Role of reactive oxygen species in triptolide-induced apoptosis of renal tubular cells and renal injury in rats

Fan Yang , Luo Zhuo , Sunnassee Ananda , Tingyi Sun , Shangxun Li , Liang Liu

Current Medical Science ›› 2011, Vol. 31 ›› Issue (3) : 335 -341.

PDF
Current Medical Science ›› 2011, Vol. 31 ›› Issue (3) : 335 -341. DOI: 10.1007/s11596-011-0377-4
Article

Role of reactive oxygen species in triptolide-induced apoptosis of renal tubular cells and renal injury in rats

Author information +
History +
PDF

Abstract

This study investigated the role of reactive oxygen species (ROS) in the pathogenesis of triptolide-induced renal injury in vivo. Rats were randomly divided into 4 groups (n=5 in each): triptolide group in which the rats were intraperitoneally injected with triptolide solution at a dose of 1 mg/kg of body weight on day 8; control group in which the rats received a single intraperitoneal injection of 0.9% physiological saline on day 8; vitamin C group in which the rats were pretreated with vitamin C by gavage at a dose of 250 mg/kg of body weight per day for 7 days before the same treatment as the control group on day 8; triptolide+vitamin C group in which the rats were first subjected to an oral administration of vitamin C at a dose of 250 mg/kg of body weight per day for 7 days, and then to the same treatment as the triptolide group on day 8. All the rats were sacrificed on day 10. Blood samples were collected for detection of plasma creatinine (Pcr) and plasma urea nitrogen (PUN) concentrations. Both kidneys were removed. The histological changes were measured by haematoxylin-eosin (HE) staining. The production of ROS was determined by detecting the fluorescent intensity of the oxidation-sensitive probe rhodamine 123 in renal tissue. Renal malondialdehyde (MDA) content was measured to evaluate lipid peroxidation level in renal tissue. TUNEL staining was performed to assess apoptosis of renal tubular cells. Renal expression of apoptosis-related proteins Bcl-2, Bax, Bid, Bad, Fas and FasL, as well as corresponding encoding genes were assessed by Western Blotting and real-time PCR. The results showed that triptolide treatment promoted the generation of a great amount of ROS, up-regulated the expression of Bax, Bid, Bad, Fas and FasL at both protein and mRNA levels, as well as the ratio of Bax to Bcl-2, and caused the apoptosis of renal tubular cells and renal injury. However, pretreatment with an antioxidant, vitamin C, significantly reduced the generation of ROS and effectively inhibited the triptolide-induced apoptosis of renal tubular cells and renal injury. It was concluded that ROS plays a critical role in triptolide-induced apoptosis of renal tubular cells and renal injury. The protective administration of vitamin C may help alleviate triptolide-induced renal injury and nephrotoxicity.

Keywords

triptolide / reactive oxygen species / apoptosis / renal injury

Cite this article

Download citation ▾
Fan Yang, Luo Zhuo, Sunnassee Ananda, Tingyi Sun, Shangxun Li, Liang Liu. Role of reactive oxygen species in triptolide-induced apoptosis of renal tubular cells and renal injury in rats. Current Medical Science, 2011, 31(3): 335-341 DOI:10.1007/s11596-011-0377-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

CarterB.Z., MakD.H., SchoberW.D., et al.. Triptolide induces caspase-dependent cell death mediated via the mitochondrial pathway in leukemic cells. Blood, 2006, 108(2): 630-637

[2]

KupchanS.M., CourtW.A., DaileyR.G.Jr, et al.. Triptolide and tripdiolide, novel antileukemic diterpenoid triepoxides from Tripterygium wilfordii. J Am Chem Soc, 1972, 94(20): 7194-7195

[3]

LuH., HachidaM., EnosawaS., et al.. Immunosuppressive effect of triptolide in vitro. Transplant Proc, 1999, 31(5): 2056-2057

[4]

TengchaisriT., ChawengkirttikulR., RachaphaewN., et al.. Antitumor activity of triptolide against cholangiocarcinoma growth in vitro and in hamsters. Cancer Lett, 1998, 133(2): 169-175

[5]

ZhenQ.S., YeX.Z., WeiJ.. Recent progress in research on tripterygium: a male antifertility plant. Contraception, 1995, 51(2): 121-129

[6]

GuW.Z., ChenR., BrandweinS., et al.. Isolation, purification, and characterization of immunosuppressive compounds from tripterygium: Triptolide and tripdiolide. Int J Immunopharmacol, 1995, 17(5): 351-356

[7]

TaoX.L., CushJ.J., GarretM., et al.. A phase I study of ethyl acetate extract of the Chinese antirheumatic herb Tripterygium wilfordii Hook F in rheumatoid arthritis. J Rheumatol, 2001, 28(10): 2160-2167

[8]

ValkoM., LeibfritzD., MoncolJ., et al.. Free radicals and antioxidants in normal physiological functions and human disease. Int J Biochem Cell Biol, 2007, 39(1): 44-84

[9]

KadkhodaeeM., KhastarH., ArabH.A., et al.. Antioxidant vitamins preserve superoxide dismutase activities in gentamicin-induced nephrotoxicity. Transplant Proc, 2007, 39(4): 864-865

[10]

NarayanaK.. An aminoglycoside antibiotic gentamycin induces oxidative stress, reduces antioxidant reserve and impairs spermatogenesis in rat. J Toxicol Sci, 2008, 33(1): 85-96

[11]

RankD.M., TownesC.H., WelchW.J.. Interstellar molecules and dense clouds. Science, 1971, 174(10): 1083-1101

[12]

TsujiT., KatoA., YasudaH., et al.. The dimethylthioureainduced attenuation of cisplatin nephrotoxicity is associated with the augmented induction of heat shock proteins. Toxicol Appl Pharmacol, 2009, 234(2): 202-208

[13]

SantosN.A., BezerraC.S., MartinsN.M., et al.. Hydroxyl radical scavenger ameliorates cisplatin-induced nephrotoxicity by preventing oxidative stress, redox state unbalance, impairment of energenic metabolism and apoptosis in rat kidney mitochondria. Cancer Chemother Pharmacol, 2008, 61(1): 145-155

[14]

StellerH.. Mechanisms and genes of cellular suicide. Science, 1995, 267: 1445-1449

[15]

RatanR.R., MurphyT.H., BarabanJ.M.. Oxidative stress induces apoptosis in embryonic cortical neurons. J Neurochem, 1994, 62(1): 376-379

[16]

McClainD.E., KalinichJ.F., RamakrishnanN.. Trolox inhibits apoptosis in irradiated MOLT-4 lymphocyte. FASEB J, 1995, 9(13): 1345-1354

[17]

VerhaegenS., McGowanA.J., BrophyA.R., et al.. Inhibition of apoptosis by antioxidants in the human HL-60 leukemia cell line. Biochem Pharmacol, 1995, 50(7): 1021-1029

[18]

MelnikovV.Y., FaubelS., SiegmundB., et al.. Neutrophilindependent mechanisms of caspase-1- and IL-18-mediated ischemic acute tubular necrosis in mice. J Clin Invest, 2002, 110(8): 1083-1091

[19]

HanK.Q., HuangG., GuW., et al.. Anti-tumor activities and apoptosis-regulated mechanisms of bufalin on the orthotopic transplantation tumor model of human hepatocellular carcinoma in nude mice. World J Gastroenterol, 2007, 13(24): 3374-3379

[20]

SzabadosE., FischerG.M., GallyasF., et al.. Enhanced ADP-ribosylation and its diminution by lipoamide after ischemia-reperfusion in perfused rat heart. Free Radic Biol Med, 1999, 27(9–10): 1103-1113

[21]

LinvakK.J., SchmittgenT.D.. Analysis of relative gene expression data using real-time quantitative PCR and 2-ΔΔCT. Methods, 2001, 25(4): 402-408

[22]

HalliwellB.. Reactive species and antioxidants. Redox biology is a fundamental theme of aerobic life. Plant Physiol, 2006, 141(2): 312-322

[23]

ButtkeT.M., SandstromP.A.. Oxidative stress as a mediator of apoptosis. Immunol Today, 1994, 15(1): 7-10

[24]

JabsT.. Reactive oxygen intermediates as mediators of programmed cell death in plants and animals. Biochem Pharmacol, 1999, 57(3): 231-245

[25]

KawabataT., MaY., YamadorI., et al.. Iron-induced apoptosis in mouse renal proximal tubules after an injection of a renal carcinogen, iron-nitrilotriacetate. Carcinogenesis, 1997, 18(7): 1389-1394

[26]

TakedaM., ShiratoI., KobayashiM., et al.. Hydrogen peroxide induces necrosis, apoptosis, oncosis and apoptotic oncosis of mouse terminal proximal straight tubule cells. Nephron, 1999, 81(2): 234-238

[27]

YilmazH.R., IrazM., SogutS., et al.. The effects of erdosteine on the activities of some metabolic enzymes during cisplatin-induced nephrotoxicity in rats. Pharmacol Res, 2004, 50(3): 287-290

[28]

DavisC.A., NickH.S., AgarwalA.. Manganese superoxide dismutase attenuates Cisplatin-induced renal injury: importance of superoxide. J Am Soc Nephrol, 2001, 12(12): 2683-2690

[29]

KadikoyluG., BolamanZ., DemirS., et al.. The effects of desferrioxamine on cisplatin-induced lipid peroxidation and the activities of antioxidant enzymes in rat kidneys. Hum Exp Toxicol, 2004, 23(1): 29-34

[30]

ShinoY., ItohY., KubotaT., et al.. Role of poly (ADP-ribose) polymerase in cisplatin-induced injury in LLC-PK1 cells. Free Radic Biol Med, 2003, 35(8): 966-977

[31]

HusainK., MorrisC., WhitworthC., et al.. Protection by ebselen against cisplatin-induced nephrotoxicity: antioxidant system. Mol Cell Biochem, 1998, 178(1–2): 127-133

[32]

SueishiK., MishimaK., MakinoK., et al.. Protection by a radical scavenger edaravone against cisplatin-induced nephrotoxicity in rats. Eur J Pharmacol, 2002, 451(2): 203-208

[33]

SenerG., SatirogluH., KabasakalL., et al.. The protective effect of melatonin on cisplatin nephrotoxicity. Fundam Clin Pharmacol, 2000, 14(6): 553-560

[34]

WeijlN.I., ElsendoornT.J., LentjesE.G., et al.. Supplementation with antioxidant micronutrients and chemotherapyinduced toxicity in cancer patients treated with cisplatinbased chemotherapy: a randomised, double-blind, placebo-controlled study. Eur J Cancer, 2004, 40(11): 1713-1723

[35]

ShiraishiF., CurtisL.M., TruongL., et al.. Heme oxygenase-1 gene ablation or expression modulates cisplatininduced renal tubular apoptosis. Am J Physiol Renal Physiol, 2000, 278(5): F726-F736

[36]

AgarwalA., NickH.S.. Renal response to tissue injury: lessons from heme oxygenase-1 gene ablation and expression. J Am Soc Nephrol, 2000, 11: 965-973

[37]

BurtonG.W., IngoldK.U.. Vitamin E: application of principles of physical organic chemistry to the exploration of its structure and function. Acc Chem Res, 1986, 19(7): 194-201

[38]

JonesD.P., KaganV.E., AustS.D., et al.. Impact of nutrients on cellular lipid peroxidation and antioxidant defense system. Fundam Appl Toxicol, 1995, 26(1): 1-7

AI Summary AI Mindmap
PDF

107

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/