Showing posts with label flu. Show all posts
Showing posts with label flu. Show all posts

Monday, December 26, 2011

Update: Influenza A (H3N2)v Transmission and Guidelines — Five States, 2011

Update: Influenza A (H3N2)v Transmission and Guidelines — Five States, 2011


Early Release

December 23, 2011 / 60(Early Release);1-4

From August 17 to December 23, 2011, CDC received reports of 12 human infections with influenza A (H3N2)v viruses that have the matrix (M) gene from the influenza A (H1N1)pdm09 virus (formerly called swine-origin influenza A [H3N2] and pandemic influenza A [H1N1] 2009 viruses, respectively [Box]). The 12 cases occurred in five states (Indiana, Iowa, Maine, Pennsylvania, and West Virginia), and 11 were in children (1,2). Six of the 12 patients had no identified recent exposure to swine. Three of the 12 patients were hospitalized, and all have recovered fully.
A case in an adult male in Indiana with occupational exposure to swine was among the 12, and two children in West Virginia who regularly attended the same day care accounted for the latest cases. This report describes those cases and swine influenza virus (SIV) surveillance being conducted by the U.S. Department of Agriculture (USDA).

Case Reports

Indiana.
 On October 28, 2011, CDC was notified by the Indiana Department of Health of a suspected case of A(H3N2)v virus infection in an adult male. The patient experienced onset of fever, cough, shortness of breath, nausea, vomiting, and body aches on October 20, and was hospitalized for 4 days. He did not receive treatment with influenza antiviral medications and recovered fully.
On October 22, a respiratory specimen from the patient was positive for influenza at the hospital. On October 28, the virus was identified by real-time, reverse transcription–polymerase chain reaction (rRT-PCR) testing at the Indiana State Public Health Laboratory as an inconclusive influenza A virus, consistent with results seen with other recent A(H3N2)v infections. On October 31, genome sequencing at CDC confirmed the virus as A(H3N2)v with the M gene from the A(H1N1)pdm09 virus, similar to the viruses identified in the other cases of human infection in the United States since August 2011.
The patient reported direct contact with swine during his work in the week before illness onset. He said he did not wear any personal protective equipment (PPE) because the swine did not exhibit signs of illness. No illness was reported among the patient's household members or other close contacts
.
West Virginia.
 On November 19, a child aged <5 years developed acute onset of fever after 1 week of cough and congestion. The child had been hospitalized for an unrelated condition 2 days before the onset of fever. On November 21, a respiratory specimen was collected. Rapid diagnostic tests conducted by the hospital were negative for influenza and respiratory syncytial virus, but influenza A was identified by an alternative rRT-PCR at the hospital. The specimen was forwarded to the West Virginia Office of Laboratory Services, where it was identified as a suspected influenza A (H3N2)v virus. Subsequent genome sequencing conducted at CDC confirmed the virus as A(H3N2)v with the M gene from the A(H1N1)pdm09 virus. The child, who had no recent travel or exposure to swine, was discharged on November 21, and has since recovered from the influenza illness.
An investigation was conducted to ascertain respiratory illnesses among contacts of the child that occurred during November 9–December 19. Multiple contacts, including children who regularly attended day care with the child, were found to have had respiratory illness during this period. On November 29, a second child aged <5 years who attended day care regularly with the first child and who had no recent travel or swine exposure became ill with fever, cough, diarrhea, and rhinorrhea. The second child did not seek medical care and recovered fully from the illness. A respiratory specimen obtained from the second child on December 7 was inconclusive by rRT-PCR at the West Virginia Office of Laboratory Services; however, the specimen was confirmed as influenza A (H3N2)v with the M gene from the A(H1N1)pdm09 virus via genome sequencing at CDC.
No additional A(H3N2)v cases have been identified among the other ill day care attendees or contacts of either patient. Enhanced surveillance for influenza-like illness and increased diagnostic testing of respiratory specimens is being conducted in West Virginia and adjacent counties in Maryland as part of the ongoing investigation of these cases. Currently, no evidence of additional human-to-human transmission in the community has been identified.

Influenza Surveillance of U.S. Swine

Surveillance for SIV in the United States is overseen by USDA, largely in swine that display influenza-like illness. In July 2009, USDA's Animal and Plant Health Inspection Service and the swine industry implemented a SIV surveillance program* to characterize the distribution of SIV in U.S. swine herds. To date, approximately 150 SIV isolates have undergone sequencing of three genes (hemagglutinin, matrix, and neuraminidase gene segments) and sequences have been submitted to GenBank.† Thirty isolates have been identified as A(H3N2) viruses and eight of those 30 have the M gene from the influenza A (H1N1)pdm09 virus as determined by an informal analysis of GenBank submission data by the USDA Agricultural Research Service. Further characterization and analysis are ongoing, and new submissions are added as diagnostic work is completed.

Reported by

Shawn Richards, Mark Glazier, Katie Masterson, Michael Denton, Indiana State Dept of Health; Cheryl Miller, DVM, Indiana Board of Animal Health. Carl Liebig, MD, Andrew J. Root, Cynthia Whitt, Mineral County Health Dept, Julie Freshwater, PhD, Sherif Ibrahim, MD, Danae Bixler, MD, Christi Clark, Loretta Haddy, PhD, West Virginia Dept of Public Health. Swine Influenza Virus Team, U.S. Dept of Agriculture. Douglas Jordan, MA, Matthew Biggerstaff, MPH, Scott Epperson, MPH, Lynnette Brammer, MPH, Lyn Finelli, DrPH, Susan Trock, DVM, Michael Jhung, MD, Joseph Bresee, MD, Stephen Lindstrom, PhD, Alexander Klimov, PhD, Daniel Jernigan, MD, Nancy Cox, PhD, Influenza Div, National Center for Immunization and Respiratory Diseases. Rachel Radcliffe, DVM, Career Epidemiology Field Officer Program, Office of Public Health Preparedness and Response; Tegwin Taylor, DVM, EIS officer, CDC. Corresponding contributor: Douglas Jordan, dejordan@cdc.gov, 404-639-3747 begin_of_the_skype_highlighting 404-639-3747 end_of_the_skype_highlighting.

Editorial Note

Human infections with the influenza viruses currently circulating among swine are rare. Since 2005, only 35 cases have been reported in the United States, but the frequency with which they have been detected increased in 2011. When different influenza viruses simultaneously infect a single host (e.g., a human or swine), exchange of genetic material can occur, resulting in a new influenza virus. Depending on the antigenic distance between the new virus and recently circulating seasonal viruses, little or no immunity might exist in the human population. Influenza A (H3N2)v viruses resulted from reassortment of influenza A (H1N1)pdm09 viruses with swine influenza A (H3N2) viruses. A diagram depicting this reassortment is available online from CDC's Public Health Image Library.§ Because these viruses carry a newly identified combination of genes, little information is available regarding transmission efficiency in swine, in humans, or between swine and humans. However, the recent human cases involving swine exposure and results of SIV surveillance indicate that these viruses also currently are circulating in swine herds.
The case of influenza A (H3N2)v infection after occupational contact with swine in Indiana and the apparent limited human-to-human transmission of A(H3N2)v virus that occurred in a day care setting in West Virginia represent two different possible scenarios for transmission of this virus. Work exposure highlights the risk for interspecies influenza transmission in occupational settings where humans are exposed to swine, an association that has been described previously (3–7). To minimize the risk for interspecies influenza transmission in occupational settings, CDC and the Occupational Safety and Health Administration (OSHA) encourage swine workers to 1) get vaccinated against human seasonal influenza, 2) wear appropriate PPE, and 3) practice good hygiene, such as washing hands thoroughly with soap and water, when in contact with swine, especially swine that show signs of illness. The National Pork Board also recommends producers work with their veterinarian to develop appropriate prevention and control measures for influenza in swine, which can include vaccinating swine against swine influenza. Similar to humans, swine infected with influenza viruses do not always exhibit signs of infection (8). Persons with swine exposure in the week before onset of an illness with symptoms of influenza requiring medical care should notify their health-care provider of their swine exposures. Persons who develop symptoms of influenza after close contact with swine are recommended to stay home until well to minimize contact with persons and swine as much as possible.
Guidance materials for persons who work with swine have been published by OSHA. In addition, the National Pork Board,** CDC, and the National Association of State Public Health Veterinarians have published guidance for persons exposed to swine in public settings (9). Clinicians should consider variant influenza virus infection in the differential diagnosis of patients with febrile respiratory illness who have been near swine whether at work or at an agricultural event, such as a fair or exhibit.
The A(H3N2)v cases in West Virginia involved two children who attended the same day care, but the first child was unlikely to have transmitted the virus to the second child, given the ≥10-day difference in their symptom onset dates. This represents a scenario of limited human-to-human transmission occurring in a day care setting. Therefore, clinicians also should consider the possibility of influenza A (H3N2)v infections in patients who have not had exposure to swine, particularly young children in those states where influenza A (H3N2)v cases have been reported. Clinicians who suspect variant influenza virus infection should obtain a nasopharyngeal swab, place the swab in viral transport medium, and contact their state or local health department to facilitate transport and timely diagnosis (10). Influenza A (H3N2)v viruses detected to date are susceptible to oseltamivir and zanamivir for the treatment of influenza. Clinicians who suspect variant influenza infection in a patient should consider treatment with these medications if clinically indicated (10). Because these viruses have the M gene from the influenza A (H1N1)pdm09 virus, they are resistant to amantadine and rimantadine.

CDC requests that state public health laboratories notify CDC immediately of suspected variant influenza A specimens and send them to the CDC Influenza Division's Virus Surveillance and Diagnostics Branch Laboratory. Confirmed cases should be investigated thoroughly and expeditiously to ascertain whether swine-to-human or human-to-human transmission is ongoing and to limit further exposures between humans with others and swine. Such investigations require close collaboration among state, local, and federal public and animal health officials.

CDC is working with USDA and state public health and animal health experts in the locations where these cases have occurred to investigate each case fully and to enhance influenza surveillance to detect human cases of variant influenza virus infections. The CDC rRT-PCR assay that was approved by the Food and Drug Administration in September 2011 is able to identify these cases as presumptive influenza A (H3N2)v cases. These diagnostic test kits have been distributed to public health laboratories in the United States and National Influenza Centers designated by the World Health Organization in other countries. Additional rRT-PCR test enhancements to further improve detection of influenza A (H3N2)v viruses are under development.
Limited serologic studies conducted to date indicate that young children have little preexisting immunity to influenza A (H3N2)v viruses. Because the hemagglutinin genes of these viruses are related to human influenza A (H3N2) viruses that circulated in the 1990s, older children and adults might have limited immunity against these viruses. Certain persons, including young children, pregnant women, persons with chronic health conditions such as asthma, diabetes, or heart and lung disease, and persons aged ≥65 years, are likely to be at greater risk for serious influenza-related complications from variant influenza viruses such as influenza A (H3N2)v. The influenza A (H3N2)v virus is different enough from current human seasonal influenza viruses that the seasonal influenza vaccine is not expected to provide significant protection.
CDC will provide routine and timely communications regarding these influenza A (H3N2)v viruses and other variant influenza viruses with the public, partners, state and local health departments, and stakeholders. Updated information and guidance documents related to A(H3N2)v viruses are available online from CDC at http://www.cdc.gov/flu/swineflu/influenza-variant-viruses.htm. http://www.cdc.gov/mmwr/preview/mmwrhtml/mm60e1223a1.htm

Sunday, December 18, 2011

India-Civic body told to ban rearing pigs in residential areas



Civic body told to ban rearing pigs in residential areas

With fear of Japanese Encephalitis (JE) looming large in the Capital, the Delhi Government has directed the civic body to immediately stop rearing of pigs in residential areas. While there are slaughterhouses for other animals, there are no slaughterhouses for pigs. A proposal has been moved by Directorate of Health Services which suggested that Delhi Government should impose municipal laws banning rearing pigs in residential colonies and areas as it was applied in the case of banning cows and buffalos in the capital.
It has also suggested regulating their stay in Delhi for a minimal period for their slaughtering at designated places. Sources say the Urban Development department will have to direct MCD to immediately stop rearing of the pigs in residential areas or regulate their stay for a minimal period for their slaughtering at designated places.
“The pigs are being reared all over Delhi in slums and resettlement colonies. In addition, pigs are being brought from the other states in the Capital and there is no slaughter house for pigs. These are being slaughtered in various places,” the proposal said. A senior official of health department said on the condition of anonymity that there is a possibility that Japanese Encephalitis may be an endemic by next year if it was not controlled or checked. The note says JE infection has been reported from neighbouring state UP and Haryana though virus infection in pigs could not be established initially.

The proposal further states out of 81 pig samples drawn in November last month 17 tested positive from different areas. The epideminological investigation carried out by the Delhi Government, NCDC and MCD confirms the transmission of infection to be locals. The positive samples are from Civil Lines (8), Shahdara south (6), SP zone (3). It would be pertinent to mention that Delhi Government had earlier decided to segregate pigs in the affected resettlement colonies and keep them in separate enclosures under huge mosquito nets. Due to certain reasons, it has not materialised. It is estimated that there are over 25,000 pigs in Delhi.

According to proposal, seven confirmed JE cases (five children and two adults) has been reported from four different hospitals (MBH, SL Jain hospital, BL Kapoor hospital and RML) for the first time in Delhi in September-October. The cases were found in JJ colony Jehangirpuri, JJ colony Bawana, JJ colony Inderpuri, JJ cluster Gole Market and Sangam Vihar. All cases were showing mild to moderate symptoms and there was no death. “The epideminological investigation by various agencies also confirm local confirm transmission of the infection in all cases. The affected areas have presence of pigs and water bodies in the vicinity,” it said. “Eight samples which were drawn from pigs in September showed no virus”, the proposal said.
The symptoms of JE may be flu-like illness with sudden onset of fever, chills, headache, tiredness, nausea and vomiting occurs in one in 250 infected human. The illness can progress to encephalitis and can be fatal in 30 per cent of the cases if not treated early.  http://www.dailypioneer.com/city/28451-civic-body-told-to-ban-rearing-pigs-in-residential-areas.html

Friday, December 2, 2011

Indonesia: #H5N1 Confirmed in Poultry Kerinci Regency #birdflu

December 2, 2011

Head of Animal Health (Keswan), Department of Animal Husbandry and Fisheries Kerinci District, Aryan said, if the chicken carcasses disposed of carelessly, as well as the spread of disease.
"Chickens are dying to be burned and buried in the right way. Do not let the chicken carcass is dumped into the river, because it can infect other chickens along the river," said Aryan to the Tribune, Friday (2 / 12).

He also asked people not to consume chicken that has been ill, let alone coming from areas that have been tested positive for bird flu.

"Traffic spread of cattle will also be monitored. Livestock or egg production derived from bird flu affected areas, should not be circulated out. If that happens, as well as the spread of disease," he said.

"Has there been outbreaks of bird flu infecting humans?
"Until now there is no information of bird flu virus found in humans. But if there are residents who have a virus, immediately went to the clinic," he explained.
If tested positive for bird flu, the health center can immediately refer the patient to the hospital.

Thursday, December 1, 2011

Two dozen schools near bird flu hit area shut down

Two dozen schools near bird flu hit area shut down

KATHMANDU, Dec 1: The Private and Boarding Schools Organization of Nepal (PABSON), on Thursday has called for closure of the schools that lie close to bird flu outbreak area in Bhaktapur.

PABSON Bhaktapur says that about two dozen schools near the flu affected area will remain closed until Monday starting Friday.

Marigold Secondary School, Millennium Secondary School, Om Gyan Mandir, Tri Star, Erudite Secondary School, Child Nature, Sagarmatha Secondary Schol, Dibya Deep are located nearby the poultry farm from where the disease is said to have spread. The decision of PABSON comes under the pressure from parents association.

According to Bhuwan Shrestha, President of Bhaktapur PABSON, parents, wary of the possibility of their children getting infected by the flu, demanded that the schools be closed for few days.

He said some children from the affected area have been sent for examination of possible infection and they are awaiting report.
“If they don´t test positive, schools will resume from Tuesday,” he added.

The government has claimed that it has applied all precautionary measures to curb the spread of the disease.



Published on 2011-12-01 22:23:01

Nepal: Schools To Close for 4 days over #birdflu menace #H5N1

2011-12-01

BHAKTAPUR: The Private and Boarding Schools' Organisation of Nepal (PABSON) Bhaktapur Chapter is to close 25 schools under its affiliation for four days in the district citing the bird flu menace.


A meeting of the PABSON Bhaktapur decided to close the schools in the western part of the Bhaktapur district which is around 3 kilometers of the Manohara area, said Secretary Shreekrishna KC.


Some fowls at the squatters’ settlement near the Manohara River in the district were found to be infected with H5N1 virus three days back.

Saturday, November 26, 2011

Applicability of a sensitive duplex real-time PCR assay for identifying B/Yamagata and B/Victoria lineages of influenza virus from clinical specimens

Appl Microbiol Biotechnol. 2011 Nov 24. [Epub ahead of print]

Source

Department of Social Medicine, Public Health School, Tongji Medical College, Huazhong University of Science and Technology, 13 Hangkong Road, Wuhan, 430030, People's Republic of China.

Abstract

Type B influenza virus is one of the major epidemic strains and responsible for considerable mortality and morbidity. Rapidly and accurately identifying different influenza B virus lineages, i.e., B/Yamagata (B/Y) and B/Victoria (B/V), is desirable during the flu season. However, the available rapid techniques lack sensitivity, and the usual methods for identifying influenza viruses require expansion of virus in tissue culture or embryonated hen's eggs. Thus, we developed several sets of primer pairs that were able to detect and distinguish B/Y and B/V in a single real-time PCR assay. Used in conjunction with two sets of specific primers that exhibited purine at 3' end of at least one primer targeting on HA gene of B/Y and B/V lineages allows us to accurately identify approximately 10(2) copies per microliter for B/Y and B/V with intra- and inter-assay coefficient of variation (CV) <4%. When it was used to test 17,765 throat swab specimens obtained in the 2006-2010 influenza surveillance season, this method was comparable to hemagglutination inhibition assay in detection, typing and subtyping of influenza viruses with 100% true-negative (specificity) and 100% true-positive (sensitivity). Taken together, this method provides sensitive and robust tool for routine diagnosis and on-time epidemiological examination for WHO decisions on vaccine composition.