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How Donated Organs Are Preserved and Transported

The ice, the solution, and the race against the clock.

Cooling the Organ to Slow Metabolism

Once an organ is surgically removed, it loses its blood supply. We use cold temperatures to lower the metabolic rate of the tissue, which significantly slows down the demand for oxygen. The organ is placed in a sterile container surrounded by ice, keeping it dormant until it reaches the recipient.

Using Preservation Solutions for Protection

Simply cooling an organ is not enough to keep it viable. We flush the organ with a specialized preservation solution that mimics the chemical makeup of blood plasma. This fluid prevents the cells from swelling and protects them from the damage that happens when blood flow stops.

Managing Time Limits for Different Organs

Every organ has a specific window of time before it loses function. For example, a heart or lung must be transplanted within four to six hours of removal. Kidneys are more resilient and can be kept in a cold state for up to thirty hours, giving us a larger window for transport.

Logistics and Rapid Transit Systems

Transporting an organ is a high-stakes race against the clock. We rely on a network of pilots, courier services, and ground transport to move the container from the donor hospital to the recipient. This process requires precise coordination to ensure the organ arrives at the operating room before the time limit expires.

New Technology and Machine Perfusion

Modern medicine is moving beyond simple ice coolers. We now use machine perfusion, a system that pumps oxygenated blood or specialized fluids through the organ while it is outside the body. This helps us assess the organ's health more accurately and keeps it viable for longer periods.

Written by AI, reviewed for accuracy

Last reviewed August 15, 2026

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