• Title/Summary/Keyword: cisplatin-induced cytotoxicity

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Recent Findings on the Mechanism of Cisplatin-Induced Renal Cytotoxicity and Therapeutic Potential of Natural Compounds

  • Lee, Dahae;Choi, Sungyoul;Yamabe, Noriko;Kim, Ki Hyun;Kang, Ki Sung
    • Natural Product Sciences
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    • v.26 no.1
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    • pp.28-49
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    • 2020
  • The efficacy and side effects associated with anticancer drugs have attracted an extensive research focus. Onconephrology is an evolving field of nephrology that deals with the study of kidney diseases in cancer patients. Most renal diseases in cancer patients are unique, and management of renal disease can be challenging especially in the presence of continuing use of the nephrotoxic drugs. Cisplatin is one of the most important chemotherapeutic agents used in the treatment of various malignancies, such as head, neck, ovarian, and cervical cancers. The major limitation in the clinical use of cisplatin is its tendency to induce adverse effects, such as nephrotoxicity. Recently, plant-derived phytochemicals have emerged as novel agents providing protection against cisplatin-induced renal cytotoxicity. Owing to the diversity of phytochemicals, they cover a wide spectrum of therapeutic indications in cancer and inflammation and have been a productive source of lead compounds for the development of novel medications. Of these agents, the effectiveness of triterpenoids, isolated from various medicinal plants, against cisplatin-induced renal cytotoxicity has been reported most frequently compared to other phytochemicals. Triterpenes are one of the most numerous and diverse groups of plant natural products. Triterpenes ameliorate cisplatin-induced renal damage through multiple pathways by inhibiting reactive oxygen species, inflammation, down-regulation of the MAPK, apoptosis, and NF-κB signaling pathways and upregulation of Nrf2-mediated antioxidant defense mechanisms. Here, we reviewed recent findings on the natural compounds with protective potential in cisplatin-induced renal cytotoxicity, provided an overview of the protective effects and mechanisms that have been identified to date, and discussed strategies to reduce renal cytotoxicity induced by anticancer drugs.

Anti-oxidant Effects of the Water Extracts from the Inonotus Obliquus against Cisplatin- Induced Damage in HEI-OC1 Cells (차가버섯 물 추출물의 cisplatin에 의해 유도된 HEI-OC1세포 손상에 대한 항산화효과)

  • Youn, Myung-Ja;O, Kwang-Joong;Park, Kie-In
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.25 no.3
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    • pp.451-458
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    • 2011
  • The medicinal mushroom Inonotus obliquus is a traditional and widely used multi-functional fungus. In this study, we have investigated whether Inonotus obliquus (Chaga mushroom) extracts exerts anti-oxidant effects on cisplatin-induced cytotoxicity in auditory cell line, HEI-OC1 cells. First of all, Chaga extracts has no harmful effects on viability of HEI-OC1 cells in the dose range of $65{\sim}125{\mu}g/m{\ell}$. Moreover, it shows cyto-protective effects on the cells treated with cisplatin-induced cytotoxicity in HEI-OC1 cells and the damage of hair cells arrays of the rat primary organ of Corti explants in the presence of cisplatin. Pretreatment with Chaga extracts inhibited the cell death, reactive oxygen species generation (ROS), lipid peroxidation induced by cisplatin. These effects were associated with the induction of antioxidant enzyme by Chaga extracts. We further investigated the effects of Chaga extracts on expression of antioxidant enzymes such as Cu, Zn superoxide dismutase (SOD 1) and Mn SOD (SOD 2) by RT-PCR. In addition, Chaga extracts shows SOD activity and SOD protein expression in cisplatin treated group induced similar to control group. Taken together, these results indicate that Chaga extracts can prevent cisplatin-induced cytotoxicity by radical-scavenging activity (SOD activity) in HEI-OC1 cells. It might be an effective as antioxidant and further studies on the chemo-preventive mechanisms of Inonotus obliquus are needed.

Cytoprotective Effects of Bohyulmyunyuk-dan in Cisplatin-treated Brain Cells (Cisplatin을 처리한 뇌세포에서 보혈면역단의 세포방어효과)

  • Kang Tai Hee;Moon Gu;Moon Suk Jae;Won Jin Hee
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.16 no.2
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    • pp.296-302
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    • 2002
  • Bohyulmyunyuk-dan is an Oriental herbal formulation to enhance the general body conditions as well as immune response against both endogenous and exogenous harmful challenges. This study was designed to investigate the effect of Bohyulmyunyuk-dan on the cisplatin-induced toxicity of primary rat astrocytes and C6 glioma cells. After trestment of astrocytes and C6 glioma cells with cisplatin, MTT assay was carried out to measure cytotoxicity of brain cells. To explore the mechanism of cytotoxicity, astrocytes were treated with Bohyulmyunyuk-dan and followed by the addition of cisplatin. Then, the protective effects of Bohyulmyunyuk-dan were investigated in apoptosis signaling pathway. The results were obtained as follows ; Bohyulmyunyuk-dan protected the death of astrocytes by cisplatin, which decreased the viability of astrocytes and C6 glioma cells in a time- and dose-dependent manner. Bohyulmyunyuk-dan protected the apoptotic death of astrocytes from cisplatin induced cell apoptosis. Bohyulmyunyuk-dan inhitited the activation of caspase-3 and -9 protease in astrocytes by cisplatin. Bohyulmyunyuk-dan inhibited the deavage of PARP in astrocytes by cisplatin. According to above results, Bohyulmyunyuk-dan may prevent brain cells from cytotoxicity induced cell apoptosis induced by chemotherapeatic agents induding displatin.

Protective Effects of Bojungmyunyuk-dan in Cisplatin Treated Brain Cell Death (Cisplatin에 의한 뇌세포사멸에서 보중면역단의 방어효과)

  • Yoo Kyung Tae;Moon Seok Jae;Won Jin Hee;Kim Dong Woung;Lee Jong Deok;Won Kyoung Sook;Moon Goo
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.17 no.2
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    • pp.394-402
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    • 2003
  • This study was designed to investigate the protective effect of Bojungmyunyuk-dan(BJMY-Dan) on the cisplatin-induced cytotoxicity of primary rat astrocytes. BJMY-Dan is an oriental herbal prescription for its ability to recover protective effects against anti-cancer chemotherapies. After astrocytes were treated cisplatin, MTT assay was performed for cell viability test. To explore the mechanism of cytotoxicity, I used the several measures of apoptosis to determine whether this processes was involved in cisplatin-induced cell damage in astrocytes. Also, astrocytes were treated with BJMY-Dan and then, followed by the addition of cisplatin. Cisplatin decreased the viability of astrocytes in a dose and time-dependent manner. BJMY-Dan increased the viability of astrocytes treated cisplatin. Astrocytes treated cisplatin were revealed as apoptosis characterized by nuclear staining and flow cytometry. BJMY-Dan protected astrocytes from cisplatin-induced nuclear fragmentation and chromatin condensation. Also, caspase-3 and caspase-9 proteases were activated in astrocytes by cisplatin. BJMY-Dan inhibited the activation of caspase proteases in cisplatin-treated astrocytes. Cleavage of [poly(ADP-ribose) polymerase](PARP) was occurred at 12hr after treatment of cisplatin in astrocytes. BJMY-Dan recovered the cleavage of PARP in cisplatin-treated astrocytes. Also, BJMY-Dan inhibited the activation of pro-apoptotic factor, Bak by cisplatin. Lastly, astrocytes stained with JC-1 and Rhodamine 123 were photographed by fluorescence microscope to visualize changes of mitochondrial membrane permeability transition(MPT) during treatment with cisplatin for 24hr. BJMY-Dan recovered the change of MPT by cisplatin in astrocytes. According to above results, BJMY-Dan may protect astrocytes from cytotoxicity induced by chemotherapeutic agents, including cisplatin.

NAD(P)H-quinone oxidoreductase-1 silencing modulates cytoprotection related protein expression in cisplatin cytotoxicity

  • Park, Se Ra;Jung, Ju Young;Kim, Young-Jung;Jung, Da Young;Lee, Mee Young;Ryu, Si Yun
    • Korean Journal of Veterinary Research
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    • v.56 no.1
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    • pp.15-21
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    • 2016
  • NAD(P)H-quinone oxidoreductase-1 (NQO1) is a down-stream target gene of nuclear factor erythroid 2-related factor 2 (Nrf2), and performs diverse biological functions. Recently, NQO1 is recognized as an effective gene for the cytotoxic inserts with its diverse biological functions, which is focused on antioxidant properties. The aim of present study was to assess the impact of NQO1 knockdown on cytoprotection-related protein expression in cisplatin cytotoxicity by using small interfering (si) RNA targeted on NQO1 gene. Cytotoxicity of cisplatin on ACHN cells was assessed in a dose- and time-dependent manner after siScramble or siNQO1 treatment. After cisplatin treatment, cells were subjected to cell viability assay, western-blot analysis, and immunofluorescence study. The cell viability was decreased in the siNQO1 cells (50%) than the siScramble cells (70%) after 24 h of cisplatin ($20{\mu}M$) treatment. Moreover, cytoprotection-related protein expressions were markedly suppressed in the siNQO1 cells after cisplatin treatment. The expression of Nrf2 and Klotho were decreased by 20% and 40%, respectively, of that in siScramble cells. Nrf2 and Klotho activation were also decreased in cisplatin treated siNQO1 cells, confirmed by cytoplasm-tonuclear translocation. Our findings demonstrate that the increased cisplatin-induced cytotoxicity was accompanied by suppressed Nrf2 activation and Klotho expression in siNQO1 cells.

Protective Effect of Rehmannia Radix Preparata Extract on the Cisplatin-induced Cytotoxicity of HEI-OC1 Cells via Scavenging of Free Radicals (숙지황 추출물이 Cisplatin으로 손상된 HEI-OC1 세포보호와 유리라디칼 소거능에 미치는 영향)

  • Yu Hyeon-Hee;Seo Se-Jeong;Kim Yeon-Hwa;Park Rae-Kil;So Hong-Seob;Jeon Byung-Hun;Shin Mee-Kyung;Jung Su-Young;Kim Ki-Young;You Yong-Ouk
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.19 no.5
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    • pp.1349-1355
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    • 2005
  • The steamed root of Rehmannia glutinosa has been used for treatment of inner ear diseases, such as tinnitus and hearing loss in traditional Oriental Medicine. In the present study, we investigated the effect of ethanol extract of steamed root R. glutinosa (SRG) on cisplatin cytotoxicity of HEI-OC1 auditory cells. In addition, to investigate the mechanism of SRG on cisplatin cytotoxicity, the effects of SRG on lipid peroxidation as well as scavenging activities against various free radicals were measured in cisplatin-treated cells. Treatment of SRG protected cells from cisplatin and reduced lipid peroxidation in a dose-dependent manner. Furthermore, SRG demonstrated significant scavenging activity against various free radicals, including superoxide radical, hydroxyl radical, hydrogen peroxide, and DPPH radical. These results indicate that SRG protects cisplatin-induced damages of HEI-OC1 cells through inhibition of lipid peroxidation and augmenting scavenging activities against free radials.

Preventive Effect of Crude Drug Preparation (E-kong-san) on Cisplatin induced Nephrotoxicity (생약제제인 이공산(異功散)의 Cisplatin 유도 신장독성 보호 효과)

  • Rho, Young-Soo;Ahn, Kyoo-Seok;Chang, Sung-Goo;Jung, Jee-Chang;Lee, Kyung-Tae
    • Korean Journal of Pharmacognosy
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    • v.29 no.3
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    • pp.258-264
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    • 1998
  • Nephroprotective effects of a crude drug-preparation (Ekongsan) were determined from cisplatin induced renal injury in vivo and in vitro. Ekongsan decreased cisplatin induced the cytotoxicity on rabbit kidney proximal tubule and human renal cortical cells by MTT assays and sustained glucose consumption on cisplatin-induced human renal cortical tissue. Levels of creatinine and blood urea nitrogen (BUN) in serum after administration of cisplatin (0.75 mg/kg, i.p.) to Ekongsan (0.75 g/kg/d, p.o.) pretreated rats were markedly lower compared to those of cisplatin-treated rats. Moreover, the administration of Ekongsan significantly inhibited the loss of body weight of cisplatin-injected rats. These findings suggest that Ekongsan is an active prescription in protection against nephrotoxicity of cisplatin.

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Cytoprotective effect of Bojungbangam-tang on cisplatin-induced nephrotoxocity (Cisplatin 유도 신장독성에 대한 보정방암탕 에탄올층의 보호효과)

  • Lee, Hyo-Jung;Kim, Kwan-Hyun;Lee, Jae-Ho;Jang, Yu-Sung;Lee, Eun-Ok;Shim, Beom-Sang;Ahn, Kyoo-Seok;Lee, Kyung-Tae;Kim, Sung-Hoon
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.21 no.1
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    • pp.28-32
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    • 2007
  • Cisplatin, an antitumor agent widely used in the treatment of cancers, has nephrotoxicity. This side effect is closely related to oxidative stress. In the present study, we studied to protective effect of ethanol extract of Bojungbangam-tang (EBJT) on cisplatin-induced nephrotoxicity. Bojungbangam-tang is a new herbal prescription composed of nine crude drugs. Pretreatment of EBJT prevented cisplatin-induced cytotoxicity and generation of ROS. Also, cellular GSH content and gluathione peroxidase activity were recovered by EBJT. EBJT also decreased cisplatin-induced expression of HO-1 via inhibition of ERK activation. Taken together, these results suggest that EBJT has a cytoprotective effect against cisplatin-induced nephrotoxicity through anti-oxidant activity.

Protective Effects of Bojungbangam-tang Extracts on ECV304 Cell Cytotoxicity (보정방암탕 추출물의 혈관내피세포독성에 대한 방어효과)

  • Kwon, Kang-Beom;Kim, Eun-Kyung;Song, Mi-Young;Han, Mi-Jeong;Lee, Su-Yeop;Lee, Heon-Jae;Lee, Young-Rae;Ju, Sung-Min;Ryu, Do-Gon;Kim, Sung-Hoon;Jeon, Byung-Hun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.21 no.2
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    • pp.404-407
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    • 2007
  • This study was designed to investigate the protective effect of Bojungbangam-tang Ethanol Extracts (EBJT) on cisplatin and hydrogen peroxide-induced cytotoxicity of human endothelial cell line ECV304 cells. After cells were treated with cisplatin and hydrogen peroxide, MTT assay was performed for cell viability test. To explore the mechanism of cytotoxicity, we used the several measures of apoptosis to determine whether this processes was involved in cisplatin and hydrogen peroxide-induced cell damage in ECV304 cells. Also, cells were treated with EBJT and then, followed by the addition of cisplatin or hydrogen peroxide. Cisplatin or hydrogen peroxide decreased the viability of ECV304 cells in a dose-dependent manner. ECV304 cells treated cisplatin or hydrogen peroxide were revealed as apoptosis characterized by nuclear staining. EBJT protected ECV304 cells from cisplatin or hydrogen peroxide-induced nuclear fragmentation and chromatin condensation. Also, EBJT inhibited the cleavage of poly(ADP-ribose) polymerase (PARP) in cisplatin or hydrogen peroxide-treated ECV304 cells. According to above results, EBJT may protect ECV304 cells from the apotosis induced by cisplatin or hydrogen peroxide.

Protective Effect of Samul against Cisplatin in Primary Rat Organ of Corti Explant (시스플라틴 이독성에서 사물탕의 보호효과)

  • Park, Chan-Ny;Lee, Jeong-Han;Lee, Sang-Heon
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.21 no.1
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    • pp.214-218
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    • 2007
  • The water extracts of Samultang (Samul) has been used for treatment of ischemic heart and brain damage in Oriental traditional medicine. However, little is known about the mechanism by which the water extract of Samul rescues cells from oxidative damages in cisplatin-induced ototoxicity. Cisplatin is a widely used chemotherapeutic agent that is also highly ototoxic. This study was designed to investigate the protective effects of Samul on ciplatin-induced ototoxicity in HEI-OC1 auditory cells and organ of Corti explant culture. Cisplatin markedly decreased the viability of HEI-OC1 auditory cells. However, treatment of HEI-OC1 cells with Samul significantly reduced cisplatin-induced cell death and apoptotic characteristics through reduction of intracellular peroxide generation. Cisplatin induced cytotoxicity in isolated and cultured hair cell progenitors from postnatal rat cochleae. These progenitor cells are isolated from the lesser epithelial ridge (LER, or outer spiral sulcus cell) area of pre-plated neonatal rat cochlear segments. However, Samul completely protected the morphological changes of organ of Corti and LER. Taken together, these data suggest that the protective effects of the water extracts of Samul against cisplatin may be mediated by the reduction of intracellular peroxide generation.