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Former Preterm Lambs have Persistent Alveolar Simplification at 2 and 5 Months Corrected Postnatal Age.

Preterm birth and mechanical ventilation (MV) frequently lead to bronchopulmonary dysplasia, the histopathological hallmark of which is alveolar simplification. How developmental immaturity and ongoing injury, repair, and remodeling impact completion of alveolar formation later in life is not known, in part because of lack of suitable animal models. We report a new model using former preterm lambs to test the hypothesis that they will have persistent alveolar simplification later in life. Moderately preterm lambs (~85% gestation) were supported by MV for ~6 days before being transitioned from all respiratory support to become former preterm lambs. Results are compared to term control lambs that were not ventilated, and between males (M) and females (F). Alveolar simplification was quantified morphometrically and stereologically at 2 months (4M:4F) or 5 months (4M:6F) corrected postnatal age (cPNA) compared to unventilated, age-matched term control lambs (4M:4F per control group). These postnatal ages in sheep are equivalent to human postnatal ages of 1-2 years and ~6 years, respectively. Multivariable linear regression results showed that former preterm lambs at 2 or 5 months cPNA had significantly thicker distal airspace walls (p<0.001 and p<0.009, respectively), lower volume density of secondary septa (p<0.007 and p<0.001, respectively), and lower radial alveolar count (p<0.003 and p<0.020, respectively) compared to term control lambs. Sex-specific differences were not detected. We conclude that moderate preterm birth and MV for ~6 days impedes completion of alveolarization in former preterm lambs. This new model provides opportunity to identify underlying pathogenic mechanisms that may reveal treatment approaches.

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