Anticoccidial and Protective Effects of Carica papaya Leaf
Extract: Insights into NF-κB/Nrf2 Signaling
Muhammad Tahir Aleem1, Baseer Ahmad2, Asghar
Abbas2*, Muhammad Kamran3, Majeeda Rasheed4,
Bahzad Afzal5, Kashif Hussain2, Murtaz ul
Hassan6, Waleed A. Q. Hailan7 and Mohammed
Mares7
1School
of Medical Sciences, Shandong Xiehe University, Jinan, China; 2Faculty
of Veterinary and Animal Sciences, Muhammad Nawaz Shareef University
of Agriculture Multan, Pakistan; 3Queensland Alliance for
Agriculture and Food Innovation, the University of Queensland,
Australia; 4Department of Life Sciences, Khawaja Fareed
University of Engineering and Technology Rahim Yar Khan, Pakistan;
5National Institute of Food Science and Technology,
University of Agriculture Faisalabad, Pakistan; 6Department
of Parasitology and Microbiology, PMAS-Arid Agriculture University
Rawalpindi; 7Department of Zoology, College of Science,
King Saud University, 1145, Riyadh, Saudi Arabia
Avian coccidiosis is caused by Eimeria parasites and is considered as one
of the most economically most important diseases affecting the poultry industry.
There is need of developing safe and sustainable alternatives to conventional
anticoccidial drugs for its control. In the present study, the anticoccidial and
protective effects of Carica papaya leaf extract (CPLE) were investigated
in broiler chickens experimentally infected with
Eimeria, with particular emphasis on
its association with NF-κB/Nrf2 signaling. To this end, an in vivo trial
was conducted using 300broiler chicks, which were randomly divided into
five groups. Group-I served as uninfected control group in which PBS was
administered, whereas Group-II kept as positive control group (the infected
medicated control) and received Amprolium (125mg/L) in the drinking water. The
group III, IV and V were treated with CPLE at the dose of 100, 200 and 300mg/kg
body weight, respectively. Growth performance, hematological and serum
biochemical parameters, lesion score, fecal score, oocyst shedding, oxidative
stress biomarkers, inflammatory mediators, intestinal histopathology and
NF-κB/Nrf2 signaling pathways were assessed. The efficacy of CPLE
supplementation was observed to significantly increase body weight gain, feed
efficiency, erythrocyte indices, liver function biomarkers compared with
infected control. In addition, CPLE reduced intestinal lesion scores, fecal
scores, mortality, oocyst scores and fecal oocyst shedding (OPG).
Histopathological analysis revealed that the villi architecture was restored in
terms of improved intestinal villus height, villus height to crypt depth ratio
(P<0.05). Furthermore, CPLE significantly elevated the activity of the enzyme
systems of serum superoxide dismutase, catalase and glutathione peroxidase
(P<0.05), indicating an improvement in antioxidant capacity, while significantly
lowered malondialdehyde concentration (P<0.05). Western blot analysis revealed
that CPLE inhibited NF-κB p65 phosphorylation and promoted the Nrf2/HO-1
mediated antioxidant signaling pathway (P<0.05), leading to anti-inflammatory
and anti-oxidative effects. In general, CPLE showed an effective protective
effect against intestinal damage caused by the infection of Eimeria by
combining its antiparasitic, antioxidant, anti-inflammatory and intestinal
defense mechanisms. Based on these results, CPLE could be considered as a
potential alternative to traditional anticoccidial drugs in sustainable poultry
production.
To Cite This Article:
Aleem MT, Ahmad B, Abbas A, Kamran M, Rasheed M, Afzal B, Hussain K, Hassan M,
Hailan WAQ, Mares M,
2026. Anticoccidial and protective effects of carica papaya leaf extract:
insights into nf-κb/nrf2 signaling. Pak Vet J, 46(8): 1893-1905. http://dx.doi.org/10.29261/pakvetj/2026.204