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Published on: May 10, 2013
Medications Influencing Serum Cystatin C Independent of Measured GFR
William A Russel1, Rik Olde Engberink2, Antoine Creon1
1Department of Medical Epidemiology and Biostatistics, Karolinska Institutet, Stockholm, Sweden.
Insights
Certain medications like glucocorticoids, opioids, and loop diuretics may increase serum cystatin C levels independently of kidney function. The combined eGFRcr-cys equation offers the most accurate kidney function estimates in patients using these drugs.
Area of Science:
- Nephrology
- Pharmacology
- Clinical Chemistry
Background:
- Serum cystatin C is a marker of kidney function but can be affected by non-GFR factors.
- Medications are suspected to influence cystatin C generation, but evidence independent of kidney function is limited.
Purpose of the Study:
- To investigate the association between common medication classes and serum cystatin C levels.
- To evaluate the impact of these medications on the accuracy of estimated glomerular filtration rate (eGFR) equations.
Main Methods:
- Studied 5595 adults undergoing cystatin C and creatinine testing with measured GFR (mGFR) via iohexol clearance.
- Assessed associations between eight medication classes and cystatin C using inter- and intra-individual analyses, adjusting for confounders.
- Evaluated medication effects on eGFRcys, eGFRcr, and eGFRcr-cys bias compared to mGFR.
Main Results:
- Systemic glucocorticoids, opioids, and loop diuretics were associated with higher cystatin C levels, independent of mGFR.
- Glucocorticoid use showed a potentially clinically meaningful increase in cystatin C.
- No significant associations were found for allopurinol, immunosuppressants, thyroid hormone analogues, antipsychotics, or paracetamol.
- eGFRcys underestimated mGFR in medication users, while eGFRcr showed similar overestimation in users and non-users.
- The combined eGFRcr-cys equation provided the least biased GFR estimates.
Conclusions:
- Systemic glucocorticoids, opioids, and loop diuretics may increase serum cystatin C independently of measured GFR.
- The combined eGFRcr-cys equation is more accurate than eGFRcr or eGFRcys alone for estimating GFR in patients using these medications.
Key Points:
Use of glucocorticoids, opioids, and loop diuretics raised cystatin C independent of GFR. Except for glucocorticoids, cystatin C increases were small and likely clinically nonmeaningful. Consequently, the underestimation of eGFR cys was larger in medication users; combined eGFR cr-cys was most accurate.
Background:
Serum cystatin C is influenced by factors beyond GFR, and several medications have been hypothesized to alter its generation. Whether reported associations reflect effects on cystatin C independent of measured GFR (mGFR) or confounding by illness remains unclear.
Methods:
We studied 5595 adults who underwent outpatient cystatin C (and creatinine) testing with mGFR determination using iohexol clearance in Stockholm health care. Associations between eight candidate medication classes and cystatin C were assessed using both interindividual and intraindividual analyses, sequentially adjusting for mGFR, clinical variables, and ongoing medications. We further evaluated the effect of these medications on cystatin C-based eGFR (eGFR cys ) bias compared with serum creatinine-based (eGFR cr ) and combined (eGFR cr-cys ) equations.
Results:
After adjustment for mGFR and confounders, the use of systemic glucocorticoids, opioids, and loop diuretics was associated with higher cystatin C. The magnitude of increase was potentially clinically meaningful for glucocorticoid use, particularly for greater estimated daily dose categories, whereas the smaller increases observed with opioid and loop diuretic use likely reflect clinically nonmeaningful effects. No associations were observed for use of allopurinol, immunosuppressants, thyroid hormone analogues, or antipsychotics or for paracetamol after adjustment for concomitant medications. eGFR cys underestimated mGFR more in users than in nonusers, while eGFR cr overestimated mGFR similarly in users and nonusers. eGFR cr-cys provided the least biased GFR estimates.
Conclusions:
This study suggests that systemic glucocorticoids, opioids, and loop diuretics may increase cystatin C independent of mGFR. The use of eGFR cr-cys was consistently more accurate than either eGFR cr or eGFR cys alone in patients using these treatments.
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