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Original Article



Effect of negative dietary cation-anion difference (DCAD) diet on primiparous cow metabolomic analysis: Colostrum and milk assay

Oscar David Aguilar-Vega, Héctor Aarón Lee-Rangel, Francisco Javier Castro-Lomelí, Ricardo Emmanuel Gaytan-Rodríguez, Anayeli Vázquez-Valladolid, Othoniel H. Aragón Martínez, Mario Alejandro Mejía-Delgadillo, Rogelio Flores Ramírez.



Abstract
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Objectives: This study aimed to characterize the metabolomic profile of colostrum and milk in primiparous Holstein cows subjected to a prepartum diet with a low negative dietary cation–anion difference (DCAD).
Materials and Methods: Eight primiparous cows were randomly assigned to two treatments: (a) basal diet (n = 4) and (b) basal diet supplemented with 250 gm/day of anionic salts (n = 4), starting 21 days before parturition. Colostrum and milk samples were analyzed using gas chromatography–mass spectrometry (GC–MS). Data were log-transformed and evaluated using multivariate (PLS-DA) and univariate (Wilcoxon test with fold change) approaches in MetaboAnalyst 6.0.
Results: A total of 34 and 31 metabolites were detected in colostrum and milk, respectively. Multivariate analysis showed a visual separation between treatments; however, model validation parameters indicated limited predictive performance. Volcano plot analysis did not identify metabolites with statistical significance (p < 0.05), although several compounds exhibited consistent trends in relative abundance between groups. In colostrum, fatty acids such as arachidic acid and cholesterol tended to be lower in DCAD-supplemented cows, whereas L-glutamate and dodecanedioic acid showed higher relative abundance. In milk, similar trend-level differences were observed in fatty acid profiles between treatments.
Conclusions: Prepartum supplementation with a negative DCAD diet was associated with exploratory metabolomic shifts in colostrum and milk of primiparous cows, particularly in lipid-related compounds. These findings should be interpreted as preliminary, and further studies with larger sample sizes are required to confirm the observed patterns.

Key words: Fatty acids; GC-MS; low negative anion-cation; metabolic disorders; prepartum







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