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Erschienen in: Urolithiasis 4/2004

01.08.2004 | Original Paper

The influence of oxalate on renal epithelial and interstitial cells

verfasst von: Thomas Knoll, Annette Steidler, Lutz Trojan, Sreedhar Sagi, Axel Schaaf, Benito Yard, Maurice Stephan Michel, Peter Alken

Erschienen in: Urolithiasis | Ausgabe 4/2004

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Abstract

Most renal stones in humans are composed of calcium oxalate. An increase in urinary oxalate levels has been shown to result in renal epithelial cell injury and crystal retention. However, the underlying mechanisms are unclear. Although the localization of primary stone formation and the associated cells playing the pivotal role in stone formation are still unknown, renal epithelial cells and interstitial cells seem to be involved in this process. The aim of this study was to evaluate the effects of oxalate on distinct renal epithelial and endothelial cells as well as fibroblasts. The first part focused on the toxicity of oxalate on the cells and a potential time- and dose-dependency. In the second part, renal epithelial cells were cultured in a two-compartment model to examine the vulnerability of the tubular or basolateral side to oxalate. LLCPK1, MDCK, renal fibroblast and endothelial cell lines were cultured under standard conditions. In part 1, cells were grown in standard culture flasks until confluent layers were achieved. Sodium oxalate was delivered at final concentrations of 1, 2 and 4 mM to either the apical or basolateral side (plain medium was delivered to the contralateral side). Cell survival was assessed microscopically by trypan blue staining after 1, 2 and 4 h. The influence of oxalate on proliferation and apoptosis induction was also investigated. In the second part, MDCK and LLCPK1 cells were grown in 6-well plates until confluent layers were achieved. Sodium oxalate at the above concentrations was applied, to either the apical or basolateral side and plain medium was delivered to the opposite side. The same protocol was then followed as in part 1. Part 1: sodium oxalate led to a time- and concentration-dependent decline in cell survival that was comparable in LLCPK1 and MDCK. Non-tubular cell lines like fibroblasts and endothelial cells were significantly more vulnerable to oxalate. These observations were reflected by significant impairment to cell proliferation. We could not demonstrate an induction of apoptosis in any cell line. Part 2: both cell lines were more vulnerable to oxalate on the basolateral side. This effect was more pronounced in MDCK cells at high oxalate concentrations (4 mM). Cells are apparently more resistant on the apical (tubular) side. Our results show that sodium oxalate has a negative effect on the growth and survival of renal epithelial cells and, to a greater extent, also fibroblasts and endothelial cells. We could not demonstrate any induction of apoptotic processes which implies a direct induction of cell necrosis. The finding of interstitial calcification and the proximity of tubules, vessels and interstitial cells make involvement of non-tubular renal cells in tissue calcification processes possible. Renal epithelial cells are apparently more vulnerable to oxalate on their basolateral side. Therefore, calcification processes within the interstitium may exert pronounced toxic effects to these cells, leading to inflammation and necrosis. These observations further support the idea of the interstitium as a site of primary stone formation.
Literatur
1.
Zurück zum Zitat Tiselius HG, Berg C, Fornander AM, Nilsson MA (1993) Effects of citrate in different phases of calcium oxalate crystallization. Scanning Microsc 7: 381PubMed Tiselius HG, Berg C, Fornander AM, Nilsson MA (1993) Effects of citrate in different phases of calcium oxalate crystallization. Scanning Microsc 7: 381PubMed
2.
Zurück zum Zitat Miller C, Kennington L, Cooney R, Yasou Kohjimoto, Cao LC, Honeyman T, Pullman J, Jonassen J, Scheid C (2000) Oxalate toxicity in renal epithelial cells: characteristics of apoptosis and necrosis. Toxicol Appl Pharmacol 162: 132CrossRefPubMed Miller C, Kennington L, Cooney R, Yasou Kohjimoto, Cao LC, Honeyman T, Pullman J, Jonassen J, Scheid C (2000) Oxalate toxicity in renal epithelial cells: characteristics of apoptosis and necrosis. Toxicol Appl Pharmacol 162: 132CrossRefPubMed
3.
Zurück zum Zitat Cifuentes Delatte L, Minor Cifuentes JLR, Medina JA (1987) New studies on papillary calculi. J Urol 137: 1024PubMed Cifuentes Delatte L, Minor Cifuentes JLR, Medina JA (1987) New studies on papillary calculi. J Urol 137: 1024PubMed
4.
Zurück zum Zitat Finlayson B (1978) Physicochemical aspects of urolithiasis. Kidney Int 13: 344PubMed Finlayson B (1978) Physicochemical aspects of urolithiasis. Kidney Int 13: 344PubMed
5.
Zurück zum Zitat Kok DJ (1997) Crystallization and stone formation inside the nephron. Scanning Microsc 10:471 Kok DJ (1997) Crystallization and stone formation inside the nephron. Scanning Microsc 10:471
6.
Zurück zum Zitat Verkoelen CF, Van der Boom BG, Houtsmuller AB et al. (1998) Increased calcium oxalate crystal binding to injured renal tubular epithelial cells in culture. Am J Physiol 274: F958PubMed Verkoelen CF, Van der Boom BG, Houtsmuller AB et al. (1998) Increased calcium oxalate crystal binding to injured renal tubular epithelial cells in culture. Am J Physiol 274: F958PubMed
7.
Zurück zum Zitat Khan SR, Byer KJ, Thamiselvan S et al. (1999) Crystal-cell interaction and apoptosis in oxalate-associated injury of renal epithelial cells. J Am Soc Nephrol 10 [Suppl]: S457 Khan SR, Byer KJ, Thamiselvan S et al. (1999) Crystal-cell interaction and apoptosis in oxalate-associated injury of renal epithelial cells. J Am Soc Nephrol 10 [Suppl]: S457
8.
Zurück zum Zitat Randall A (1937) The origin and growth of renal calculi. Ann Surg 105: 1009 Randall A (1937) The origin and growth of renal calculi. Ann Surg 105: 1009
9.
Zurück zum Zitat Khan SR, Shevock PN, Hackett RL (1992) Acute hyperoxaluria, renal injury and calcium oxalate urolithiasis. J Urol 147: 226PubMed Khan SR, Shevock PN, Hackett RL (1992) Acute hyperoxaluria, renal injury and calcium oxalate urolithiasis. J Urol 147: 226PubMed
10.
Zurück zum Zitat Lieske JC, Spargo BH, Toback FG (1992) Endocystosis of calcium oxalate crystals and proliferation of renal tubular epithelial cells in a patient with type I primary hyperoxaluria. J Urol 148: 1517PubMed Lieske JC, Spargo BH, Toback FG (1992) Endocystosis of calcium oxalate crystals and proliferation of renal tubular epithelial cells in a patient with type I primary hyperoxaluria. J Urol 148: 1517PubMed
11.
Zurück zum Zitat Schlondorff D, Nelson PJ, Luckow B, Banas B (1997) Chemokines and renal disease. Kidney Int 51: 610PubMed Schlondorff D, Nelson PJ, Luckow B, Banas B (1997) Chemokines and renal disease. Kidney Int 51: 610PubMed
12.
Zurück zum Zitat De Water R, Noordermeer C, Van der Kwast TH, Nizze H, Boeve ER, Kok DJ, Schroder FH (1999) Calcium oxalate nephrolithiasis: effects of renal crystal deposition on the cellular composition of the renal interstitium. Am J Kidney Dis 33: 761PubMed De Water R, Noordermeer C, Van der Kwast TH, Nizze H, Boeve ER, Kok DJ, Schroder FH (1999) Calcium oxalate nephrolithiasis: effects of renal crystal deposition on the cellular composition of the renal interstitium. Am J Kidney Dis 33: 761PubMed
13.
Zurück zum Zitat De Water R, Noordermeer C, Houtsmuller AB, Nigg AL, Stijnen T, Schroder FH, Kok DJ (2000) Role of macrophages in nephrolithiasis in rat: an analysis of renal interstitium. Am J Kidney Dis 36: 615PubMed De Water R, Noordermeer C, Houtsmuller AB, Nigg AL, Stijnen T, Schroder FH, Kok DJ (2000) Role of macrophages in nephrolithiasis in rat: an analysis of renal interstitium. Am J Kidney Dis 36: 615PubMed
14.
Zurück zum Zitat Evan AP, Lingeman JE, Coe FL, Parks JH, Bledsoe SB, Shao Y, Sommer AJ, Paterson RF, Kuo RL, Grynpas M (2003) Randall’s plaque of patients with nephrolithiasis begins in basement membranes of thin loops of Henle. J Clin Invest 111: 607 Evan AP, Lingeman JE, Coe FL, Parks JH, Bledsoe SB, Shao Y, Sommer AJ, Paterson RF, Kuo RL, Grynpas M (2003) Randall’s plaque of patients with nephrolithiasis begins in basement membranes of thin loops of Henle. J Clin Invest 111: 607
15.
Zurück zum Zitat Berridge MV, Tan AS (1993) Characterization of the cellular reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT): subcellular localization, substrate dependence, and involvement of mitochondrial electron transport in MTT reduction. Arch Biochem Biophys 303: 474CrossRefPubMed Berridge MV, Tan AS (1993) Characterization of the cellular reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT): subcellular localization, substrate dependence, and involvement of mitochondrial electron transport in MTT reduction. Arch Biochem Biophys 303: 474CrossRefPubMed
16.
Zurück zum Zitat Homburg CH, De Haas M, Von dem Borne AE, Verhoeven AJ, Reutelingsperger CP, Roos D (1995) Human neutrophils lose their surface Fc gamma RIII and acquire Annexin V binding sites during apoptosis in vitro. Blood 85: 532PubMed Homburg CH, De Haas M, Von dem Borne AE, Verhoeven AJ, Reutelingsperger CP, Roos D (1995) Human neutrophils lose their surface Fc gamma RIII and acquire Annexin V binding sites during apoptosis in vitro. Blood 85: 532PubMed
17.
Zurück zum Zitat Werness PG, Brown CM, Smith LH, Finlayson B (1985) EQUIL2: a BASIC computer program for the calculation of urinary saturation. J Urol 134: 1242PubMed Werness PG, Brown CM, Smith LH, Finlayson B (1985) EQUIL2: a BASIC computer program for the calculation of urinary saturation. J Urol 134: 1242PubMed
18.
Zurück zum Zitat Thamilselvan S, Khan SR (1998) Oxalate and calcium oxalate crystals are injurious to renal epithelial cells: results of in vivo and in vitro studies. J Nephrol 11 [Suppl 1]: 66 Thamilselvan S, Khan SR (1998) Oxalate and calcium oxalate crystals are injurious to renal epithelial cells: results of in vivo and in vitro studies. J Nephrol 11 [Suppl 1]: 66
19.
Zurück zum Zitat Kim HH, Kwak J, Jeong BC, Kim SW (2002) Effect of oxalate on the growth of renal tubular epithelial cells. J Endourol 16: 261CrossRefPubMed Kim HH, Kwak J, Jeong BC, Kim SW (2002) Effect of oxalate on the growth of renal tubular epithelial cells. J Endourol 16: 261CrossRefPubMed
20.
Zurück zum Zitat Nakatani T, Ishii K, Sugimoto T, Kamikawa S, Yamamoto K, Yoneda Y, Kanazawa T, Kishimoto T (2003) Concentration gradient of oxalate from cortex to papilla in rat kidney. Int J Urol 10: 86CrossRefPubMed Nakatani T, Ishii K, Sugimoto T, Kamikawa S, Yamamoto K, Yoneda Y, Kanazawa T, Kishimoto T (2003) Concentration gradient of oxalate from cortex to papilla in rat kidney. Int J Urol 10: 86CrossRefPubMed
21.
Zurück zum Zitat Belliveau J, Griffin H (2001) The solubility of calcium oxalate in tissue culture media. Analyt Biochem 291: 69CrossRefPubMed Belliveau J, Griffin H (2001) The solubility of calcium oxalate in tissue culture media. Analyt Biochem 291: 69CrossRefPubMed
22.
Zurück zum Zitat Kageyama S, Ohtawara Y, Fujita K, Watanabe T, Ushiyama T, Suzuki K, Naito Y, Kawabe K (1996) Microlith formation in vitro by Mardin Darby canine kidney (MDCK) cells. Int J Urol 3: 23PubMed Kageyama S, Ohtawara Y, Fujita K, Watanabe T, Ushiyama T, Suzuki K, Naito Y, Kawabe K (1996) Microlith formation in vitro by Mardin Darby canine kidney (MDCK) cells. Int J Urol 3: 23PubMed
23.
Zurück zum Zitat Brandle E, Bernt U, Hautmann RE (1998) In situ characterization of oxalate transport across the basolateral membrane of the proximal tubule. Pfluglers Arch 435: 840CrossRef Brandle E, Bernt U, Hautmann RE (1998) In situ characterization of oxalate transport across the basolateral membrane of the proximal tubule. Pfluglers Arch 435: 840CrossRef
24.
Zurück zum Zitat Schepers MS, Duim RA, Asselman M, Romijn JC, Schroder FH, Verkoelen CF (2003) Internalization of calcium oxalate crystals by renal tubular cells: a nephron-specific process? Kidney Int 64: 493CrossRefPubMed Schepers MS, Duim RA, Asselman M, Romijn JC, Schroder FH, Verkoelen CF (2003) Internalization of calcium oxalate crystals by renal tubular cells: a nephron-specific process? Kidney Int 64: 493CrossRefPubMed
Metadaten
Titel
The influence of oxalate on renal epithelial and interstitial cells
verfasst von
Thomas Knoll
Annette Steidler
Lutz Trojan
Sreedhar Sagi
Axel Schaaf
Benito Yard
Maurice Stephan Michel
Peter Alken
Publikationsdatum
01.08.2004
Verlag
Springer-Verlag
Erschienen in
Urolithiasis / Ausgabe 4/2004
Print ISSN: 2194-7228
Elektronische ISSN: 2194-7236
DOI
https://doi.org/10.1007/s00240-004-0429-3

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