Javascript must be enabled to continue!
FeedingSaccharomyces cerevisiaefermentation products lessens the severity of a viral–bacterial coinfection in preweaned calves
View through CrossRef
AbstractWe have previously reported that supplementation with Saccharomyces cerevisiae fermentation products (SCFP) ameliorates clinical signs and lung pathology following experimental bovine respiratory syncytial virus (BRSV) infection in preweaned dairy calves. The objectives of this study were to determine the effect of SCFP supplementation on the metabolic and endocrine responses, and disease outcome of a viral–bacterial coinfection in preweaned calves. Twenty-seven, 1- to 2-d-old Holstein-Angus cross calves were enrolled in the study; one SCFP calf was removed from the trial during the pre-challenge phase due to complications from nephritis. Calves were assigned to two treatment groups: control or SCFP-treated, base milk replacer with 1 g/d SCFP (Smartcare, soluble formula) and calf starter top dressed with 5 g/d SCFP (NutriTek, insoluble formula). Calves were infected with BRSV on day 21, followed 6 d later by intratracheal inoculation with Pasteurella multocida (PM). Calves were euthanized on day 10 post-viral infection. Calves receiving SCFP had reduced thoracic ultrasonography scores on day 7 post-viral infection (P = 0.03) and a tendency toward reduced scores on day 10 post-viral infection (P = 0.09). Calves receiving SCFP also had less severe lung pathology scores at necropsy (P = 0.06). No differences between treatments were observed in lung viral loads (P = 0.48) or bacterial lung recovery (P = 0.34); however, there was a distinction in the lung location for PM recovery, with PM isolated more frequently from the cranial lobes in SCFP-treated calves, but more frequently from the caudal lobes of control calves. Calves treated with SCFP tended (P = 0.07) to have higher serum IL-6 concentrations following the coinfection. Calves treated with SCFP had lower concentrations of serum nonesterified fatty acids and beta-hydroxybutyric acid compared with controls following experimental challenge (P = 0.03 and P = 0.08, respectively), suggesting metabolic changes favoring growth and development. There were no differences between groups in gene expression of insulin receptor, insulin-like growth factor 1 (IGF-1), IGF-1 receptor (IGF-1R), growth hormone receptor, or haptoglobin in the liver. Results from this study suggest that supplementing with SCFP may moderate the impact of a respiratory viral–bacterial coinfection on preweaned calves through metabolic and immune modifications.
Oxford University Press (OUP)
Title: FeedingSaccharomyces cerevisiaefermentation products lessens the severity of a viral–bacterial coinfection in preweaned calves
Description:
AbstractWe have previously reported that supplementation with Saccharomyces cerevisiae fermentation products (SCFP) ameliorates clinical signs and lung pathology following experimental bovine respiratory syncytial virus (BRSV) infection in preweaned dairy calves.
The objectives of this study were to determine the effect of SCFP supplementation on the metabolic and endocrine responses, and disease outcome of a viral–bacterial coinfection in preweaned calves.
Twenty-seven, 1- to 2-d-old Holstein-Angus cross calves were enrolled in the study; one SCFP calf was removed from the trial during the pre-challenge phase due to complications from nephritis.
Calves were assigned to two treatment groups: control or SCFP-treated, base milk replacer with 1 g/d SCFP (Smartcare, soluble formula) and calf starter top dressed with 5 g/d SCFP (NutriTek, insoluble formula).
Calves were infected with BRSV on day 21, followed 6 d later by intratracheal inoculation with Pasteurella multocida (PM).
Calves were euthanized on day 10 post-viral infection.
Calves receiving SCFP had reduced thoracic ultrasonography scores on day 7 post-viral infection (P = 0.
03) and a tendency toward reduced scores on day 10 post-viral infection (P = 0.
09).
Calves receiving SCFP also had less severe lung pathology scores at necropsy (P = 0.
06).
No differences between treatments were observed in lung viral loads (P = 0.
48) or bacterial lung recovery (P = 0.
34); however, there was a distinction in the lung location for PM recovery, with PM isolated more frequently from the cranial lobes in SCFP-treated calves, but more frequently from the caudal lobes of control calves.
Calves treated with SCFP tended (P = 0.
07) to have higher serum IL-6 concentrations following the coinfection.
Calves treated with SCFP had lower concentrations of serum nonesterified fatty acids and beta-hydroxybutyric acid compared with controls following experimental challenge (P = 0.
03 and P = 0.
08, respectively), suggesting metabolic changes favoring growth and development.
There were no differences between groups in gene expression of insulin receptor, insulin-like growth factor 1 (IGF-1), IGF-1 receptor (IGF-1R), growth hormone receptor, or haptoglobin in the liver.
Results from this study suggest that supplementing with SCFP may moderate the impact of a respiratory viral–bacterial coinfection on preweaned calves through metabolic and immune modifications.
Related Results
Effect of a once-daily suckling program on gastrointestinal parasitism in Angus cows and calves
Effect of a once-daily suckling program on gastrointestinal parasitism in Angus cows and calves
SUMMARY
Over a 2-year period involving a total of 168 Angus cows and their calves, 2 studies were conducted to evaluate the effect of once-daily suckling on cow reproduction, calf ...
Bacterial coinfections during murine cutaneous leishmaniasis
Bacterial coinfections during murine cutaneous leishmaniasis
Cutaneous leishmaniasis (CL) is a parasitic disease causing chronic, ulcerating skin lesions. Most humans infected with the causative Leishmania protozoa are asymptomatic. Leishman...
Altered transcriptome responses in the lungs of preweaned calves supplemented with a yeast fermentate during a viral-bacterial coinfection
Altered transcriptome responses in the lungs of preweaned calves supplemented with a yeast fermentate during a viral-bacterial coinfection
Abstract
Bovine respiratory disease is a complex syndrome which contributes to severe and often fatal pneumonia in beef and dairy cattle. Saccharomyces cerevisiae fe...
PSIX-3 Rumen Bacteria Composition between pre-Weaning and Post-Weaning Dairy Calves
PSIX-3 Rumen Bacteria Composition between pre-Weaning and Post-Weaning Dairy Calves
Abstract
The purpose of this experiment was to study the changes of fecal bcteria of calves before and after weaning. Among 365 Holstein calves born in 2021, 8 Holst...
Effect of Season and Age on Thermophysiological and Hematological Variables of Crossbred Dairy Calves in Tropical Environment
Effect of Season and Age on Thermophysiological and Hematological Variables of Crossbred Dairy Calves in Tropical Environment
Background: The wellbeing and performance of calves may be impaired if raised in high temperature environments. Physiological and hematological variables serve as a tool to assess ...
Subcutaneous Bacillus Calmette–Guérin Administration Induces Innate Training in Monocytes in Preweaned Holstein Calves
Subcutaneous Bacillus Calmette–Guérin Administration Induces Innate Training in Monocytes in Preweaned Holstein Calves
Abstract
The bacillus Calmette–Guérin (BCG) vaccine, administered to prevent tuberculosis, is a well-studied inducer of trained immunity in human and mouse monocy...
Epidemiological study of Rotavirus infection in the diarrheic neonatal calves
Epidemiological study of Rotavirus infection in the diarrheic neonatal calves
Abstract
Background
Neonatal diarrhea is the main cause of morbidity and mortality in calves, and Rotavirus is the main viral etiology. The objective of the current study ...
Effects of Social Housing on Dairy Calf Social Bonding
Effects of Social Housing on Dairy Calf Social Bonding
Social housing for dairy calves has a range of benefits for social development, yet there is limited understanding of how social bonds form early in life. We characterized effects ...

