Department of Agricultural Biotechnology, and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, 08826, Republic of Korea.
Center for Food and Bioconvergence, Seoul National University, Seoul, 08826, Republic of Korea.
Tissue Eng Regen Med. 2023 Jun;20(3):329-339. doi: 10.1007/s13770-022-00516-7. Epub 2023 Feb 10.
Tissue damage caused by various stimuli under certain conditions, such as biological and environmental cues, can actively induce systemic and/or local immune responses. Therefore, understanding the immunological perspective would be critical to not only regulating homeostasis of organs and tissues but also to restrict and remodel their damage. Lungs serve as one of the key immunological organs, and thus, in the present article, we focus on the innate and adaptive immune systems involved in remodeling and engineering lung tissue. Innate immune cells are known to react immediately to damage. Macrophages, one of the most widely studied types of innate immune cells, are known to be involved in tissue damage and remodeling, while type 2 innate lymphoid cells (ILC2s) have recently been revealed as an important cell type responsible for tissue remodeling. On the other hand, adaptive immune cells are also involved in damage control. In particular, resident memory T cells in the lung prevent prolonged disease that causes tissue damage. In this review, we first outlined the structure of the respiratory system with biological and environmental cues and the innate/adaptive immune responses in the lung. It is our hope that understanding an immunological perspective for tissue remodeling and damage control in the lung will be beneficial for stakeholders in this area.
在某些条件下,各种刺激物(如生物和环境线索)造成的组织损伤可主动诱导全身和/或局部免疫反应。因此,了解免疫学观点不仅对于调节器官和组织的内稳态至关重要,而且对于限制和重塑其损伤也至关重要。肺是重要的免疫器官之一,因此,在本文中,我们重点关注参与重塑和构建肺组织的固有和适应性免疫系统。众所周知,先天免疫细胞会立即对损伤做出反应。巨噬细胞是研究最多的先天免疫细胞之一,已知其参与组织损伤和重塑,而 2 型先天淋巴样细胞(ILC2)最近被揭示为负责组织重塑的重要细胞类型。另一方面,适应性免疫细胞也参与损伤控制。特别是,肺中的驻留记忆 T 细胞可防止导致组织损伤的迁延性疾病。在这篇综述中,我们首先概述了呼吸系统的结构以及肺中的先天/适应性免疫反应。我们希望,了解肺部组织重塑和损伤控制的免疫学观点将有益于该领域的利益相关者。