Piezo1 channels. Establishing a patient-derived xenograft keloid implantation mouse model further verified these results, as LFS significantly decreased the volume and weight of the keloids. Moreover, blocking the Piezo1 channel impaired the effectiveness of LFS treatment. These results suggest that LFS inhibits the malignant characteristics of keloids by activating the Piezo1 channel, thus providing a theoretical basis for improving the clinical treatment of keloids.

摘要

瘢痕疙瘩是一种良性纤维增生性肿瘤,由于不适、功能障碍和毁容,严重降低了生活质量。最近,超声技术作为一种非侵入性的辅助治疗方法被开发出来,以优化治疗方案。然而,其生物物理机制尚未完全阐明。在这里,提出 Piezo 型机械敏感离子通道成分 1(Piezo1)在低频超声(LFS)诱导的机械转导途径中发挥重要作用,该途径触发下游细胞信号转导过程。研究表明,LFS 刺激可抑制患者来源的原代瘢痕疙瘩成纤维细胞(PKF)、NIH 3T3 和 HFF-1 细胞迁移,并显著增加 PKF 细胞凋亡。Piezo1 的选择性抑制剂 GsMTx-4 和 Piezo1 的敲低可减弱 LFS 的作用。更重要的是,Piezo1 通道激动剂 Yoda1 可模拟 LFS 的作用。建立患者来源的异种移植瘢痕疙瘩植入小鼠模型进一步验证了这些结果,因为 LFS 可显著减小瘢痕疙瘩的体积和重量。此外,阻断 Piezo1 通道会损害 LFS 治疗的效果。这些结果表明,LFS 通过激活 Piezo1 通道抑制了瘢痕疙瘩的恶性特征,从而为改善瘢痕疙瘩的临床治疗提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb10/11005750/c87da612e819/ADVS-11-2305489-g007.jpg

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