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1.
Vet Parasitol ; 329: 110194, 2024 Jul.
Article En | MEDLINE | ID: mdl-38749123

To investigate the therapeutic effect of toosendanin (TSN) against Eimeria tenella (E. tenella) in chicks. In this experiment, a chick model of artificially induced E. tenella infection was established. The anti-coccidial effect was investigated by treating different doses of TSN. A preliminary mechanism of action was conducted, using cecal cell apoptosis as a starting point. TSN at the concentration of 5 mg/kg BW showed the best effect against E. tenella with the ACI value of 164.35. In addition, TSN reduced pathological damage to cecal tissue, increased the secretion of glycogen and mucus in cecal mucosa, and enhanced the mucosal protective effect. It also elevated the levels of IFN-γ, IL-2, and IgG in serum, and raised the sIgA content in cecal tissue of infected chicks, thereby improving overall immune function. TSN was observed to promote the apoptosis of cecum tissue cells by TUNEL staining analysis. Immunohistochemistry analysis revealed that in TSN-treated groups, the expression of Caspase-3 and Bax was elevated, while the expression of Bcl-2 was reduced. TSN induced apoptosis in host cells by dose-dependently decreasing the Bcl-2/Bax ratio and upregulating Caspase-3 expression. In summary, TSN exhibited significant anticoccidial efficacy by facilitating apoptosis in host cecal cells, with the most pronounced effect observed at a dosage of 5 mg/kg body weight.


Apoptosis , Cecum , Chickens , Coccidiosis , Eimeria tenella , Poultry Diseases , Animals , Eimeria tenella/drug effects , Apoptosis/drug effects , Cecum/parasitology , Coccidiosis/veterinary , Coccidiosis/drug therapy , Coccidiosis/parasitology , Poultry Diseases/parasitology , Poultry Diseases/drug therapy , Coccidiostats/pharmacology , Coccidiostats/therapeutic use
2.
Vet Parasitol ; 328: 110179, 2024 Jun.
Article En | MEDLINE | ID: mdl-38579607

In this study the efficacy of an intramuscular formulation of toltrazuril combined with gleptoferron for the control of porcine cystoisosporosis caused by Cystoisospora suis was investigated. The study was carried out on three Belgian farms with a confirmed history of C. suis infections. As none of the farms implemented a standardized toltrazuril treatment regimen for their piglets, the presence of resistant C. suis strains seems improbable. In total 90 litters, representing 1249 piglets, were included in the study and randomly allocated to either the treatment or control group. Piglets in the treatment group received a single intramuscular injection, containing 45 mg toltrazuril and 200 mg gleptoferron, between 1 and 3 days of age. Piglets in the control group received a single injection with only 200 mg gleptoferron. The effect of treatment on oocyst excretion, expressed in oocysts per gram of feces (OPG), average daily weight gain (ADG) and mortality was determined both pre- and post-weaning. A significant decrease in OPG as well as a decrease in the number of litters (pre-weaning) and pens (post-weaning) that tested positive for cystoisosporosis, was observed in the treated animals compared to the controls. Furthermore, treatment resulted in an increased ADG during the period from day 1 to day 21 (p-value: 0.03881). There was no significant difference in mortality observed between the treatment group to the control group (p-value: 0.2167). To our knowledge, this is the first report on the effect of toltrazuril on oocyst excretion after weaning. This finding highlights the potential long-term benefits of the treatment beyond the initial administration.


Coccidiosis , Coccidiostats , Oocysts , Swine Diseases , Triazines , Weaning , Animals , Triazines/administration & dosage , Triazines/pharmacology , Swine , Swine Diseases/drug therapy , Swine Diseases/parasitology , Coccidiosis/drug therapy , Coccidiosis/veterinary , Coccidiosis/parasitology , Oocysts/drug effects , Coccidiostats/administration & dosage , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Sarcocystidae/drug effects , Animals, Newborn , Feces/parasitology , Injections, Intramuscular/veterinary , Weight Gain/drug effects
3.
Open Vet J ; 14(1): 341-349, 2024 Jan.
Article En | MEDLINE | ID: mdl-38633167

Background: The prevalence of avian coccidiosis in the poultry industry has grown, resulting in substantial financial losses from high mortality, stunted growth, reduced productivity, and expensive medical expenses. Aim: The purpose of the current study was to assess the immunological effects of neem leaf extract and toltrazuril on broilers that had contracted coccidiosis. Methods: In this investigation, 100 one-day-old Cobb broiler chicks without sexes were employed. The chicks were divided into five equal groups, with 20 birds in each. On the 14th day of life, the birds in groups 2, 3, 4, and 5 received an oral inoculation with 1 × 105 sporulated oocysts of Eimeria tenella (E. tenella) (field isolate). The first group (Gp), which consists of 20 healthy broilers, served as a negative control. Gp (2) contains experimentally infected broilers and nontreated (served as a positive control). Gp (3) contains experimentally infected broilers treated with toltrazuril (1 ml/l drinking water) for two consecutive days. Gp (4) contains experimentally infected broilers treated with neem leaf extract 4% (50 ml/l drinking water) for 5 successive days, and Gp (5) contains experimentally infected broilers treated with toltrazuril (1 ml/l drinking water) and a half dose of neem leaves extract 4% (25 ml/l drinking water) for 5 successive days. For the purpose of estimating body weight growth and feed conversion ratio, each broiler was weighed separately at the start of the trial and again on the 1st and 10th day after treatment. In addition to obtaining intestinal samples for immunohistochemistry, blood samples were also obtained for immunological examination. Results: As compared to the negative control group, the experimentally infested broilers with E. tenella showed significant decreases in serum nitric oxide, lysosome, phagocytic percent, and phagocytic index, along with significant increases in white blood cells (WBCs), lymphocyte, heterophilis, eosinophilis, basophilis, monocyte, serum total protein, γ globulin, fibrinogen, and haptoglobin. When compared to the control positive group, experimentally infested broilers treated with either neem or toltrazuril alone or in combination demonstrated significant increases in serum total protein, nitric oxide, lysozyme, phagocytic percent, and phagocytic index, but significant decreases in WBCs, lymphocytes, heterophile, eosinophile, basophile, and monocyte. The intestinal peroxidase stain of broilers infected with E. tenella exhibited a significant positive expression for CD4, but the infected broilers treated with toltrazuril and half a dosage of neem displayed a negative expression for CD4, identical to the negative control. Conclusion: The broiler chickens infested with E. tenella may have a variety of negative impacts on their immune systems and immunohistopathological findings. Nonetheless, toltrazuril and neem extract, either separately or in combination, function as anticoccidial medications that may enhance the broiler chicks' immune state.


Coccidiosis , Coccidiostats , Drinking Water , Eimeria tenella , Triazines , Animals , Chickens , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Nitric Oxide/pharmacology , Nitric Oxide/therapeutic use , Coccidiosis/drug therapy , Coccidiosis/pathology , Coccidiosis/veterinary , Plant Extracts/pharmacology
4.
Vet Parasitol ; 327: 110107, 2024 Apr.
Article En | MEDLINE | ID: mdl-38401178

This study aimed to evaluate the effects of natural extracts from nine medicinal herbs (SMA) on the growth performance, immunity, and intestinal integrity of broilers experimentally infected with Eimeria tenella. A total of 252 one-day-old broiler chicks were divided into 7 groups with 3 replicates per group and 12 broilers per cage. The groups were uninfected-untreated blank control group (BC), infected-untreated negative control group (NC), SMA treatment groups, Chinese medicine positive control group (CM), and chemical drug positive control group (CD). The SMA groups were infected and fed a basal diet supplemented with 0.6 (SMA-L), 0.8 (SMA-M), and 1.0 (SMA-H) g/kg SMA. The CM and CD groups were infected and fed a basal diet supplemented with 15 g/kg Jiqiuchong San and 0.2 g/kg Diclazuril, respectively. Results showed that feeding SMA could significantly reduce the number of oocysts in infected chickens, especially 1.0 g/kg SMA, which exhibited moderate anticoccidial efficacy. When infected with E. tenella, the supplementation of 1.0 g/kg SMA increased the renal index; restored the hepatic, splenic, and bursal indexes to BC levels; increased the levels of immunoglobulin A (IgA), IgM, and IgY; and reduced the contents of tumor necrosis factor (TNF-α), interferon-γ (IFN-γ), interleukin-6 (IL-6), and IL-10 of the infected chickens. Moreover, treatment with 1.0 g/kg SMA alleviated the pathological changes in cecal tissue and increased the contents of zonula occludens-1 (ZO-1), occludin, claudin-1, and mucoprotein 2 (mucin-2) in cecal tissues of E. tenella-infected chickens. We found that 1.0 g/kg SMA reduced the number of oocysts, improved immunity, and alleviated intestinal barrier damage, which could improve the growth performance of infected chickens. Thus, SMA proved to be an effective natural extract against E. tenella and has the potential to be used as an efficient anticoccidial drug or additive.


Coccidiosis , Coccidiostats , Eimeria tenella , Plants, Medicinal , Poultry Diseases , Animals , Chickens , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Coccidiosis/drug therapy , Coccidiosis/veterinary , Coccidiosis/pathology , Plant Extracts/pharmacology , Plant Extracts/therapeutic use , Tumor Necrosis Factor-alpha , Poultry Diseases/drug therapy , Poultry Diseases/pathology
5.
Microsc Res Tech ; 87(7): 1467-1478, 2024 Jul.
Article En | MEDLINE | ID: mdl-38407507

Coccidiosis is a protozoan parasitic disease caused by Eimeria species and affects wild and domestic animals. Coccidiostats are currently available to control this disease, although drug resistance has been confirmed for all of them. As a result, there is an urgent need to identify eco-friendly agents to control and treat this disease. This study aimed to investigate the ameliorative role of the Krameria lappacea roots extract (KLRE) on the outcome of coccidiosis induced by Eimeria papillata. Male C57BL/6 mice were divided into seven groups (5 mice/group), as follows: Group 1: noninfected-nontreated (control group), Group 2: noninfected-treated group with KLRE (200 mg/kg), Group 3: infected-nontreated group, Group 4: infected-treated group with KLRE (50 mg/kg), Group 5: infected-treated group with KLRE (100 mg/kg), Group 6: infected-treated group with KLRE (200 mg/kg), and Group 7: infected-treated group with amprolium (120 mg/kg). Groups (3-7) were inoculated orally with 1 × 103 sporulated E. papillata oocysts. One hour after infection, groups (4-6) were daily treated for 5 days with KLRE and amprolium. On day 5 postinfection, oocyst output was determined, and mice were euthanized for the collection of jejuna then preparation of histological sections and jejunal homogenate was used for the determination of biochemical and oxidative damage markers. The coccidial infection induced weight loss of mice by 3.971%, which improved after KLRE to -1.512%. After KLRE treatment, the rate of feed intake was improved to be 52.21 ± 2.30 than those in infected group (40.47 ± 2.25). Oocyst output was significantly reduced in mice treated with KLRE (1.308 × 106 oocysts/g.feces) compared with those in the infected group (5.387 × 106 oocysts/g.feces). E. papillata infection induced marked histological alterations within jejunum tissue. After treatment, KLRE was able to impair the development of parasite stages (meronts, gamonts, and developing oocysts) in the jejunum through a significant reduction of number and size in comparison with the infected group. Infection with E. papillata induced a disturbance in the nutrient absorption in the jejunal mice tissue, which improved after the treatment with KLRE and amprolium. Also, KLRE counteracted significantly the E. papillata-induced loss of reduced glutathione and total antioxidant capacity. Our findings indicate that KLRE could be used as an alternative to the available coccidiostats currently available. RESEARCH HIGHLIGHTS: Krameria lappacea exhibit significant anticoccidial and antioxidant activities induced by E. papillata infection. Krameria lappacea exhibit significant improvement in the pathological alterations of the jejunal tissue induced by E. papillata infection.


Coccidiosis , Eimeria , Jejunum , Mice, Inbred C57BL , Plant Extracts , Plant Roots , Animals , Coccidiosis/drug therapy , Coccidiosis/parasitology , Coccidiosis/veterinary , Plant Extracts/pharmacology , Plant Extracts/therapeutic use , Eimeria/drug effects , Jejunum/parasitology , Jejunum/drug effects , Jejunum/pathology , Male , Plant Roots/chemistry , Mice , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Disease Models, Animal
6.
Arch Pharm (Weinheim) ; 357(4): e2300540, 2024 Apr.
Article En | MEDLINE | ID: mdl-38217306

A series of new febrifugine derivatives with a 4(3H)-quinazolinone scaffold were synthesized and evaluated for their anticoccidial activity both in vitro and in vivo. The targets' in vitro activity against Eimeria tenella was studied using quantitative real-time reverse transcription polymerase chain reaction and Madin-Darby bovine kidney cells. Most of these compounds demonstrated anticoccidial efficacy, with inhibition ratios ranging from 3.3% to 85.7%. Specifically, compounds 33 and 34 showed significant inhibitory effects on the proliferation of E. tenella and exhibited lower cytotoxicity compared to febrifugine. The IC50 values of compounds 33 and 34 were 3.48 and 1.79 µM, respectively, while the CC50 values were >100 µM for both compounds. Furthermore, in a study involving 14-day-old chickens infected with 5 × 104 sporulated oocysts, treatment with five selected compounds (22, 24, 28, 33, and 34), which exhibited in vitro inhibition rate of over 50% at 100 µM, at a dose of 40 mg/kg in daily feed for 8 consecutive days showed that compound 34 possessed moderate in vivo activity against coccidiosis, with an anticoccidial index of 164. Structure-activity relationship studies suggested that spirocyclic piperidine may be a preferable substructure to maintain high effectiveness in inhibiting Eimeria spp., when the side chain 1-(3-hydroxypiperidin-2-yl)propan-2-one was replaced.


Coccidiosis , Coccidiostats , Poultry Diseases , Quinazolines , Animals , Cattle , Coccidiostats/pharmacology , Coccidiostats/chemistry , Coccidiostats/therapeutic use , Chickens , Structure-Activity Relationship , Coccidiosis/drug therapy , Coccidiosis/veterinary , Piperidines/pharmacology , Poultry Diseases/drug therapy
7.
Vet Parasitol ; 326: 110098, 2024 Feb.
Article En | MEDLINE | ID: mdl-38194736

Ponazuril, a novel antiprotozoal drug in the class of triazine, has shown a promising application on apicomplexan infections in poultry and livestock. However, the effect and mechanism of action of ponazuril against Eimeria tenella (E. tenella) are unclear. The efficacy against E. tenella was initially studied by administering different doses of ponazuril in drinking water. The treated stage and site of ponazuril on E. tenella were observed through ultrastructural and histopathological analyses. Chicks were orally treated with a dose of 15 mg/kg body weight of ponazuril at different endogenous stages of E. tenella post-infection. According to the clinical study, the values of anticoccidial indices (ACI) were 157.0, 162.3, 196.9, 194.5, and 190.9, respectively, when the ponazuril was administered in drinking water at doses of 5, 10, 20, 40, and 50 mg/L for two consecutive days after infection. Among them, the 20 mg/L ponazuril group showed the best anticoccidial effect, which was superior to that of the toltrazuril treatment group, with an ACI value of 191.7. Histological analysis indicated that ponazuril effectively relieved cecal lesions, and decreased the number of merozoites. Transmission electron micrographs (TEM) observed that merozoites became irregular in shape, and some apparent protrusions of the outer membrane were presented especially the second-generation merozoites. Additionally, abnormalities in the development of WFBI and WFBII in the macrogametocyte were observed, which may affect the formation of the ovule wall. Moreover, merozoites in the treated group showed uneven and marginalized chromatin and mitochondrial swelling. These results suggested ponazuril is a potential anticoccidial drug, providing information on the mechanism of anticoccidial effects.


Coccidiosis , Coccidiostats , Drinking Water , Eimeria tenella , Poultry Diseases , Animals , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Coccidiosis/drug therapy , Coccidiosis/veterinary , Poultry Diseases/drug therapy , Triazines/pharmacology , Triazines/therapeutic use , Merozoites , Chickens , Treatment Outcome
8.
Vet Res Commun ; 48(1): 279-290, 2024 Feb.
Article En | MEDLINE | ID: mdl-37667094

Coccidiosis is an intestinal protozoan disease of sheep, that causes substantial economic losses in the industry due to its intestinal protozoan origins. Many anti-protozoan drugs including ionophores, triazines, and sulfonamides have been widely used to treat sheep coccidiosis. Still, anticoccidial resistance and drug residues in edible tissues have prompted an urgent search for alternatives. In this study, the anti-coccidial effectiveness of the Radix dichroae extract was compared to that of the conventional anti-coccidial drug diclazuril. Here, eighteen 45-day-old lambs naturally-infected with Eimeria spp. were randomly allocated in three groups: control group, Radix dichroae extract group and diclazuril group. The results showed that the body weight gain (BWG) during the treatment and withdrawal periods was considerably improved in the coccidiosis-infected sheep treated with Radix dichroae extract and diclazuril compared to the control group, respectively. Additionally, the Radix dichroae extract and diclazuril had fewer oocysts per gram (OPG) than the control group, showing similar anti-coccidial effects on days 14, 21, 28, 35 and 78, respectively. Furthermore, Radix dichroae extract and diclazuril treatment altered the structure and composition of gut microbiota, promoting the relative abundance of Actinobacteriota, Firmicutes, Alistipes, and Bifidobacterium, while decreasing the abundance of Bacteroidota, Marinilaceae, Helicobacteraceae, and Prevotella. Moreover, Spearman's correlation analysis further revealed a correlation between the OPG and BWG and gut microorganisms. Collectively, the results indicated that Radix dichroae extract had similar anti-coccidial effects as diclazuril, and could regulate gut microbiota balance in growing lambs.


Coccidiosis , Coccidiostats , Nitriles , Triazines , Animals , Coccidiosis/drug therapy , Coccidiosis/veterinary , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Dietary Supplements , Gastrointestinal Microbiome , Oocysts , Sheep , Sheep, Domestic , Weight Gain
9.
Vet Parasitol ; 324: 110057, 2023 Dec.
Article En | MEDLINE | ID: mdl-37918037

In-feed prophylactic chemotherapy is widely considered the mainstay of avian coccidiosis control, while serious drug resistance strictly restricts its application. Confronted with the urgent need for an alternative strategy, a traditional Chinese medicine formula (TCMF) was developed. Meanwhile, its potential to iron out complicated clinical coccidiosis was scrutinized in vivo with a field-isolated multi-drug resistant Eimeria tenella (E. tenella) isolate. Birds were inoculated with 5 × 104 sporulated oocysts and administrated with TCMF supplementation in water from 72 h post-infection to the end of the experiment, diclazuril (DIC) was set as a positive control. As a result, TCMF intervention reduced oocyst shedding, cecal lesion and mortality, and enhanced body weight gain. According to the above, anticoccidial index (ACI) was calculated and TCMF exerted a moderate anticoccidial activity. Besides, macroscopic, histopathological, and ultrastructural observations revealed the safeguarding effects of TCMF on E. tenella-induced cecal injury. Following, TCMF treatment presented an obvious inhibition effect on E. tenella caused oxidative stress and inflammatory response. Moreover, TCMF supplementation restored the cecal flora abundance and diversity, reduced the colonization of harmful bacteria, and increased the probiotics abundance. In conclusion, TCMF exhibited a moderate anticoccidial effect along with alleviating E. tenella-induced cecal injury, redox imbalance, and inflammatory response which may be associated with the microflora modulatory effect.


Anti-Infective Agents , Coccidiosis , Coccidiostats , Eimeria tenella , Poultry Diseases , Animals , Chickens , Coccidiosis/drug therapy , Coccidiosis/prevention & control , Coccidiosis/veterinary , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Weight Gain , Anti-Infective Agents/pharmacology , Poultry Diseases/drug therapy , Poultry Diseases/prevention & control , Poultry Diseases/pathology
10.
Parasitol Int ; 97: 102779, 2023 Dec.
Article En | MEDLINE | ID: mdl-37451395

As drug-resistant strains of Eimeria have emerged and concerns about drug residues in poultry have grown, there is renewed interest in identifying natural alternatives to control coccidiosis. Cedrol, a natural sesquiterpene alcohol, was used in this study to test anticoccidial efficacy in chicks. Both the control and treatment groups were orally challenged with 2 × 104 oocysts per chicken. Chicks administered with cedrol had reduced oocyst count, an increase in the relative weight gain rate of chicks, and a decrease in severe swelling of the cecum. Based on the above, ACI was calculated and the cedrol group reached moderate anti-coccidial activity (169.34). In chickens treated with cedrol, there were no changes in serum biochemical parameters, but oxidative stress biomarkers and cytokine levels associated with anticoccidial response were altered. These changes suggest that the administered concentration of cedrol did not have any adverse effects on the chickens while enhancing their antioxidant capacity and immunity, leading to an improved anticoccidial ability. In conclusion, this study shows that the addition of cedrol in poultry production has an anticoccidial effect and successfully improves growth performance during the growth period.


Coccidiosis , Coccidiostats , Eimeria tenella , Poultry Diseases , Animals , Chickens , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Poultry Diseases/drug therapy , Coccidiosis/drug therapy , Coccidiosis/veterinary , Oocysts
11.
Poult Sci ; 102(8): 102819, 2023 Aug.
Article En | MEDLINE | ID: mdl-37331218

Between 2018 and 2020, over 100 wild turkey fecal samples were collected from the Eastern and Central thirds of the United States, where commercial turkey production is uncommon. We hypothesized that anticoccidial-sensitive Eimeria spp. would be present in wild turkey fecal samples. Samples containing Eimeria spp. oocysts were amplified in vivo. If propagation was successful, the samples were PCR-speciated and subjected to anticoccidial sensitivity testing (AST) for key members of both ionophore and chemical categories of anticoccidial drugs. The purpose of this study was to isolate Eimeria spp. relevant to commercial turkey production that possessed sensitivity to monensin, zoalene, and amprolium. Future research would evaluate the efficacy of wild turkey Eimeria spp. as vaccine candidates for reducing coccidiosis in commercial turkey flocks utilizing single oocyst-derived stocks obtained in the present study.


Coccidiosis , Coccidiostats , Eimeria , Poultry Diseases , Animals , United States , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Poultry Diseases/drug therapy , Poultry Diseases/epidemiology , Poultry Diseases/prevention & control , Chickens , Coccidiosis/drug therapy , Coccidiosis/prevention & control , Coccidiosis/veterinary , Feces , Turkeys , Oocysts
12.
Int J Mol Sci ; 24(9)2023 May 06.
Article En | MEDLINE | ID: mdl-37176073

Intestinal coccidiosis is a common parasitic disease in livestock, caused by the infection of Eimeria and Cystoisospora parasites, which results in great economic losses to animal husbandry. Triazine compounds, such as toltrazuril and diclazuril, are widely used in the treatment and chemoprophylaxis of coccidiosis. Unfortunately, widespread drug resistance has compromised their effectiveness. Most studies have focused on prophylaxis and therapeutics with toltrazuril in flocks, while a comprehensive understanding of how toltrazuril treatment alters the transcriptome of E. tenella remains unknown. In this study, merozoites of E. tenella were treated in vitro with 0.5 µg/mL toltrazuril for 0, 1, 2 and 4 h, respectively. The gene transcription profiles were then compared by high-throughput sequencing. Our results showed that protein hydrolysis genes were significantly upregulated after drug treatment, while cell cycle-related genes were significantly downregulated, suggesting that toltrazuril may affect parasite division. The expression of redox-related genes was upregulated and elevated levels of ROS and autophagosomes were detected in the parasite after toltrazuril treatment, suggesting that toltrazuril may cause oxidative stress to parasite cells and lead to its autophagy. Our results provide basic knowledge of the response of Eimeria genes to toltrazuril and further analysis of the identified transcriptional changes can provide useful information for a better understanding of the mechanism of action of toltrazuril against Eimeria.


Coccidiosis , Coccidiostats , Eimeria tenella , Eimeria , Poultry Diseases , Animals , Eimeria tenella/genetics , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Chickens , Poultry Diseases/drug therapy , Coccidiosis/drug therapy , Triazines/pharmacology , Triazines/therapeutic use , Oxidative Stress , Autophagy/genetics
13.
Article En | MEDLINE | ID: mdl-37247559

Worldwide distributed coccidiosis is caused by infection of both Eimeria species and Cystoisospora in the host intestine and causes huge economic losses to the livestock industry, especially the poultry industry. The control of such diseases relies mainly on chemoprophylaxis with anticoccidials, which has led to a very common drug resistance in this field. However, the genetic mechanisms underlying resistance to many anticoccidial drugs remain unknown. In this study, strains of E. tenella resistant to 250 mg/kg monensin were generated and characterized. Forward genetic approaches based on pooled genome sequencing, including experimental evolution and linkage group selection, were used to locate candidate targets responsible for resistance to monensin and diclazuril in E. tenella. A total of 16 nonsynonymous mutants in protein-coding genes were identified in monensin-resistant strains, and two genomic regions with strong selection signals were also detected in diclazuril-resistant strains. Our study reveals the genetic characterization of the experimental evolution and linkage group selection in Eimeria species, and also provides important information that contributes to the understanding of the molecular mechanism of drug resistance in coccidia.


Coccidiosis , Coccidiostats , Eimeria tenella , Eimeria , Poultry Diseases , Animals , Monensin/therapeutic use , Eimeria tenella/genetics , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Chickens , Poultry Diseases/drug therapy , Poultry Diseases/prevention & control , Coccidiosis/drug therapy , Coccidiosis/veterinary
15.
Biomater Sci ; 11(5): 1725-1738, 2023 Feb 28.
Article En | MEDLINE | ID: mdl-36648120

Coccidiosis is a worldwide epidemic intestinal disease with high incidence, which causes huge economic losses. Halofuginone hydrobromide (HF) is widely applied as an effective anticoccidial drug in the poultry industry. However, its therapeutic efficacy is severely restrained due to toxic effects, poor aqueous solubility and low permeability. Nanotechnology can improve the biological effect of drugs, and thus, reduce administered doses and toxic effects. The objective of this study was to investigate the therapeutic and preventive potential of novel HF-loaded D-α-tocopherol polyethylene glycol 1000 succinate (TPGS) polymer micelles (HTPM) for preventing coccidiosis in chickens. The HTPM were approximately spherical with a hydrodynamic diameter of 12.65 ± 0.089 nm, a zeta potential of 8.03 ± 0.242 mV, a drug loading of 14.04 ± 0.12%, and an encapsulation efficiency of 71.1 ± 4.15%. HF was encapsulated in the polymer micelles through interactions with TPGS, as characterized by X-ray diffraction (XRD) and Fourier transform infrared (FT-IR) spectroscopy. Cellular take up assays showed that TPGS polymer micelles could enhance drug internalization to alleviate intestinal apoptosis induced by coccidiosis and promote the necrosis of second-generation merozoites of E. tenella. Notably, clinical trials proved that 1.5 mg L-1 HTPM had a stronger anticoccidial effect on E. tenella than that of 3 mg kg-1 HF premix. Amplicon sequencing identified that HTPM could alleviate coccidiosis by restoring the structure of the gut microbiome. These findings indicated that the anticoccidial efficacy of HF was significantly enhanced after being encapsulated in polymer micelles, and further demonstrated the potential protective application of nano-encapsulating anticoccidial drugs as a promising approach to control coccidiosis in poultry. In summary, HTPM hold huge potential as an effective therapeutic agent for coccidiosis.


Coccidiosis , Coccidiostats , Eimeria tenella , Poultry Diseases , Animals , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Chickens , Micelles , Spectroscopy, Fourier Transform Infrared , Poultry Diseases/drug therapy , Poultry Diseases/prevention & control , Coccidiosis/drug therapy , Coccidiosis/veterinary , Coccidiosis/epidemiology , Polymers/pharmacology
16.
J Equine Vet Sci ; 120: 104183, 2023 01.
Article En | MEDLINE | ID: mdl-36470515

Equine protozoal myeloencephalitis (EPM) has remained a devastating neurological disease of the Americas, especially in young performance horses. Prophylactic treatment strategies with diclazuril have shown to reduce seroprevalence and titer levels to Sarcocystis neurona in healthy horses continuously exposed to the apicomplexan parasite. The goal of this study was to determine if the FDA-labeled dose of 1 mg/kg of 1.56% diclazuril (ProtazilTM) given once weekly to healthy adult horses would achieve steady-state concentrations in plasma known to be inhibitory to S. neurona in cell culture. Five individual diclazuril doses were administered at weekly intervals to 8 adult horses. Blood was collected via venipuncture immediately before (trough concentration) and 10 hours after (peak concentration) each diclazuril administration. Following the fifth dose, additional blood samples were collected every 24 hours after the peak blood collection for 7 days. All plasma samples were analyzed by high-pressure liquid chromatography. The pharmacokinetic analysis was performed using a nonlinear mixed effects model. The mean population-derived peak concentration was 264 ng/mL and the mean terminal half-life was 3.6 days. Thus, the oral administration of an FDA-labeled dose of diclazuril to healthy horses once a week was able to produce steady-state plasma drug concentrations known to inhibit S. neurona in vitro.


Coccidiostats , Sarcocystis , Horses , Animals , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Seroepidemiologic Studies , Nitriles/pharmacology , Nitriles/therapeutic use
17.
Vet Ital ; 59(2)2023 Jul 30.
Article En | MEDLINE | ID: mdl-38625750

This study aimed to investigate the comparison of effect of anticoccidal drugs including lasalocid and diclazuril with probiotic and synbiotic on the growth performance and intestinal morphology in broiler chicken. One hundred eighty chickens (Ross 308, 1 day old) were randomly divided into 6 equal groups (n=30) including the negative control (basal diet), the positive control (basal diet+oral inoculation of 3×104 sporulated oocytes of E. tenella, and four treatment groups. At days of 28 and 49 of age, 9 chickens were blindly chosen from each group were scarified by decapitation and their various segments of small intestine including ileum, jejunum, and duodenum were evaluated histomorphologically. We found that the economic losses resulted from coccidial infection in the poultry industry are caused by the decreased performance of broiler chicken induced by morphological changes in the any three segments specially jejunum. The anticoccidial drugs, synbiotic and probiotic can partially prevent morphological changes in any three segments of small intestine in broiler chicken with coccidiosis. Since morphological changes in the jejunum begin earlier than in other parts and surface area of jejunal villi is important for nutrition absorbance as well as growth performance, lasolacid was found to a be more efficient treatment in this regard.


Coccidiostats , Nitriles , Poultry Diseases , Probiotics , Triazines , Animals , Lasalocid/pharmacology , Lasalocid/therapeutic use , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Chickens , Probiotics/pharmacology , Intestine, Small , Poultry Diseases/prevention & control , Poultry Diseases/drug therapy
18.
Microb Pathog ; 173(Pt A): 105823, 2022 Dec.
Article En | MEDLINE | ID: mdl-36243384

Coccidiostat and antibiotics are widely used in poultry industry, but their effects on cecum microbial community and metabolomics in chickens infected with coccidia have been rarely studied. In this study, we analyzed the changes of microbiota and metabolomic which associated with Eimeria tenella infection in 8 days of age chickens in the presence or absence of ethanamizuril, sulfachlorpyridazine or their combinations treatment for 3 consecutive days. 16S rRNA gene sequencing and LC-MS/MS analyses were used to profile the cecal microbiome and metabolome in each group of chickens on 7 days post-infection. The results showed that coccidial infection induced significant perturbations in the distribution of microbial taxonomy and the metabolism of physiological functional molecules in cecal contents. Ethanamizuril treatment seemed to transform microbiota into a steady state conducive to animal health, and sulfachlorpyridazine treatment alleviated the growth of potentially harmful bacteria such as Escherichia-Shigella. The change trends of metabolites such as n-carbamoylglutamic acid were consistent with the anticoccidial effect of ethanamizuril. The combinations of ethanamizuril and sulfachlorpyridazine at low-dose had little effect on gut microbiota, metabolism and anticoccidial effect. These data indicate that the cecal microbiota and metabolic status of chickens infected with E. tenella following ethanamizuril treatment could be used to monitor the response to drug efficacy. This study provides a new system approach to elucidate the microbiota, metabolic and therapeutic effects of the combination of coccidiostat and antibiotics in the context of avian coccidiosis.


Coccidiosis , Coccidiostats , Eimeria tenella , Gastrointestinal Microbiome , Poultry Diseases , Sulfachlorpyridazine , Animals , Eimeria tenella/genetics , Chickens/microbiology , Sulfachlorpyridazine/therapeutic use , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , RNA, Ribosomal, 16S/genetics , Chromatography, Liquid , Poultry Diseases/drug therapy , Poultry Diseases/microbiology , Tandem Mass Spectrometry , Cecum/microbiology , Coccidiosis/drug therapy , Coccidiosis/veterinary , Gastrointestinal Microbiome/genetics , Metabolomics , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/therapeutic use
19.
Sci Rep ; 12(1): 17060, 2022 10 12.
Article En | MEDLINE | ID: mdl-36224232

The study was conducted to consider the anticoccidial and immunogenic effectivities of encapsulated organic acids and anticoccidial drugs in broilers reared on a reused litter infected with Eimeria spp. for simulating in-field exposure to avian coccidiosis. 525 mixed-sex one-day-old broiler chicks (Ross 308) were used in a 2 × 3 factorial experiment as a completely randomized design with seven experimental groups and five replicates of 15 chicks. The seven experimental groups were included: negative (uninfected; T1) and positive (infected; T2) control groups fed a diet without additive, and other infected groups (T3-T7) fed diets supplemented with 0.05% maduramicin, 0.02% diclazuril, 0.1% EOAs, 0.05% maduramicin and 0.1% EOAs, 0.02% diclazuril and 0.1% EOAs. During the experimental period, the evaluated parameters were European production efficiency factor (EPEF; at 22 days of age (d)), oocyst output per gram feces (OPG; at different ages), oocyst reduction rate (ORR; at 22-d), survival rate (SR; at 22-d), caecal lesion score (CLS at 22-d), sporulation percentage (SP; by in vitro anticoccidial tests), bloody diarrhea (BD; by scoring the bloody feces each morning from 13 to 31-d), immunity (humoral test at 28 and 35-d and cell-mediated test at 22-d), goblet cells analysis of the jejunum (GC; at 22-d) and anti-coccidiosis index (ACI; at 22-d). EOAs and anticoccidials, especially their simultaneous feeding improved (P < 0.05) broiler's EPEF, SR, OPG, ORR, SP, CLS, immunity and BD (scored). ACI was improved (P < 0.05) by EOAs more than anticoccidials (marked vs. moderate). The highest ACI was significantly observed in EOAs + diclazuril group. EOAs as a safe alternative had more intensive anticoccidial and immunogenic properties and increased the anticoccidial drugs' effectiveness, especially diclazuril in Eimeria spp-infected broilers.


Coccidiosis , Coccidiostats , Eimeria , Poultry Diseases , Animals , Chickens , Coccidiosis/drug therapy , Coccidiosis/veterinary , Coccidiostats/pharmacology , Coccidiostats/therapeutic use , Lactones , Nitriles , Organic Chemicals , Poultry Diseases/drug therapy , Triazines
20.
Vet Med Sci ; 8(6): 2511-2520, 2022 11.
Article En | MEDLINE | ID: mdl-36049150

BACKGROUND: Coccidiosis is an endemic protozoal disease of chickens normally controlled by ionophores. However, coccidiostats are also antibiotics, and evidence of resistance in both coccidia and bacteria may develop and reduce antibacterial activity in humans. This has led to a search for natural coccidiostats, such as green tea. OBJECTIVES: To study the effects of supplementing broilers with various levels and types of green tea, in comparison to use of a conventional coccidiostat or a control, unsupplemented diet. METHODS: A total of 360 male, day-old Ross 308 broilers (days 1-42) were used to evaluate the gut morphology and performance when challenged with coccidiosis and fed varying dietary levels of green tea powder or extract. Treatments were Negative control (NC, unsupplemented control diet); positive control (PC, control diet + commercial coccidiostat); control diets with 0.2, 0.3 or 0.4 g/kg green tea extract (GTE 0.2, 0.3 and 0.4); and control diets with 1, 2 or 3 g/kg green tea powder (GTP 1, 2 and 3). RESULTS: Compared with NC, PC and all green tea treatments, but particularly GTE0.4, increased feed intake and growth rate, with the best feed conversion ratio at GTE0.4. As a proportion of carcase weight, higher inclusion rates increased intestine weight and decreased abdominal fat. The duodenum, jejunum and ileum of birds fed green tea, and particularly GTE0.4, had longer, wider villi, and shallower crypts. Epithelium thickness was reduced by green tea and PC, compared to NC. Clostridium perfringens and coliform populations decreased in proportion to green tea inclusion rate and decreased in PC. Lactobacilli increased with green tea and were more for NC than PC. Green tea at the highest concentrations reduced blood glucose and LDL and VLDL cholesterol. CONCLUSIONS: Green tea offers a possible replacement for conventional ionophores to control coccidiosis in broiler chickens. The best inclusion rate was 0.4 g/kg.


Coccidiosis , Coccidiostats , Animals , Male , Humans , Chickens , Coccidiostats/therapeutic use , Tea , Powders , Etoposide , Diet/veterinary , Coccidiosis/veterinary , Cyclophosphamide , Ionophores
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