The effect of continuous digital hypothermia on lamellar energy metabolism and perfusion during laminitis development in two experimental models

Background Continuous digital hypothermia (CDH) prevents lamellar failure in the euglycaemic hyperinsulinaemic clamp (EHC) and oligofructose (OF) laminitis models, but the mechanisms remain unclear. Objectives To evaluate the effects of CDH on lamellar energy metabolism and perfusion in healthy hors...

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Veröffentlicht in:Equine veterinary journal 2020-07, Vol.52 (4), p.585-592
Hauptverfasser: Stokes, Simon M., Bertin, Francois‐Rene, Stefanovski, Darko, Poulsen, Lea, Belknap, James K., Medina‐Torres, Carlos E., Pollitt, Christopher C., van Eps, Andrew W.
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Sprache:eng
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Zusammenfassung:Background Continuous digital hypothermia (CDH) prevents lamellar failure in the euglycaemic hyperinsulinaemic clamp (EHC) and oligofructose (OF) laminitis models, but the mechanisms remain unclear. Objectives To evaluate the effects of CDH on lamellar energy metabolism and perfusion in healthy horses and during EHC and OF laminitis models. Study design In vivo experiment. Methods Archived samples were used from Standardbred geldings that received no treatment (CON) (n = 8) or underwent EHC (n = 8) or OF (n = 6) laminitis models. Both forelimbs were instrumented with a lamellar microdialysis system, and one forelimb was cooled (CDH) with the other maintained at ambient temperature (AMB). Microdialysate was collected every 6 hours and analysed for glucose, lactate and pyruvate concentrations and lactate to pyruvate ratio (L:P). Microdialysis urea clearance was used to estimate lamellar tissue perfusion. Data were analysed using a mixed‐effects linear regression model. Results Glucose did not change in CDH limbs relative to AMB in CON (P = .3), EHC (P = .3) or OF (P = .6) groups. There was a decrease in lactate (P 
ISSN:0425-1644
2042-3306
DOI:10.1111/evj.13215