Urinary biomarkers for predicting long-term dialysis
This invention is related to the field of the prevention and treatment of kidney disease. The treatment of kidney disease may be tailored depending upon the need for, or expectation of, long-term dialysis. For example, prediction of long-term dialysis treatment can be determined by monitoring urine biomarkers related to the development of chronic kidney disease. For example, a normalized time course of hyaluronic acid can be used to determine whether a patient having suffered acute kidney injury will require long-term dialysis.
1. A method, comprising:
a) obtaining at least two urine samples from a patient exhibiting at least one symptom of a medical condition selected from the group consisting of diabetes, high blood pressure, Alport syndrome, analgesic nephropathy, gomerulonephritis, kidney stones, kidney infection, obstructive uropathy, polycystic kidney disease and reflux nephropathy, said patient being asymptomatic for a chronic kidney disease, wherein said at least two urine samples comprise a first sample and a subsequent sample, wherein said first sample is collected within one day of initiation of a renal replacement therapy;
b) contacting each of said at least two urine samples with a solid support comprising a hyaluronic acid marker system;
c) detecting hyaluronic acid in each of said at least two urine samples with a signal generated by said hyaluronic acid marker system; and
d) predicting said patient to require long-term dialysis wherein said hyaluronic acid detected in said subsequent sample is elevated as compared to said hyaluronic acid detected in said first sample within sixty days of said first sample to prevent progression of said medical condition into endstage renal disease.
2. The method of claim 1 , wherein said hyaluronic acid marker system is selected from the group consisting of an enzymatic marker system, a fluorescent marker system, a chemiluminescent marker system, an enzyme-substrate marker system, an isotope marker system and a radiolabel marker system.
3. The method of claim 2 , wherein said enzyme-substrate marker system comprises an avidin-biotin marker system.
4. The method of claim 1 , wherein said hyaluronic acid marker system comprises a hyaluronic acid binding protein.
5. The method of claim 1 , wherein said subsequent sample is collected on the fourteenth day after initiation of said replacement therapy.
6. The method of claim 1 , wherein said method further comprises diagnosing said patient with chronic kidney disease.
7. The method of claim 1 , wherein said method further comprises entering said patient in a chronic kidney disease prevention program.
8. The method of claim 1 , wherein said subsequent sample is collected on the seventh day after initiation of said replacement therapy.
9. The method of claim 1 , wherein said first sample is collected on the first day after initiation of said replacement therapy.