Showing posts with label Pathology. Show all posts
Showing posts with label Pathology. Show all posts

Saturday, October 30, 2010

Malaria

Malaria?


Malaria is an infectious disease caused by a parasite, Plasmodium, which infects red blood cells. Malaria is characterized by cycles of chills, fever, pain and sweating. Historical records suggest malaria has infected humans since the beginning of mankind. The name "mal 'aria" (meaning
"bad air" in Italian) was first used in English in 1740 by H. Walpole when describing the disease. The term was shortened to "malaria" in the 20th century. C. Laveran in 1880 was the first to identify the parasites in human blood. In 1889, R. Ross discovered that mosquitoes transmitted malaria. Of the four species of malaria, the most serious type is Plasmodium falciparum malaria. It can be life-threatening. The other three species of malaria (P. vivaxP. malariae, and P. ovale) are generally less serious and are not life-threatening.

How is malaria transmitted?

The life cycle of the parasite is complicated and involves two hosts, humans and Anophelesmosquitoes. The disease is transmitted to humans when an infected Anophelesmosquito bites a person and injects the malaria parasites (sporozoites) into the blood. Sporozoites travel through the bloodstream to the liver, mature, and eventually infect the human red blood cells. While in red blood cells, the parasites again develop until a mosquito takes a blood meal from an infected

human and ingests human red blood cells containing the parasites. Then the parasites reach the Anophelesmosquito's stomach and eventually invade the mosquito salivary glands. When anAnopheles mosquito bites a human, these sporozoites complete and repeat the complex Plasmodium life cycle. P. ovale and P. vivax can further complicate the cycle by producing dormant stages (hypnozoites) that may not develop for weeks to years.

Where is malaria a particular problem?

Malaria is a particular problem and a major one in areas of Asia, Africa, and Central and South America. Unless precautions are taken, anyone living in or traveling to a country where malaria is present can get the disease. Malaria occurs in about 100 countries; approximately 40% of the world population is at risk for contracting malaria.

What are the signs and symptoms of malaria?

The symptoms characteristic of malaria include flu-like illness with fever, chills, muscle aches, and headache. Some patients develop nausea, vomiting, cough, and diarrhea. Cycles of chills, fever, and sweating that repeat every one, two, or three days are typical. There can sometimes be vomiting, diarrhea, coughing, and yellowing (jaundice) of the skin and whites of the eyes due to destruction of red blood cells and liver cells.
People with severe P. falciparum malaria can develop bleeding problems, shock, liver or kidney failure, central nervous system problems, coma, and can die from the infection or its complications. Cerebral malaria (coma, or altered mental status or seizures) can occur with severe P. falciparum infection. It is lethal if not treated quickly; even with treatment, about 15%-20% die.

What is the incubation period for malaria?

The period between the mosquito bite and the onset of the malarial illness is usually one to three weeks (seven to 21 days). This initial time period is highly variable as reports suggest that the

range of incubation periods may range from four days to one year. The usual incubation period may be increased when a person has taken an inadequate course of malaria prevention medications. Certain types of malaria (P. vivax and P. ovale) parasites can also take much longer, as long as eight to 10 months, to cause symptoms. These parasites remain dormant (inactive or hibernating) in the liver cells during this time. Unfortunately, some of these dormant parasites can remain even after a patient recovers from malaria, so the patient can get sick again. This situation is termed relapsing malaria.

How is malaria diagnosed?

Clinical symptoms listed above, when associated with travel to countries that have identified malarial risk, suggest malaria as a diagnosis. Malaria tests are not routinely ordered by most physicians in developed countries so recognition of travel history is essential.
The classic and most used test is the blood smear on a microscope slide that is stained (Giemsa stain) to show the parasites inside red blood cells. Although this test is easily done, correct results are dependent on the technical skill of the lab technician who prepares and examines the slides with a microscope. Other tests based on immunologic principles exist, including RDT's (rapid diagnostic tests) approved for use in the U.S. in 2007 and the polymerase chain reaction (PCR) tests. These are not yet widely available and are more expensive than the traditional Giemsa blood smear. Some investigators suggest such immunologic based tests be confirmed with a Giemsa blood smear.

How is malaria treated?

Three main factors determine treatments: the infecting species ofPlasmodium parasite, the clinical situation of the patient (for example, adult, child, or pregnant female with either mild or severe malaria), and the drug susceptibility of the infecting parasites. Drug susceptibility is determined by the geographic area where the infection was acquired. Different areas of the world have malaria types that are resistant to certain medications. The correct drugs for each type of malaria must be prescribed by a doctor who is familiar with malaria treatment protocols. Since people infected with P. falciparum malaria can die (often because of delayed treatment), immediate treatment for P. falciparum malaria is necessary.
Mild malaria can be treated with oral medication; severe malaria (one or more symptoms of either impaired consciousness/coma, severe anemia, renal failure, pulmonary edema, acute respiratory distress syndrome, shock, disseminated intravascular coagulation, spontaneous bleeding, acidosis, hemoglobinuria [hemoglobin in the urine], jaundice, repeated generalized convulsions, and/or parasitemia
Drug treatment of malaria is not always easy. Chloroquine phosphate is the drug of choice for all malarial parasites except for chloroquine-resistant Plasmodium strains. Although almost all strains of P. malariae are susceptible to chloroquine, P. falciparum, P. vivax and even some P. ovale strains have been reported as resistant to chloroquine. Unfortunately, resistance is usually noted by drug-treatment failure in the individual patient. There are, however, multiple drug-treatment protocols for treatment of drug resistant Plasmodium strains (for example, quinine sulfate plus doxycycline [Vibramycin, Oracea, Adoxa, Atridox] or tetracycline [Achromycin], or clindamycin [Cleocin], or atovaquone-proguanil [Malarone]). There are specialized labs that can test the patient's parasites for resistance, but this is not done frequently. Consequently, treatment is usually based on the majority of Plasmodium species diagnosed and its general drug-resistance pattern for the country or world region where the patient became infested. For example, P. falciparum acquired in the Middle East countries is usually susceptible to chloroquine, but if acquired in sub-Sahara African countries, is usually resistant to chloroquine.

Is malaria a particular problem during pregnancy?

Yes. Malaria may pose a serious threat to a pregnant woman and her pregnancy. Malaria infection in pregnant women may be more severe than in women who are not pregnant. Malaria may also increase the risk of problems with the pregnancy, including prematurity, abortion, and stillbirth. Statistics indicate that in sub-Saharan Africa, between 75,000-200,000 infants die from malaria per year; worldwide estimates indicate over 1 million children die from malaria each year. Therefore, all pregnant women who are living in or traveling to a malaria-risk area should consult a doctor and take prescription drugs (for example, sulfadoxine-pyrimethamine) to avoid contracting malaria. Treatment of malaria in the pregnant female is similar to the usual treatment described above; however, drugs such as primaquine (Primaquine), tetracycline (Achromycin, Sumycin), doxycycline, and halofantrine (Halfan) are not recommended as they may harm the fetus. In addition to monitoring the patient for anemia, an OB-GYN specialist is consulted for further management.

Is malaria a particular problem for children?

Yes. All children, including young infants, living in or traveling to malaria-risk areas should take antimalarial drugs (for example, chloroquine and mefloquine [Lariam]). Although the recommendations for most antimalarial drugs are the same as for adults, it is crucial to use the correct dosage for the child. The dosage of drug depends on the age and weight of the child. Since an overdose of an antimalarial drug can be fatal, all antimalarial (and all other) drugs should be stored in childproof containers well out of the child's reach.

How do I keep from getting malaria?

If you are traveling to an area known to have malaria, find out which medications you need to take, and take them as prescribed. Current CDC recommendations suggest individuals begin taking antimalarial drugs about one to two weeks before traveling to a malaria infested area and for four weeks after leaving the area. Your doctor, travel clinic, or the health department can advise you as to what medicines to take to keep from getting malaria. Currently, there is no vaccine available for malaria, but researchers are trying to develop one.

What other precautions should I take to avoid malaria?

If possible, avoid travel to or through countries where malaria occurs. If you must go to areas where malaria occurs, take the prescribed preventive medicine. In addition, the 2008 CDC international travel recommendations suggest the following precautions be taken in malaria infested areas:
  • Avoid exposure to mosquitoes during the early morning and early evening hours between the hours of dusk and dawn (the hours of greatest mosquito activity).
  • Wear appropriate clothing (long-sleeved shirts and long pants, for examples) especially when you are outdoors.
  • Apply insect repellent to the exposed skin. The CDC recommended insect repellent should contains up to 50% DEET (N,N-diethyl-m-toluamide), which is the most effective mosquito repellent for adults and children over 2 months of age.
  • Spray mosquito repellents on clothing to prevent mosquitoes from biting through thin clothing.
  • Use a permethrin-coated (or similar repellant) mosquito net over your all beds.
  • Have screens over cover windows and doors.
  • Spray permethrin or a similar insecticide in the bedroom before going to bed.

Saturday, October 2, 2010

Obesity (An Innocent Killer)


Obesity (An Innocent Killer)

Obesity is the most popular condition in both genders of all ages. Obesity is the excessive accumulation of fats in body. There are different classes of obesity like MILD (20-40% overweight), moderate (41-100% overweight), severe (more than 100% overweight). Severe obesity occurs only in 0.6 % of obese people. In United state the obesity is increasing 33% by last some decades. Overall 31% men & 35% women are obese.
How Obesity develop:
The level of fats in our body control by a system which works like a thermostat. This system has a point around which the level of fats is maintained in our body. When a person persistently intake high caloric content or over eating than this point shifted from its original value to a higher one. The body then recognizes this elevated point as normal and as a result body increase the storage and eventually obesity occurs.
Causes of Obesity:
Obesity is caused by taking high calories than the body requirement. Obesity also caused by various factors such as:
  • Lifestyle factors that include food of high caloric contents, smoking, high alcohol intake (alcohol increases the metabolism of body) high biscuits intake etc.
  • Socioeconomic factors may also influence the obesity; in US women of low socioeconomic status are at high risk of obesity rather than women of high socioeconomic status because these women have not enough time & resources for dieting & exercise.
  • Developmental factors: An increase in size or number of fat cells providing  aid to store more fat in body.
  • Physical factors: lack of physical activity (exercise, walking, cycling etc) is also a major risk factor.
  • Drugs: Steroids, Antipsychotic drugs & some hormones can cause obesity.
  • Psychological stress: promote the development of some eating behavior disorders such as OVER-NIGHT EATING SYNDROME (lack of appetite in morning but overeating at night leads to obesity, insomnia, agitation).
Symptoms & complications:
The fats mostly accumulate in chest area, hips & thigh areas, under chin area & lower abdomen areas. Difficulty in breathing & shortening of breath, low back pain, worsening of arthritis in hips, knees & ankles, more sweating, swelling of feet & ankles are common symptoms found in case of obesity.
Obese people have more chance to become ill. The accumulation of fat in chest & abdomen may associate with coronary artery (arteries which supply blood to heart) disease, hypertension or diabetes. It is unknown that why these complications are developing but loosing weight dramatically reduces the occurrence of all these symptoms.
Certain cancers (in women: breast cancer, ovarian cancer, uterine cancer in men: colon cancer, rectum cancer, prostate cancer) are more common in obese people rather than those who are not.
Treatment:
Consume less caloric food stuff and adopt healthy, physically active life style to maintain your body weight and exercise regularly because when you loose your weight by any method and stop this then obesity re-occur within 3 years so be careful about your healthy life.
Tumescent liposuction also use for weight reductions.
Some drugs (Phentermine, sibutramine, Orlistat) also used for weight reduction.

Friday, October 1, 2010

Hepatitis


Hepatitis

Hepatitis (plural Hepatitides) implies injury to liver characterized by presence of inflammatory cells in the liver tissue. Etymologically the word hepatitis is derived from ancient Greek Hepar or heat meaning liver and suffix –itis denoting   ‘inflammation’. The condition can be self-limiting (healing on its own), or can progress to scaring of liver. 
Acute hepatitis is when it lasts less than 6 months and chronic hepatitis is when it persists longer. A group of viruses known as the hepatitis viruses cause most liver damages worldwide. Hepatitis can also be due to toxins (notably alcohol), other infections or from autoimmune process. It may run a sub-clinical course when affected person may not feel ill. Patient becomes unwell and symptomatic when the disease impairs liver functions that include among other things, screening of harmful substances, regulation of blood composition and production of bile to help digestion
What we can do to reduce the risk of hepatitis?
Vaccines are only available for hepatitis A and B viruses and complete cure is not achieved even with best treatment in many cases. Therefore, more attention should be directed towards prevention. Following steps can reduce the spread of hepatitis.
  • Vaccines every new born child against HBV as per EPI schedule of the government of Pakistan
  • Avoid the use of contaminated water ,unwashed and unpeeled fruits and vegetable etc, as they can be a source  of HAV and HEV
  • Keep all utensils covered and clean to avoid contaminated by files.
  • Adopt good personal hygienic measure e.g. washing of hands thoroughly before eating and after toilet use.
  • All the workers of food industry must be monitored on regular basis for the carrier states of Hepatitis A and E.
  • Blood and blood products must always be adequately screened before transfusion.
  • Strongly discourage the sharing of needles, syringes and shaving accessories.
  • Practice safe sex and spread awareness in public about the dangers of unprotected sex.
  • Women who are infected with hepatitis B or C must undertake adequate contraceptive measures.
  • Early recognition and treatment may prevent long-term complications of hepatitis and reduce morbidity due to this disease.
  • Public awareness programs must be put in place to educate general public about clinical features, mode of spread, prevention and treatment of different types of hepatitis.
Types:
Most cases of acute hepatitis are due to viral infections:
  • Hepatitis A
  • Hepatitis B
  • Hepatitis C
  • Hepatitis B with D
  • Hepatitis E
  • Hepatitis F (discredited)
  • Hepatitis G
Hepatitis A
Hepatitis A or infectious jaundice is caused by a picornavirus. The oro-fecal route, transmitted to human through methods such as contaminated food, transmits it. The patient’s immune system makes antibodies against hepatitis A that confer immunity against future infection .people with hepatitis A are advised to rest, stay hydrated and avoid alcohol. A vaccine is available that will prevent infection from Hepatitis A for life. Hepatitis A can be spread through personal contact; consumption of raw seafood or drinking contaminated water. This occurs primarily in third world countries, infected people excrete the Hepatitis A virus with their stool two weeks before and one week after the appearance of jaundice. This time between the infection and the start of the illness can run from 15 to 45 days, and approximately 15% of suffers may experience relapsing symptoms from 6 months to a year following initial diagnosis.
Hepatitis B
Hepatitis B is caused by a hepadnavirus (A DNA virus, aka Dane particle), which can cause both acute and chronic Hepatitis. Identified method of transmission include blood (Blood transfusion, now rare), tattoos (amateur and professionally done), sexually (through sexual inter course and through contact with blood are bodily fluids), or utero from mother to her unborn child (as the virus can cross the placenta). Blood contact and occur by sharing syringes intravenous drug abuse, shaving accessories such as razor blades, or touching bounds of infected persons. In the United States, 95 % of patients clear their infection and develop anti bodies against Hepatitis B virus. 5% of patients do not clear the infection and develop chronic infection: Only these people are at risk of long terms complication of Hepatitis B which include fulminant hepatic failure, cirrhosis and hepatocellular carcinoma, among others.
Hepatitis C
Hepatitis C (originally “non-A non-B Hepatitis”) is caused by a flavivirus. It can be transmitted through contact with blood as well as through sexual contact. Hepatitis C may lead to a chronic form of Hepatitis, although in January 2007, Researchers at the University Washington announced a breakthrough, which they predict, will lead to a vaccine within five years. {2} Patient with Hepatitis C prone to severe Hepatitis if they contract either Hepatitis A or B, so all Hepatitis C patients should immunized against Hepatitis A & Hepatitis B if they are not already immune. The genotype of the virus determines the rate of response to treatment. Genotype 1 is more resistant to interferon therapy than other HCV genotype.  The cellular receptors for the virus are CD81 and SR-B1 with claudin-1 as a co-receptor required for a later-step in entry.
Hepatitis E
Hepatitis E produces symptoms similar to Hepatitis A, although which can take a fulminant course in some patients, particularly pregnant woman: it is more prevalent in the Indian sub-continent.
Hepatitis G
Another type of Hepatitis, Hepatitis G, has been identified, and is probably spread by blood and sexual contact. There is, however, doubt about whether it causes Hepatitis, or is just associated in Hepatitis, as it does not appear to be primarily replicated in the liver.
Drug induced hepatitis.
A large number of drugs can cause Hepatitis. The anti-diabetic drug Troglitazon was withdrawn in 2000 for causing Hepatitis. Other drugs associated with Hepatitis:
  • Allopurinol.
  • Amitriptyline (antidepressant).
  • Amiodarone (anti-arrhythmic).
  • Azathioprine.
  • Halothane (anesthetic gas).
  • Hormonal contraceptives.
  • Ibuprofen and indomethacin (NSAIDs).
  • Ketoconazole (antifungal).
  • Methylbopa (antihypertensive).
  • Minocycline (tetracycline antibiotic).
  • Nifedipine (antihypertensive).
  • Nitrofurantioin (antibiotic).
  • Phenytoin and valproic acid (antiepileptics).
  • Zidovudine (antiretroviral i.e. against AIDS).
  • Some herbs and nutritional supplements.
  • Isoniazid (INH), rifampicin, and pyrazinamide
Treatment
Drug therapies
The standard of care for hepatitis C treatment is weekly injunctions of a drug called pegylated interferon Alfa combined with twice-daily oral doses of ribvirin (rebetol) – a broad- spectrum antiviral agent. Two pegylated interferon medications are available, pig interferon alfa-2b (Pig-intron) and pig interferon Alfa 2a (pegasys).
The goal HCV treatment is to clear the virus from your blood stream. Combined pegylated interferon and ribavirin clear HCV infection in up to half of the people 1—the most common genotype found in the U.S—and in up to 80% of those with genotype 2 and 3.
If you have genotype 1 HCV, your doctor may recommend a course of relatively high dose medications for 48 weeks. If you have genotype 2 or 3, a 24 week course of medication at the lower dose may be adequate.
If one course of combined Pegylated interferon and Ribavirin does not clear HCV from your bloodstream, your doctor may recommend a second course of combination therapy. If your viral load declined during the first round of medication, a second round may clear the virus completely. Even if there was no change in your viral load during the first course of treatment, a second course may help reduce the damage HCV does to your liver.
Guidelines from NIH: indication of Inteferon therapy
  • A positive test result indicating hepatitis A diagnosis of HCV does not necessarily mean you need treatment. The national institute of Health recommends treatment for HCV if you have
  • C virus circulating in bloodstream
  • A biopsy that indicate significant liver damage
  • Elevated levels of liver enzyme called alanine amminotransferase (ALT) in blood
Side effect of medication
Side effects from interferon include serve flu like symptoms, irritability, depression, concentration and memory problem and insomnia. Ribavirin can cause a low red blood cell count (anemia), gout and birth defect. Both drugs can cause skin irritation and extreme fatigue. A small number of people taking combined pegylated interferon and ribavirin may experience psychosis or suicidal behavior.
Side effect from combine pegylated interferon and ribivirin are generally most serve during the first week of treatment, and may be improved with pain relief medications and antidepressant. However, some people taking interferon need their dosage reduce because of severe side effect, and others must stop treatment altogether.
Contra-indication of interferon therapy
  • Uncontrolled major depression
  • Untreated thyroid diseases
  • Very low blood cell count
  • Autoimmune disease
  • Compulsive alcohol abuse
  • Compulsive drug abuse

Thursday, September 30, 2010

Valley Fever (Coccidioidomycosis)

Valley Fever (Coccidioidomycosis)


The disease can progress to chronic or progressive lung disease and may even become disseminated to the skin, brain (meninges), skeleton, and other body areas. The disease can also infect many animal types (for example, dogs, cattle, otters, and monkeys).
What Is Valley Fever (Coccidioidomycosis)?
Valley fever, also known as coccidioidomycosis,  California disease,  Desert rheumatism and  San Joaquin valley fever is a fungal disease that is endemic in certain parts of Arizona, New Mexico, Texas, Utah, Nevada and northwestern Mexico. It is caused by Coccidioides immitis or C. posadasii. Infected individuals experience fever, chest pain, coughing and some other symptoms.
The disease can progress to chronic or progressive lung disease and may even become disseminated to the skin, brain (meninges), skeleton, and other body areas. The disease can also infect many animal types (for example, dogs, cattle, otters, and monkeys).
Coccidioidomycosis was first noted in the 1890s in Argentina; tissue biopsies of people with the disease showed pathogens that resembled coccidia (protozoa). During 1896-1900, investigators learned the disease was caused by a fungus, not protozoa, so the term “mycosis” was eventually added to “coccidia.”
What causes valley fever (coccidioidomycosis)?
Valley fever, coccidioidomycosis for technical, is an infection caused by Coccidioides immitis or Coccidioides posadasii fungi.  These organisms are found in the semiarid areas of:
•       Texas
•       Mexico
•       Nevada
•       Arizona
•       California
•       New Mexico
•       South America
•       Central America
These locations are known for mild winters and arid summers.
You can become infected by inhaling coccidioides fungal spores.   These Valley Fever causers get into the air after contaminated soil is disturbed, such as during:
•       dust storms
•       earthquakes
•       construction
•       agricultural activities

What are the symptoms of valley fever (coccidioidomycosis)?
About 60% of all infected people (without immunosuppression) have no symptoms and do not seek medical care.Symptoms are not experienced in over half of those infected.  Those that do have coccidioidomycosis symptoms complain of stuff like:
•       rash
•       fever
•       chills
•       cough
•       wheezing
•       headache
•       chest pain
•       weight loss
•       night sweats
•       muscle aches
•       bloody sputum
•       loss of appetite
•       light sensitivity
•       profuse sweating
•       muscle, joint stiffness

How is valley fever (coccidioidomycosis) treated?
The drug of choice is usually amphotericin B, but oral azoles (fluconazole [Diflucan], itraconazole [Sporanox], ketoconazole [Nizoral]) and a triazole (posaconazole) can be used. A new drug called voriconazole may also be used.
Surgical treatment is sometimes needed. Pulmonary cavities, persistent pulmonary infection, empyema (pus collection), and shunt placement are some of the surgical interventions used to treat this disease.

REFRENCES
1-Charles Davis, MD, PhD  Article on VALLEY FEVER