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1) Nishijima S, Sugaya K, Naito A, et al. Association of vitamin D receptor gene polymorphism with urolithiasis. J Urol. 2002; 167: 2188-91
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2) Bid HK, Kumar A, Kapoor R, et al. Association of vitamin D receptor-gene (FokI) polymorphism with calcium oxalate nephrolithiasis. J Endourol. 2005; 19: 111-5
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3) Vezzoli G, Soldati L, Proverbio MC, et al. Polymorphism of vitamin D receptor gene start codon in patients with calcium kidney stones. J Nephrol. 2002; 15: 158-64
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4) Vezzoli G, Tanini A, Ferrucci L, et al. Influence of calcium-sensing receptor gene on urinary calcium excretion in stone-forming patients. J Am Soc Nephrol. 2002; 13: 2517-23
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5) Gao B, Yasui T, Okada A, et al. A polymorphism of the osteopontin gene is related to urinary calcium stone. J Urol. 2005; 174: 1472-6
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6) Gao B, Yasui T, Itoh Y, et al. Association of osteopontin gene haplotypes with nephrolithiasis. Kidney Int. 2007; 72: 592-8
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7) Tsai FJ, Lin CC, Lu HF, et al. Urokinase gene 3'-UTR T/C polymorphism is associated with urolithiasis. Urology. 2002; 59: 458-61
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8) Mittal RD, Bid HK, Kumar A, et al. Association of urokinase gene 3'-UTR polymorphism with calcium oxalate nephrolithiasis. J Endourol. 2006; 20: 157-60
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9) Okamoto N, Aruga S, Matsuzaki S, et al. Associations between renal sodium-citrate cotransporter (hNaDC-1) gene polymorphism and urinary citrate excretion in recurrent renal calcium stone formers and normal controls. Int J Urol. 2007; 14: 344-9
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10) Thorleifsson G, Holm H, Edvardsson V, et al. Sequence variants in the CLDN14 gene associate with kidney stones and bone mineral density. Nat Genet. 2009; 41: 926-30
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11) Chen WC, Wu HC, Lin WC, et al. The association of androgen- and oestrogen-receptor gene polymorphisms with urolithiasis in men. BJU Int. 2001; 88: 432-6
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12) Katsuma S, Shiojima S, Hirasawa A, et al. Global analysis of differentially expressed genes during progression of calcium oxalate nephrolithiasis. Biochem Biophys Res Commun. 2002; 296: 544-52
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13) Chen DH, Kaung HL, Miller CM, et al. Microarray analysis of changes in renal phenotype in the ethylene glycol rat model of urolithiasis: potential and pitfalls. BJU Int. 2004; 94: 637-50
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14) Okada A, Yasui T, Hamamoto S, et al. Genome-wide analysis of genes related to kidney stone formation and elimination in the calcium oxalate nephrolithiasis model mouse: detection of stone-preventive factors and involvement of macrophage activity. J Bone Miner Res. 2009; 24: 908-24
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