Besides 24-membered cyclooctadepsipeptides (CODPs) with the most prominent member of this class emodepside, the structurally related 18-membered cyclohexadepsipeptides (CHDPs) were of interest with regard to their efficacy against the nematode H. contortus in sheep.The CHDPs prepared by a simple total synthesis represent enniatin derivatives with strong in vivo activity against H. contortus in sheep. The correlation between the nature of the CHDP major conformers and their anthelmintic activities was studied in detail. All CHDPs with strong in vivo activity exists in deuterochloroform solution as conformers with restricted flexibility which was found by 2D-NMR spectroscopic analysis. This reduced flexibility of the major conformer can be exemplified by CHDPs containing e.g.: (i) an unsymmetrically folded conformation with no cis-amide bound, (ii) an internal hydrogen bond or (iii) one cis-amide bond, respectively.The strong in vivo anthelmintic activity against H. contortus in sheep indicates that the stereochemistry in 2-position of CHDPs is less important for their high inding affinity. It may be assumed that the identified inflexible region of the major conformers might mimic the active conformation of these CHDPs, which could be helpful for rational design of anthelmintics with less complicated structures.
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Parasit Vectors
January 2025
Melbourne Veterinary School, The University of Melbourne, Werribee, VIC, 3030, Australia.
Background: Gastrointestinal parasites such as nematodes and coccidia are responsible for significant economic losses in the goat industry globally. An indiscriminate use of antiparasitic drugs, primarily registered for use in sheep and cattle, in goats has resulted in drug-resistant gastrointestinal parasites. Very little is known about the gastrointestinal parasite control practices used by Australian dairy goat farmers that are pivotal for achieving sustainable control of economically important parasites.
View Article and Find Full Text PDFVet Parasitol Reg Stud Reports
January 2025
Animal Genetics and Breeding Division, ICAR-Central Sheep and Wool Research Institute, Avikanagar 304 501, Rajasthan, India.
A strong Th2-type immune response against Haemonchus contortus infection in genetically resistant sheep provide immunity. The objective of present study was to correlate mean faecal egg counts (FECs), absolute eosinophil counts and Th1/Th2 gene expression in resistant (R) and susceptible (S) Malpura sheep. In spite of no anthelmintic treatment in R line, on majority of the months, mean FECs remained significantly (P < 0.
View Article and Find Full Text PDFVet Parasitol
January 2025
Laboratory of Veterinary Clinical Parasitology, Federal University of Paraná, UFPR, R: dos Funcionários, 1540, Curitiba, PR CEP: 81530-000, Brazil. Electronic address:
Haemonchus contortus is a gastrointestinal parasite that affects ruminants (cattle, sheep, etc.), having a significant welfare impact worldwide. The rise of anthelmintic resistance poses a growing challenge to adequate control, compromising the success of treatments.
View Article and Find Full Text PDFBMC Vet Res
January 2025
Department of Veterinary Pathobiology, College of Veterinary Medicine and Animals Sciences, University of Gondar, P.O. Box: 196, Gondar, Ethiopia.
Haemonchosis is a major gastrointestinal parasitic infection in sheep caused by H. contortus. An abattoir-based cross-sectional study was conducted from January to September 2024 to assess the haematobiochemical alterations and lesion characterization induced by haemonchosis in slaughtered sheep at Gondar ELFORA abattoir.
View Article and Find Full Text PDFActa Parasitol
January 2025
Ministry of Agriculture Key Laboratory of Clinical Diagnosis and Treatment Technology in Animal Disease, College of Veterinary Medicine, Inner Mongolia Agricultural University, Inner Mongolia Hohhot, Hohhot, China.
Haemonchus contortus has caused significant economic losses in many regions. The emergence of drug resistance has created new difficulties for the prevention and control of parasitic diseases in cattle and sheep. The mechanism of drug resistance to ivermectin in H.
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