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Effect of rhSOD on pulmonary nuclear factor-kappa B and MIP-1α expression in meconium-induced acute lung injury
Authors:LU Mei-ping  DU Li-zhong  CHEN Xiang-xiang  YU Zhen-zhu
Affiliation:The Children's Hospital of Zhejiang University School of Medicine, Hangzhou 310003, China
Abstract:AIM: To evaluate the role and mechanisms of recombinant human superoxide dismutase (rhSOD) in meconium-induced acute lung injury (ALI) by evaluating pulmonary MIP-1α and NF-κB expression. METHODS: 24 health male Sprage-Dawley rats were randomized to 3 groups (8, each group), followed by intratracheal (IT) administration with (1) saline at 1 mL/kg (control group); (2) 20% human newborn meconium suspension at 1 mL/kg, followed by saline at 1 mL/kg (Mec/saline group); (3) 20% human newborn meconium suspension at 1mL/kg, followed by rhSOD at 20 mg/kg (Mec/rhSOD group). The animal was killed 24 h after treatment. The measurements included the bronchoalveolar lavage (BAL) cell count, RT-PCR analysis of pulmonary MIP-1α mRNA expression, Western blotting analysis of pulmonary NF-κB expression. RESULTS: Meconium-induced ALI was characterized by increased BAL cell count, increased expressions of pulmonary MIP-1α mRNA and NF-κB protein [(4.68±1.40)×109 cells/L vs (0.53±0.19)×109 cells/L, 3.60±0.75 vs 1.56±0.33, 0.72±0.31 vs 0.23±0.12, respectively in control rats, all P<0.01]. IT administration of rhSOD early in the ALI rat significantly decreased meconium-induced BAL cell count [(3.13±0.77)×109 cells/L vs (4.68±1.40)×109 cells/L in Mec/saline rats, P<0.01], inhibited the expression of pulmonary MIP-1α mRNA (2.20±0.39 vs 3.60±0.75, in Mec/saline rats, P<0.01) and NF-κB protein (0.44±0.21 vs 0.72±0.31 in Mec/saline rats, P<0.05). CONCLUSION: The early IT administration of rhSOD in ALI rat following meconium aspiration protects lung from inflammatory injury through inhibiting meconium-induced pulmonary MIP-1α mRNA and NF-κB protein expression.
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