The evolution of in vitro models of lung fibrosis: promising prospects for drug discovery

被引:22
作者
Kolanko, Emanuel [1 ]
Cargnoni, Anna [2 ]
Papait, Andrea [3 ,4 ]
Silini, Antonietta Rosa [2 ]
Czekaj, Piotr [1 ]
Parolini, Ornella [3 ,4 ]
机构
[1] Katowice Med Univ Silesia, Dept Cytophysiol, Katowice, Poland
[2] Fdn Poliambulanza Ist Osped, Ctr Ricerca E Menni, Brescia, Italy
[3] Univ Cattolica Sacro Cuore, Dept Life Sci & Publ Hlth, Rome, Italy
[4] Fdn Policlin Univ A Gemelli IRCCS, Rome, Italy
关键词
IDIOPATHIC PULMONARY-FIBROSIS; ALVEOLAR EPITHELIAL-CELLS; PLURIPOTENT STEM-CELLS; A-CHIP PLATFORM; PROSTAGLANDIN E-2; PROGENITOR CELLS; GROWTH-FACTOR; FIBROBLASTS; DISEASE; TISSUE;
D O I
10.1183/16000617.0127-2023
中图分类号
R56 [呼吸系及胸部疾病];
学科分类号
摘要
Lung fibrosis is a complex process, with unknown underlying mechanisms, involving various triggers, diseases and stimuli. Different cell types (epithelial cells, endothelial cells, fibroblasts and macrophages) interact dynamically through multiple signalling pathways, including biochemical/molecular and mechanical signals, such as stiffness, affecting cell function and differentiation. Idiopathic pulmonary fibrosis (IPF) is the most common fibrosing interstitial lung disease (fILD), characterised by a notably high mortality. Unfortunately, effective treatments for advanced fILD, and especially IPF and non-IPF progressive fibrosing phenotype ILD, are still lacking. The development of pharmacological therapies faces challenges due to limited knowledge of fibrosis pathogenesis and the absence of pre -clinical models accurately representing the complex features of the disease. To address these challenges, new model systems have been developed to enhance the translatability of preclinical drug testing and bridge the gap to human clinical trials. The use of two- and three-dimensional in vitro cultures derived from healthy or diseased individuals allows for a better understanding of the underlying mechanisms responsible for lung fibrosis. Additionally, microfluidics systems, which replicate the respiratory system's physiology ex vivo, offer promising opportunities for the development of effective therapies, especially for IPF.
引用
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页数:21
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