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Friday, December 25, 2009

Kidney transplantation

Kidney transplantation or renal transplantation is the organ transplant of a kidney in a patient with end-stage renal disease. Kidney transplantation is typically classified as deceased-donor (formerly known as cadaveric) or living-donor transplantation depending on the source of the donor organ. Living-donor renal transplants are further characterized as genetically related (living-related) or non-related (living-unrelated) transplants, depending on whether a biological relationship exists between the donor and recipient.

History


The first documented kidney transplant in the United States was performed June 17, 1950, on Ruth Tucker, a 44-year-old woman with polycystic kidney disease, at Little Company of Mary Hospital in Evergreen Park, Illinois. Although the donated kidney was rejected because no immunosuppressive therapy was available at the time—the development of effective antirejection drugs was years away—Tucker's remaining diseased kidney began working again and she lived another five years before dying of an unrelated illness.[citation needed] Thereafter, successful kidney transplantations were undertaken in 1954 in Boston and Paris. The Boston transplantation was done between identical twins to eliminate any problems of an immune reaction. The first kidney transplant in the United Kingdom did not occur until 1960, when Michael Woodruff performed one between identical twins in Edinburgh. Until the routine use of medications to prevent and treat acute rejection, introduced in 1964, deceased donor transplantation was not performed. The kidney was the easiest organ to transplant: tissue typing was simple, the organ was relatively easy to remove and implant, live donors could be used without difficulty, and in the event of failure, kidney dialysis was available from the 1940s. Tissue typing was essential to the success: early attempts in the 1950s on sufferers from Bright's disease had been very unsuccessful. In 1954, at Brigham Hospital Dr. Joseph E. Murray and Dr. J. Hartwell Harrison performed the world's first successful renal transplant between genetically identical patients, for which Dr. Murray received the Nobel Prize for Medicine in 1990. The donor is still alive as of 2005; the recipient died eight years after the transplantation.

The major barrier to organ transplantation between genetically non-identical patients lay in the recipient's immune system, which would treat a transplanted kidney as a "non-self" and immediately or chronically, reject it. Thus, having medications to suppress the immune system was essential. However, suppressing an individual's immune system places that individual at greater risk of infection and cancer (particularly skin cancer and lymphoma), in addition to the side effects of the medications.

The basis for most immunosuppressive regimens is prednisolone, a corticosteroid. Prednisolone suppresses the immune system, but its long-term use at high doses causes a multitude of side effects, including glucose intolerance and diabetes, weight gain, osteoporosis, muscle weakness, hypercholesterolemia, and cataract formation. Prednisolone alone is usually inadequate to prevent rejection of a transplanted kidney. Thus other, non-steroid immunosuppressive agents are needed, which also allow lower doses of prednisolone.


Saturday, November 7, 2009

General information about kidney

Normally, all of us have two kidneys which are located in the flank or the mid back area of our body. They are protected by the lower ribs and the thick musculature in this region. The kidneys are bean-shaped organs which are about the same size as a man's fist.



The kidneys play an important role in a number of bodily functions. These include:

• Excreting (taking out] the waste products from blood
The kidneys clean our blood. Every two minutes, every drop of blood in our body passes through our kidneys.

Blood enters kidneys although ARTERY from the Heart
Inside our kidneys are millions of tiny filters that take out waste products from the blood. These waste products are taken away from kidney by two tubes and leave the body as urine. Once waste products are removed, the blood is clean and can then be sent to other parts of the body.



• Keeping the right amount of fluid in the body
The kidneys help the body keep the right amount of fluid. If there is too the kidneys will excrete the excess water in the form of urine. If there is less amount of fluid in the body the kidneys will try to conserve water and less amount will be excreted in the urine.

• Regulating your blood pressure
Keeping good fluid levels helps keep the blood pressure at normal levels, too. If blood pressure is too high, the heart has to work harder to pump blood all over the body.
The kidneys also work to keep the right amounts of important things like sodium (salt), potassium and protein.

• Regulating red blood cell production
Proper production of red blood cells depends upon erythropoietin levels, adequate intake and proper assimilation of folic acid, vitamin B12, iron and protein.
Erythropoietin is a hormone produced primarily by the kidneys. Normally, the kidneys are able to sense the reduced amount of oxygen present in the blood. The kidneys respond by secreting a hormone called erythropoietin which stimulates the bone marrow to produce more red blood cells, thus increasing the capacity of the blood to carry more oxygen.

• Activating vitamin D
The kidneys also change vitamin D into an active form. This helps body use more of the calcium it takes in from food and medicines. This is important because the bones will not be strong Without calcium.



Monday, October 19, 2009

Skin Function. What is it?

The skin is the largest organ of our body and one of the 7 channels of elimination containing about 70% water, 25% protein and 2% lipids, the skin helps the main organs of elimination (liver, kidneys, intestines) get rid of waste buildup.

The uppermost layer of the skin is called epidermis. The deeper layer is called the dermis, which contains collagen and elastin ( keep the skin flexible and firm). The dermis also contains sebaceous glands, sweat glands, lymph vessels, hair follicles and nerves. Beneath the dermis lies a tissue of fat cells. Infection can occur when the exfoliation process ( the renewal of cells when they shed to make room for new ones) slows down and your skin pores get blocked.

The Skin has five main functions :
 
1.It acts as a mechanical barrier to infections. It ultimately prevents microorganisms and other substances from entering the body. Langerhans cells (a type of macrophage) are found within the dermis, they engulf invaders foreign to the body and debris. Keratin layers in the epidermis together with sebum produced by sebaceous glands act as a waterproof barrier. Melanocytes protect the body from ultraviolet light.Finger and toenails protect the extremities of fingers and toes from damage. Fingertips are important for dexterity and the sense of touch; they have ridged areas to assist in picking things up.Hair follicles offer some extra protection to certain parts of the body such as eyes and head.

2. Skin provides the sense of touch or sensation we need to know more about our outside environment through recognizing heat, cold, pain and other sensations. Nerve endings of the skin provide the body with a great deal of information about the outside environment.

3. It regulates body temperature. Considerable heat is lost through the skin. Even under extreme conditions of high temperature and exercise, our skin tends to make body temperature normal. The production (evaporation) of sweat in the skin cools us down when exposed to too much heat.

The core body temperature needs to be kept constant for normal physiological activity to take place (370c). It needs to maintain a core temperature for homeostasis.

4. Skin excretes waste product and excess salt from the body. Sweat includes waste products in solution. Water is lost continuously through the skin as insensible sweating. More pronounced water loss through sweating occurs as part of temperature regulation.

5. Skin synthesizes the use of Vitamin D in the presence of sunlight and ultra violet radiation needed for the absorption of calcium and phosphate.



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