Doxycycline reduces liver and kidney injuries in a rat hemorrhagic shock model

Author:

Sordi Regina,Bojko Luana,Oliveira Filipe R. M. B.,Rosales Thiele Osvaldt,Souza Camila Fernandes,Moreno Lucas Wenceslau,Ferreira Alves Gustavo,Vellosa José Carlos Rebuglio,Fernandes Daniel,Gomes Jose RosaORCID

Abstract

Abstract Background Hemorrhagic shock (HS), which causes insufficient tissue perfusion, can result in multiple organ failure (MOF) and death. This study aimed to evaluate whether doxycycline (DOX) protects cardiovascular, kidney, and liver tissue from damage in a rat model of HS. Immediately before the resuscitation, DOX (10 mg/kg; i.v.) was administered, and its protective effects were assessed 24 h later. Mean arterial pressure, renal blood flow, heart rate, vasoactive drug response, and blood markers such as urea, creatinine, AST, ALT, CPK, CPR, and NOx levels were determined. Results We showed that DOX has a significant effect on renal blood flow and on urea, creatinine, AST, ALT, CPK, and NOx. Morphologically, DOX reduced the inflammatory process in the liver tissue. Conclusions We conclude that DOX protects the liver and kidney against injury and dysfunction in a HS model and could be a strategy to reduce organ damage associated with ischemia-and-reperfusion injury.

Funder

CNPq

Publisher

Springer Science and Business Media LLC

Subject

Critical Care and Intensive Care Medicine

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