• Title/Summary/Keyword: cisplatin-induced cytotoxicity

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Inhibitory Effect of Bojungbangam-tang Kakambang on Cisplatin-Induced G2/M Phase Arrest in Human Renal Proximal Tubular HK-2 Cells (보정방암탕가감방(保正防癌湯加減方)이 cisplatin으로 유도된 인간 근위세뇨관 HK-2세포의 G2/M phase arrest에 미치는 영향)

  • Park, Sung-Cheul;Lee, Su-Kyung;Yeom, Seung-Ryong;Kwon, Young-Dal;Song, Yung-Sun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.21 no.6
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    • pp.1555-1563
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    • 2007
  • To idenifty effect of Bojungbangam-tang kakambang on Cisplatin-Induced G2/M Phase Arrest in Human Renal Proximal Tubular HK-2 Cells. Cytotoxicity of cisplatin was detected in HK-2 cells and the value of IC50 is about $25\;{\mu}M$. The treatment of cisplatin to HK-2 showed the G2/M phase cell cycle arrest. The ethanol extract of Bojungbangam-tang kakambang (EBTKB), a new herbal prescription composed of ten crude herbs, inhibited cisplatin-induced G2/M phase arrest in HK-2 cells. EBTKB increased G0/G1 peak in cisplatin-treated HK-2 cells. p53, p21 and p27 expression were increased in cisplatin-treated HK-2 cells. Inhibitory effect of EBTKB on cisplatin-induced G2/M phase arrest was accomplished through inhibition of p53, p21 and p27 expression. Also, reduced CDK2 and cyclin A expression by cisplatin were increased by EBTKB, but cyclin E was not changed. Reduction of ERK activation and increment of p38 activation by cisplatin were increased ERK activation and decreased p38 activation by EBTKB. Cisplatin had no effect on JNK activation, but EBTKB increased JNK activation. These results can suggest that EBTKB inhibits cisplatin-induced G2/M phase arrest in HK-2 cell through reduction of p53-dependent p21 and p27 protein, ERK activation and p38 inactivation.

Anti-apoptotic Effect of Bojungbangam-tang Ethanol Extract on Cisplatin-Induced Apoptosis in Rat Mesangial Cells

  • Kim, Nam-Su;Ju, Sung-Min;Kwon, Young-Dal;Shin, Byung-Cheul;Ahn, Kyoo-Seok;Kim, Sung-Hoon;Song, Yung-Sun;Jeon, Byung-Hun
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.6
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    • pp.1664-1671
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    • 2006
  • Cisplatin is a anti-neoplastic agent which is commonly used for the treatment of solid tumor. Cisplatin activates multiple signal transduction pathways involved in the stress-induced apoptosis in a variety of cell types. Cytotoxicity of cisplatin was detected in rat mesangial cells and the value of $IC_{50}$ is about 20 ${\mu}M$. The treatment of cisplatin to rat mesangial cells showed the apoptotic bodies and DNA fragmentation. The activation of caspase-3, -8, and -9 and proteolytic cleavage of PARP were observed in the rat mesangial cells treated time-dependently with cisplatin. The activation of ERK, p38 and JNK was also observed in the apoptosis induced by cisplatin in rat mesangial cells. The ethanol extract of Bojungbangam-tang (EBJT), a new hergal prescription composed of nine crude drugs, inhibited cisplatin-induced apoptosis in rat mesangial cells. EBJT reduced sub-G1 peak (apoptotic peak) in cisplatin-treated rat mesangial cells. The cisplatin-induced ERK and JNK activation in rat mesangial cells were blocked by EBJT, but EBJT had no effect on p38 activation. Taken together, these results con suggest that EBJT prevents cisplatin-induced apoptotic cell death in rat mesangial cells through inhibition of ERK and JNK activation.

Protective Effects of Sanyakbojungbangam-tang Ethanol Extracts on Cisplatin-induced Apoptosis in ECV304 Cells (혈관내피세포에서 cisplatin에 의한 세포고사에 대한 산약보정방암탕 에탄을 추출물의 방어효과)

  • Kwon Kang-Beom;Kim Eun-Kyung;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.20 no.1
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    • pp.20-24
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    • 2006
  • This study was designed to investigate the protective effect of Sanyakbojungbangam-tang Ethanol Extracts (SB Et-OH) on the cisplatin-induced apoptosis of human endothelial cell line ECV304 cells. After cells were treated with cisplatin, 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-induced cell damage in ECV304 cells. Also, cells were treated with SB Et-OH and then, followed by the addition of cisplatin. Cisplatin decreased the viability of ECV304 cells in a dose-dependent manner and increased the caspase-3 enzyme activity ECV304 cells treated cisplatin were revealed as apoptosis characterized by nuclear staining. SB Et-OH protected ECV304 cells from cisplatin-induced nuclear fragmentation and chromatin condensation. Also, SB Et-OH inhibited the activation of caspase-3 pretense and the cleavage of poly(ADP-ribose) polymerase (PARP) in cisplatin-treated ECV304 cells. According to above results, SB Et-OH may protect ECV304 cells from the apoptosis induced by cisplatin.

Protective effect of ginsenosides Rk3 and Rh4 on cisplatin-induced acute kidney injury in vitro and in vivo

  • Baek, Seung-Hoon;Shin, Byong-kyu;Kim, Nam Jae;Chang, Sun-Young;Park, Jeong Hill
    • Journal of Ginseng Research
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    • v.41 no.3
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    • pp.233-239
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    • 2017
  • Background: Nephrotoxicity is the major side effect in cisplatin chemotherapy. Previously, we reported that the ginsenosides Rk3 and Rh4 reduced cisplatin toxicity on porcine renal proximal epithelial tubular cells (LLC-PK1). Here, we aimed to evaluate the protective effect of ginsenosides Rk3 and Rh4 on kidney function and elucidate their antioxidant effect using in vitro and in vivo models of cisplatin-induced acute renal failure. Methods: An enriched mixture of ginsenosides Rk3 and Rh4 (KG-KH; 49.3% and 43.1%, respectively) was purified from sun ginseng (heat processed Panax ginseng). Cytotoxicity was induced by treatment of $20{\mu}M$ cisplatin to LLC-PK1 cells and rat model of acute renal failure was generated by single intraperitoneal injection of 5 mg/kg cisplatin. Protective effects were assessed by determining cell viability, reactive oxygen species generation, blood urea nitrogen, serum creatinine, antioxidant enzyme activity, and histopathological examination. Results: The in vitro assay demonstrated that KG-KH ($50{\mu}g/mL$) significantly increased cell viability (4.6-fold), superoxide dismutase activity (2.8-fold), and glutathione reductase activity (1.5-fold), but reduced reactive oxygen species generation (56%) compared to cisplatin control cells. KG-KH (6 mg/kg, per os) also significantly inhibited renal edema (87% kidney index) and dysfunction (71.4% blood urea nitrogen, 67.4% creatinine) compared to cisplatin control rats. Of note, KG-KH significantly recovered the kidney levels of catalase (1.2-fold) and superoxide dismutase (1.5-fold). Conclusion: Considering the oxidative injury as an early trigger of cisplatin nephrotoxicity, our findings suggest that ginsenosides Rk3 and Rh4 protect the kidney from cisplatin-induced oxidative injury and help to recover renal function by restoring intrinsic antioxidant defenses.

Cytoprotective and Antioxidative Effects of Crude Drug Preparation (E-kong-san) (이공산(異功散)의 세포보호 및 항산화 작용)

  • Lee, Kyung-Tae;Choi, Jung-Hye;Rho, Young-Soo;Ahn, Kyoo-Seok;Chang, Sung-Goo;Oh, Soo-Myung;Jung, Jee-Chang
    • Korean Journal of Pharmacognosy
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    • v.30 no.3
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    • pp.255-260
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    • 1999
  • In the previous report, E-kong-san, which is usually used for recovering health in traditional medicine, has been shown to decrease cisplatin induced nephrotoxicity in vivo and in vitro. The significant reduction of E-kong-san on the cisplatin induced nephrotoxicity led us to investigate whether the effect of this water extract was a result of triggering antioxidation. In monkey kidney Vero cells, E-kong-san at $5{\sim}10\;mg/ml$ was able to attenuate 2mM cisplatin-stimulated cell death by 46.8% and 31.8%, respectively. E-kong-san showed strong free radical scavengering activities on 1,1-diphenyl-2-picrylhydrazil (DPPH) radical and xanthine/xanthine oxidase (XOD) generated superoxide anion radical $(O_2^{-.})$. We further studied the effects of E-kong-san on lipid peroxidation in rat liver microsomes induced by enzymatic and nonenzymatic methods. Moreover, E-kong-san exhibited significant inhibition on both ascorbic $acid/Fe^{2+}$ and $ADP/NADPH/Fe^{3+}$ induced lipid peroxidation in rat liver microsomes. Based on these results, we suggest that E-kong-san protects the cisplatin induced cytotoxicity by its antioxidative mechanism.

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Immunostimulation Activity of the Crude Polysaccharides Fractionated from Eleutherococcus senticosus, and its Application to Prevent of Tumors by Combination Therapy with Cisplatin (오가피로부터 분리된 조다당 분획물의 면역자극활성 및 Cisplatin과의 병용에 의한 항암 상승작용의 유도)

  • 하은숙;황수현;유광원;신광순;조형민;김창한;박우문;윤택준
    • YAKHAK HOEJI
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    • v.47 no.3
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    • pp.159-166
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    • 2003
  • In order to study the clinical usefulness of crude polysaccharides fractionated from Eleutherococcus senticosus, EN-3, in eliminating tumors, we have investigated the effect of combination therapy on the murine tumor metastasis and growth models. In experimental metastasis of colon26-M3.1 cells, prophylactic intravenous (i.v.) administration of EN-3 (0.5, 5, and 50 $\mu\textrm{g}$/mouse) inhibited tumor metastasis compared with tumor control group in 33.6, 66.8, and 81.8% respectively. The administration of EN-3 (50 $\mu\textrm{g}$/mouse) also exhibited a 66.1% therapeutic effect on lung tumor metastasis. Although EN-3 induced no toxic effect on both tumor cell and normal splenocyte in the concentration below 100 $\mu\textrm{g}$/mι in in vitro, it induced significant proliferating activity on normal splenocyte in the concentration-dependent manner. In an analysis of NK-cell activity, i.v. administration of EN-3 (4∼100 $\mu\textrm{g}$/mouse) significantly augmented NK cytotoxicity to YAC-1 tumor cells. The combination treatments of cisplatin (10 $\mu\textrm{g}$) and EN-3 (5 $\mu\textrm{g}$) induced synergistic effect on the inhibition of tumor metastasis in experimental tumor metastasis model produced by colon26-M3.1 cells. In addition, the combination treatments also exhibited prolongation of lifespan in S∼180 tumor bearing mouse for over the 60 days. Even though cisplatin (2.5 $\mu\textrm{g}$/mι) exhibited cytotoxicity to tumor cells and inhibited tumor growth over 95% in in vitro, combination treatment with EN-3 (20 $\mu\textrm{g}$/mι) was induced splenocyte proliferation and produced cytokines, such as TNF-$\alpha$, IL-1 and IL-12, from the macrophages. These results suggested that EN-3 stimulate immune system non-specifically and apply to the biological response modifiers (BRM) in chemo-immunotherapy for tumor prevention.

Effect of Biphenyl Dimethyl Dicarboxylate on Chemical-Induced Hepatotoxicity

  • Kim, Sun-Hyung;Cho, Young-Jin;Bae, Yong-Jin;Lee, Kweon-Haeng;Lee, Sang-Bok
    • Toxicological Research
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    • v.11 no.2
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    • pp.181-185
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    • 1995
  • To know the mechanism of biphenyl dimethyl dicarboxylate (DDB) in the protection of chemically induced hepatotoxicity, the activity of glutamic pyruvic tran.saminase (GPT) and the level of lipid peroxidation metabolite (malondialdehyde, MDA) and ATP content in hepatocytes were determined in serum and primarily cultured hepatocytes. For in vibo study, rats were pretreated with DDB (300 mg/ kg, p.o.)for 7 days. DDB pretreatment efficiently reduced the elevation of serum GPT activity induced by carbon tetrachloride (1.6 ml/kg, s.c.) and acetaminophen administration (1500 mg/kg, i.p.). In ex vivo study, hepatocytes were isolated from the rats pretreated with DDB (300 mg/kg, p.o.)for 7 days and cultured for 12 hrs before inducing cytotoxicity with chemicals. The MDA formation and the GPT release induced by adriamycin $(1\times10^{-4} mg/ml)$ and cisplatin $(2\times10^{-4} mg/ml)$ were markedly decreased in the hepatocytes from the rats pretreated with DDB as compared to vehicle only. However, DDB pretreatment did not prevent the decrease of ATP contents of hepatocytes induced by cisplatin and adriamycin. In in vitro experiment, DDB was pretreated in primary cultured hepatocytes for 3 days. DDB enhanced the decreases of ATP contents induced by cisplatin and adriamycln. These results suggest that DDB may protect the hepatocytes from injury induced by hepatotoxlcants through inhibiting the lipid peroxidation.

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Potentiating Dietary Green Tea Extracts Anti-Tumor Activity of Cisplatin in BALB/c Mice Bearing CT26 Colon Carcinoma (대장암(CT 26) 생쥐에서 녹차추출물 음용에 의한 시스플라틴 항암작용 증강효과)

  • Lee, Byoung-Rai;Park, Pyoung-Sim
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.41 no.8
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    • pp.1100-1105
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    • 2012
  • Green tea intake is known to have preventive effects against cancer. In this study, we evaluated the tumor suppressive effects of dietary green tea extracts (GTE) as a modulator on cisplatin in an established colon cancer mouse model. The cisplatin-induced cytotoxicity was determined with cell viability of the mouse colon cancer cell line (CT26) in vitro. The influence of GTE on the anti-tumor activity of cisplatin was evaluated by measuring tumor size with digital calipers in mice bearing CT26 colon carcinomas. The CT26 cell viability decreased to 93% at a $20{\mu}g/mL$ concentration of cisplatin. However, cell viability decreased to 15% with a combination of $20{\mu}g/mL$ cisplatin and GTE ($75{\mu}g/mL$). There were no apparent changes in cisplatin-induced cytotoxicity with GTE and epigallocathechin gallate (EGCG) treatments. Tumor size decreased in dietary GTE combining intra-peritoneal cisplatin-injected tumors bearing mice compared with cisplatin or GTE alone administered to tumor-bearing mice. These experiments showed that dietary GTE has a potentiating effect on the cisplatin anti-tumor activity of an established mice colon cancer model. Therefore, the GTE may be a candidate for modulators in anticancer treatments with cisplatin.

Effects of Aloe vera on the Cytotoxicity of Anticancer Drugs in Vitro (Aloe vera가 항암제의 세포독성에 미치는 영향)

  • 표명윤;윤지현
    • YAKHAK HOEJI
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    • v.43 no.1
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    • pp.104-110
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    • 1999
  • We investigated effects of methanol extract of Aloe vera on anticancer drugs(cisplatin, mitomycin C, 5-fluorouracil)-induced growth inhibition in p388, L1210, HCT-15, SK-HepG-1 as cancer cell lines and mouse splenocytes as a normal cell by MTT assay, respectively. We also examined the effects of aloe extract and mitomycin C on the mitogen(Con, A, LPS)-induced splenocyte proliferation. Aloe extract(0.25 mg/m , 1.25 mg/m , 2.5 mg/m , 5.0 mg/m ) showed dose-dependently selective cytotoxicity against the cancer cell lines. In contrast, Aloe extract increased the growth and proliferation of the normal mouse splenocytes. The combination of aloe extract with anticancer drugs showed an additive effect for the cytotoxicity against cancer cell lines. However, that combination reduced clealy the anticancer drugs-induced toxicity against the normal mouse splenocytes.

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Epigenetic modification of α-N-acetylgalactosaminidase enhances cisplatin resistance in ovarian cancer

  • Ha, Ye-Na;Sung, Hye Youn;Yang, San-Duk;Chae, Yun Ju;Ju, Woong;Ahn, Jung-Hyuck
    • The Korean Journal of Physiology and Pharmacology
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    • v.22 no.1
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    • pp.43-51
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    • 2018
  • Although cisplatin is one of the most effective antitumor drugs for ovarian cancer, the emergence of chemoresistance to cisplatin in over 80% of initially responsive patients is a major barrier to successful therapy. The precise mechanisms underlying the development of cisplatin resistance are not fully understood, but alteration of DNA methylation associated with aberrant gene silencing may play a role. To identify epigenetically regulated genes directly associated with ovarian cancer cisplatin resistance, we compared the expression and methylation profiles of cisplatin-sensitive and -resistant human ovarian cancer cell lines. We identified ${\alpha}$-N-acetylgalactosaminidase (NAGA) as one of the key candidate genes for cisplatin drug response. Interestingly, in cisplatin-resistant cell lines, NAGA was significantly down-regulated and hypermethylated at a promoter CpG site at position +251 relative to the transcriptional start site. Low NAGA expression in cisplatin-resistant cell lines was restored by treatment with a DNA demethylation agent, indicating transcriptional silencing by hyper-DNA methylation. Furthermore, overexpression of NAGA in cisplatin-resistant lines induced cytotoxicity in response to cisplatin, whereas depletion of NAGA expression increased cisplatin chemoresistance, suggesting an essential role of NAGA in sensitizing ovarian cells to cisplatin. These findings indicate that NAGA acts as a cisplatin sensitizer and its gene silencing by hypermethylation confers resistance to cisplatin in ovarian cancer. Therefore, we suggest NAGA may be a promising potential therapeutic target for improvement of sensitivity to cisplatin in ovarian cancer.