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Pharmacological Preconditioning with Diazoxide in the Experimental Hypothermic Circulatory Arrest Model

Haapanen H; Juvonen T; Anttila T; Herajarvi J; Anttila V; Kiviluoma K; Karihtala P; Tuominen H; Arvola O; Puistola U

Pharmacological Preconditioning with Diazoxide in the Experimental Hypothermic Circulatory Arrest Model

Haapanen H
Juvonen T
Anttila T
Herajarvi J
Anttila V
Kiviluoma K
Karihtala P
Tuominen H
Arvola O
Puistola U
Katso/Avaa
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FORUM MULTIMEDIA PUBLISHING, LLC
doi:10.1532/hsf.1717
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2021042716918
Tiivistelmä
Background: Hypothermic circulatory arrest includes a remarkable risk for neurological injury. Diazoxide, a mitochondrial adenosine triphosphate-dependent potassium ion (K+ATP) channel opener, is known to have cardioprotective effects. We assessed its efficacy in preventing ischemic injury in a clinically relevant animal model.Methods: Eighteen piglets were randomized into a diazoxide group (n = 9) and a control group (n = 9). Animals underwent 60 minutes of hypothermic circulatory arrest at 18 degrees C. Diazoxide (5 mg/kg + 10 mL NaOH + 40 mL NaCl) was infused during the cooling phase. Metabolic and hemodynamic data were collected throughout the experiment. After 24-hour follow-up, whole brain, heart, and kidney biopsy specimens were collected for analysis.Results: Cerebellar Cytochrome-C and caspase-3 activation was higher in the control group (P = .02 and P = .016, respectively). Antioxidant activity tended to be higher in the diazoxide group (P = .099). Throughout the experiment, the oxygen consumption ratio was higher in the control animals (P-g = .04), as were the lactate levels (P-g = .02). Cardiac function tended to be better in diazoxide-treated animals.Conclusion: Diazoxide might confer neuroprotective effect as implied by the immunohistochemical analysis of the brain. Additionally, the circulatory effects of diazoxide were beneficial, supporting its neuroprotective effect.
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