PetCaseFinder

Peer-reviewed veterinary case report

How weight loss lowers inflammation markers in dogs

By Wakshlag, Joseph J et al.·Published in The British journal of nutrition·2011·Department of Clinical Sciences, United States·View original on PubMed

PetCaseFinder translated the abstract of this peer-reviewed paper into plain English so pet owners can read it. We do not publish original research — every detail traces back to the citation above. How we work →

Original publication title: The effects of weight loss on adipokines and markers of inflammation in dogs.

Species:
dog
Canine obesityAppetite & weightDogs

Plain-English summary

A group of 25 dogs underwent a weight-loss program to see how it affected their health markers related to inflammation and insulin resistance. Before losing weight, these dogs had higher levels of certain inflammatory markers in their blood, but after the program, levels of C-reactive protein and monocyte chemoattractant protein decreased significantly, indicating reduced inflammation. Leptin, a hormone linked to fat storage, also dropped dramatically after weight loss. While the weight loss helped reduce inflammation, the study found no increase in other beneficial markers, which might explain why dogs don’t develop diabetes as often as humans or cats.

People also search for: dog weight loss benefits · dog inflammation markers · how to help my dog lose weight · dog diabetes prevention · weight loss program for dogs

Abstract

Evidence suggests that adipose tissue-derived adipokines induce mild inflammation and may play a role in insulin resistance associated with diabetes. The present study was designed to examine a series of adipokines and markers of inflammation in dogs before and after a successful weight loss. The study included fasting serum samples from twenty-five dogs before and after a weight-loss programme. Serum C-reactive protein (CRP) and monocyte chemoattractant protein-1 (MCP-1) were measured as indicators of chronic inflammation, while serum adipokines including total adiponectin, high-molecular-weight (HMW) adiponectin, resistin and leptin were also examined. Medians for CRP (before, 10.0 (interquartile range 5.4-15.0) μg/ml; after, 5.6 (interquartile range 3.8-7.0) μg/ml) and MCP-1 (before, 212 (interquartile range 157-288) ng/ml; after, 185 (interquartile range 143-215) ng/ml) decreased significantly after weight loss. Medians for resistin showed a mild, yet significant reduction (before, 67.1 (interquartile range 44.4-88.5) pg/ml; after, 60.5 (interquartile range 32.3-67.1) pg/ml), while leptin showed a dramatic decrease after weight loss (before, 18.9 (interquartile range 10.8-35.4) ng/ml; after, 6.6 (interquartile range 3.9-10.2) ng/ml). Serum total adiponectin and HMW adiponectin were unchanged on all analyses performed. These data suggest that weight loss can decrease chronic inflammation; however, the clinical implications of this decrease are not well elucidated in dogs. Surprisingly, there was no increase in total or HMW serum adiponectin after weight loss, as observed previously in human subjects. The lack of change in total and HMW adiponectin might explain why insulin resistance and type 2 diabetes are less prevalent in obese dogs when compared with humans and cats.

Find similar cases for your pet

PetCaseFinder finds other peer-reviewed reports of pets with the same symptoms, plus a plain-English summary of what was tried across them.

Search related cases →

Original publication on PubMed: https://pubmed.ncbi.nlm.nih.gov/22005402/