Key result
Human subglottic stenosis tissue showed statistically significant elevations in proinflammatory cytokines compared to control bronchus, validating a murine model of the disease.
Why the study?
Does the inflammatory protein expression in human subglottic stenosis tissue mirror that in a murine model?
Observational (n=10)
Does the inflammatory protein expression in human subglottic stenosis tissue mirror that in a murine model?
The protein expression profile in human subglottic stenosis mirrors that of a murine model, validating the model for future translational research.
Validates murine model for mechanistic studies; leaves open whether cytokine modulation will alter human subglottic stenosis outcomes.
OBJECTIVES: We undertook to describe the genetic and protein composition of subglottic stenosis (SGS) by measuring an array of protein expression and messenger RNA levels within human SGS tissue. We also sought to compare this human array to cytokine expression from a murine model of SGS in order to confirm the effective translational nature of our animal model. METHODS: Human granulation tissue from 10 patients with early symptomatic SGS was compared to control bronchus. The expression levels of 24 different cytokines were measured by a Luminex protein assay and real-time polymerase chain reaction. RESULTS: The protein expression in human SGS mirrors that seen in murine SGS. Transforming growth factor β1, interleukin 1β, and matrix metalloproteinase 9 were markedly elevated in both human and mouse SGS tissues. The protein array showed a statistically significant elevation in the proinflammatory cytokines tumor necrosis factor α, interleukin 1, granulocyte macrophage colony-stimulating factor, and interferon γ. CONCLUSIONS: This is the first study, to our knowledge, to measure an array of protein expression within human SGS tissue. The expression profile suggests that symptomatic tracheal granulation tissue is mostly within the early inflammatory phase of wound healing and has only begun fibrotic and angiogenic remodeling. This study validates our murine model of SGS, and also helps to define the exact pathways of tissue injury, in the hope of leading to new treatments for this difficult condition.
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Haft et al. (2014) conducted an observational in Subglottic stenosis (n=10). Early symptomatic subglottic stenosis vs. Control bronchus was evaluated on Expression levels of 24 different cytokines. Human subglottic stenosis tissue showed statistically significant elevations in proinflammatory cytokines compared to control bronchus, validating a murine model of the disease.