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Your kidneys are two bean-shaped organs, each about the size of your fist, located on either side of your spine below the rib cage. They work constantly to keep your body functioning properly. Most people think kidneys only produce urine, but their job is much more complex and vital to your survival.
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Every day, your kidneys filter about 120 to 150 quarts of blood to produce roughly 1 to 2 quarts of urine. This filtering process removes waste products and excess water that your body doesn't need. But filtering is just one part of what kidneys do. They also regulate several critical functions:
When kidneys don't work properly, waste builds up in your blood and tissues. This can lead to serious health problems including high blood pressure, anemia, weak bones, heart disease, and damage to other organs. The tricky part is that kidney disease often develops slowly without obvious symptoms, which is why doctors monitor kidney function through blood tests and measurements like GFR.
Understanding how your kidneys work helps you recognize why your doctor might order certain tests and what the results mean. Taking care of your kidney health involves managing conditions like diabetes and high blood pressure, staying hydrated, eating a balanced diet, and getting regular check-ups.
Practical takeaway: Your kidneys do far more than make urine—they regulate blood pressure, create red blood cells, and maintain chemical balance in your body. When they don't function properly, multiple health problems can develop, often without early warning signs.
GFR stands for glomerular filtration rate. It's a measurement that shows how well your kidneys are filtering waste from your blood. Think of it as a kidney efficiency score. A glomerulus is a tiny cluster of blood vessels inside your kidney where waste and water are first separated from the blood. The GFR measures how many milliliters of waste your kidneys filter out each minute, expressed as mL/min/1.73m².
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Doctors don't directly measure GFR by watching kidney function happen. Instead, they estimate it using a formula that combines several factors. The most common method uses your serum creatinine level, which is a waste product your muscles produce. Creatinine builds up in your blood when your kidneys aren't filtering it out properly. Your GFR calculation also includes your age, sex, and race because these factors affect how creatinine is processed.
The formula your doctor's lab uses is called the MDRD (Modification of Diet in Renal Disease) equation or the CKD-EPI (Chronic Kidney Disease Epidemiology Collaboration) equation. The CKD-EPI equation is newer and often more accurate, especially for people with less severe kidney disease. Both formulas take your serum creatinine level and combine it with demographic information to produce an estimated GFR number.
Another way doctors assess kidney function is by measuring cystatin C, a protein produced by all cells in your body. This test may be ordered alongside creatinine because it can provide additional information. Some labs also request a urine test to measure albumin, a protein that shouldn't normally appear in urine. Albumin in the urine can indicate early kidney damage even if your GFR is still normal.
The GFR number is important because it helps doctors stage kidney disease and decide on treatment options. However, a single GFR result doesn't tell the complete story. Doctors typically want to see trends over time—whether your GFR is staying stable, declining slowly, or dropping rapidly. This helps determine how quickly kidney disease is progressing.
Practical takeaway: GFR is an estimated measurement based on creatinine levels and demographic factors. It represents how efficiently your kidneys filter waste from your blood. Doctors use trends in your GFR over time, not just a single number, to understand your kidney health.
Medical professionals use GFR numbers to divide kidney disease into five stages. Each stage indicates different levels of kidney function and may suggest different monitoring or treatment approaches. Here's what the stages are:
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Someone with a GFR of 95 has kidneys working at nearly full capacity. A person with a GFR of 60 still has enough kidney function for daily life, but their kidneys are not cleaning waste as effectively as they should. A GFR of 20 means the kidneys are retaining much more waste, and the person will need to be monitored closely and may need to start preparing for dialysis or transplantation.
It's important to remember that GFR is only one indicator of kidney health. Two people with the same GFR might have different health situations. A person with a GFR of 50 who's had stable kidney function for years may have a different outlook than someone whose GFR dropped from 70 to 50 in just a few months. The rate of change matters as much as the current number.
Additionally, GFR can fluctuate slightly based on dehydration, intense exercise, certain medications, or infection. A single low GFR result doesn't automatically mean you have kidney disease. Doctors typically want to confirm low results with repeat testing to rule out temporary factors.
Age is also a factor. A GFR of 60 in an 80-year-old person may be relatively normal for their age, while the same GFR in a 30-year-old would indicate a problem. This is one reason why age is included in the GFR calculation formula.
Practical takeaway: GFR stages range from 1 (normal) to 5 (kidney failure). Your stage helps guide how often you need monitoring and what treatments might be recommended. The speed at which your GFR changes is as important as the current number.
Many conditions and factors can affect your GFR. Understanding these can help you recognize why your doctor might be concerned about certain health issues or why they're recommending specific treatments or lifestyle changes.
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Diabetes is the leading cause of kidney disease and declining GFR in the United States. High blood sugar damages the tiny blood vessels in the kidneys over time. According to the National Institutes of Health, about one in four people with diabetes develops kidney disease. Similarly, high blood pressure damages kidney blood vessels and is the second leading cause of kidney disease. These two conditions together account for most cases of advanced kidney disease.
Glomerulonephritis is inflammation of the kidney's filtering units. It can develop after a strep infection or from autoimmune diseases. Polycystic kidney disease is an inherited condition where cysts grow in the kidneys, damaging them over time. Lupus and other autoimmune diseases can attack the kidneys directly. Chronic urinary tract infections or kidney stones can cause scarring that reduces function.
Certain medications can affect kidney function.
This guide is for general information only and is not medical, financial, legal, or other professional advice. For decisions specific to your situation, consult a qualified professional. See our Editorial Policy.