Monensin concentrations measured in feeder cattle using enzyme immunoassay

M E Mount1, J S Cullor, P H Kass

  • 1Department of Molecular Biosciences, University of California, Davis 95616, USA.

Veterinary and Human Toxicology
|June 1, 1996
PubMed

Insights

Monensin, a feed additive, was detected in fecal, urine, and serum samples from heifers. Higher monensin concentrations in feed rations correlated with increased levels in biological samples.

Area of Science:

  • Animal Science
  • Veterinary Medicine
  • Analytical Chemistry

Background:

  • Monensin is a widely used ionophore feed additive in cattle production.
  • Monitoring monensin levels in biological samples is crucial for assessing exposure and efficacy.
  • Accurate analytical methods are needed to quantify monensin in various matrices.

Purpose of the Study:

  • To determine the presence and concentration of monensin in fecal, urinary, and serum samples from heifers.
  • To evaluate the relationship between monensin feed concentration and its detection in biological samples.
  • To validate the use of a modified indirect enzyme immunoassay for monensin quantification.

Main Methods:

  • Heifers were fed rations containing different concentrations of monensin (30, 60, and 90 g/ton).
  • Fecal, urinary, and serum samples were collected at various time points.
  • Monensin concentrations were measured using a modified indirect enzyme immunoassay.

Main Results:

  • Monensin was detected in most fecal samples at measurable concentrations (micrograms/g; ppm).
  • Monensin was present in the majority of serum and urine samples at low concentrations (ng/ml; ppb).
  • Higher monensin feed concentrations resulted in increased detection levels across all sample types.

Conclusions:

  • The modified indirect enzyme immunoassay is effective for detecting monensin in biological samples.
  • Monensin is absorbed and excreted, with detectable levels found in feces, urine, and serum of treated heifers.
  • Feed intake and monensin concentration directly influence the levels found in biological matrices.