Friday, December 11, 2009

Kitchen and Food Safety

Anyone who has left food out too long has seen the visible effects of microbial growth. The reasons for many kitchen hygiene recommendations are obvious, such as washing your dishes or refrigerating your food. But others are less so.
One good rule of thumb is to remember that microbes are called microbes because they are microscopic. In other words, you can’t see germs with the naked eye, so even if you’ve wiped up that raw chicken or can’t see or smell anything wrong with Aunt Muriel’s potato salad, there’s a good chance that something nasty may still be lurking.
It is easier to keep infections at a minimum by being aware of possible sources of microbial contamination, but no man or woman is an island, and you can’t always control the hygienic practices of others.
The Partnership for Food Safety Education provides guidelines for prevention of foodborne illnesses. These tips are not only set in place to help prevent getting infections from foods prepared by others, but also to keep you from spreading disease to others.

Wash Hands and Surfaces Often

  • Use hot, soapy water to wash cutting boards, dishes, utensils, and counter tops. Soap doesn’t kill germs, but it physically dislodges them from surfaces. Hot water assists in this.
  • Consider using disposable towels to clean kitchen surfaces, since bacteria can build up on damp, dirty cloth towels. Wash non-disposable kitchen towels often.
  • Wash all fresh fruits and vegetables under running tap water. Fruits and vegetables come from plants that grow in soil, which is a common source of environmental microbes, such as Bacillus cereus and Clostridium. Add on manure, a common fertilizer, and you’ve got possible contamination with E. coli. This includes the washing of those fruits and vegetables with skins or rinds that are not eaten. Microbes on rinds get transferred to your hands, and then to your peeled food. Knives cutting through unwashed skins can spread microbes to the edible, fleshy parts of the produce.

Separate: Don’t Cross-contaminate

  • Keep raw meats and their juices separate from ready-to-eat foods. Most microbes can’t survive high temperatures and are killed upon heating. Raw or undercooked meats (and their juices) can be a major source of infectious disease because they provide a nutrient- and moisture-rich source for microbial growth.
  • Use separate cutting boards for fresh produce and raw meats. Even after washing cutting boards, some microbes may lurk in cracks or crevices. It’s a good idea to keep separate cutting boards for foods that will and will not be cooked to ensure that potential microbes from the “raw meats” board get destroyed by cooking.
  • Don’t reuse dishes that held raw meats or eggs in the course of preparing and serving a meal. Some people like to re-use their dishes, with the idea being that the hot, cooked foods will kill any germs held in the dirty dishes (and they'll be able to keep their dishwasher load down). However, while the heat from cooked foods may kill some remaining microbes, there’s a good chance that the temperature isn’t high enough for decontamination. It’s not worth the risk.

Cook Foods to Proper Temperatures

  • Use a food thermometer to make sure your roasts, steaks, and fish are cooked to at least 145 degrees; poultry (inner part of thigh and wing and thickest part of breast) to 165 degrees; and ground meat to 160 degrees. These are the recommended temperatures to eliminate most microbes associated with each food type. There are a few types of infectious bacteria, such as Clostridium botulinum, which can form spores that survive these temperatures. Fortunately, the Clostridium toxins responsible for disease are killed by adequate heating, although the spores can cause infant botulism in young babies.
  • Reheat sauces, soups, and gravy to boiling, and other leftovers to 165 degrees. Cooking a food doesn’t mean that it is now sterile. In some cases, the few remaining microbes that survived heat are not sufficient for causing disease, but they can re-establish growth after cooking. In other cases, post-cooking contamination may occur. In either case, reheating to these recommended temperatures is important to prevent disease.
  • Uneven cooking can lead to uneven heat-killing of microbes, so be sure to stir and rotate food when microwave cooking -- even if your food's temperature is already to your liking.
  • Don’t use recipes that call for raw or only partially cooked eggs. Eggs can be a source of Salmonella enteritidis, which grows on the inside surface of eggshells. It is more commonly found in the egg whites, but it can sometimes penetrate into the yolk.

Chill: Refrigerate Promptly

  • Make sure your refrigerator is set to 40 degrees or below, and your freezer is 0 degrees or below. Refrigeration can stop the growth of most bacteria, and freezing can kill some microbes. Keep in mind that some microbes, such as Listeria, can withstand and even grow in temperatures below freezing.
  • Meats, eggs, and other perishables should be refrigerated or frozen as promptly as possible. Most infectious microbes grow best at temperatures that are similar to the human body, but many also thrive at room temperature. The more prompt you are about refrigerating or freezing your foods, the less opportunity they have of developing larger scale contamination.
  • Defrost food in the refrigerator, under cold water, or in the microwave. Never defrost at room temperature, where microbes can thrive.
  • Food should be marinated in the refrigerator, where most microbial growth slows or stops.
  • Perishable foods should be refrigerated within 2 hours of sitting at room temperature. Any longer and you run the risk of high levels of microbial growth.





http://infectiousdiseases.about.com/od/prevention/a/kitchen_safety.htm

INFECTION FROM MICROBES IN CONTAMINATED FOODS

It has been estimated that more than 76 million cases of foodborne disease occur every year in the US. Of these, 325,000 cases result in hospitalization, and 5,000 cases result in death. Children and older adults are usually the hardest hit, since they tend to have underdeveloped or weakened immune systems.

What Is a Foodborne Disease?

The Centers for Disease Control defines a foodborne illness as a disease caused by consuming foods or drinks contaminated with microbes or other harmful substances. Most foodborne diseases are caused by a variety of bacteria, viruses, or parasites.

How Do Contaminating Microbes Make You Sick?

There are 2 major mechanisms used by foodborne pathogens that cause disease:
  1. Toxins. Bacteria can produce toxins or poisons that cause vomiting and/or diarrhea. Depending on the strain of bacteria, these toxins can be already present in the food you consume or produced in your body after you ingest the microbe.
  2. Tissue Invasion. Some microbes can penetrate the lining of your intestines, causing an immune response that results in gastrointestinal symptoms.

Does Reheating the Food Kill the Germs?

Most microbes are killed by temperatures greater than 160 F (78 C), except for Clostridium, a type of bacteria that can form heat-resistant spores. However, there are common food-contaminating bacteria, such as Staphylococcus aureus, that produce toxins that are not affected by heating.

Prevention Tips

The Partnership for Food Safety Education recommends following the guidelines for prevention of foodborne illnesses:
  1. Wash hands and surfaces often.
    • Use hot, soapy water to wash cutting boards, dishes, utensils, and counter tops.
    • Consider using disposable towels to clean kitchen surfaces, since bacteria can build up in damp, dirty cloth towels.
    • Wash all fresh fruits and vegetables under running tap water. This includes those with skins or rinds that are not eaten.
  2. Separate: Don’t cross-contaminate
    • Keep raw meats and their juices separate from ready-to-eat foods.
    • Use separate cutting boards for fresh produce and raw meats.
    • Don’t reuse old dishes that held raw meats or eggs.
  3. Cook: Cook foods to proper temperatures
    • Use a food thermometer to make sure your roasts, steaks, and fish are cooked to at least 145°F, poultry (inner part of thigh and wing and thickest part of breast) to 165°F, and ground meat to 160°F.
    • Don’t use recipes with raw or only partially cooked eggs.
    • Reheat sauces, soups, and gravy to boiling, and other leftovers to 165°F.
    • When microwave cooking, stir and rotate food for even cooking.
  4. Chill: Refrigerate promptly
    • Make sure your refrigerator is 40°F or below, and your freezer is 0°F or below.
    • Meats, eggs, and other perishables should be refrigerated or frozen as promptly as possible.
    • Defrost food in the refrigerator, under cold water, or in the microwave. Never defrost at room temperature.
    • Food should be marinated in the refrigerator.
    • Perishable foods should be refrigerated within 2 hours of sitting at room temperature.



     http://infectiousdiseases.about.com/od/g/a/Foodborne.htm

BACTERIA AND FOOD POISONING

There are over two hundred types of bacteria, viruses and parasites that can cause foodborne diseases. Reactions to these germs can range from mild gastric discomfort to death. The easiest way to prevent foodborne illness is to properly handle and cook foods. This includes washing your hands and utensils carefully and cooking meat thoroughly.

Below is a list of a few bacteria that cause foodborne diseases, along with the foods that are associated with them, as well as symptoms that are likely to develop from ingesting the contaminated foods.


Bacteria and Food Poisoning


  • Microbe - Aeromonas hydrophila
  • Affiliated Foods - Fish, Shellfish, Beef, Pork, Lamb, and Poultry
  • Diseases - Gastroenteritis, Septicemia
  • Symptoms - Diarrhea, Blood and Mucus in Stool

  • Microbe - Bacillus cereu
  • Affiliated Foods - Meats, Milk, Rice, Potato, and Cheese Products
  • Diseases - B. cereus Food Poisoning
  • Symptoms - Diarrhea, Abdominal Cramps, Nausea

  • Microbe - Campylobacter jejuni
  • Affiliated Foods - Raw Chicken, Unpasteurized Milk, Non-chlorinated Water
  • Diseases - B. cereus Campylobacteriosis
  • Symptoms - Diarrhea, Abdominal Cramps, Nausea and Fever, Headache and Muscle Pain

  • Microbe - Clostridium botulinum
  • Affiliated Foods - Canned Foods Including: Vegetables, Meats, and Soups
  • Diseases - Foodborne Botulism
  • Symptoms - Weakness, Double Vision and Vertigo, Difficulty in Speaking, Swallowing, and Breathing, Constipation

  • Microbe - Clostridium perfringens
  • Affiliated Foods - Non-refrigerated Prepared Foods: Meats and Meat Products, Gravy
  • Diseases - Perfringens Food Poisoning
  • Symptoms - Severe Abdominal Cramps, Diarrhea

  • Microbe - Escherichia coli O157:H7
  • Affiliated Foods - Undercooked Meats, Raw Ground Beef
  • Diseases - Hemorrhagic colitis
  • Symptoms - Severe Abdominal Pain, Watery and Bloody Diarrhea, Vomiting

  • Microbe - Listeria monocytogenes
  • Affiliated Foods - Dairy Products, Raw Vegetables, Raw Meats, Smoked Fish
  • Diseases - Listeriosis
  • Symptoms - Flu-like Symptoms, Persistent Fever, Nausea and Vomiting, Diarrhea

  • Microbe - Salmonella spp.
  • Affiliated Foods - Poultry and Eggs, Milk and Dairy Products, Raw Meats, Fish, Shrimp, Peanut Butter
  • Diseases - Salmonellosis
  • Symptoms - Nausea, Vomiting, Abdominal Pain, Fever, Headache, Diarrhea

  • Microbe - Shigella spp
  • Affiliated Foods - Poultry, Milk and Dairy Products, Raw Vegetables, Fecally contaminated water, Salads: Potato, Chicken, Tuna, Shrimp
  • Diseases - Shigellosis
  • Symptoms - Diarrhea, Abdominal Pain, Fever, Vomiting, Blood or Mucus in Stool

  • Microbe - Staphylococcus aureus
  • Affiliated Foods - Poultry and Egg Products, Meat Products, Dairy Products
  • Diseases - Staphyloenterotoxicosis, Staphyloenterotoxemia
  • Symptoms - Abdominal Cramping, Nausea and Vomiting, Prostration

  • Microbe - Vibrio cholerae
  • Affiliated Foods - Contaminated Water, Shellfish
  • Diseases - Cholera
  • Symptoms - Watery Diarrhea, Abdominal Pain, Dehydration, Vomiting, Shock

ARTICLE COPIED FROM THE GIVEN LINK ANY COMMENTS REGARDING THIS INFO MUST BE SUBIMTTED TO THE GIVEN LINK

http://biology.about.com/od/bacteriology/a/aa072706a.htm

NEW HAND TECHNOLOGY

In a previous article entitled, New Skin, I discussed the use of a bioengineered skin called Apligraf on an eight-week-old baby. Well if you thought that was amazing, keep reading. Doctors at the Jewish Hospital in Louisville, Kentucky recently announced a successful hand transplant! Whoa, we're talking about an actual transplant and not an artificial hand.
The transplant recipient had previously lost his hand in a tragic accident. He had been fitted with a prosthetic hand but had not adapted to its use. Under most conditions, doctors won't attempt a transplant of a non-essential body part but the doctors felt that due to the age and health of the recipient the transplant could be successful.
The operation lasted approximately fifteen hours. Doctors had to attach bone, tissue, and blood vessels during the tedious procedure. Nerves were attached toward the end to make sure he at least had limited sensation.
Doctors noted that he would only gain limited use of the transplanted hand. Major motor skills may be developed but doctors are doubtful if the full range of minor motor skills will be developed.
Doctors noted that the recipient is being closely monitored to make sure that there are no signs of rejection. Should his body reject the hand, his immunosuppressive medications will be adjusted. The doctors must maintain a delicate balance. Not enough medication and the hand will be rejected, too much and his immune system will be severely hampered.
Prior to the success of this transplant, two other hand transplants were attempted. One was unsuccessful while the results of the most recent one are still being determined.

NEW SKIN

Sometimes we take the simple things for granted: a gentle touch or a hug from a loved one. For some, such small gestures can have dire consequences. For people suffering from a set of rare genetic disorders, the skin may blister from the smallest touch. For years, people suffering from epidermolysis bullosa had little hope for relief from the disease.
Scientists at the University of Miami recently announced a new technique for bioengineering skin that offers hope to those suffering from the severe forms of the disease. An eight-week-old baby became a recipient of this bioengineered skin, known as Apligraf. Approximately 45% of her body has been covered with the new bioengineered skin. The skin is simply placed on her body and held in place by gauze and petroleum based products, similar to Vaseline. The baby's hands and feet are wrapped to make sure that she doesn't injure herself while the skin takes hold. Doctors hope to prolong her life with the replaced skin, although they don't believe that a full cure is imminent.
The baby has a particularly severe form of epidermolysis bullosa called Dowling Meara disease. Her cells lack the necessary cellular components that make skin "stick" together. As a result, the slightest contact can cause a tear in the skin. Likewise, persons with this disease are particularly susceptible to infections.
Apligraf was developed by a company called Organogenesis and was recently approved by the Food and Drug Administration. It is a combination of a baby's foreskin and bovine collagen. A small piece of foreskin can produce enormous amounts of new skin. The foreskin is usually obtained after babies have been circumcised.
Apligraf has been used to heal both long-term and open venous wounds. In each case, the wounds did not heal on their own before the application of Apligraf. Organogenesis notes that the procedure has been reported by recipients to be thoroughly less painful than other procedures.
The doctors hope to continue their work with the use of Apligraf in regenerative medicine. They hope that the bioengineered skin will shorten patient stays in the hospital and allow them to effectively treat a host of skin problems.


ARTICLE COPIED FROM THE GIVEN LINK
http://biology.about.com/library/weekly/aa011499.htm

Tuesday, December 8, 2009

What is Autism? What Causes Autism?

Autism is known as a complex developmental disability. Experts believe that Autism presents itself during the first three years of a person's life. The condition is the result of a neurological disorder that has an effect on normal brain function, affecting development of the person's communication and social interaction skills.
People with autism have issues with non-verbal communication, a wide range of social interactions, and activities that include an element of play and/or banter.

What is ASD?

ASD stands for Autism Spectrum Disorder and can sometimes be referred to as Autistic Spectrum Disorder. In this text Autism and ASD mean the same. ASDs are any developmental disabilities that have been caused by a brain abnormality. A person with an ASD typically has difficulty with social and communication skills.
A person with ASD will typically also prefer to stick to a set of behaviors and will resist any major (and many minor) changes to daily activities. Several relatives and friends of people with ASDs have commented that if the person knows a change is coming in advance, and has time to prepare for it; the resistance to the change is either gone completely or is much lower.

Autism is a wide-spectrum disorder

Autism (or ASD) is a wide-spectrum disorder. This means that no two people with autism will have exactly the same symptoms. As well as experiencing varying combinations of symptoms, some people will have mild symptoms while others will have severe ones. Below is a list of the most commonly found characteristics identified among people with an ASD






http://www.medicalnewstoday.com/info/autism/whatisautism.php

All About Opioids and Opioid-Induced Constipation (OIC)

What are opioids?

Opioids are a class of drugs that are commonly prescribed for their analgesic, or pain-killing, properties. They include substances such as morphine, codeine, oxycodone, and methadone. Opioids may be more easily recognized by drug names such as Kadian, Avinza, OxyContin, Percodan, Darvon, Demerol, Vicodin, Percocet, and Lomotil.
Opioids may be classified as natural, semi-synthetic, fully synthetic, or endogenous. Natural opioids such as codeine and morphine are derived from opiate alkaloids contained in the resin of the opium poppy. Semi-synthetic opioids such as oxycodone and hydrocodone are created by chemically altering the natural opioids. Fully synthetic opioids such as methadone are synthesized from non-opioid substances in laboratories. Endogenous opioids are naturally produced by the body and include substances such as endorphins


How do opioids work?

Opioids bind to specific proteins called opioid receptors that are located in the brain, spinal cord, and gastrointestinal tract. Through this mechanism, opioids are able to block the brain's ability to perceive pain. Instead, opioids tend to stimulate the pleasure centers of the brain, inducing euphoria






What are side effects of opioids?

Opioid use carries several side effects. These include drowsiness, nausea, slower breathing, and a general depression of the respiratory system. Further, opioids often cause constipation, or opioid-induced constipation (OIC). OIC is an uncomfortable side-effect that occurs in many patients who receive opioid treatments to relieve pain





http://www.medicalnewstoday.com/info/oic/what-are-opioids.php