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Published in: Urolithiasis 3/2010

01-06-2010 | Review

Three pathways for human kidney stone formation

Authors: Fredric L. Coe, Andrew P. Evan, Elaine M. Worcester, James E. Lingeman

Published in: Urolithiasis | Issue 3/2010

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Abstract

No single theory of pathogenesis can properly account for human kidney stones, they are too various and their formation is too complex for simple understanding. Using human tissue biopsies, intraoperative imaging and such physiology data from ten different stone forming groups, we have identified at least three pathways that lead to stones. The first pathway is overgrowth on interstitial apatite plaque as seen in idiopathic calcium oxalate stone formers, as well as stone formers with primary hyperparathyroidism, ileostomy, and small bowel resection, and in brushite stone formers. In the second pathway, there are crystal deposits in renal tubules that were seen in all stone forming groups except the idiopathic calcium oxalate stone formers. The third pathway is free solution crystallization. Clear examples of this pathway are those patient groups with cystinuria or hyperoxaluria associated with bypass surgery for obesity. Although the final products may be very similar, the ways of creation are so different that in attempting to create animal and cell models of the processes one needs to be careful that the details of the human condition are included.
Literature
1.
go back to reference Evan A, Lingeman J, Coe FL, Worcester E (2006) Randall’s plaque: pathogenesis and role in calcium oxalate nephrolithiasis. Kidney Int 69:1313–1318CrossRefPubMed Evan A, Lingeman J, Coe FL, Worcester E (2006) Randall’s plaque: pathogenesis and role in calcium oxalate nephrolithiasis. Kidney Int 69:1313–1318CrossRefPubMed
2.
go back to reference Matlaga BR, Williams JC Jr, Kim SC, Kuo RL, Evan AP, Bledsoe SB, Coe FL, Worcester EM, Munch LC, Lingeman JE (2006) Endoscopic evidence of calculus attachment to Randall’s plaque. J Urol 175:1720–1724CrossRefPubMed Matlaga BR, Williams JC Jr, Kim SC, Kuo RL, Evan AP, Bledsoe SB, Coe FL, Worcester EM, Munch LC, Lingeman JE (2006) Endoscopic evidence of calculus attachment to Randall’s plaque. J Urol 175:1720–1724CrossRefPubMed
3.
go back to reference Randall R (1940) Papillary pathology as precursor of primary renal calculus. J Urol 44:580–589 Randall R (1940) Papillary pathology as precursor of primary renal calculus. J Urol 44:580–589
4.
go back to reference 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 111:607–616PubMed 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 111:607–616PubMed
5.
go back to reference Evan AP, Coe FL, Rittling SR, Bledsoe SM, Shao Y, Lingeman JE, Worcester EM (2005) Apatite plaque particles in inner medulla of kidneys of calcium oxalate stone formers: osteopontin localization. Kidney Int 68:145–154CrossRefPubMed Evan AP, Coe FL, Rittling SR, Bledsoe SM, Shao Y, Lingeman JE, Worcester EM (2005) Apatite plaque particles in inner medulla of kidneys of calcium oxalate stone formers: osteopontin localization. Kidney Int 68:145–154CrossRefPubMed
6.
go back to reference Evan AP, Bledsoe S, Worcester EM, Coe FL, Lingeman JE, Bergsland KJ (2007) Renal inter-alpha-trypsin inhibitor heavy chain 3 increases in calcium oxalate stone-forming patients. Kidney Int 72:1503–1511CrossRefPubMed Evan AP, Bledsoe S, Worcester EM, Coe FL, Lingeman JE, Bergsland KJ (2007) Renal inter-alpha-trypsin inhibitor heavy chain 3 increases in calcium oxalate stone-forming patients. Kidney Int 72:1503–1511CrossRefPubMed
7.
go back to reference Evan AP, Coe FL, Lingeman JE, Shao Y, Sommer AJ, Bledsoe SB, Anderson JC, Worcester EM (2007) Mechanism of formation of human calcium oxalate renal stones on Randall’s plaque. Anat Rec (Hoboken) 290:1315–1323 Evan AP, Coe FL, Lingeman JE, Shao Y, Sommer AJ, Bledsoe SB, Anderson JC, Worcester EM (2007) Mechanism of formation of human calcium oxalate renal stones on Randall’s plaque. Anat Rec (Hoboken) 290:1315–1323
8.
go back to reference Bergsland KJ, Coe FL, Gillen DL, Worcester EM (2009) A test of the hypothesis that the collecting duct calcium-sensing receptor limits rise of urine calcium molarity in hypercalciuric calcium kidney stone formers. Am J Physiol Renal Physiol 297:F1017–F1023CrossRefPubMed Bergsland KJ, Coe FL, Gillen DL, Worcester EM (2009) A test of the hypothesis that the collecting duct calcium-sensing receptor limits rise of urine calcium molarity in hypercalciuric calcium kidney stone formers. Am J Physiol Renal Physiol 297:F1017–F1023CrossRefPubMed
9.
go back to reference Kuo RL, Lingeman JE, Evan AP, Paterson RF, Parks JH, Bledsoe SB, Munch LC, Coe FL (2003) Urine calcium and volume predict coverage of renal papilla by Randall’s plaque. Kidney Int 64:2150–2154CrossRefPubMed Kuo RL, Lingeman JE, Evan AP, Paterson RF, Parks JH, Bledsoe SB, Munch LC, Coe FL (2003) Urine calcium and volume predict coverage of renal papilla by Randall’s plaque. Kidney Int 64:2150–2154CrossRefPubMed
10.
go back to reference Worcester EM, Gillen DL, Evan AP, Parks JH, Wright K, Trumbore L, Nakagawa Y, Coe FL (2007) Evidence that postprandial reduction of renal calcium reabsorption mediates hypercalciuria of patients with calcium nephrolithiasis. Am J Physiol Renal Physiol 292:F66–F75CrossRefPubMed Worcester EM, Gillen DL, Evan AP, Parks JH, Wright K, Trumbore L, Nakagawa Y, Coe FL (2007) Evidence that postprandial reduction of renal calcium reabsorption mediates hypercalciuria of patients with calcium nephrolithiasis. Am J Physiol Renal Physiol 292:F66–F75CrossRefPubMed
11.
go back to reference Worcester EM, Coe FL, Evan AP, Bergsland KJ, Parks JH, Willis LR, Clark DL, Gillen DL (2008) Evidence for increased postprandial distal nephron calcium delivery in hypercalciuric stone-forming patients. Am J Physiol Renal Physiol 295:F1286–F1294CrossRefPubMed Worcester EM, Coe FL, Evan AP, Bergsland KJ, Parks JH, Willis LR, Clark DL, Gillen DL (2008) Evidence for increased postprandial distal nephron calcium delivery in hypercalciuric stone-forming patients. Am J Physiol Renal Physiol 295:F1286–F1294CrossRefPubMed
12.
go back to reference Miller NL, Gillen DL, Williams JC Jr, Evan AP, Bledsoe SB, Coe FL, Worcester EM, Matlaga BR, Munch LC, Lingeman JE (2009) A formal test of the hypothesis that idiopathic calcium oxalate stones grow on Randall’s plaque. BJU Int 103:966–971CrossRefPubMed Miller NL, Gillen DL, Williams JC Jr, Evan AP, Bledsoe SB, Coe FL, Worcester EM, Matlaga BR, Munch LC, Lingeman JE (2009) A formal test of the hypothesis that idiopathic calcium oxalate stones grow on Randall’s plaque. BJU Int 103:966–971CrossRefPubMed
13.
go back to reference Evan AP, Coe FL, Gillen D, Lingeman JE, Bledsoe S, Worcester EM (2008) Renal intratubular crystals and hyaluronan staining occur in stone formers with bypass surgery but not with idiopathic calcium oxalate stones. Anat Rec (Hoboken) 291:325–334 Evan AP, Coe FL, Gillen D, Lingeman JE, Bledsoe S, Worcester EM (2008) Renal intratubular crystals and hyaluronan staining occur in stone formers with bypass surgery but not with idiopathic calcium oxalate stones. Anat Rec (Hoboken) 291:325–334
14.
go back to reference Evan AP, Lingeman JE, Coe FL, Shao Y, Parks JH, Bledsoe SB, Phillips CL, Bonsib S, Worcester EM, Sommer AJ, Kim SC, Tinmouth WW, Grynpas M (2005) Crystal-associated nephropathy in patients with brushite nephrolithiasis. Kidney Int 67:576–591CrossRefPubMed Evan AP, Lingeman JE, Coe FL, Shao Y, Parks JH, Bledsoe SB, Phillips CL, Bonsib S, Worcester EM, Sommer AJ, Kim SC, Tinmouth WW, Grynpas M (2005) Crystal-associated nephropathy in patients with brushite nephrolithiasis. Kidney Int 67:576–591CrossRefPubMed
15.
go back to reference Parks JH, Worcester EM, Coe FL, Evan AP, Lingeman JE (2004) Clinical implications of abundant calcium phosphate in routinely analyzed kidney stones. Kidney Int 66:777–785CrossRefPubMed Parks JH, Worcester EM, Coe FL, Evan AP, Lingeman JE (2004) Clinical implications of abundant calcium phosphate in routinely analyzed kidney stones. Kidney Int 66:777–785CrossRefPubMed
16.
go back to reference Parks JH, Coe FL, Evan AP, Worcester EM (2009) Urine pH in renal calcium stone formers who do and do not increase stone phosphate content with time. Nephrol Dial Transplant 24:130–136CrossRefPubMed Parks JH, Coe FL, Evan AP, Worcester EM (2009) Urine pH in renal calcium stone formers who do and do not increase stone phosphate content with time. Nephrol Dial Transplant 24:130–136CrossRefPubMed
17.
go back to reference Evan AE, Lingeman JE, Coe FL, Miller NL, Bledsoe SB, Sommer AJ, Williams JC, Shao Y, Worcester EM (2008) Histopathology and surgical anatomy of patients with primary hyperparathyroidism and calcium phosphate stones. Kidney Int 74:223–229CrossRefPubMed Evan AE, Lingeman JE, Coe FL, Miller NL, Bledsoe SB, Sommer AJ, Williams JC, Shao Y, Worcester EM (2008) Histopathology and surgical anatomy of patients with primary hyperparathyroidism and calcium phosphate stones. Kidney Int 74:223–229CrossRefPubMed
18.
go back to reference Parks JH, Coe FL, Evan AP, Worcester EM (2009) Clinical and laboratory characteristics of calcium stone-formers with and without primary hyperparathyroidism. BJU Int 103:670–678CrossRefPubMed Parks JH, Coe FL, Evan AP, Worcester EM (2009) Clinical and laboratory characteristics of calcium stone-formers with and without primary hyperparathyroidism. BJU Int 103:670–678CrossRefPubMed
19.
go back to reference Evan AP, Lingeman J, Coe F, Shao Y, Miller N, Matlaga B, Phillips C, Sommer A, Worcester E (2007) Renal histopathology of stone-forming patients with distal renal tubular acidosis. Kidney Int 71:795–801CrossRefPubMed Evan AP, Lingeman J, Coe F, Shao Y, Miller N, Matlaga B, Phillips C, Sommer A, Worcester E (2007) Renal histopathology of stone-forming patients with distal renal tubular acidosis. Kidney Int 71:795–801CrossRefPubMed
20.
go back to reference Evan AP, Coe FL, Lingeman JE, Shao Y, Matlaga BR, Kim SC, Bledsoe SB, Sommer AJ, Grynpas M, Phillips CL, Worcester EM (2006) Renal crystal deposits and histopathology in patients with cystine stones. Kidney Int 69:2227–2235CrossRefPubMed Evan AP, Coe FL, Lingeman JE, Shao Y, Matlaga BR, Kim SC, Bledsoe SB, Sommer AJ, Grynpas M, Phillips CL, Worcester EM (2006) Renal crystal deposits and histopathology in patients with cystine stones. Kidney Int 69:2227–2235CrossRefPubMed
21.
go back to reference Sakhaee K, Poindexter JR, Pak CY (1989) The spectrum of metabolic abnormalities in patients with cystine nephrolithiasis. J Urol 141:819–821PubMed Sakhaee K, Poindexter JR, Pak CY (1989) The spectrum of metabolic abnormalities in patients with cystine nephrolithiasis. J Urol 141:819–821PubMed
22.
go back to reference Parks JH, Worcester EM, O’Connor RC, Coe FL (2003) Urine stone risk factors in nephrolithiasis patients with and without bowel disease. Kidney Int 63:255–265CrossRefPubMed Parks JH, Worcester EM, O’Connor RC, Coe FL (2003) Urine stone risk factors in nephrolithiasis patients with and without bowel disease. Kidney Int 63:255–265CrossRefPubMed
23.
go back to reference Evan AP, Lingeman JE, Coe FL, Bledsoe SB, Sommer AJ, Williams JC, Jr., Krambeck AE, Worcester EM (2009) Intra-tubular deposits, urine and stone composition are divergent in patients with ileostomy. Kidney Int Evan AP, Lingeman JE, Coe FL, Bledsoe SB, Sommer AJ, Williams JC, Jr., Krambeck AE, Worcester EM (2009) Intra-tubular deposits, urine and stone composition are divergent in patients with ileostomy. Kidney Int
Metadata
Title
Three pathways for human kidney stone formation
Authors
Fredric L. Coe
Andrew P. Evan
Elaine M. Worcester
James E. Lingeman
Publication date
01-06-2010
Publisher
Springer-Verlag
Published in
Urolithiasis / Issue 3/2010
Print ISSN: 2194-7228
Electronic ISSN: 2194-7236
DOI
https://doi.org/10.1007/s00240-010-0271-8

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