Affiliation:
1. Department of Surgery, Burn and Shock Trauma Research Institute, Loyola University Chicago, Stritch School of Medicine, Maywood, IL, USA
Abstract
Several diseases induce hypermetabolism, which is characterized by increases in resting energy expenditures (REE) and whole body protein loss. Exaggerated protein degradation is thought to be the driving force underlying this response. The effects of caspase and calpain inhibitors on REE in physiological and hypermetabolic conditions, however, are unknown. Thus, we studied whether MDL28170 (calpain inhibitor) or z-VAD-fmk (caspase inhibitor) affect REE under physiological conditions and during hypermetabolism post-burn. Rats were treated five times weekly and observed for 6 weeks. Treatment was started 2 h (early) or 48 h (late) after burn. In normal rats, MDL28170 transiently increased REE to 130 % of normal during week 2-4. z-VAD-fmk reduced REE by 20-25 % throughout the observation period. Within 14 days after burns, REE increased to 130±5 %. Whereas MDL28170/early treatment did not affect REE, MDL28170/late transiently increased REE to 180±10 % of normal by week 4 post-burn. In contrast, with z-VAD-fmk/early REE remained between 90-110 % of normal post-burn. z-VAD-fmk/late did not affect burn-induced increases in REE. These data suggest that caspase cascades contribute to the development of hypermetabolism and that burn-induced hypermetabolism can be pharmacologically modulated. Our data point towards caspase cascades as possible therapeutic targets to attenuate hypermetabolism after burns, and possibly in other catabolic disease processes.
Publisher
Institute of Physiology of the Czech Academy of Sciences
Subject
General Medicine,Physiology
Reference27 articles.
1. BIOLO G, FLEMING RY, MAGGI SP, NGUYEN TT, HERNDON DN, WOLFE RR: Inverse regulation of protein turnover and amino acid transport in skeletal muscle of hypercatabolic patients. J Clin Endocrinol Metab 87: 3378-3384, 2002.
2. CARLSON DE, CIOFFI WG JR, MASON AD JR, MCMANUS WF, PRUITT BA JR: Resting energy expenditure in patients with thermal injuries. Surg Gynecol Obstet 174: 270-276, 1992.
3. CHAO T, HERNDON DN, PORTER C, CHONDRONIKOLA M, CHAIDEMENOU A, ABDELRAHMAN DR, BOHANON FJ, ANDERSEN C, SIDOSSIS LS: Skeletal muscle protein breakdown remains elevated in pediatric burn survivors up to one-year post-injury. Shock 44: 397-401, 2015.
4. COHEN S, NATHAN JA, GOLDBERG AL: Muscle wasting in disease: molecular mechanisms and promising therapies. Nat Rev Drug Discov 14: 58-74, 2015.
5. COSTELLI P, REFFO P, PENNA F, AUTELLI R, BONELLI G, BACCINO FM: Ca(2+)-dependent proteolysis in muscle wasting. Int J Biochem Cell Biol 37: 2134-2146, 2005.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献