Cell-contact-mediated assembly of contractile airway smooth muscle rings.
Jonathan TjongStefan PendlmayrJena BarterJulie ChenGeoffrey N MaksymT Alexander QuinnJohn P FramptonPublished in: Biomedical materials (Bristol, England) (2023)
Microtissues in the shape of toroidal rings provide an ideal geometry to better represent the structure and function of the airway smooth muscle present in the small airways, and to better understand diseases such as asthma. Here, polydimethylsiloxane devices consisting of a series of circular channels surrounding central mandrels are used to form microtissues in the shape of toroidal rings by way of the self-aggregation and -assembly of airway smooth muscle cell (ASMC) suspensions. Over time, the ASMCs present in the rings become spindle-shaped and axially align along the ring circumference. Ring strength and elastic modulus increase over 14 d in culture, without significant changes in ring size. Gene expression analysis indicates stable expression of mRNA for extracellular matrix-associated proteins, including collagen I and laminins α 1 and α 4 over 21 d in culture. Cells within the rings respond to TGF- β 1 treatment, leading to dramatic decreases in ring circumference, with increases in mRNA and protein levels for extracellular matrix and contraction-associated markers. These data demonstrate the utility of ASMC rings as a platform for modeling diseases of the small airways such as asthma.
Keyphrases
- smooth muscle
- extracellular matrix
- body mass index
- chronic obstructive pulmonary disease
- single cell
- cystic fibrosis
- binding protein
- cell therapy
- induced apoptosis
- lung function
- poor prognosis
- genome wide identification
- copy number
- physical activity
- gene expression
- high throughput
- transforming growth factor
- skeletal muscle
- machine learning
- allergic rhinitis
- electronic health record
- mesenchymal stem cells
- long non coding rna
- epithelial mesenchymal transition
- signaling pathway
- cell proliferation
- cell death
- protein protein
- bone marrow
- artificial intelligence
- smoking cessation