Universität Leipzig
Influence of body weight gain on insulin regulation, adipose tissue inflammation and lipid metabolism in equines
Abstract
dc:description.abstractIntroduction: Obesity and its related comorbidities such as insulin dysregulation (ID), laminitis and hperlipaemia are increasing health issues in equines. In human medicine obesity is linked with a systemic inflammation deriving from adipose tissue (AT). Especially abdominal AT produces inflammatory cytokines and is therefore a risk factor for metabolic diseases in humans. However, in equines systemic inflammation linked to obesity is still controversial. Changes in lipid metabolism with increasing obesity are not well documented in equines. Aim of the study: The aim of the present study was to evaluate the following hypotheses: (1) ID develops with the long-term intake of a hypercaloric diet and alters lipid metabolism. (2) In the development of obesity macrophages are infiltrating AT and amounts of inflammatory cytokines in AT increase. These alterations are more pronounced in the subcutaneous (sc) AT depots compared to abdominal AT depots. Additionally, the amount of markers of lipid transport are influenced by BW gain in AT. (3) Ponies are more prone to produce inflammatory markers in AT, which may explain the higher predisposition for metabolic alterations. Materials and Methods: 19 healthy and normal weight geldings were included in this study (age at the start of the study: 8 ± 3 years): 10 Shetland ponies and 9 Warmblood horses. Over a period of two years equines received 200% of their maintenance energy requirements of metabolizable energy. 60% of the energy was provided by hay and 40% by a compound feed. Monthly energy requirements were calculated according to the increasing BW and rations were adjusted accordingly. During hypercaloric diet body weight (BW), body condition score (BCS) and cresty neck score (CNS) were assessed weekly. Before and after one and two year(s) of hypercaloric diet a combined glucose insulin test (CGIT) was performed and blood and AT samples (abdominal AT: retroperitoneal, mesocolon descendens; sc AT: nuchal crest, lateral to the tail head) were taken. AT samples were taken under general anesthesia 3-5 days after CGIT and 15 hours after a low-dose endotoxin infusion. Glucose was analysed in natrium fluoride plasma. Serum amyloid A (SAA), insulin, non-esterified fatty acids (NEFA) and triglycerides were measured in serum. Levels of inflammatory parameters (CD68, IL-1β, IL-6, TNFα) and markers of lipid metabolism (FABP4, LPL) were analyzed in AT samples by RT-qPCR. The project was approved by the Ethics Committee for Animal Rights Protection of the Leipzig District Government (No. TVV 32/15). Data were analysed for normal distribution by Shapiro-Wilks test. Statistical tests were applicated accordingly. Results: Ponies and horses showed a significant increase in BW (24%), BCS and CNS with hypercaloric diet. Two years of hypercaloric diet induced ID in 3 out of 19 equines (two horses, one pony). Two of these equines additionally developed laminitis (one horse, one pony) during the second year of hypercaloric diet. Basal serum NEFA concentrations increased in ponies by 290% but not in horses with BW gain. Laminitic equines showed an altered development of serum NEFA levels during CGIT with a delayed rise at the end of CGIT. The BW gain had no impact on SAA concentration of ponies and horses. CD68 mRNA levels increased in several AT depots of both breed types with BW gain. IL-1β, IL-6 and TNFα showed similar or decreased mRNA levels after BW gain compared to basal measurements in all AT. CD68 mRNA level were higher in abdominal AT compared to sc AT at the end of the study. However, IL-1β, IL-6 and TNFα mRNA levels were higher in sc AT. LPL and FABP4 mRNA levels were higher or similar after BW gain. Higher levels of LPL and FABP4 mRNA were detected in sc AT depots compared to abdominal AT. Breed related differences were seen but were not consistent. Conclusions: A BW gain of 24% over two years does not necessarily lead to ID in horses or ponies. However, laminitis might be correlated with changes of NEFA curve during a CGIT. Equine obesity is linked with macrophage infiltration of AT that is more pronounced in abdominal AT depots in equines. However, infiltrating macrophages are not linked with a systemic inflammation.
Degree
thesis:*- Level thesis:degree_level
- thesis.doctoral
- Grantor dc:publisher
- Universität Leipzig
- Year
- 2020
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Blaue, Dominique Doris