Showing posts with label Hendra. Show all posts
Showing posts with label Hendra. Show all posts

Queensland: A Hendra Watch & A New Vaccine

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Nipah/Hendra Virus & Fruit Bat Home Range – WHO


# 6706

 

 

Although long known to carry rabies, over the past two decades bats have increasingly been linked to emerging infectious diseases.

 

The SARS-CoV (coronavirus) outbreak of 2002-2003 – which infected roughly 8,000 people and killed nearly 800 – is undoubtedly the best known of these diseases, but is by no means the only one to emerge.

 

Genetic analysis of two recent novel coronavirus infections in the Middle East suggest (but fall short of proving) that bats may be the primary host for this virus as well (see Coronavirus `Closely Related’ To HK Bat Strains).

 

And the natural reservoir for the Ebola viruses (including Marburg) are believed to be fruit bats of the Pteropodidae family.

 

Prior to the SARS outbreak - during the 1990s – two new bat-borne viruses made headlines; Nipah and Hendra, both henipaviruses of the family Paramyxoviridae.

 

Of the two, Nipah has been the deadliest, causing outbreaks primarily in India and Bangladesh. But the virus was first discovered in April of 1999 when an outbreak occurred at a pig farm in Malaysia. 

 

During this initial outbreak, the virus jumped to local swine herds from bats, and infected more than 250 people, killing more than 100. The virus was then exported via live pigs to Singapore, where 11 more people died (see MMWR Update: Outbreak of Nipah Virus -- Malaysia and Singapore, 1999)

 

Over the past decade, Nipah has sparked a hand full of smaller outbreaks across Southern Asia with the greatest activity centered around Northern India and Bangladesh. Fruit bats (Pteropodidae) are considered the natural host of Nipah virus.

 

Perhaps most concerning has been evidence of limited nosocomial, or human-to-human transmission, of the Nipah virus (see Bangladesh: Updating The Nipah Outbreak).

 

The Nipah virus, like it’s close cousin the Hendra virus, is classified as a biosecurity level 4 (BSL-4) agent.

 

While not associated with as many human fatalities, the Hendra virus was first identified after the deaths of 13 horses and a trainer in Hendra, a suburb of Brisbane, Australia in 1994. A stable hand, who also cared for the horses, was hospitalized, but survived.

 

Another outbreak was later identified as having taken place in MacKay, 1000 km to the north of Brisbane, the previous month. Two horses died, and the owner was hospitalized several weeks later with meningitis. He recovered, but developed neurological symptoms and died 14 months later.

 

Over the past 18 years 40 outbreaks of Hendra virus – all involving horses – have been reported in Australia. Four human fatalities have been linked to the virus as well.

 

Subsequent studies have showed a high prevalence of the newly identified Hendra virus in Pteropid fruit bats (flying foxes) in the region.

 

Unlike Nipah, to date no human-to-human transmission of Hendra has been documented.


All of which brings us to the latest outbreak news, and hope for a new vaccine for horses that just became available. First stop, an update from the QLD Department of Agriculture, Fisheries, and Forestry.

 

November 2012


Hendra virus communique no.10-5 November 2012

Hendra virus incident Ingham

Biosecurity Queensland is managing a Hendra virus incident in Ingham after a positive test result was received on Friday 2 November 2012.

 

A mare was first noticed unwell on Wednesday 31 October 2012 by her owner. She was not interested in food, had a slight nasal discharge, rapid, laboured breathing, elevated heart rate, lowered head and was unsteady on her feet.

 

A private veterinarian visited the horse and collected samples for Hendra virus testing. The horse deteriorated and went down and was euthanased on Thursday 1 November 2012.

Movement restrictions

Biosecurity Queensland has quarantined the property and undertaken tracing and risk assessments to determine susceptible animals that may have had exposure to the virus.

 

There are eight horses remaining on the property as well as dogs and cats. Several rounds of testing will be conducted on animals assessed to be at risk of being exposed to Hendra virus before the quarantine can be lifted.

 

Restrictions will apply to moving horses and horse materials on and off the infected property, and the property will be quarantined for at least one month. There are no other movement restrictions for the general Queensland horse population because of Hendra virus.

Hendra virus vaccine

A commercial pharmaceutical company has released a Hendra virus vaccine for use in horses under a Minor Use Permit. Under permit conditions, only accredited veterinarians can administer the vaccine.

 

The vaccine provides another option for the horse industry to reduce the risk of Hendra virus infection; however it is important to remember no vaccine is 100% effective and people in contact with horses need to continue to practice good biosecurity and hygiene measures even if horses are vaccinated.

 

Horse owners should discuss with their veterinarian whether vaccinating their horse is appropriate.

 


From CSIRO (Commonwealth Scientific and Industrial Research Organisation) we get more details on this newly available vaccine, via a 9 minute audio podcast & transcript.

 

Vaccine for killer Hendra virus launched

Australian horse owners and the equine industry have received an important boost in their fight against the deadly Hendra virus with the introduction of Equivac® HeV vaccine. (9:02)

  • 1 November 2012

 

 

A final note, in the QLD notice above, it mentions that dogs and cats are quarantined, as well as horses. This comes about primarily because in 2011, we saw the first evidence of canine infection with the virus (see Australia: Dog Tests Positive For Hendra Virus).

 

The Queensland DAFF maintains a FAQ file on Hendra and dogs, where they write:

 

What animals have been shown to get Hendra virus?

Naturally occurring infection is limited to horses, flying foxes, humans and dogs. In animals, naturally occurring clinical disease is limited to horses.

 

Hendra virus is present in wild flying fox populations but does not appear to cause disease in them.

Laboratory studies have shown that other species including cats, guinea pigs, ferrets and pigs can develop disease when inoculated with Hendra virus in an experimental setting. Other species, including rabbits and dogs, have developed antibodies to Hendra virus in an experimental setting, but did not develop any signs of illness.

 

Although transmission from animals other than horses to humans has not been demonstrated, it is always a concern whenever a virus adapts to or jumps to a new host.

 

It not only gives the pathogen fresh opportunities to mutate and evolve, it provides another potential vector to spread the disease.

 

And when that host is a dog or a cat – animals with whom humans closely interact – it naturally serves to increases those concerns.

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NIH: Investigating A Potential Treatment For Hendra & Nipah Viruses

 

 

# 5911

 

 

The movie `Contagion’ showed the world how a bat virus could mutate, evolve, and move into the human population. While the movie used a fictionalized MEV-1 virus, bats in some parts of the world are known to carry deadly pathogens, such as the Nipah and Hendra viruses.

 

While human infections with these two viruses have been relatively uncommon, when they have occurred they have proven particularly lethal, with fatality rates exceeding 60%.

 

Nipah was first identified in Malaysia in 1998, where it jumped to local swine herds from bats, and along with infecting hundreds of people, it caused the loss over 100 lives. The virus was then exported via live pigs to Singapore, where 11 more people died.

 

Over the past decade, Nipah has caused a number of small outbreaks across Southern Asia, although the most intense activity has been centered around Bangladesh.

 

The Hendra virus was first isolated in 1994 after the deaths of 13 horses and a trainer in Hendra, a suburb of Brisbane, Australia. A stable hand, who also cared for the horses, was hospitalized, but survived.

 

Another outbreak took place in MacKay, 1000 km to the north of Brisbane, the previous month. Two horses died, and the owner was hospitalized several weeks later with meningitis.

 

He recovered, but developed neurological symptoms and died 14 months later.

 

Subsequent studies have showed a high prevalence of the newly identified Hendra virus in Pteropid fruit bats (flying foxes) in the region.

 

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Nipah/Hendra Virus & Fruit Bat Home Range – WHO

 

Although very similar, unlike Hendra, the Nipah virus has been shown to be transmissible from human-to-human. Like all viruses, both have the potential to mutate and evolve - and over time - become better adapted to their hosts.

 

According to the World Health Organization there are currently no effective treatments for either of these diseases (see here and here), but according to a new study just published in the journal Science Translational Medicine, there is hope that may change.

 

The study is called:

 

Sci Transl Med 19 October 2011:
Vol. 3, Issue 105, p. 105ra103
Sci. Transl. Med. DOI:

10.1126/scitranslmed.3002901

A Neutralizing Human Monoclonal Antibody Protects African Green Monkeys from Hendra Virus Challenge

Katharine N. Bossart, Thomas W. Geisbert, Heinz Feldmann, Zhongyu Zhu, Friederike Feldmann, Joan B. Geisbert, Lianying Yan, Yan-Ru Feng, Doug Brining, Dana Scott, Yanping Wang, Antony S. Dimitrov, Julie Callison, Yee-Peng Chan, Andrew C. Hickey, Dimiter S. Dimitrov, Christopher C. Broder,† and Barry Rockx

 

The NIH – which supported this research – issued a press release yesterday afternoon describing this study:

 

Embargoed for Release
Wednesday, October 19, 2011
2 p.m. EDT

Antibody treatment protects monkeys from Hendra virus disease

NIH-supported group exploring whether protection extends to Nipah virus disease

A human antibody given to monkeys infected with the deadly Hendra virus completely protected them from disease, according to a study published by National Institutes of Health (NIH) scientists and their collaborators. Hendra and the closely related Nipah virus, both rare viruses that are part of the NIH biodefense research program, target the lungs and brain and have human case fatality rates of 60 percent and more than 75 percent, respectively. These diseases in monkeys mirror what happens in humans, and the study results are cause for hope that the antibody, named m102.4, ultimately may be developed into a possible treatment for people who become infected with these viruses.

 

In May 2010, shortly after the NIH study in monkeys successfully concluded, Australian health officials requested m102.4 for emergency use in a woman and her 12-year-old daughter. They had been exposed to Hendra virus from an ill horse that ultimately was euthanized. Both the woman and child survived and showed no side effects from the treatment.

(Continue . . . )

 

 

The human monoclonal antibody (hmAb) m102.4 has been the object of Hendra-Nipah research for a number of years. In 2009 research published in PLoS Pathogens  illustrated its protective effect against Nipah in ferrets.

 

A Neutralizing Human Monoclonal Antibody Protects against Lethal Disease in a New Ferret Model of Acute Nipah Virus Infection

 

 

Now that this hmAb has been shown effective against the Hendra virus in primates, researchers hope they may have the basis for what will eventually become a viable treatment for these deadly viruses.

 

For more on human monoclonal antibodies, and their potential to treat influenza, you may wish to revisit a couple of blogs I wrote in 2009 and 2010:

 

Research: Monoclonal Antibodies Against Influenza
Monoclonal Antibodies Revisited
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Australia: Dog Tests Positive For Hendra Virus

 

 

 

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Nipah/Hendra Virus & Fruit Bat Home Range – WHO

 

 

 

# 5716

 

 

Over the past month more than a dozen horses in and around Queensland Australia have died from the Hendra Virus – a pathogen normally carried by flying foxes (bats), but that can be transmitted to horses and, on rare occasions, to humans as well.

 

The virus was first isolated in 1994 after the deaths of 13 horses and a trainer in Hendra, a suburb of Brisbane, Australia. A stable hand, who also cared for the horses, was hospitalized, but survived.

 

Another outbreak took place in MacKay, 1000 km to the north of Brisbane, the previous month. Two horses died, and the owner was hospitalized several weeks later with meningitis. 

 

He recovered, but developed neurological symptoms and died 14 months later.


Subsequent studies have showed a high prevalence of the newly identified Hendra virus in Pteropid fruit bats (flying foxes) in the region.

 

In 1999, a very similar virus emerged at a Malaysian pig farm, resulting in 105 human deaths and the culling of one million pigs.  Exported pigs caused another outbreak at an abattoir in Singapore, resulting in 11 infections and 1 additional death.


This virus was designated Nipah, named after the place where it was first isolated in humans. It too, is believed to be carried by the fruit bat.

 

 

Since then, there have been scattered outbreaks of both viruses in Australia (Hendra virus) and in Bangladesh and adjacent parts of India (Nipah).  Of the two, the Nipah virus has infected and killed the most humans.

 

For more background on these two rare viruses, the CDC’s Special Pathogens Branch maintains a fact sheet:

 

Hendra Virus Disease and Nipah Virus Encephalitis

 

The World Health Organization maintains a website on the Hendra Virus (Hendra Virus (HeV) Infection) and Nipah Virus (Nipah Virus (NiV) Infection) on their Global Alert And Response (GAR) site.

 

Today, we’ve news of an unusual discovery out of Australia.  

 

A dog on one of the quarantined ranches in Queensland has tested positive for antibodies to the Hendra Virus.  Although the dog appears healthy, this indicates a previous exposure to the virus.

 

And this marks the first known infection of a dog by the virus in the wild.

 

The following notice appears on the Queensland Government Primary Industry & Fisheries website:

 

Current situation as at 26 July 2011

The Australian Animal Health Laboratory (AAHL) in Geelong has confirmed that a dog has tested positive for Hendra virus.

 

This is an unprecedented situation, and the first time outside a laboratory that an animal other than a flying fox or horse, or a human has been confirmed with Hendra virus infection.

 

Biosecurity Queensland´s policy is to test cats and dogs on properties where there are infected horses.

 

The remaining horses and dogs on this property are still being monitored daily and show no signs of illness.

 

We recommend that people keep dogs and cats away from sick horses to reduce the risk of such an infection happening.

 

 

While it is too soon to gauge the impact of this particular discovery, anytime a virus jumps species we tend to pay close attention.

 

Many of the common illnesses we think of as `human’ diseases actually began in other species, and only later migrated to humans.

 

Tuberculosis probably jumped to humans when man began to domesticate goats and cattle. Measles appears to have evolved from canine distemper and/or the Rinderpest virus of cattle.   And Influenza, as most of you know, is native to aquatic birds.

 

The list of zoonotic diseases (those shared between humans and animals) is long and continually expanding, and includes: SARS, Babesiosis, Borrelia (Lyme), Nipah, Hendra, Malaria, Hantavirus, Ebola, Bartonella, Leptospirosis, Q-Fever, bird flu and many, many others.

 

When a virus adapts to a new host, it not only gives it fresh opportunities to mutate and evolve, it provides another potential vector to spread the pathogen.

 

And when that host is a dog or a cat – animals with whom humans closely interact – the risks of spreading to humans are even greater.

 

As the following article from the Sydney Morning Herald tells us, in light of this latest discovery scientists are now tasked with determining what – if any – changes may have occurred in the Hendra virus.

 

 

Scientists guessing over Hendra dog

Kym Agius, Jessica Marszalek and Petrina Berry
July 26, 2011 - 5:49PM

AAP

The first dog to contract the Hendra virus has scientists guessing whether the virus is being transmitted differently or if humans can now catch the disease from canines.

(Continue . . . )

 

 

For now, there are far more questions than answers.

 

 

 

»» Read More