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从生物成像中探索新机遇,以了解细胞内肺表面活性剂的运输和成熟过程及其在肺部疾病中的作用。

Novel opportunities from bioimaging to understand the trafficking and maturation of intracellular pulmonary surfactant and its role in lung diseases.

机构信息

Unidad Academica de Fisiopatología, Hospital de Clínicas, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.

Advanced Bioimaging Unit, Institut Pasteur de Montevideo & Universidad de la República, Montevideo, Uruguay.

出版信息

Front Immunol. 2023 Aug 10;14:1250350. doi: 10.3389/fimmu.2023.1250350. eCollection 2023.

Abstract

Pulmonary surfactant (PS), a complex mixture of lipids and proteins, is essential for maintaining proper lung function. It reduces surface tension in the alveoli, preventing collapse during expiration and facilitating re-expansion during inspiration. Additionally, PS has crucial roles in the respiratory system's innate defense and immune regulation. Dysfunction of PS contributes to various respiratory diseases, including neonatal respiratory distress syndrome (NRDS), adult respiratory distress syndrome (ARDS), COVID-19-associated ARDS, and ventilator-induced lung injury (VILI), among others. Furthermore, PS alterations play a significant role in chronic lung diseases such as chronic obstructive pulmonary disease (COPD) and idiopathic pulmonary fibrosis (IPF). The intracellular stage involves storing and releasing a specialized subcellular organelle known as lamellar bodies (LB). The maturation of these organelles requires coordinated signaling to organize their intracellular organization in time and space. LB's intracellular maturation involves the lipid composition and critical processing of surfactant proteins to achieve proper functionality. Over a decade ago, the supramolecular organization of lamellar bodies was studied using electron microscopy. In recent years, novel bioimaging tools combining spectroscopy and microscopy have been utilized to investigate the intracellular organization of lamellar bodies temporally and spatially. This short review provides an up-to-date understanding of intracellular LBs. Hyperspectral imaging and phasor analysis have allowed identifying specific transitions in LB's hydration, providing insights into their membrane dynamics and structure. A discussion and overview of the latest approaches that have contributed to a new comprehension of the trafficking and structure of lamellar bodies is presented.

摘要

肺表面活性剂(PS)是一种复杂的脂质和蛋白质混合物,对于维持肺的正常功能至关重要。它降低肺泡表面张力,防止呼气时肺泡塌陷,并促进吸气时肺泡重新扩张。此外,PS 在呼吸系统的先天防御和免疫调节中具有重要作用。PS 的功能障碍导致各种呼吸系统疾病,包括新生儿呼吸窘迫综合征(NRDS)、成人呼吸窘迫综合征(ARDS)、COVID-19 相关 ARDS 和呼吸机引起的肺损伤(VILI)等。此外,PS 的改变在慢性肺部疾病中也起着重要作用,如慢性阻塞性肺疾病(COPD)和特发性肺纤维化(IPF)。细胞内阶段涉及储存和释放一种称为板层小体(LB)的特殊细胞内细胞器。这些细胞器的成熟需要协调的信号传递,以在时间和空间上组织其细胞内结构。LB 的细胞内成熟涉及到表面活性剂蛋白的脂质组成和关键加工,以实现适当的功能。十多年前,使用电子显微镜研究了板层小体的超分子组织。近年来,结合光谱学和显微镜的新型生物成像工具已被用于在时间和空间上研究板层小体的细胞内组织。这篇简短的综述提供了对细胞内 LB 的最新理解。高光谱成像和相分析允许识别 LB 水合的特定转变,从而深入了解其膜动力学和结构。本文讨论并概述了最新的方法,这些方法有助于对板层小体的运输和结构有了新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f020/10448512/7b4b73d7236c/fimmu-14-1250350-g001.jpg

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