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1.
Rev Bras Parasitol Vet ; 33(3): e005624, 2024.
Article in English | MEDLINE | ID: mdl-39258638

ABSTRACT

Trichinellosis is a zoonotic disease that has been studied mainly in domestic pigs (Sus scrofa domesticus). The cycle involves infection in domestic and wild fauna, which fulfill complex ecological roles, where Trichinella spiralis is reported in wild boar (Sus scrofa). The objective of this study was to determine the prevalence of trichinellosis in wild boar and evaluate the distance of positive animals to the nearest urbanization areas in Argentina Patagonia. Necropsies were carried out on wild boar hunted in the Nahuel Huapi and Lanín National Parks and surrounding areas. Skeletal muscle samples were collected from 1,694 wild boar and artificial digestion was performed on all samples. Trichinella spp. were found in 96 (5.8%) wild boar (0.2 to 424 Larvae/g). Parasitism in wild boar depends on the distribution of the population in natural and urban areas. Infected wild boar were found near peri-urban areas, demonstrating the importance of routine epidemiological surveillance and sanitary measures in and around cities. More research is needed to identify the Trichinella species that infect wild animals. We recommend the application of active and passive epidemiological surveillance in South America on exotic and native fauna that are hunted and consumed by humans.


Subject(s)
Sus scrofa , Swine Diseases , Trichinella , Trichinellosis , Animals , Sus scrofa/parasitology , Trichinellosis/epidemiology , Trichinellosis/veterinary , Trichinellosis/parasitology , Argentina/epidemiology , Swine Diseases/parasitology , Swine Diseases/epidemiology , Swine/parasitology , Trichinella/isolation & purification , Trichinella/classification , Disease Reservoirs/parasitology , Disease Reservoirs/veterinary , Prevalence , Introduced Species
2.
Vet Parasitol Reg Stud Reports ; 54: 101086, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39237230

ABSTRACT

Trichinella infections have been eliminated from pork where pigs are raised in biosecure facilities, but wildlife infections persist. Trichinella murrelli is the primary zoonotic species in wild carnivores in the United States, having been identified in several species of omnivores and carnivores. Here, we document its occurrence in seven of 21 (33.3%) red foxes (Vulpes vulpes) from six counties in Pennsylvania. Encysted Trichinella larvae were detected in muscle squashes (<5 g samples) of all seven foxes, and in histological sections of the tongue and limb muscle of three. Larvae from muscle squashes were pooled and tested in a multiplex PCR capable of differentiating all Trichinella species native to the USA; all samples contained only T. murrelli. This is the first identification of T. murrelli in red foxes from Pennsylvania, and the first such survey performed in the last three decades. Results indicate that Trichinella remains endemic in Pennsylvania wildlife and a threat to the health of those who consume wild game.


Subject(s)
Foxes , Trichinella , Trichinellosis , Animals , Foxes/parasitology , Trichinellosis/veterinary , Trichinellosis/parasitology , Trichinellosis/epidemiology , Pennsylvania/epidemiology , Trichinella/isolation & purification , Trichinella/classification , Female , Animals, Wild/parasitology , Male , Larva/classification
3.
J Parasitol ; 110(4): 402-411, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-39169852

ABSTRACT

Muscles of 25 bobcats (Lynx rufus) from remote areas of Mississippi in 2017 were tested for parasites. Testing for Sarcocystis infections included microscopic examination of fresh unstained muscle squashes, pepsin digestion of hearts and tongues, and histological sections of paraffin-embedded tissues. Sarcocystis spp. infections were detected in the muscles of 21 (84%) by a combination of methods. Sarcocysts were detected in the unstained tongue squashes of 2 bobcats. Sarcocystis sp. bradyzoites were detected in the pepsin digests of 3 of 19 hearts, and 12 of 19 tongues. In paraffin-embedded histological sections, sarcocysts were detected in 7 of 25 hearts, 17 of 25 tongues, and 5 of 23 limb muscles. Based on the character of the cyst wall, at least 3 morphologic types of sarcocysts were detected: those with small spikes on the cyst wall, corresponding to Sarcocystis felis, those with long villar protrusions, corresponding to Sarcocystis neurona, and those lacking visible cyst wall protrusions, representing an unidentified type of sarcocyst. Myositis associated with sarcocysts was seen in the tongues of 3, and in the limb muscles of 1 bobcat. Multilocus genotyping of the DNA extracted from paraffin-embedded sections from 2 bobcats, employing 18S, 28S, COI, ITS-1, and 5.8S and rpoB genes, diagnosed Sarcocystis caninum, S. felis, Sarcocystis lutrae, and S. neurona. An encapsulated species of Trichinella was identified in the tongue of 1; it represents the first documented occurrences in bobcats from Mississippi. Taken together, these observations suggest intensive exposure of these wild carnivores to Trichinella tissue cysts, implies predation or scavenging on these tissues promotes parasite transmission, and raises caution concerning zoonotic risk when such meat is rendered for human consumption.


Subject(s)
Lynx , Sarcocystis , Sarcocystosis , Tongue , Trichinella , Trichinellosis , Animals , Sarcocystosis/veterinary , Sarcocystosis/parasitology , Sarcocystis/classification , Sarcocystis/isolation & purification , Sarcocystis/genetics , Lynx/parasitology , Mississippi , Trichinellosis/veterinary , Trichinellosis/parasitology , Trichinella/isolation & purification , Trichinella/classification , Trichinella/genetics , Tongue/parasitology , Female , Male , Heart/parasitology , Muscle, Skeletal/parasitology , DNA, Protozoan/isolation & purification , DNA, Protozoan/chemistry , Prevalence
4.
Exp Parasitol ; 265: 108823, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39187057

ABSTRACT

Trichinosis is a common parasitic disease that affects the striated skeletal muscles, causing apoptotic and degenerative changes associated with myogenin expression in the affected myocytes. Hence, this study aimed to assess the ameliorative effects of stem cells and atorvastatin added to ivermectin on the infected myocytes during the muscular phase of murine trichinosis. 120 laboratory Swiss albino male mice were divided into 10 groups, and each group was subdivided into intestinal and muscular phases (each n = 6); uninfected control; untreated infected control; infected received ivermectin monotherapy; infected received atorvastatin monotherapy; infected received stem cells monotherapy; infected received ivermectin and atorvastatin dual therapy; infected received ivermectin and stem cells dual therapy; infected received atorvastatin and stem cells dual therapy; infected received ivermectin 0.2, atorvastatin 40, and stem cells triple therapy; and infected received ivermectin 0.1, atorvastatin 20, and stem cells triple therapy. Intestinal phase mice were sacrificed on the 5th day post-infection, while those of the muscular phase were sacrificed on the 35th day post-infection. Parasitological, histopathological, ultrastructural, histochemical, biochemical, and myogenin gene expression assessments were performed. The results revealed that mice that received ivermectin, atorvastatin, and stem cell triple therapies showed the maximum reduction in the adult worm and larvae burden, marked improvement in the underlying muscular degenerative changes (as was noticed by histopathological, ultrastructural, and histochemical Feulgen stain assessment), lower biochemical levels of serum NK-κB and tissue NO, and lower myogenin expression. Accordingly, the combination of stem cells, atorvastatin, and ivermectin affords a potential synergistic activity against trichinosis with considerable healing of the underlying degenerative sequel.


Subject(s)
Apoptosis , Atorvastatin , Ivermectin , Myogenin , Trichinellosis , Animals , Atorvastatin/pharmacology , Atorvastatin/therapeutic use , Male , Mice , Ivermectin/pharmacology , Ivermectin/therapeutic use , Trichinellosis/drug therapy , Trichinellosis/parasitology , Apoptosis/drug effects , Myogenin/genetics , Myogenin/metabolism , Muscle, Skeletal/parasitology , Muscle, Skeletal/pathology , Muscle, Skeletal/drug effects , Gene Expression/drug effects , Microscopy, Electron, Transmission , Stem Cell Transplantation , Trichinella spiralis/genetics , Trichinella spiralis/drug effects , Stem Cells/drug effects
5.
Res Vet Sci ; 179: 105381, 2024 Nov.
Article in English | MEDLINE | ID: mdl-39213743

ABSTRACT

Trichinella spp. are cosmopolitan parasites that infect a wide range of hosts, with wildlife being the main reservoir of these zoonotic nematodes, especially red foxes (Vulpes vulpes) and wolves (Canis lupus) due to their apex position in the food chain in most European countries. The aim of this study is to investigate the prevalence of Trichinella spp. in these wild canids and their epidemiological role in the Campania region (southern Italy). From 2017 to 2023, the carcasses of red foxes (n = 352) and wolves (n = 41) were collected as part of a health surveillance plan. Muscle samples were analysed individually by artificial digestion and four (1.1%) red foxes and nine (21.9%) wolves tested positive for Trichinella britovi. All Trichinella isolates were identified as T. britovi by multiplex PCR. Statistically significant differences in prevalence were found by province (p-value = 0.05) for red foxes and sampling years (p-value = 0.01) for wolves. The prevalence was lower in red foxes than in wolves, probably due to the longer life expectancy of wolves compared to red foxes and the role of wolves as apex predators compared to red foxes as meso-carnivores. The results obtained confirm the important role that these wild canids play in the circulation of the parasite.


Subject(s)
Foxes , Trichinella , Trichinellosis , Wolves , Animals , Foxes/parasitology , Wolves/parasitology , Italy/epidemiology , Trichinella/isolation & purification , Trichinellosis/epidemiology , Trichinellosis/veterinary , Trichinellosis/parasitology , Prevalence , Animals, Wild/parasitology
6.
Int J Food Microbiol ; 425: 110889, 2024 Dec 02.
Article in English | MEDLINE | ID: mdl-39214028

ABSTRACT

Trichinellosis is a zoonotic disease caused by Trichinella, with the main source of infection being the consumption of pork and pork-derived products. However, it can also be acquired from eating the meat from wild animals targeted for sport hunting. The objectives of this study were: 1) to develop and implement a molecular method for the identification of Sus scrofa (pig and wild boar) and Puma concolor (Puma) meat in sausages eaten raw, which were linked to trichinellosis outbreaks occurring in Córdoba, Buenos Aires and La Pampa provinces, Argentina, in 2010, 2021, and 2022, respectively; and 2) to identify the Trichinella species present in the food. Specific primers were designed for PCR amplification and nucleotide sequencing of a region of the mitochondrial cytochrome b gene from both host species. Samples from the mentioned outbreaks were analysed, and the molecular identification of Trichinella spp. larvae was also performed. Results of the species identification system revealed that sausages from Córdoba and Buenos Aires had a mixed composition of pork and puma meat, while those from La Pampa contained puma meat only. Trichinella spiralis was implicated in all three outbreaks. The species identification system developed and implemented in this study revealed two host species of Trichinella related to human cases, and alerts about the risk of zoonotic transmission to humans through infected puma meat.


Subject(s)
Disease Outbreaks , Meat Products , Puma , Sus scrofa , Trichinellosis , Animals , Trichinellosis/epidemiology , Trichinellosis/transmission , Trichinellosis/parasitology , Meat Products/parasitology , Argentina/epidemiology , Puma/parasitology , Swine , Sus scrofa/parasitology , Humans , Trichinella spiralis/genetics , Trichinella spiralis/isolation & purification , Trichinella/genetics , Trichinella/isolation & purification , Trichinella/classification , Zoonoses/parasitology , Zoonoses/transmission
7.
Int J Mol Sci ; 25(13)2024 Jul 05.
Article in English | MEDLINE | ID: mdl-39000473

ABSTRACT

Nematodes of the genus Trichinella are important pathogens of humans and animals. This study aimed to enhance the genomic and transcriptomic resources for T. pseudospiralis (non-encapsulated phenotype) and T. spiralis (encapsulated phenotype) and to explore transcriptional profiles. First, we improved the assemblies of the genomes of T. pseudospiralis (code ISS13) and T. spiralis (code ISS534), achieving genome sizes of 56.6 Mb (320 scaffolds, and an N50 of 1.02 Mb) and 63.5 Mb (568 scaffolds, and an N50 value of 0.44 Mb), respectively. Then, for each species, we produced RNA sequence data for three key developmental stages (first-stage muscle larvae [L1s], adults, and newborn larvae [NBLs]; three replicates for each stage), analysed differential transcription between stages, and explored enriched pathways and processes between species. Stage-specific upregulation was linked to cellular processes, metabolism, and host-parasite interactions, and pathway enrichment analysis showed distinctive biological processes and cellular localisations between species. Indeed, the secreted molecules calmodulin, calreticulin, and calsyntenin-with possible roles in modulating host immune responses and facilitating parasite survival-were unique to T. pseudospiralis and not detected in T. spiralis. These insights into the molecular mechanisms of Trichinella-host interactions might offer possible avenues for developing new interventions against trichinellosis.


Subject(s)
Transcriptome , Trichinella spiralis , Trichinella , Animals , Trichinella spiralis/genetics , Trichinella/genetics , Genomics/methods , Genome, Helminth , Gene Expression Profiling/methods , Larva/genetics , Larva/metabolism , Helminth Proteins/genetics , Helminth Proteins/metabolism , Species Specificity , Host-Parasite Interactions/genetics , Trichinellosis/parasitology , Trichinellosis/genetics
8.
Vet Med Sci ; 10(4): e1474, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38767566

ABSTRACT

BACKGROUND: Parasitic diseases of pigs are a public and veterinary health problem. Helminths influence pork production, whereas backyard pigs can transmit these parasites. OBJECTIVES: This work aimed to investigate the prevalence of antibodies against Ascaris suum and Trichinella spiralis in backyard pigs from Jamiltepec, Region de la Costa, Oaxaca, in Southwestern Mexico. METHODS: Six hundred sixty-four serum samples were obtained from backyard pigs from 23 rural villages distributed in 5 municipalities; samples were taken in a non-probabilistic manner with the owner's consent. The presence of serum antibodies against a total extract of A. suum adult worm was determined by ELISA. In contrast, antibodies to the excretion-secretion products of the T. spiralis muscle larva were determined by Western blot. RESULTS: The global seroprevalence for A. suum was 5.12% and 2.41% for T. spiralis; however, antibodies were only found in 8 villages and distributed in 3 municipalities. The highest frequency of positivity for Ascaris was found in the municipality of Santa Catarina Mechoacán (13.01%), whereas, in Santa María Huazalotitlán, the highest frequency of positivity for Trichinella was found (5.75%). In San Andrés, frequencies were 7.23% and 4.82%, respectively. No statistical differences were observed between populations. CONCLUSIONS: Our data suggest that helminth transmission is restricted by locality. However, further studies must be conducted to understand the factors limiting this transmission to promote pork meat production in parasite-free zones.


Subject(s)
Ascariasis , Ascaris suum , Swine Diseases , Trichinella spiralis , Trichinellosis , Animals , Mexico/epidemiology , Swine Diseases/epidemiology , Swine Diseases/parasitology , Trichinellosis/epidemiology , Trichinellosis/veterinary , Trichinellosis/parasitology , Swine , Ascariasis/epidemiology , Ascariasis/veterinary , Trichinella spiralis/isolation & purification , Trichinella spiralis/immunology , Seroepidemiologic Studies , Prevalence , Sus scrofa , Antibodies, Helminth/blood , Antibodies, Helminth/analysis , Rural Population/statistics & numerical data
9.
Exp Parasitol ; 262: 108775, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38735518

ABSTRACT

The limited activity of the traditional medications against T. spiralis encysted larvae handicaps complete cure of trichinellosis till now due to decreased permeability and absorption through tissues. MOX is listed worldwide for prevention and treatment of several internal and external nematodes. Consequently, the aim of this work was to investigate the effect of moxidectin versus ivermectin on experimental acute and chronic trichinellosis and to illuminate the potential mechanisms of their effects. 105 Mice were divided into four groups; Group I: Uninfected healthy control; Group II: Infected untreated control; Group III: Infected and treated with IVM and Group IV: Infected and treated with MOX. The groups (II, III and IV) were later subdivided equally into three subgroups (a, b, and c) according to the stage of treatment. Parasitological counting of adults and larvae besides immune-histopathological examination of intestines and muscles were done. Results exhibited that both IVM and MOX succeeded in reducing adults and larvae counts with higher potential of MOX in both intestinal and muscle phase. The preeminence of MOX was indicated by decreased inflammation, a significant reduction in the microvascular density (CD31 immunostaining) as well as a reduction in the percentage of fibroblast activation protein (FAP) immunostaining in muscle tissues. Accordingly, the current work recommends moxidectin as an innovative treatment for trichinellosis.


Subject(s)
Ivermectin , Macrolides , Trichinellosis , Animals , Trichinellosis/drug therapy , Trichinellosis/prevention & control , Trichinellosis/parasitology , Macrolides/therapeutic use , Macrolides/pharmacology , Mice , Ivermectin/therapeutic use , Ivermectin/pharmacology , Chronic Disease , Trichinella spiralis/drug effects , Acute Disease , Larva/drug effects , Female , Male , Anthelmintics/therapeutic use , Anthelmintics/pharmacology , Muscle, Skeletal/parasitology , Muscle, Skeletal/pathology
10.
Front Immunol ; 15: 1404752, 2024.
Article in English | MEDLINE | ID: mdl-38690267

ABSTRACT

Helminths produce calreticulin (CRT) to immunomodulate the host immune system as a survival strategy. However, the structure of helminth-derived CRT and the structural basis of the immune evasion process remains unclarified. Previous study found that the tissue-dwelling helminth Trichinella spiralis produces calreticulin (TsCRT), which binds C1q to inhibit activation of the complement classical pathway. Here, we used x-ray crystallography to resolve the structure of truncated TsCRT (TsCRTΔ), the first structure of helminth-derived CRT. TsCRTΔ was observed to share the same binding region on C1q with IgG based on the structure and molecular docking, which explains the inhibitory effect of TsCRT on C1q-IgG-initiated classical complement activation. Based on the key residues in TsCRTΔ involved in the binding activity to C1q, a 24 amino acid peptide called PTsCRT was constructed that displayed strong C1q-binding activity and inhibited C1q-IgG-initiated classical complement activation. This study is the first to elucidate the structural basis of the role of TsCRT in immune evasion, providing an approach to develop helminth-derived bifunctional peptides as vaccine target to prevent parasite infections or as a therapeutic agent to treat complement-related autoimmune diseases.


Subject(s)
Calreticulin , Complement C1q , Immune Evasion , Trichinella spiralis , Trichinella spiralis/immunology , Complement C1q/immunology , Complement C1q/metabolism , Complement C1q/chemistry , Animals , Calreticulin/immunology , Calreticulin/chemistry , Calreticulin/metabolism , Crystallography, X-Ray , Protein Binding , Molecular Docking Simulation , Helminth Proteins/immunology , Helminth Proteins/chemistry , Complement Activation/immunology , Immunoglobulin G/immunology , Humans , Antigens, Helminth/immunology , Antigens, Helminth/chemistry , Trichinellosis/immunology , Trichinellosis/parasitology , Complement Pathway, Classical/immunology , Protein Conformation
11.
J Wildl Dis ; 60(2): 401-412, 2024 04 01.
Article in English | MEDLINE | ID: mdl-38314854

ABSTRACT

Trichinellosis is a foodborne disease caused by ingestion of raw or undercooked meat containing Trichinella spp. larvae. Consumption of wild boar (Sus scrofa) meat represents an important source of human trichinellosis worldwide. In El Palmar National Park (EPNP), Argentina, invasive alien wild boars are controlled and meat from culled animals is released for public consumption following on-site artificial digestion (AD) testing. Meat trimmings and offal from the control program are often used as food for dogs (Canis familiaris). We evaluated infection and exposure to Trichinella spp. in wild boars from EPNP, as well as exposure to Trichinella spp. and associated risk factors in dogs and human consumers of wild boar meat. Trichinella spp. larvae were detected in muscle samples from 5/49 wild boars by AD (10.2%; 95% confidence interval [CI], 3.8%-23%), with a mean burden of 0.24 larvae per gram (lpg; range, 0.06-0.95 lpg). Anti-Trichinella antibodies were not detected in wild boar serum samples (n=42). In dogs, 12/34 were seropositive to Trichinella spp. (35.29%; 95%, CI, 20.3%-53.5%). Immunoglobulin (Ig) G antibodies were not detected in human serum samples (n=63). Our results reveal the presence, albeit at low prevalence, of Trichinella spp. in wild boars and exposure in dogs fed game offal. These findings suggest that the low prevalence and parasitic load in wild boars, together with the best practices applied by EPNP culling program personnel, contribute to keeping the risk of infection in people low. The dog results highlight that the parasite is circulating in the area, and therefore the risk of infection is not negligible. We recommend the implementation of an animal surveillance strategy in order to monitor the evolution of this zoonosis in the study area.


Subject(s)
Dog Diseases , Nitrophenols , Swine Diseases , Trichinella , Trichinellosis , Swine , Humans , Animals , Dogs , Trichinellosis/epidemiology , Trichinellosis/veterinary , Trichinellosis/parasitology , Argentina/epidemiology , Parks, Recreational , Swine Diseases/epidemiology , Swine Diseases/parasitology , Meat/parasitology , Immunoglobulin G , Sus scrofa , Dog Diseases/epidemiology , Epoxy Compounds
12.
Int J Biol Macromol ; 257(Pt 2): 128728, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38092101

ABSTRACT

Trichinellosis is a zoonotic parasitic disease that poses threats to human health, the meat industry, food safety, and huge financial losses. The critical stage of Trichinella spiralis (T. spiralis) infection is the invasion of intestinal larvae into the host's intestinal epithelial cells (IECs). T. spiralis Cathepsin B (TsCB) specifically interacts with IECs to facilitate the invasion of larvae. This study aims to look at how TsCB affects mouse IECs. TsCB was successfully cloned, expressed, and characterized, demonstrating its natural cysteine protease hydrolysis activity. A total of 140 proteins that interact with rTsCB were identified by GST pull-down combined with LC-MS/MS, including type I collagen, an essential component of the host's intestinal epithelial barrier system and intimately related to intestinal epithelial damage. TsCB transcription and expression levels rise, whereas type I collagen in the host's intestinal mucosa declines when the T. spiralis larvae invaded. Besides, it was discovered that TsCB bound to and degraded type I collagen of the host's intestine. This research can serve as a foundation for clarifying how T. spiralis invades the host's intestinal barrier and might provide information on potential targets for the creation of novel treatments to treat parasite illnesses.


Subject(s)
Trichinella spiralis , Trichinellosis , Animals , Mice , Humans , Collagen Type I/genetics , Collagen Type I/metabolism , Cathepsin B/genetics , Chromatography, Liquid , Tandem Mass Spectrometry , Intestines , Trichinellosis/metabolism , Trichinellosis/parasitology , Larva/metabolism , Mice, Inbred BALB C , Helminth Proteins/metabolism
13.
Microb Pathog ; 186: 106489, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38061666

ABSTRACT

Trichinellosis caused by Trichinella spiralis (T. spiralis) is a zoonotic disease that poses a substantial risk to human health. At present, vaccines used to prevent trichinellosis are effective, but the production of antibody levels and immunogenicity are low. Adjuvants can increase antibody levels and vaccine immunogenicity. As a result, it is critical to develop an effective adjuvant for the T. spiralis vaccine. Recent research has shown that traditional Chinese medicine polysaccharides with low-toxicity and biodegradability can act as adjuvants in vaccines. In this study, BALB/c mice were orally inoculated with a recombinant Lactobacillus plantarum (L. plantarum) vaccine expressing the T. spiralis cathepsin F-like protease 1 gene (rTs-CPF1), which was given three times at 10-day intervals. Lycium barbarum polysaccharide (LBP) was administered orally for 37 days. At 37 days after the first immunization, mice were infected with 350 T. spiralis muscle larvae (ML). Specific IgG and sIgA antibody levels against the T. spiralis CPF1 protein were increased in mice immunized with rTs-CPF1+LBP compared to those immunized with rTs-CPF1 alone. Furthermore, LBP increased IFN-γ and IL-4 expression levels, and the number of intestinal and intramuscular worms was significantly reduced in the rTs-CPF1+LBP group compared to that in the rTs-CPF1 group. In the rTs-CPF1+LBP group, the reduction rates of adult worms and muscle larvae were 47.31 % and 68.88 %, respectively. To summarize, LBP promotes the immunoprotective effects of the T. spiralis vaccine and may be considered as a novel adjuvant in parasitic vaccines.


Subject(s)
Lactobacillus plantarum , Trichinella spiralis , Trichinellosis , Mice , Humans , Animals , Trichinella spiralis/genetics , Trichinellosis/prevention & control , Trichinellosis/parasitology , Cathepsin F , Lactobacillus plantarum/genetics , Antigens, Helminth/genetics , Vaccines, Synthetic , Adjuvants, Immunologic/pharmacology , Mice, Inbred BALB C
14.
Parasitol Int ; 98: 102810, 2024 Feb.
Article in English | MEDLINE | ID: mdl-37730195

ABSTRACT

Trichinosis spiralis is a global disease with significant economic impact. Albendazole is the current-treatment. Yet, the world-widely emerging antimicrobial resistance necessitates search for therapeutic substitutes. Curcumin is a natural compound with abundant therapeutic benefits. This study aimed to evaluate the potential of crude-curcumin, chitosan and for the first time curcumin-nano-emulsion and curcumin-loaded-chitosan-nanoparticles against Trichinella spiralis adults and larvae in acute and chronic trichinosis models. Trichinosis spiralis was induced in 96 Swiss-albino mice. Infected mice were divided into 2 groups. Group I constituted the acute model, where treatment started 2 h after infection for 5 successive days. Group II constituted the chronic model, where treatment started at the 30th day-post-infection and continued for 10 successive days (Refer to graphical abstract). Each group contained 8 subgroups that were designated Ia-Ih and IIa-IIh and included; a; Untreated-control, b; Albendazole-treated (Alb-treated), c; Crude-curcumin-treated (Cur-treated), d; Curcumin-nanoemulsion-treated (Cur-NE-treated), e; Albendazole and crude-curcumin-treated (Alb-Cur-treated), f; Albendazole and curcumin-nanoemulsion-treated (Alb-Cur-NE-treated), g; Chitosan-nanoparticles-treated (CS-NPs-treated) and h; Curcumin-loaded-chitosan-nanoparticles-treated (Cur-CS-NPs-treated). Additionally, six mice constituted control-uninfected group III. The effects of the used compounds on the parasite tegument, in-vivo parasitic load-worm burden, local pathology and MDA concentration in small intestines of acutely-infected and skeletal muscle of chronically-infected mice were studied. Results showed that albendazole was effective, yet, its combination with Cur-NE showed significant potentiation against adult worms and muscle larvae and alleviated the pathology in both models. Cur-CS-NPs exhibited promising results in both models. Crude-curcumin showed encouraging results especially against muscle larvae on long-term use. Treatments effectively reduced parasite load, local MDA level and CD31 expression with anti-inflammatory effect in intestine and muscle sections.


Subject(s)
Chitosan , Curcumin , Parasites , Trichinella spiralis , Trichinellosis , Mice , Animals , Trichinellosis/drug therapy , Trichinellosis/parasitology , Albendazole/pharmacology , Albendazole/therapeutic use , Curcumin/pharmacology , Curcumin/therapeutic use , Chitosan/pharmacology , Chitosan/therapeutic use , Larva
15.
Acta Trop ; 249: 107076, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37977254

ABSTRACT

The research aimed to describe a new Trichinella spiralis dipeptidyl peptidase 1 (TsDPP1) and investigate its functions in the larval invasion of intestinal epithelial cells (IECs). The gene TsDPP1 was successfully replicated and produced in Escherichia coli BL21 (DE3), showing a strong immune response. TsDPP1 was detected in diverse stages of T. spiralis and showed significant expression in the intestine infective larvae (IIL) and adult worms at 6 days post infection, as confirmed by qPCR and Western blot analysis. The primary localization of TsDPP1 in this parasite was observed in cuticles, stichosomes, and embryos by using the indirect immunofluorescence assay (IIFA). rTsDPP1 exhibited the enzymatic function of natural dipeptidyl peptidase and showed specific binding to IECs, and the binding site was found to be localized on cell membrane. Following transfection with dsRNA-TsDPP1, the expression of TsDPP1 mRNA and protein in muscle larvae (ML) were decreased by approximately 63.52 % and 58.68 %, correspondingly. The activity of TsDPP1 in the ML and IIL treated with dsRNA-TsDPP1 was reduced by 42.98 % and 45.07 %, respectively. The acceleration of larval invasion of IECs was observed with rTsDPP1, while the invasion was suppressed by anti-rTsDPP1 serum. The ability of the larvae treated with dsRNA-TsDPP1 to invade IECs was hindered by 31.23 %. In mice infected with dsRNA-treated ML, the intestinal IIL, and adults experienced a significant decrease in worm burdens and a noticeable reduction in adult female length and fecundity compared to the PBS group. These findings indicated that TsDPP1 significantly impedes the invasion, growth, and reproductive capacity of T. spiralis in intestines, suggesting its potential as a target for anti-Trichinella vaccines.


Subject(s)
Cathepsin C , Helminth Proteins , Intestinal Mucosa , Trichinella spiralis , Trichinellosis , Animals , Female , Mice , Epithelial Cells/parasitology , Helminth Proteins/genetics , Helminth Proteins/metabolism , Larva/pathogenicity , Mice, Inbred BALB C , Trichinella spiralis/genetics , Trichinella spiralis/pathogenicity , Trichinellosis/parasitology , Cathepsin C/genetics , Cathepsin C/metabolism , Intestinal Mucosa/parasitology
16.
Parasit Vectors ; 16(1): 466, 2023 Dec 21.
Article in English | MEDLINE | ID: mdl-38129932

ABSTRACT

BACKGROUND: Amplicon-based next-generation sequencing (NGS) has rapidly gained popularity as a powerful method for delineating taxa in complex communities, including helminths. Here, we applied this approach to identify species and genotypes of zoonotic nematodes of the Trichinella genus. A known limitation of the current multiplex PCR (mPCR) assay recommended by the International Commission on Trichinellosis is that it does not differentiate Trichinella nativa from T. chanchalensis. METHODS: The new assay entails deep sequencing of an amplified variable fragment of the ribosomal cistron's (rDNA) internal transcribed spacer 1 using the Illumina platform. The assay was evaluated using first-stage larvae (L1) of select laboratory strains of various Trichinella taxa mixed in known proportions and then validated using archived L1 from 109 wildlife hosts. The species/genotypes of these L1 isolates from wildlife were previously determined using mPCR. RESULTS: NGS data analysis for Trichinella laboratory strains selected as representative of North American fauna revealed a sequence representation bias. Trichinella pseudospiralis, a non-encapsulated species, was the most underrepresented when mixed with T. spiralis, T. murrelli, T. nativa and Trichinella T6 in equal quantities. However, five L1 of T. pseudospiralis were readily revealed by NGS in a mix with 2000 L1 of T. nativa (1:400 ratio). From naturally infected wildlife, all Trichinella taxa revealed by mPCR were also identified by NGS in 103 of 107 (96.3%) samples amplified on both assays. NGS identified additional taxa in 11 (10.3%) samples, whereas additional taxa were revealed by mPCR in only four (3.7%) samples. Most isolates comprised single or mixed infections of T. nativa and Trichinella T6. On NGS, T. chanchalensis (T13) was detected in combination with Trichinella T6 in a wolverine (Gulo gulo) and in combination with T. nativa and Trichinella T6 in a marten (Martes americana) from the Northwest Territories, Canada. CONCLUSIONS: This new NGS assay demonstrates strong potential as a single assay for identifying all recognised Trichinella taxa as well as improved sensitivity for detecting under-represented and novel genotypes in mixed infections. In addition, we report a new host record for T. chanchalensis in American marten.


Subject(s)
Coinfection , Mustelidae , Trichinella , Trichinellosis , Animals , Trichinellosis/diagnosis , Trichinellosis/veterinary , Trichinellosis/parasitology , Animals, Wild/parasitology , Multiplex Polymerase Chain Reaction , Genotype , High-Throughput Nucleotide Sequencing
17.
J Helminthol ; 97: e100, 2023 Dec 15.
Article in English | MEDLINE | ID: mdl-38099459

ABSTRACT

Trichinellosis is a re-emerging worldwide foodborne zoonosis. Oxidative stress is one of the most common detrimental effects caused by trichinellosis. In addition, Trichinella infection poses an infinite and major challenge to the host's immune system. Resistance and side effects limit the efficiency of the existing anti-trichinella medication. Given that concern, this work aimed to investigate the anti-helminthic, antioxidant, anti-inflammatory and immunomodulatory effects of resveratrol and zinc during both phases of Trichinella spiralis infection. Sixty-four Swiss albino mice were divided into four equal groups: non-infected control, infected control, infected and treated with resveratrol, and infected and treated with zinc. Animals were sacrificed on the 7th and 35th days post-infection for intestinal and muscular phase assessments. Drug efficacy was assessed by biochemical, parasitological, histopathological, immunological, and immunohistochemical assays. Resveratrol and zinc can be promising antiparasitic, antioxidant, anti-inflammatory, and immunomodulatory agents, as evidenced by the significant decrease in parasite burden, the significant improvement of liver and kidney function parameters, the increase in total antioxidant capacity (TAC), the reduction of malondialdehyde (MDA) level, the increase in nuclear factor (erythroid-derived 2)-like-2 factor expression, and the improvement in histopathological findings. Moreover, both drugs enhanced the immune system and restored the disturbed immune balance by increasing the interleukin 12 (IL-12) level. In conclusion, resveratrol and zinc provide protection for the host against oxidative harm and the detrimental effects produced by the host's defense response during Trichinella spiralis infection, making them promising natural alternatives for the treatment of trichinellosis.


Subject(s)
Trichinella spiralis , Trichinellosis , Mice , Animals , Trichinellosis/parasitology , Resveratrol/therapeutic use , Antioxidants/metabolism , Zinc/pharmacology , Zinc/therapeutic use , Oxidative Stress , Anti-Inflammatory Agents/pharmacology , Biomarkers/metabolism
18.
Parasitol Res ; 123(1): 57, 2023 Dec 18.
Article in English | MEDLINE | ID: mdl-38105357

ABSTRACT

Trichinellosis is one of the global food-borne parasitic diseases that can cause severe tissue damage. The traditionally used drugs for the treatment of trichinellosis have limited efficacy against the encysted larvae in the muscular phase of the disease. Therefore, this study aimed to evaluate the role of atorvastatin and mesenchymal stem cells combined with ivermectin against different phases of Trichinella in experimentally infected mice. A total of 120 male Swiss albino mice were divided into two major groups (n = 60 of each), intestinal and muscular phases. Then, each group was subdivided into 10 subgroups (n = 6); non-infected control, infected non-treated control, infected ivermectin treated, infected atorvastatin treated, infected mesenchymal stem cells treated, infected combined ivermectin and atorvastatin treated, infected combined mesenchymal stem cells and ivermectin treated, infected combined mesenchymal stem cells and atorvastatin treated, infected combined mesenchymal stem cells and a full dose of (ivermectin and atorvastatin) treated, and infected combined mesenchymal stem cells and half dose of (ivermectin and atorvastatin) treated. Mice were sacrificed at days 5 and 35 post-infection for the intestinal and muscular phases, respectively. The assessment was performed through many parameters, including counting the adult intestinal worms and muscular encysted larvae, besides histopathological examination of the underlying tissues. Moreover, a biochemical assay for the inflammatory and oxidative stress marker levels was conducted. In addition, levels of immunohistochemical CD31 and VEGF gene expression as markers of angiogenesis during the muscular phase were investigated. The combined mesenchymal stem cells and atorvastatin added to ivermectin showed the highest significant reduction in adult worms and encysted larvae counts, the most noticeable improvement of the histopathological changes, the most potent anti-inflammatory (lowest level of IL-17) and anti-angiogenic (lowest expression of CD31 and VEGF) activities, and also revealed the highly effective one to relieve the oxidative stress (lowest level of SOD, GSH, and lipid peroxidase enzymes). These observed outcomes indicate that adding mesenchymal stem cells and atorvastatin to ivermectin synergistically potentiates its therapeutic efficacy and provides a promising candidate against trichinellosis.


Subject(s)
Trichinella spiralis , Trichinellosis , Mice , Male , Animals , Trichinellosis/drug therapy , Trichinellosis/parasitology , Ivermectin/therapeutic use , Ivermectin/pharmacology , Atorvastatin/therapeutic use , Atorvastatin/pharmacology , Vascular Endothelial Growth Factor A , Larva
19.
J Helminthol ; 97: e86, 2023 Nov 16.
Article in English | MEDLINE | ID: mdl-37970645

ABSTRACT

Trichinellosis is a global food-borne disease caused by viviparous parasitic nematodes of the genus Trichinella. Due to the lack of effective, safe therapy and the documented adverse effects of traditional therapy, this study aimed to evaluate the therapeutic effect of acetazolamide-loaded silver nanoparticles (AgNPs) on murine trichinellosis. Fifty male Swiss albino mice were divided into five groups of ten mice each: Group I, normal control group; Group II, infected with T. spiralis and not treated; Group III, infected and given AgNPs; Group IV, infected and treated with acetazolamide; and Group V, infected and treated with acetazolamide-loaded AgNPs. Mice were infected orally with 250 larvae. The efficacy was assessed by counting T. spiralis adults and larvae, measuring serum total antioxidant capacity, and observing the histopathological and ultrastructural alterations. Acetazolamide-loaded AgNPs treatment exhibited the highest percentage of reduction (84.72% and 80.74%) for the intestinal adults and the muscular larvae of T. spiralis-infected animals, respectively. Furthermore, during the intestinal and muscular phases, the serum of the same group had the best free-radical scavenging capacity (antioxidant capacity), which reduced tissue damage induced by oxidative stress. Histopathologically, the normal intestinal and muscular architecture was restored in the group treated with acetazolamide-loaded AgNPs, in addition to the reduced inflammatory infiltrate that alleviated inflammation compared to infected animals. Our results confirmed the marked destruction of the ultrastructural features of T. spiralis adults and larvae. Acetazolamide-loaded AgNPs are a promising therapy against T. spiralis infection.


Subject(s)
Metal Nanoparticles , Rodent Diseases , Trichinella spiralis , Trichinellosis , Male , Mice , Animals , Trichinellosis/parasitology , Acetazolamide/therapeutic use , Acetazolamide/pharmacology , Silver/pharmacology , Antioxidants/pharmacology , Metal Nanoparticles/therapeutic use , Larva
20.
Vet Res ; 54(1): 86, 2023 Oct 02.
Article in English | MEDLINE | ID: mdl-37784173

ABSTRACT

C-type lectin (CTL) is a protein that binds to saccharides and plays an important role in parasite adhesion, host cell invasion and immune evasion. Previous studies showed that recombinant T. spiralis C-type lectin (rTsCTL) promotes larval invasion of intestinal epithelium cells (IEC), whereas anti-rTsCTL antibodies inhibits larval invasion. Syndecan-1 (SDC-1) is a member of the heparan sulfate proteoglycan family which is mainly expressed on the surface of IEC and in extracellular matrices where they interact with a plethora of ligands. SDC-1 has a principal role in maintaining cell morphogenesis, establishing cell-cell adhesions, and regulating the gut mucosal barrier. The aim of this study was to investigate whether rTsCTL binds to SDC-1 on IEC, and the binding of rTsCTL with SDC-1 promotes larval invasion and its mechanism. IFA results show that rTsCTL and SDC-1 co-localized on Caco-2 cell membrane. GST pull-down and Co-IP verified the direct interaction between rTsCTL and SDC-1 on Caco-2 cells. qPCR and Western blotting revealed that rTsCTL binding to SDC-1 increased the expression of SDC-1 and claudin-2, and reduced the expression of occludin and claudin-1 in Caco-2 cells incubated with rTsCTL via the STAT3 pathway. ß-Xyloside (a syndecan-1 synthesis inhibitor) and Stattic (a STAT3 inhibitor) significantly inhibited rTsCTL binding to syndecan-1 in Caco-2 cells and activation of the STAT3 pathway, abrogated the effects of rTsCTL on the expression of gut tight junctions, and impeded larval invasion. The results demonstrate that binding of rTsCTL to SDC-1 on Caco-2 cells activated the STAT3 pathway, decreased gut tight junction expression, damaged the integrity of the gut epithelial barrier, and mediated T. spiralis invasion of the gut mucosa. TsCTL might be regarded as a candidate vaccine target against T. spiralis invasion and infection.


Subject(s)
Trichinella spiralis , Trichinellosis , Animals , Mice , Humans , Trichinella spiralis/physiology , Trichinellosis/parasitology , Trichinellosis/veterinary , Larva/physiology , Caco-2 Cells , Syndecan-1/genetics , Syndecan-1/metabolism , Intestinal Mucosa/metabolism , Epithelial Cells/metabolism , Mice, Inbred BALB C
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