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Erschienen in: Urolithiasis 6/2006

01.12.2006 | Original Paper

Effect of extract of Phyllanthus niruri on crystal deposition in experimental urolithiasis

verfasst von: Marcio E. Barros, Roberta Lima, Lucildes P. Mercuri, Jivaldo R. Matos, Nestor Schor, Mirian A. Boim

Erschienen in: Urolithiasis | Ausgabe 6/2006

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Abstract

Phyllanthus niruri (Pn) is a plant that has been shown to interfere in the growth and aggregation of calcium oxalate (CaOx) crystals. In the present study we evaluated the effect of Pn on the preformed calculus induced by introduction of a CaOx seed into the bladder of male Wistar rats. Pn treatment (5 mg/rat/day) was initiated immediately or 30 days after CaOx seeding and thus in the presence of a preformed calculus. Animals were sacrificed 50 or 70 days after surgery. The resulting calculi were weighed and analyzed by X-ray diffraction, stereomicroscopy and scanning electronic microscopy. Precocious Pn treatment reduced the number (75%, P < 0.05) and the weight (65%, P < 0.05) of calculi that frequently exhibited a matrix-like material on its surface, compared to the untreated CaOx group. In contrast, Pn treatment in the presence of a preformed calculus did not prevent further calculus growth; rather, it caused an impressive modification in its appearance and texture. Calculi from Pn-treated animals had a smoother, homogeneous surface compared to the spicule shape of calculi found in the untreated CaOx group. XRD analysis revealed the precipitation of struvite crystals over the CaOx seed and Pn did not change the crystalline composition of the calculi. This suggests that Pn interfered with the arrangement of the precipitating crystals, probably by modifying the crystal–crystal and/or crystal–matrix interactions. Results suggest that Pn may have a therapeutic potential, since it was able to modify the shape and texture of calculi to a smoother and probably more fragile form, which could contribute to elimination and/or dissolution of calculi.
Literatur
1.
Zurück zum Zitat Atmani F, Slimani Y, Mimouni M, Hacht B (2003) Prophylaxis of calcium oxalate stones by Herniaria hirsuta on experimentally induced nephrolithiasis in rats. BJU Int 92(1):137–140PubMedCrossRef Atmani F, Slimani Y, Mimouni M, Hacht B (2003) Prophylaxis of calcium oxalate stones by Herniaria hirsuta on experimentally induced nephrolithiasis in rats. BJU Int 92(1):137–140PubMedCrossRef
3.
4.
Zurück zum Zitat Paulino N, Cechinel-Filho V, Yunes RA, Calixto JB (1996) The relaxant effect of extract of Phyllanthus urinaria in the guinea-pig isolated trachea. Evidence for involvement of ATP-sensitive potassium channels. J Pharm Pharmacol 48(11):1158–1163PubMed Paulino N, Cechinel-Filho V, Yunes RA, Calixto JB (1996) The relaxant effect of extract of Phyllanthus urinaria in the guinea-pig isolated trachea. Evidence for involvement of ATP-sensitive potassium channels. J Pharm Pharmacol 48(11):1158–1163PubMed
5.
Zurück zum Zitat Nishiura JL, Campos AH, Boim MA, Heilberg IP, Schor N (2004) Phyllanthus niruri normalizes elevated urinary calcium levels in calcium stone forming (CSF) patients. Urol Res 32(5):362–366PubMedCrossRef Nishiura JL, Campos AH, Boim MA, Heilberg IP, Schor N (2004) Phyllanthus niruri normalizes elevated urinary calcium levels in calcium stone forming (CSF) patients. Urol Res 32(5):362–366PubMedCrossRef
6.
Zurück zum Zitat Campos AH, Schor N (1999) Phyllanthus niruri inhibits calcium oxalate endocytosis by renal tubular cells: its role in urolithiasis. Nephron 81(4):393–397PubMedCrossRef Campos AH, Schor N (1999) Phyllanthus niruri inhibits calcium oxalate endocytosis by renal tubular cells: its role in urolithiasis. Nephron 81(4):393–397PubMedCrossRef
7.
Zurück zum Zitat Freitas AM, Schor N, Boim MA (2002) The effect of Phyllanthus niruri on urinary inhibitors of calcium oxalate crystallization and other factors associated with renal stone formation. BJU Int 89(9):829–834PubMedCrossRef Freitas AM, Schor N, Boim MA (2002) The effect of Phyllanthus niruri on urinary inhibitors of calcium oxalate crystallization and other factors associated with renal stone formation. BJU Int 89(9):829–834PubMedCrossRef
8.
Zurück zum Zitat Barros ME, Schor N, Boim MA (2003) Effects of an aqueous extract from Phyllantus niruri on calcium oxalate crystallization in vitro. Urol Res 30(6):374–397PubMed Barros ME, Schor N, Boim MA (2003) Effects of an aqueous extract from Phyllantus niruri on calcium oxalate crystallization in vitro. Urol Res 30(6):374–397PubMed
9.
Zurück zum Zitat Vermeulen CW, Grove WJ, Goetz R, Ragins HD, Correll NO (1950) Experimental urolithiasis. I. Development of calculi upon foreign bodies surgically introduced into bladders of rats. J Urol 64(4):541–548PubMed Vermeulen CW, Grove WJ, Goetz R, Ragins HD, Correll NO (1950) Experimental urolithiasis. I. Development of calculi upon foreign bodies surgically introduced into bladders of rats. J Urol 64(4):541–548PubMed
10.
Zurück zum Zitat Meyer JL, Smith LH (1975) Growth of calcium oxalate crystals. I. A model for urinary stone growth. Invest Urol 13(1):31–35PubMedCrossRef Meyer JL, Smith LH (1975) Growth of calcium oxalate crystals. I. A model for urinary stone growth. Invest Urol 13(1):31–35PubMedCrossRef
11.
Zurück zum Zitat Khan SR, Hackett RL (1987) Urolithogenesis of mixed foreign body stones. J Urol 138(5):1321–1328PubMed Khan SR, Hackett RL (1987) Urolithogenesis of mixed foreign body stones. J Urol 138(5):1321–1328PubMed
12.
Zurück zum Zitat Mann S. (1989) Biomineralization: chemical and biological perspectives. In: Mann S, Webb JM, Williams RJP (eds) Biomineralization: chemical and biological perspectives, Springer, Berlin Heidelberg New York, p 35 Mann S. (1989) Biomineralization: chemical and biological perspectives. In: Mann S, Webb JM, Williams RJP (eds) Biomineralization: chemical and biological perspectives, Springer, Berlin Heidelberg New York, p 35
13.
Zurück zum Zitat Hess B, Kok DJ. (1996) Kidney stones: medical and surgical stones. In: Preminger GM (ed) Kidney stones: medical and surgical stones, Lippencott-Raven, Philadelphia, p 3 Hess B, Kok DJ. (1996) Kidney stones: medical and surgical stones. In: Preminger GM (ed) Kidney stones: medical and surgical stones, Lippencott-Raven, Philadelphia, p 3
14.
Zurück zum Zitat Addadi L, Weiner S, Geva M (2001) On how proteins interact with crystals and their effect on crystal formation. Z Kardiol 90(Suppl 3):92–98PubMed Addadi L, Weiner S, Geva M (2001) On how proteins interact with crystals and their effect on crystal formation. Z Kardiol 90(Suppl 3):92–98PubMed
15.
Zurück zum Zitat Heuer AH, Fink DJ, Laraia VJ et al (1992) Innovative materials processing strategies: a biomimetic approach. Science 255(5048):1098–1105PubMedCrossRef Heuer AH, Fink DJ, Laraia VJ et al (1992) Innovative materials processing strategies: a biomimetic approach. Science 255(5048):1098–1105PubMedCrossRef
16.
Zurück zum Zitat Ryall RL (2000) The mystery of macromolecules: modulators, matrix and mineralization. Proceedings of the ninth international symposium on urolithiasis, pp 99–105 Ryall RL (2000) The mystery of macromolecules: modulators, matrix and mineralization. Proceedings of the ninth international symposium on urolithiasis, pp 99–105
17.
Zurück zum Zitat Kurutz JW, Carvalho C, Nakagawa Y (2003) Nephrocalcin isoforms coats surfaces and differentially affect calcium oxalate monohydrate crystal morphology, growth, and aggregation. J Cryst Growth 255:392–402CrossRef Kurutz JW, Carvalho C, Nakagawa Y (2003) Nephrocalcin isoforms coats surfaces and differentially affect calcium oxalate monohydrate crystal morphology, growth, and aggregation. J Cryst Growth 255:392–402CrossRef
18.
Zurück zum Zitat Calixto JB, Santos AR, Cechinel Filho V, Yunes RA (1998) A review of the plants of the genus Phyllanthus: their chemistry, pharmacology, and therapeutic potential. Med Res Rev 18(4):225–258PubMedCrossRef Calixto JB, Santos AR, Cechinel Filho V, Yunes RA (1998) A review of the plants of the genus Phyllanthus: their chemistry, pharmacology, and therapeutic potential. Med Res Rev 18(4):225–258PubMedCrossRef
19.
Zurück zum Zitat Malini MM, Lenin M, Varalakshmi P (2000) Protective effect of triterpenes on calcium oxalate crystal-induced peroxidative changes in experimental urolithiasis. Pharmacol Res 41(4):413–418PubMedCrossRef Malini MM, Lenin M, Varalakshmi P (2000) Protective effect of triterpenes on calcium oxalate crystal-induced peroxidative changes in experimental urolithiasis. Pharmacol Res 41(4):413–418PubMedCrossRef
20.
Zurück zum Zitat Vidya L, Lenin M, Varalakshmi P (2002) Evaluation of the effect of triterpenes on urinary risk factors of stone formation in pyridoxine deficient hyperoxaluric rats. Phytother Res 16(6):514–518PubMedCrossRef Vidya L, Lenin M, Varalakshmi P (2002) Evaluation of the effect of triterpenes on urinary risk factors of stone formation in pyridoxine deficient hyperoxaluric rats. Phytother Res 16(6):514–518PubMedCrossRef
21.
Zurück zum Zitat Vidya L, Varalakshmi P (2000) Control of urinary risk factors of stones by betulin and lupeol in experimental hyperoxaluria. Fitoterapia 71(5):535–543PubMedCrossRef Vidya L, Varalakshmi P (2000) Control of urinary risk factors of stones by betulin and lupeol in experimental hyperoxaluria. Fitoterapia 71(5):535–543PubMedCrossRef
Metadaten
Titel
Effect of extract of Phyllanthus niruri on crystal deposition in experimental urolithiasis
verfasst von
Marcio E. Barros
Roberta Lima
Lucildes P. Mercuri
Jivaldo R. Matos
Nestor Schor
Mirian A. Boim
Publikationsdatum
01.12.2006
Verlag
Springer-Verlag
Erschienen in
Urolithiasis / Ausgabe 6/2006
Print ISSN: 2194-7228
Elektronische ISSN: 2194-7236
DOI
https://doi.org/10.1007/s00240-006-0065-1

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