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  4. Bioactive Compounds, Ruminal Fermentation, and Anthelmintic Activity of Specialty Coffee and Spent Coffee Grounds In Vitro
 
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Bioactive Compounds, Ruminal Fermentation, and Anthelmintic Activity of Specialty Coffee and Spent Coffee Grounds In Vitro

Type
Journal article
Language
English
Date issued
2025
Author
Leško, Matej
Petrič, Daniel
Várady, Matúš
Sidoruk, Pola
Mikuła, Robert 
Ślusarczyk, Sylwester
Hodurek, Paweł Edward
Komáromyová, Michaela
Babják, Michal
Várady, Marián
Patra, Amlan Kumar
Cieślak, Adam 
Váradyová, Zora
Faculty
Wydział Medycyny Weterynaryjnej i Nauk o Zwierzętach
PBN discipline
animal science and fisheries
Journal
Agriculture (Switzerland)
DOI
10.3390/agriculture15141515
Web address
https://www.mdpi.com/2077-0472/15/14/1515
Volume
15
Number
14
Pages from-to
art. 1515
Abstract (EN)
We quantified the bioactive compounds of Ethiopian coffee (ETH), spent coffee grounds SCGs from ETH (SCG-ETH), and mixed SCGs (SCG-MIX) prepared by filtration methods and investigated the effect of SCG-ETH on ruminal fermentation as well as the anthelmintic activity of ETH. Three substrates, meadow hay (MH)-barley grain (MH-BG), MH-SCG-ETH, and BG-SCG-ETH (1:1 w/w), were fermented using an in vitro gas production technique. The bioactive compounds were quantitatively analyzed using ultra-high-resolution mass spectrometry. We performed an in vitro larval development test to determine the anthelmintic effect of an aqueous extract of ETH against the gastrointestinal nematode (GIN) Haemonchus contortus. The total content of bioactive compounds was highest in SCG-ETH, followed by SCG-MIX and ETH (35.2, 31.2, and 20.9 mg/g dry matter, respectively). Total gas and methane production (p < 0.001) were decreased by both MH-SCG-ETH and BG-SCG-ETH. The in vitro digestibility of dry matter was higher for MH-SCG-ETH and BG-SCG-ETH than for MH-BG. The aqueous ETH extract exhibited a strong larvicidal effect, with a mean lethal dose of 13.2 mg/mL for 50% mortality and 31.9 mg/L for 99% mortality. SCG substrates have the potential to modulate ruminal fermentation and serve as a source of anthelmintic bioactive compounds against GINs in ruminants.
Keywords (EN)
  • filtered specialty coffees

  • coffee grounds

  • anthelmintic compounds

  • methane emissions

  • ruminal fermentation

  • ciliate protozoan

  • bioactive substances

License
cc-bycc-by CC-BY - Attribution
Open access date
July 14, 2025
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