Ppara null mice had dramatically reduced 7-day survival compared with wild-type mice in experimental polymicrobial sepsis (3% vs 63%; p < 0.0001), irrespective of bone marrow Ppara status.
RCT
Randomized
Does nonhematopoietic PPAR-α expression improve survival and protect against cardiac injury in a mouse model of polymicrobial sepsis?
Nonhematopoietic PPAR-α expression plays a critical role in survival during experimental polymicrobial sepsis, likely by preventing cardiac injury from inadequate fatty acid oxidation.
Absolute Event Rate: 3% vs 63%
p-value: p=< 0.0001
OBJECTIVES: Peroxisome proliferator-activated receptor-α is significantly down-regulated in circulating leukocytes from children with sepsis. Peroxisome proliferator-activated receptor-α null (Ppara) mice have greater mortality than wild-type mice when subjected to sepsis by cecal ligation and puncture. We sought to characterize the role of peroxisome proliferator-activated receptor-α in sepsis and to identify the mechanism whereby peroxisome proliferator-activated receptor-α confers a survival advantage. DESIGN: Prospective randomized preclinical study. SETTING: Laboratory investigation. SUBJECTS: Male C57Bl/6J and Ppara mice (B6.129S4-Ppara/J), aged 12-16 weeks. INTERVENTIONS: Bone marrow chimeric mice were generated and subjected to cecal ligation and puncture. Survival was measured for 7 days. Separate groups of nontransplanted mice underwent cecal ligation and puncture and were euthanized 24 hours later for plasma and tissue analyses. MEASUREMENTS AND MAIN RESULTS: Ppara mice had dramatically reduced survival compared with wild-type mice irrespective of the peroxisome proliferator-activated receptor-α status of the bone marrow they received (3% vs 63%; p < 0.0001). No difference in survival was observed between Ppara mice that received wild-type versus Ppara marrow or in wild-type mice receiving wild-type versus Ppara marrow. In septic, nontransplanted mice at 24 hours, Ppara mice had elevated cardiac troponin levels compared with wild-type mice. Cardiac histologic injury scores were greater in Ppara versus wild-type mice. Expression of transcription factors and enzymes related to fatty acid oxidation in the heart were profoundly down-regulated in both wild-type and Ppara mice, but more so in the Ppara mice. CONCLUSIONS: Peroxisome proliferator-activated receptor-α expression in nonhematopoietic tissues plays a critical role in determining clinical outcome in experimental polymicrobial sepsis and is more important to survival in sepsis than hematopoietic peroxisome proliferator-activated receptor-α expression. Cardiac injury due to inadequate energy production from fatty acid substrate is a probable mechanism of decreased survival in Ppara mice. These results suggest that altered peroxisome proliferator-activated receptor-α-mediated cellular metabolism may play an important role in sepsis-related end-organ injury and dysfunction, especially in the heart.
Standage et al. (Tue,) conducted a rct in Experimental Polymicrobial Sepsis. Ppara null mutation vs. Wild-type mice was evaluated on Survival at 7 days (p=< 0.0001). Ppara null mice had dramatically reduced 7-day survival compared with wild-type mice in experimental polymicrobial sepsis (3% vs 63%; p < 0.0001), irrespective of bone marrow Ppara status.