Effect of corticotherapy on proteomics of endometrial fluid from mares susceptible to persistent postbreeding endometritis. 2012

C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
REPROLAB, Veterinary Faculty, University of Rio Grande do Sul, Brazil. cvetwolf@yahoo.com.br

The objective was to determine the effects of corticotherapy, in the presence and absence of uterine inflammation, on proteomics of endometrial fluid from mares susceptible to endometritis. In 11 mares, estrus was induced seven times with 5 mg PGF(2α) given at 14-day intervals. The first estrus was a control (no treatment). During the third estrus, mares received glucocorticoid (GC) treatment (20 mg isoflupredone acetate) every 12 h, for three consecutive days. The fifth estrus was the Infected treatment (intrauterine infusion of 1 × 10(9) colony-forming unit/mL Streptococcus equi subspecies zooepidemicus). Finally, the seventh was a combination of GC + Infected treatment (infusion of bacteria 24 h after the first GC treatment). At 12 h after the end of each treatment, uterine samples were collected and submitted to two-dimensional polyacrylamide gel electrophoresis (2D-PAGE) for protein separation and mass spectrometry. Both GC treatment and uterine lumen infection induced proteomic alterations in the endometrial fluid of susceptible mares, characterized by an increase, decrease, or both in the relative optic density and/or frequency of inflammatory acute phase proteins (APP), with major alterations occurring when corticotherapy was applied in the presence of an infectious process. Corticotherapy in the presence of infection increased α(1)-antitrypsin (AAT), transthyretin (TT), and actin, but reduced immunoglobulin G, whereas intrauterine infection increased haptoglobin (Hp) and apolipoprotein A-1 (ApoA-1) and decreased transferrin (TF). Infection reduced levels of α(1)-antitrypsin and transthyretin, whereas corticotherapy in the presence of infection increased their frequency. We concluded that GC influenced the immune response, not only as suppressors, but also as enhancers of local defense mechanisms, through an immunomodulatory action. Short-term corticotherapy could be beneficial for treatment of uterine infectious processes in the mare.

UI MeSH Term Description Entries
D004198 Disease Susceptibility A constitution or condition of the body which makes the tissues react in special ways to certain extrinsic stimuli and thus tends to make the individual more than usually susceptible to certain diseases. Diathesis,Susceptibility, Disease,Diatheses,Disease Susceptibilities,Susceptibilities, Disease
D004716 Endometritis Inflammation of the ENDOMETRIUM, usually caused by intrauterine infections. Endometritis is the most common cause of postpartum fever. Endomyometritis
D004717 Endometrium The mucous membrane lining of the uterine cavity that is hormonally responsive during the MENSTRUAL CYCLE and PREGNANCY. The endometrium undergoes cyclic changes that characterize MENSTRUATION. After successful FERTILIZATION, it serves to sustain the developing embryo. Endometria
D005260 Female Females
D005477 Fluprednisolone A synthetic glucocorticoid with anti-inflammatory properties.
D005938 Glucocorticoids A group of CORTICOSTEROIDS that affect carbohydrate metabolism (GLUCONEOGENESIS, liver glycogen deposition, elevation of BLOOD SUGAR), inhibit ADRENOCORTICOTROPIC HORMONE secretion, and possess pronounced anti-inflammatory activity. They also play a role in fat and protein metabolism, maintenance of arterial blood pressure, alteration of the connective tissue response to injury, reduction in the number of circulating lymphocytes, and functioning of the central nervous system. Glucocorticoid,Glucocorticoid Effect,Glucorticoid Effects,Effect, Glucocorticoid,Effects, Glucorticoid
D006734 Horse Diseases Diseases of domestic and wild horses of the species Equus caballus. Equine Diseases,Disease, Equine,Disease, Horse,Diseases, Equine,Diseases, Horse,Equine Disease,Horse Disease
D006736 Horses Large, hoofed mammals of the family EQUIDAE. Horses are active day and night with most of the day spent seeking and consuming food. Feeding peaks occur in the early morning and late afternoon, and there are several daily periods of rest. Equus caballus,Equus przewalskii,Horse, Domestic,Domestic Horse,Domestic Horses,Horse,Horses, Domestic
D000209 Acute-Phase Proteins Proteins that are secreted into the blood in increased or decreased quantities by hepatocytes in response to trauma, inflammation, or disease. These proteins can serve as inhibitors or mediators of the inflammatory processes. Certain acute-phase proteins have been used to diagnose and follow the course of diseases or as tumor markers. Acute Phase Reactant,Acute-Phase Glycoprotein,Acute-Phase Reactant,Acute-Phase Reactants,Proteins, Acute-Phase,Reactants, Acute-Phase,Acute-Phase Glycoproteins,Acute-Phase Protein,Acute Phase Glycoprotein,Acute Phase Glycoproteins,Acute Phase Protein,Acute Phase Proteins,Acute Phase Reactants,Glycoprotein, Acute-Phase,Glycoproteins, Acute-Phase,Phase Reactant, Acute,Protein, Acute-Phase,Proteins, Acute Phase,Reactant, Acute Phase,Reactant, Acute-Phase,Reactants, Acute Phase
D000515 alpha 1-Antitrypsin Plasma glycoprotein member of the serpin superfamily which inhibits TRYPSIN; NEUTROPHIL ELASTASE; and other PROTEOLYTIC ENZYMES. Trypsin Inhibitor, alpha 1-Antitrypsin,alpha 1-Protease Inhibitor,alpha 1-Proteinase Inhibitor,A1PI,Prolastin,Serpin A1,Zemaira,alpha 1 Antiprotease,alpha 1-Antiproteinase,1-Antiproteinase, alpha,Antiprotease, alpha 1,Inhibitor, alpha 1-Protease,Inhibitor, alpha 1-Proteinase,Trypsin Inhibitor, alpha 1 Antitrypsin,alpha 1 Antiproteinase,alpha 1 Antitrypsin,alpha 1 Protease Inhibitor,alpha 1 Proteinase Inhibitor

Related Publications

C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
September 2015, Theriogenology,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
October 2020, Theriogenology,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
March 2015, Equine veterinary journal,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
February 2017, Reproduction in domestic animals = Zuchthygiene,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
February 2022, Theriogenology,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
March 2012, BMC veterinary research,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
September 2012, Theriogenology,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
March 2013, Reproduction (Cambridge, England),
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
November 1988, Equine veterinary journal,
C A Wolf, and E Maslchitzky, and R M Gregory, and M I M Jobim, and R C Mattos
September 1987, Veterinary immunology and immunopathology,
Copied contents to your clipboard!