Wednesday, 8 January 2014

Different Types of Vaccines



WHO via Images from the History of Medicine (NLM)
Preparation of measles vaccine
The first human vaccines against viruses were based using weaker or attenuated viruses to generate immunity. The smallpox vaccine used cowpox, a poxvirus that was similar enough to smallpox to protect against it but usually didn’t serious illness. Rabies was the first virus attenuated in a lab to create a vaccine for humans.
Vaccines are made using several different processes. They may contain live viruses that have been attenuated (weakened or altered so as not to cause illness); inactivated or killed organisms or viruses; inactivated toxins (for bacterial diseases where toxins generated by the bacteria, and not the bacteria themselves, cause illness); or merely segments of the pathogen (this includes both subunit and conjugate vaccines).
Vaccine typeVaccines of this type on U.S. Recommended Childhood (ages 0-6) Immunization Schedule
Live, attenuatedMeasles, mumps, rubella (MMR combined vaccine)
Varicella (chickenpox)
Influenza (nasal spray)
Rotavirus
Inactivated/KilledPolio (IPV)
Hepatitis A
Toxoid (inactivated toxin)Diphtheria, tetanus (part of DTaP combined immunization)
Subunit/conjugateHepatitis B
Influenza (injection)
Haemophilus influenza type b (Hib)
Pertussis (part of DTaP combined immunization)
Pneumococcal
Meningococcal
Vaccine type
Other available vaccines
Live, attenuated
Zoster (shingles)
Yellow fever
Inactivated/Killed
Rabies
Subunit/conjugate
Human papillomavirus (HPV)
Live, attenuated vaccines currently recommended as part of the U.S. Childhood Immunization Schedule include those against measles, mumps, and rubella (via the combined MMR vaccine), varicella (chickenpox), and influenza (in the nasal spray version of the seasonal flu vaccine). In addition to live, attenuated vaccines, the immunization schedule includes vaccines of every other major type—see the table above for a breakdown of the vaccine types on the recommended childhood schedule.
The different vaccine types each require different development techniques. Each section below  addresses one of the vaccine types.

Live, Attenuated Vaccines

Attenuated vaccines can be made in several different ways. Some of the most common methods involve passing the disease-causing virus through a series of cell cultures or animal embryos (typically chick embryos). Using chick embryos as an example, the virus is grown in different embryos in a series. With each passage, the virus becomes better at replicating in chick cells, but loses its ability to replicate in human cells. A virus targeted for use in a vaccine may be grown through—“passaged” through—upwards of 200 different embryos or cell cultures. Eventually, the attenuated virus will be unable to replicate well (or at all) in human cells, and can be used in a vaccine. All of the methods that involve passing a virus through a non-human host produce a version of the virus that can still be recognized by the human immune system, but cannot replicate well in a human host.
When the resulting vaccine virus is given to a human, it will be unable to replicate enough to cause illness, but will still provoke an immune response that can protect against future infection.
One concern that must be considered is the potential for the vaccine virus to revert to a form capable of causing disease. Mutations that can occur when the vaccine virus replicates in the body may result in more a virulent strain. This is very unlikely, as the vaccine virus’s ability to replicate at all is limited; however, it is taken into consideration when developing an attenuated vaccine. It is worth noting that mutations are somewhat common with the oral polio vaccine (OPV), a live vaccine that is ingested instead of injected. The vaccine virus can mutate into a virulent form and result in rare cases of paralytic polio. For this reason, OPV is no longer used in the United States, and has been replaced on the Recommended Childhood Immunization Schedule by the inactivated polio vaccine (IPV).
Protection from a live, attenuated vaccine typically outlasts that provided by a killed or inactivated vaccine.

Killed or Inactivated Vaccines

One alternative to attenuated vaccines is a killed or inactivated vaccine. Vaccines of this type are created by inactivating a pathogen, typically using heat or chemicals such as formaldehyde or formalin. This destroys the pathogen’s ability to replicate, but keeps it “intact” so that the immune system can still recognize it. (“Inactivated” is generally used rather than “killed” to refer to viral vaccines of this type, as viruses are generally not considered to be alive.)
Because killed or inactivated pathogens can’t replicate at all, they can’t revert to a more virulent form capable of causing disease (as discussed above with live, attenuated vaccines). However, they tend to provide a shorter length of protection than live vaccines, and are more likely to require boosters to create long-term immunity. Killed or inactivated vaccines on the U.S. Recommended Childhood Immunization Schedule include the inactivated polio vaccine and the seasonal influenza vaccine (in shot form).

Toxoids

Some bacterial diseases are not directly caused by a bacterium itself, but by a toxin produced by the bacterium. One example is tetanus: its symptoms are not caused by the Clostridium tetani bacterium, but by a neurotoxin it produces (tetanospasmin). Immunizations for this type of pathogen can be made by inactivating the toxin that causes disease symptoms. As with organisms or viruses used in killed or inactivated vaccines, this can be done via treatment with a chemical such as formalin, or by using heat or other methods.
Immunizations created using inactivated toxins are called toxoids. Toxoids can actually be considered killed or inactivated vaccines, but are sometimes given their own category to highlight the fact that they contain an inactivated toxin, and not an inactivated form of bacteria.
Toxoid immunizations on the U.S. Recommended Childhood Immunization schedule include the tetanus and diphtheria immunizations, which are available in a combined form.

Subunit and Conjugate Vaccines

Both subunit and conjugate vaccines contain only pieces of the pathogens they protect against.
Subunit vaccines use only part of a target pathogen to provoke a response from the immune system. This may be done by isolating a specific protein from a pathogen and presenting it as an antigen on its own. The acellular pertussis vaccine and influenza vaccine (in shot form) are examples of subunit vaccines.
Another type of subunit vaccine can be created via genetic engineering. A gene coding for a vaccine protein is inserted into another virus, or into producer cells in culture. When the carrier virus reproduces, or when the producer cell metabolizes, the vaccine protein is also created. The end result of this approach is a recombinant vaccine: the immune system will recognize the expressed protein and provide future protection against the target virus. The Hepatitis B vaccine currently used in the United States is a recombinant vaccine.
Another vaccine made using genetic engineering is the human papillomavirus (HPV) vaccine. Two types of HPV vaccine are available—one provides protection against two strains of HPV, the other four—but both are made in the same way: for each strain, a single viral protein is isolated. When these proteins are expressed, virus-like particles (VLPs) are created. These VLPs contain no genetic material from the viruses and can’t cause illness, but prompt an immune response that provides future protection against HPV.
Conjugate vaccines are somewhat similar to recombinant vaccines: they’re made using a combination of two different components. Conjugate vaccines, however, are made using pieces from the coats of bacteria. These coats are chemically linked to a carrier protein, and the combination is used as a vaccine. Conjugate vaccines are used to create a more powerful, combined immune response: typically the “piece” of bacteria being presented would not generate a strong immune response on its own, while the carrier protein would. The piece of bacteria can’t cause illness, but combined with a carrier protein, it can generate immunity against future infection. The vaccines currently in use for children against pneumococcal bacterial infections are made using this technique.

More Information

Researchers continue to develop new vaccine types and improve current approaches. For more information about experimental vaccines and delivery techniques, see our article The Future of Immunization.

Monday, 6 January 2014

MESSAGE WRITEN BY A COP

1. Tip from Tae Kwon Do :The elbow is the strongest point on your body. If you are close enough to use it, do!

2. Learned this from a tourist guide. If a robber asks for your wallet and/or purse, DO NOT HAND IT TO HIM. Toss it away from you... Chances are that he is more interested in your wallet and/or purse than you, and he will go for the wallet/purse. RUN LIKE MAD IN THE OTHER DIRECTION! 

3. If you are ever thrown into the trunk of a car, kick out the back tail lights and stick your arm out the hole and start waving like crazy.. The driver won't see you, but everybody else will. This has saved lives. 

4. Women have a tendency to get into their cars after shopping, eating, working, etc., and just sit (doing their checkbook, or making a list, etc. DON'T DO THIS!) The predator will be watching you, and this is the perfect opportunity for him to get in on the passenger side, put a gun to your head, and tell you where to go. AS SOON AS YOU GET INTO YOUR CAR , LOCK THE DOORS AND LEAVE.. If someone is in the car with a gun to your head DO NOT DRIVE OFF, Repeat: DO NOT DRIVE OFF! Instead gun the engine and speed into anything, wrecking the car. Your Air Bag will save you. If the person is in the back seat they will get the worst of it. As soon as the car crashes bail out and run. It is better than having them find your body in a remote location. 

5. A few notes about getting into your car in a parking lot, or parking garage: A.) Be aware:look around you, look into your car, at the passenger side floor , and in the back seat. B.) If you are parked next to a big van, enter your car from the passenger door. Most serial killers attack their victims by pulling them into their vans while the women are attempting to get into their cars. C.) Look at the car parked on the driver's side of your vehicle, and the passenger side.. If a male is sitting alone in the seat nearest your car, you may want to walk back into the mall, or work, and get a guard/policeman to walk you back out. IT IS ALWAYS BETTER TO BE SAFE THAN SORRY. (And better paranoid than dead.) 

6. ALWAYS take the elevator instead of the stairs. Stairwells are horrible places to be alone and the perfect crime spot. This is especially true at NIGHT!) 

7. If the predator has a gun and you are not under his control, ALWAYS RUN! The predator will only hit you (a running target) 4 in 100 times; and even then, it most likely WILL NOT be a vital organ. RUN, Preferably in a zig -zag pattern! 

8. As women, we are always trying to be sympathetic: STOP It may get you raped, or killed. Ted Bundy, the serial killer, was a good-looking, well educated man, who ALWAYS played on the sympathies of unsuspecting women. He walked with a cane, or a limp, and often asked 'for help' into his vehicle or with his vehicle, which is when he abducted his next victim. 

9. Another Safety Point: Someone just told me that her friend heard a crying baby on her porch the night before last, and she called the police because it was late and she thought it was weird.. The police told her 'Whatever you do, DO NOT open the door..' The lady then said that it sounded like the baby had crawled near a window, and she was worried that it would crawl to the street and get run over. The policeman said, 'We already have a unit on the way, whatever you do, DO NOT open the door.' He told her that they think a serial killer has a baby's cry recorded and uses it to coax women out of their homes thinking that someone dropped off a baby.. He said they have not verified it, but have had several calls by women saying that they hear baby's cries outside their doors when they're home alone at night. 

10. Water scam! If you wake up in the middle of the night to hear all your taps outside running or what you think is a burst pipe, DO NOT GO OUT TO INVESTIGATE! These people turn on all your outside taps full blast so that you will go out to investigate and then attack. Stay alert, keep safe, and look out for your neighbors! Please pass this on This e-mail should probably be taken seriously because the Crying Baby Theory was mentioned on America 's Most Wanted when they profiled the serial killer in Louisiana