Lee Yeachan, Heo Seong-Yeong, Lee Hyoung Shin, Oh Sun-Ju, Kim Hyeonsoo, Lim Seonghee, Shin Hwarang, Jung Won-Kyo, Kang Hyun Wook
Industry 4.0 Convergence Bionics Engineering, Pukyong National University, Busan 48513, Korea.
Marine Integrated Biomedical Technology Center, The National Key Research Institutes in Universities, Pukyong National University, Busan 48513, Korea.
iScience. 2022 Oct 19;25(11):105405. doi: 10.1016/j.isci.2022.105405. eCollection 2022 Nov 18.
Several conventional treatments are used to manage tracheal stenosis after intubation and surgical procedures; however, patients are at risk of restenosis because of the absence of effective preventative therapy. In this study, we evaluate the biomodulatory effect of PT-combined blue light (BL) PBM in tracheostomal stenosis-induced animal models. The PT-combined BL group showed a significant decrease in the fibrotic protein synthesis by downregulating the release of stenosis-triggering fibrotic signals, without cytotoxicity or thermal damage. Moreover, the combined treatment ameliorated excessive granulation and collagen formation, and consequently preserved the opening of the tracheostoma ten days after fenestration. The current study demonstrated the biomodulatory effect of PT-combined BL on human tracheal fibroblasts and tracheal fenestration rodent models. Hence, PT-combined BL has the potential to be an effective preventative treatment for tracheal stenosis but also as an alternative option for fibrotic disorders.
几种传统治疗方法用于处理插管和外科手术后的气管狭窄;然而,由于缺乏有效的预防性治疗,患者存在再狭窄的风险。在本研究中,我们评估了脉冲激光(PT)联合蓝光(BL)光生物调节(PBM)对气管造口狭窄诱导动物模型的生物调节作用。PT联合BL组通过下调引发狭窄的纤维化信号释放,显著降低了纤维化蛋白合成,且无细胞毒性或热损伤。此外,联合治疗改善了过度的肉芽组织和胶原蛋白形成,从而在开窗术后十天保持了气管造口的开放。本研究证明了PT联合BL对人气管成纤维细胞和气管开窗啮齿动物模型的生物调节作用。因此,PT联合BL有潜力成为气管狭窄的有效预防性治疗方法,也可作为纤维化疾病的替代选择。