Lung-on-chip microdevices to foster pulmonary drug discovery

Respiratory diseases account for unprecedented mortality owing to a lack of personalized or insufficient therapeutic interventions. Fostering pulmonary research into managing pulmonary threat requires a potential alternative approach that can mimick the in vivo complexities of the human body. The in...

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Veröffentlicht in:Biomaterials science 2023-01, Vol.11 (3), p.777-79
Hauptverfasser: Sisodia, Yashi, Shah, Komal, Ali Sayyed, Adil, Jain, Meenakshi, Ali, Syed Ansar, Gondaliya, Piyush, Kalia, Kiran, Tekade, Rakesh Kumar
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Sprache:eng
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Zusammenfassung:Respiratory diseases account for unprecedented mortality owing to a lack of personalized or insufficient therapeutic interventions. Fostering pulmonary research into managing pulmonary threat requires a potential alternative approach that can mimick the in vivo complexities of the human body. The in vitro miniaturized bionic simulation of the lung holds great potential in the quest for a successful therapeutic intervention. This review discusses the emerging roles of lung-on-chip microfluidic simulator devices in fostering translational pulmonary drug discovery and personalized medicine. This review also explicates how the lung-on-chip model emulates the breathing patterns, elasticity, and vascularization of lungs in creating a 3D pulmonary microenvironment. Fostering pulmonary research for managing pulmonary threat requires a potential alternative approach mimicking the in vivo complexities. This review expounds on lung-on-chip microfluidic simulator devices to foster pulmonary drug discovery and personalized medicine.
ISSN:2047-4830
2047-4849
DOI:10.1039/d2bm00951j