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Serum Proteomic Profiles Reflect the Stages of Myxomatous Mitral Valve Disease in Dogs. | LitMetric

AI Article Synopsis

  • Canine myxomatous mitral valve disease (MMVD) shows similarities to a type of heart disease in humans called Barlow's disease, and its progression can vary significantly among dogs.
  • A study investigated the serum proteins of healthy dogs versus those with different stages of MMVD, classifying them based on specific heart measurements to identify distinct protein patterns related to disease onset and progression.
  • The analysis revealed 21 serum proteins significantly differing in abundance among the groups, most of which are involved in immune and inflammatory responses, indicating their potential role in the structural changes that occur during MMVD.

Article Abstract

Canine myxomatous mitral valve disease (MMVD) is similar to Barlow's form of MMVD in humans. These valvulopathies are complex, with varying speeds of progression. We hypothesized that the relative abundances of serum proteins would help identify the consecutive MMVD stages and discover new disease pathways on a systemic level. To identify distinction-contributing protein panels for disease onset and progression, we compared the proteomic profiles of serum from healthy dogs and dogs with different stages of naturally occurring MMVD. Dogs were divided into experimental groups on the basis of the left-atrium-to-aorta ratio and normalized left ventricular internal dimension in diastole values. Serum was collected from healthy (N = 12) dogs, dogs diagnosed with MMVD in stages B1 (N = 13) and B2 (N = 12) (asymptomatic), and dogs diagnosed with MMVD in chronic stage C (N = 13) (symptomatic). Serum biochemistry and selected ELISAs (galectin-3, suppression of tumorigenicity, and asymmetric dimethylarginine) were performed. Liquid chromatography-mass spectrometry (LC-MS), tandem mass tag (TMT) quantitative proteomics, and statistical and bioinformatics analysis were employed. Most of the 21 serum proteins with significantly different abundances between experimental groups ( < 0.05, FDR ˂ 0.05) were classified as matrix metalloproteinases, protease inhibitors, scaffold/adaptor proteins, complement components, anticoagulants, cytokine, and chaperone. LC-MS TMT proteomics results obtained for haptoglobin, clusterin, and peptidase D were further validated analytically. Canine MMVD stages, including, for the first time, asymptomatic B1 and B2 stages, were successfully distinguished in dogs with the disease and healthy dogs on the basis of the relative abundances of a panel of specific serum proteins. Most proteins with significantly different abundances were involved in immune and inflammatory pathways. Their role in structural remodeling and progression of canine MMVD must be further investigated. Further research is needed to confirm the resemblance/difference with human MMVD. Proteomics data are available via ProteomeXchange with the unique dataset identifier PXD038475.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138901PMC
http://dx.doi.org/10.3390/ijms24087142DOI Listing

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