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Lamellar perfusion and energy metabolism in a preferential weight bearing model.

Authors :
van Eps AW
Belknap JK
Schneider X
Stefanovski D
Engiles JB
Richardson DW
Zedler ST
Medina-Torres CE
Watts MR
Source :
Equine veterinary journal [Equine Vet J] 2021 Jul; Vol. 53 (4), pp. 834-844. Date of Electronic Publication: 2020 Oct 29.
Publication Year :
2021

Abstract

Background: Supporting limb laminitis (SLL) is suspected to be caused by lamellar ischaemia as a consequence of increased mechanical load.<br />Objectives: Examine the effects of prolonged preferential weight bearing (PWB) on lamellar perfusion and metabolism.<br />Study Design: In vivo experiment.<br />Methods: Microdialysis probes were inserted in the lamellar and sublamellar dermis of one forelimb in 13 Standardbred horses. In six horses, a platform shoe (contralateral forelimb) was used to induce increased load on the microdialysis-instrumented forelimb (PWB). The remaining seven horses were controls (CON). All horses were housed in stocks with limb weight distribution logged continuously for 92 hours. Microdialysate was collected and analysed every 4 hours for glucose, lactate, pyruvate, and lactate to pyruvate ratio (L:P). Microdialysis urea clearance was used to estimate lamellar perfusion. Data were analysed using a mixed-effects linear regression model.<br />Results: Median [IQR] load on the microdialysis-instrumented limb was equivalent to 38.7% bwt. [37.3-40.3] in PWB and 27.3% bwt. [26.6-28] in CON. Limb offloading frequency increased in CON (P < .001) but not PWB (P = .2). Lamellar microdialysate glucose decreased in PWB (P < .001) and CON (P = .004), however, the rate of decrease was higher in PWB (P = .007). Lamellar L:P increased in PWB (P < .001) and peaked at 196 [79-656], whereas L:P did not change over time in CON (P = .6) and peaked at 42 [41-49]. Lamellar urea clearance decreased in PWB (P < .001) but not in CON (P = .3). Sublamellar L:P and urea clearance did not change over time in either group (P > .05).<br />Main Limitations: The PWB model may not be representative of naturally occurring SLL.<br />Conclusions: Evidence of lamellar ischaemia (increased L:P and decreased urea clearance) was detected exclusively in the lamellar dermis of PWB feet subjected to persistently increased load. Lamellar ischaemia is a consequence of increased mechanical load and likely contributes to the development of SLL.<br /> (© 2020 EVJ Ltd.)

Details

Language :
English
ISSN :
2042-3306
Volume :
53
Issue :
4
Database :
MEDLINE
Journal :
Equine veterinary journal
Publication Type :
Academic Journal
Accession number :
32986263
Full Text :
https://doi.org/10.1111/evj.13356