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Cisplatin Decreases ENaC Activity Contributing to Renal Salt Wasting Syndrome
Antonio G Soares1, Elena Mironova1, Crystal R Archer1
1Department of Cellular and Integrative Physiology, University of Texas Health Science Center at San Antonio, 7703 Floyd Curl Dr, San Antonio, TX 78229-3900, USA.
Abstract:
Cisplatin (CDDP) is an important anticancer drug. A common side effect of CDDP is renal salt and water-wasting syndrome (RSWS). The origin of RSWS is obscure. Emerging evidence, though, suggests that broad inhibition of sodium transport proteins by CDDP may result in decreases in tubular reabsorption, causing increases in sodium and water excretion. In this sense, CDDP would be acting like a diuretic. The effect of CDDP on the epithelial Na+ channel (ENaC), which is the final arbiter fine-tuning renal Na+ excretion, is unknown. We test here whether CDDP affects ENaC to promote renal salt and water excretion. The effects of CDDP and benzamil (BZM), a blocker of ENaC, on excretion of a sodium load were quantified. Similar to BZM, CDDP facilitated renal Na+ excretion. To directly quantify the effects on ENaC, principal cells in split-open tubules were patch clamped. CDDP, at doses comparable to those used for chemotherapy (1.5 µM), significantly decreased ENaC activity in native tubules. To further elaborate on this mechanism, the dose-dependent effects of CDDP on mouse ENaC (mENaC) heterologously expressed in Chinese Hamster Ovary (CHO) cells were tested using patch clamping. As in native tubules, CDDP significantly decreased the activity of mENaC expressed in CHO cells. Dose-response curves and competition with amiloride identified CDDP as a weak inhibitor of ENaC (apparent IC50 = 1 µM) that competes with amiloride for inhibition of the channel, weakening the inhibitory actions of the latter. Such observations are consistent with CDDP being a partial modulator of ENaC, which possibly has a binding site that overlaps with that of amiloride. These findings are consistent with inhibition of ENaC by CDDP contributing to the RSWS caused by this important chemotherapy drug.
Insights
Cisplatin (CDDP) causes kidney problems by inhibiting the epithelial sodium channel (ENaC). This reduces sodium reabsorption, leading to salt and water loss, similar to diuretic effects.
Area of Science:
- Nephrology
- Molecular Biology
- Pharmacology
Background:
- Cisplatin (CDDP) is a vital chemotherapy drug.
- Renal salt and water-wasting syndrome (RSWS) is a common, poorly understood side effect of CDDP.
- CDDP may cause RSWS by broadly inhibiting sodium transport proteins, acting as a diuretic.
Purpose of the Study:
- To investigate if CDDP affects the epithelial sodium channel (ENaC).
- To determine if ENaC inhibition by CDDP contributes to CDDP-induced RSWS.
- To characterize the mechanism and potency of CDDP's effect on ENaC.
Main Methods:
- Quantified renal sodium excretion after CDDP and benzamil (BZM) administration.
- Utilized patch-clamp electrophysiology on principal cells from split-open tubules.
- Assessed dose-dependent effects of CDDP on heterologously expressed mouse ENaC (mENaC) in CHO cells.
Main Results:
- CDDP administration increased renal sodium excretion, similar to the ENaC blocker BZM.
- CDDP significantly decreased ENaC activity in native kidney tubules at 1.5 µM.
- CDDP acted as a weak, competitive inhibitor of mENaC with an apparent IC50 of 1 µM, overlapping with amiloride's binding site.
Conclusions:
- CDDP inhibits ENaC activity in renal tubules.
- CDDP acts as a partial modulator of ENaC, competing with amiloride.
- Inhibition of ENaC by CDDP likely contributes to the development of RSWS in patients receiving chemotherapy.
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