Literature DB >> 1200445

Measurement of phagocytosis of 32P-labeled Staphylococcus aureus by bovine leukocytes: lysostaphin digestion and inhibitory effect of cream.

M J Paape, A J Guidry, S T Kirk, D J Bolt.   

Abstract

A procedure to measure phagocytosis by blood and milk neutrophils was developed. One milliliter of heat-killed 32P-labeled Staphylococcus aureus ([32P]SA) (180-200 X 10(6) CFU), 1 ml of phosphate-buffered saline solution (PBSS), and 2 ml of serum, whole milk, skimmed milk, whey, or PBSS were incubated in duplicate for 60 minutes at 37 C. Isolated blood or milk nuetrophils (polymorphonuclear leukocytes (PMN), 25 X 10(6) cells/ml; 1 ml) were added and incubated at 37 C for 30 minutes. Unphagocytosed [32P]SA organisms were lysed by incubation with 5 ml of lysostaphin (10 U) at 37 C for 30 minutes, and the PMN and phagocytosed T2P]SA were removed by centrifugation. Radioactivity of the supernatant was determined in a scintillation spectrometer and was used in estimate the percentage of [32P]SA phogocytosed. With this procedure, 25 assays in duplicate could be conducted each day with an expected coefficient of variation between duplicates of 5.6%. Blood PMN phagocytosed 80, 44, 74, 72, and 11% of the [32P]SA when incubated in serum, whole milk, skimmed milk, whey, and PBSS, respectively. Mik PMN phagocytosed 78, 44, 72, 74, and 22%, respectively. The addition of cream to either skimmed milk or serum reduced phagocytosis of [32P]SA by both blood and milk PMN. The inhibitory effect of cream was verified by the microscopic observation that PMN containing large quantities of ingested fat contained fewer S aureus. Seemingly, PMN upon entering the alveoli of the mammary gland become less efficiently phagocytic for bacteria, because of the presence of milk fat globules. This phef intramammary infection by invading mastitic pathogens.

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Year:  1975        PMID: 1200445

Source DB:  PubMed          Journal:  Am J Vet Res        ISSN: 0002-9645            Impact factor:   1.156


  6 in total

Review 1.  Defense of the bovine mammary gland by polymorphonuclear neutrophil leukocytes.

Authors:  Max Paape; Jalil Mehrzad; Xin Zhao; Johann Detilleux; Christian Burvenich
Journal:  J Mammary Gland Biol Neoplasia       Date:  2002-04       Impact factor: 2.673

2.  Enquête éco-pathologique continue: facteurs de risque des mammites de la vache laitière II. Analyses complémentaires sur données individuelles et d'élevage.

Authors:  J Barnouin; J C Fayet; M Jay; M Brochart; B Faye
Journal:  Can Vet J       Date:  1986-04       Impact factor: 1.008

3.  Flow cytometric characterization of bovine blood neutrophil phagocytosis of fluorescent bacteria and zymosan particles.

Authors:  A M Saad; M Hageltorn
Journal:  Acta Vet Scand       Date:  1985       Impact factor: 1.695

4.  Ingestion and killing of Listeria monocytogenes by blood and milk phagocytes from mastitic and normal cattle.

Authors:  C J Czuprynski; E J Noel; M P Doyle; R D Schultz
Journal:  J Clin Microbiol       Date:  1989-05       Impact factor: 5.948

5.  Can milk cell or skim milk miRNAs be used as biomarkers for early pregnancy detection in cattle?

Authors:  Corina I Schanzenbach; Benedikt Kirchner; Susanne E Ulbrich; Michael W Pfaffl
Journal:  PLoS One       Date:  2017-02-24       Impact factor: 3.240

6.  Milk yield, milk composition, and milk metabolomics of dairy goats intramammary-challenged with lipopolysaccharide under heat stress conditions.

Authors:  Ahmed A K Salama; Alexandra Contreras-Jodar; Samantha Love; Nabil Mehaba; Xavier Such; Gerardo Caja
Journal:  Sci Rep       Date:  2020-03-19       Impact factor: 4.379

  6 in total

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