Institute for Regenerative Medicine, Sechenov University, Moscow, Russia.
Department of Polymers and Composites, N.N. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences, Moscow, Russia.
Stem Cell Res Ther. 2022 Jul 16;13(1):317. doi: 10.1186/s13287-022-02997-8.
One of the severe complications occurring because of the patient's intubation is tracheal stenosis. Its incidence has significantly risen because of the COVID-19 pandemic and tends only to increase. Here, we propose an alternative to the donor trachea and synthetic prostheses-the tracheal equivalent. To form it, we applied the donor trachea samples, which were decellularized, cross-linked, and treated with laser to make wells on their surface, and inoculated them with human gingiva-derived mesenchymal stromal cells. The fabricated construct was assessed in vivo using nude (immunodeficient), immunosuppressed, and normal mice and rabbits. In comparison with the matrix ones, the tracheal equivalent samples demonstrated the thinning of the capsule, the significant vessel ingrowth into surrounding tissues, and the increase in the submucosa resorption. The developed construct was shown to be highly biocompatible and efficient in trachea restoration. These results can facilitate its clinical translation and be a base to design clinical trials.
由于患者插管而引起的严重并发症之一是气管狭窄。由于 COVID-19 大流行,其发病率显著上升,而且还在不断增加。在这里,我们提出了一种替代供体气管和合成假体的方法——气管等效物。为此,我们应用了经过脱细胞、交联和激光处理以在其表面形成小孔的供体气管样本,并将其接种了人牙龈来源的间充质基质细胞。我们使用裸鼠(免疫缺陷)、免疫抑制和正常小鼠和兔在体内评估了所构建的结构。与基质样本相比,气管等效物样本显示囊变薄,大量血管长入周围组织,黏膜下吸收增加。所开发的构建物具有高度的生物相容性和气管修复效率。这些结果可以促进其临床转化,并为临床试验设计提供基础。