Key result
Methylene blue shows theoretical promise as an adjunct for amine-resistant vasoplegia in severe burns.
Why the study?
Severe burns can cause vasoplegic syndrome characterized by persistent vasodilation and hypotension resistant to catecholamines, with limited treatment options.
Does methylene blue improve outcomes in patients with severe burns and catecholamine-resistant vasoplegic syndrome?
Does methylene blue improve outcomes in patients with severe burns and catecholamine-resistant vasoplegic syndrome?
This medical hypothesis proposes methylene blue as a viable co-adjuvant therapy for catecholamine-resistant vasoplegia in severe burn patients.
Hypothesis-generating for methylene blue in burn vasoplegia; leaves open efficacy and safety pending RCTs.
Today it is known that severe burns can be accompanied by the phenomenon of vasoplegic syndrome (VS), which is manifested by persistent and diffuse vasodilation, hypotension and low vascular resistance, resulting in circulatory and respiratory failure. The decrease in systemic vascular resistance observed in VS is associated with excessive production of nitric oxide (NO). In the last 2 decades, studies have reported promising results from the administration of an NO competitor, methylene blue (MB), which is an inhibitor of the soluble guanylate cyclase (sGC), in the treatment of refractory cases of vasoplegia. This medical hypothesis rationale is focused on the tripod of burns/vasoplegia catecholamine resistant/methylene blue. This article has 3 main objectives: 1) to study the guanylate cyclase inhibition by MB in burns; 2) to suggest MB as a viable, safe and useful co-adjuvant therapeutic tool of fluid resuscitation, and; 3) to suggest MB as burns hypotensive vasoplegia amine-resistant treatment.
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Farina et al. (2012) studied Severe burns with vasoplegic syndrome. Methylene blue was evaluated. This medical hypothesis proposes methylene blue as a viable co-adjuvant therapeutic tool for fluid resuscitation and amine-resistant hypotensive vasoplegia in severe burns.
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