Showing posts with label Equisal Tapeworm Saliva Test. Show all posts
Showing posts with label Equisal Tapeworm Saliva Test. Show all posts

Friday, 19 January 2018

Worming for tapeworm - save wormers for when they are really needed



How do you know if your horse has a tapeworm burden that needs treating? 
Horse tapeworm burdens are usually ‘silent’ infections. You can’t tell by looking at a horse whether they have a burden and, it is not until tapeworm numbers are high enough to cause significant gut inflammation and blockages, that the horse will suffer either acute or low grade recurring colic symptoms.
The horse tapeworm, Anoplocephala perfoliata, predominantly attaches to the ileocaecal junction in the gut which is a narrow section between the small intestine and the caecum, so it is no surprise that large burdens can cause health problems.
Diagnosing tapeworm infections in horses has been difficult until recently, as tapeworms are not reliably detected by standard worm egg counts (WEC) due to the way in which they release eggs. However, saliva or blood antibody tests have been shown to be reliable and accurate*.

Why not just worm for tapeworm?
This is a common question as it is obviously easier to routinely worm horses. But it is increasingly important to avoid overuse of worming drugs. Horse worms are becoming resistant to several drugs used in this country which is a major problem because once resistance spreads, our drugs will no longer control worm infections and we will begin to see worm-related health problems emerging.
EquiSal® Tapeworm testing over the last 3 years has shown that only a quarter of horses in the UK required treatment. This is a big reduction in wormers being used to effectively control tapeworm burdens in horses. 

Saliva samples can be easily collected by horse owners using
the specially designed swab provided in the EquiSal® saliva
collection kit.
Research study recently published by Equine Veterinary Journal
A worm control programme using the EquiSal® Tapeworm saliva test has been proven to control tapeworm infections and reduce the use of tapeworm wormers at Bransby Horses, a horse welfare charity. The study reports the findings from 237 horses tested with EquiSal® Tapeworm over the course of a year2. Testing with EquiSal® Tapeworm reduced the use of tapeworm wormers by 86% compared to 6 monthly routine worming strategies.
The scientifically validated EquiSal® Tapeworm saliva test accurately diagnoses horses with a tapeworm infection, providing a low, borderline or moderate/high diagnosis and treatment is recommended for horses with a borderline or moderate/high result1. In this latest study, most horses diagnosed with a tapeworm infection in the first EquiSal® Tapeworm test reduced to low in the following two tests and 168 horses (71%) remained low throughout the study and didn’t require worming for tapeworm. Importantly, the number of horses with a tapeworm infection did not increase during the study period despite the reduced amount of wormer being administered to the herds –around 15% of horses needed worming at each testing. Only seven horses needed treatment after all three EquiSal® Tapeworm tests, suggesting that some horses are more susceptible to tapeworm infections.
The patterns of infection and reinfection seen during the study highlight how important it is to regularly test with EquiSal® Tapeworm. Testing every six months will identify horses with new infections and allow worming at an early stage. This approach limits the number of eggs contaminating paddocks and reduces exposure of other horses, as well as identifying horses which are more prone to infection. By incorporating EquiSal® Tapeworm testing into worming schedules, the frequency of tapeworm treatments are reduced which will, in turn, reduce the risk of tapeworm resistance in the future. 

The EquiSal® saliva test for tapeworm 
It is easy to integrate EquiSal® Tapeworm testing into worm control programmes – simply test every six months at a time when routine worming for tapeworm is considered. Saliva samples can be easily collected by horse owners using the specially designed swab provided in the EquiSal® saliva collection kit. Once the swab has collected enough saliva, as indicated by a colour change, the swab is placed in the preservative solution and returned to the EquiSal® testing laboratory using the freepost envelope. If a horse is diagnosed with a moderate/high burden a repeat test can be carried out 2-3 months after worming to determine if an additional treatment is required.


CASE STUDY. Jack’s story – carry out testing and only use wormers when they are really needed
Jack has been with his current owner for 13 years and in the past was routinely treated for tapeworm twice a year.
After Jack’s first EquiSal Tapeworm test in 2014, it came as a shock to his owner when he was diagnosed with a moderate/high infection.
Jack was wormed and 3 months later tested with EquiSal Tapeworm when he was again diagnosed with a moderate/high burden. He received a second worming dose and was tested after a further 3 months, using both the blood test and EquiSal Tapeworm. Both tests diagnosed a borderline result and Jack received another worming dose.
EquiSal Tapeworm has since diagnosed Jack with a low burden for the last 18 months.
Jack’s story suggests that he was likely to have been reinfected between his 6 monthly routine treatments, up until his first saliva test. The additional targeted treatment he received following his subsequent saliva tests ensured Jack’s tapeworm status was finally reduced to low. As well as testing/treating for tapeworm, Jack’s owner carried out good paddock maintenance, including regular poo picking and complete removal of muck from his grazing areas.
By continuing to routinely test with EquiSal® Tapeworm, Jack’s owner is now able to monitor for new infections and only use worming drugs when they are needed.
Interestingly, Jack has had a history of colic but since his low burden diagnosis, he has been well!

Correct paddock maintenance helps prevent reinfection
The horse tapeworm requires an additional host to complete its life cycle – the oribatid mite that lives on grassland. The mite ingests tapeworm eggs from dung piles and larvae grow within the mite until the horse eats the mite while grazing. It is important to carry out routine paddock management, such as regular muck clearance, where muck is completely removed from grazing and adjacent areas, as well as field rotation and resting where possible. Routinely clearing muck from grazing areas will significantly reduce infected mite levels on paddocks and help prevent reinfection after worming.

It is also important to restrict horses’ grazing while away from home, such as at show grounds. Lastly, ensure you know your horse’s accurate weight for correctly dosing wormers as under dosing can result in persistent burdens and continuous egg shedding.

Although it can be difficult to influence management practices outside of your own field to prevent infection, it is best practice for horses in adjacent paddocks to be following the same worm control programme.
Visit www.equisal.co.uk for more information on tapeworm in horses, to see a list of stockists or order a kit online.

Article by Dr Corrine Austin, scientist and director of Austin Davis Biologics

References:
1 Lightbody KL et al. (2017) Equine Vet J. DOI: 10.1111/evj.12742
2 Lightbody, K. L. et al. (2016) Vet Clin Path, 45: 335–346
 


Wednesday, 5 April 2017

Tapeworm; Understand the facts and manage the risk


Tapeworm
Understand the facts and manage the risks
by Dr Corrine Austin

Internal parasites present a constant challenge for horses, requiring ongoing monitoring and careful management to maintain optimum horse health. Incorrect management can lead to unchecked worm burdens, development of resistance to wormers and in the worst cases, ill health and death.

What is resistance?
Worms can develop the ability to survive the killing effect of wormers, usually through repeated exposure to worming drugs. The risk of resistance emerging is increased by practices such as routine worming strategies or under-dosing with wormers. It is therefore becoming increasingly important to 
The tapeworm Anoplocephala perfoliata
is the most common in the UK.
avoid routinely worming horses and to reserve the use of drugs for when they are really needed – when a horse has a confirmed burden.

The horse tapeworm
Diagram 1 - shows the ileocaecal junction
The most common worms to infect horses in the UK are small redworm (cyathostomins), roundworm (ascarids) and tapeworm (cestodes). Three species of tapeworm are capable of infecting horses; the most common in the UK is Anoplocephala perfoliata. It can grow up to 8 cm long and is made up of a series of segments. The head has four suckers which the tapeworm uses to attach itself to the caecum and to a small region of the intestines called the ileocaecal junction (see diagram 1).  
This localised attachment causes damage to the intestines and the presence of large numbers of tapeworms cause intestinal obstruction and clinical disease, resulting in colic.


Large number of tapeworms cause
intestinal obstruction, resulting
in colic
Diagnosing worm burdens in horses
The most common worms to infect horses in the UK are cyathostomins (small redworm), ascarids (roundworm) and cestodes (tapeworm). Worm egg counts (WEC), should be carried out regularly to monitor for small redworm and roundworm (note: a routine winter worming dose should still be carried out for encysted redworm until a diagnostic test is available). WEC are unreliable for detecting tapeworm burdens as eggs are not uniformly spread throughout the dung. Tapeworm burdens are more accurately diagnosed by either a blood or a saliva test, both of which detect tapeworm-specific antibodies. In the past, the accepted method to control tapeworms was to treat all horses every six months, regardless of whether they needed treating, but since the availability of accurate tests, this practice is no longer necessary or recommended.
The EquiSal Tapeworm saliva test
The EquiSal saliva test is carried out using the specially designed swab provided in the kit to collect saliva. The sample is sent back to the laboratory for testing in a tube containing preservative solution. It is easy to integrate EquiSal Tapeworm testing into your worm control programme – simply test every six months at a time when you would consider routine worming for tapeworm.
The test provides a low, borderline or moderate/high diagnosis and worming is recommended for horses diagnosed as borderline or moderate/high. Diagnostic accuracy has been proven through full validation of the test which has been published in the peer reviewed journal, Veterinary Clinical Pathology.
The EquiSal saliva  swab turns pink after collecting saliva
from a horse to be tested

The importance of routine testing
Routinely monitoring your horse for tapeworm burdens is important as, with other worm species, infection is dynamic and can be influenced by factors outside of your control. This was highlighted recently by results obtained in one of EquiSal’s research studies.
Ama and Charlie graze separately, in a regularly muck cleared field, surrounded by gardens and agricultural land with a bridleway running down one side. Both horses had been diagnosed with low burdens for two years, so it was quite a surprise when Ama’s test results diagnosed her with a moderate/high burden. However, the adjacent bridleway was found to have horse dung left by passing horses and this was enough to infect Ama, who grazes closest to the bridleway. This can be explained when considering the tapeworm life cycle, in which oribatid mites are intermediate hosts (see life cycle section). Oribatid mites living on the pasture would have ingested tapeworm eggs from the dung on the bridleway before moving to the paddock and been inadvertently eaten by Ama.  Ama’s results subsequently reduced to low burden diagnosis after worming.

Tapeworm life cycle
The tapeworm life cycle is different from other horse worms as it requires an intermediate host. Infected horses pass tapeworm eggs onto the pasture where they are consumed by free-living oribatid mites. The eggs develop into larvae within the mite until the mite is ingested by a grazing horse, allowing the larvae to be released into the intestines. The larvae complete their life cycle by attaching to the lining of the caecum or ileocaecal junction, where they develop into adult tapeworms capable of releasing eggs.
Oribatid mites live within the grass and soil of our pastures, but the number of infected mites depends on the level of infected horses grazing the paddocks. If there are a lot of infected horses in a paddock, then a higher proportion of the oribatid mites are likely to be infected. It is essential to manage tapeworm burdens in horses and this also minimises the number of infected mites present.


Testing before treating significantly reduces wormer doses
Routinely testing for tapeworm every six months and only treating horses diagnosed with a burden significantly reduces the doses of wormer being administered to horses, as approximately 75% of horses in the UK are diagnosed with a low burden so do not require treatment.
Case study: testing small herds
Endurance rider Karen Corr’s four horses were tested for tapeworm using the EquiSal Tapeworm kit. One horse, Zee, was found to have a moderate/high tapeworm burden and treated, whilst the three other horses were low and did not need treatment. Six months later, all of Karen’s horses, including Zee, were diagnosed with a low tapeworm burden, so no treatment was needed. Karen’s experiences with EquiSal Tapeworm tells us that targeted tapeworm control has been effective on her yard. Using this approach, only one dose of tapeworm wormer has been necessary for one horse this year, and Karen has been able to only use wormers when they are needed. Avoiding ‘blanket’ use of wormers is an important factor in reducing the risk of resistance emerging. “I’m convinced EquiSal testing should be an important part of our worm control regime,” says Karen.
Case study: testing large herds
In 2016, Bransby Horses, which uses saliva testing for horses in its care as part of its worm control strategy, tested in Spring and Autumn as well as testing horses new to the premises. Only 22% of the 749 test results were borderline or moderate/high and required treatment. This resulted in a big reduction in wormer administered to the horses – 583 doses to be exact!
Certain horses are less prone to tapeworm burdens and graze alongside those with burdens without easily becoming infected. This is similar for other worm species where 80% of all worms are said to be present in 20% of horses. It is also interesting to note that horses with tapeworm burdens aren’t necessarily the same horses with a tendency to have high WEC results.
Reducing the risk of tapeworm infections
Although it can be difficult to influence management practices outside of your own field to prevent infection, it is best practice for horses in adjacent paddocks to be following the same worm control programme.
It is important to carry out routine paddock management, such as regular muck clearance, where muck is completely removed from grazing and adjacent areas, as well as field rotation and resting where possible. It is also important to restrict horses’ grazing while away from home, such as at show grounds. Lastly, ensure you know your horse’s accurate weight for correctly dosing wormers as under dosing can result in persistent burdens and continuous egg shedding.

This article first appeared in the March 2017 issue of equine magazine. An annual subscription to equine costs just £20 for 11 issues - visit the TheEquineStore.co.uk to take out a subscription now.