• Title/Summary/Keyword: Viability Mechanism

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Econazole Induces p53-Dependent Apoptosis and Decreases Metastasis Ability in Gastric Cancer Cells

  • Choi, Eun Kyoung;Park, Eun Jung;Phan, Tien Thuy;Kim, Hea Dong;Hoe, Kwang-Lae;Kim, Dong-Uk
    • Biomolecules & Therapeutics
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    • v.28 no.4
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    • pp.370-379
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    • 2020
  • Econazole, a potent broad-spectrum antifungal agent and a Ca2+ channel antagonist, induces cytotoxicity in leukemia cells and is used for the treatment of skin infections. However, little is known about its cytotoxic effects on solid tumor cells. Here, we investigated the molecular mechanism underlying econazole-induced toxicity in vitro and evaluated its regulatory effect on the metastasis of gastric cancer cells. Using the gastric cancer cell lines AGS and SNU1 expressing wild-type p53 we demonstrated that econazole could significantly reduce cell viability and colony-forming (tumorigenesis) ability. Econazole induced G0/G1 phase arrest, promoted apoptosis, and effectively blocked proliferation- and survival-related signal transduction pathways in gastric cancer cells. In addition, econazole inhibited the secretion of matrix metalloproteinase- 2 (MMP-2) and MMP-9, which degrade the extracellular matrix and basement membrane. Econazole also effectively inhibited the metastasis of gastric cancer cells, as confirmed from cell invasion and wound healing assays. The protein level of p53 was significantly elevated after econazole treatment of AGS and SNU1 cells. However, apoptosis was blocked in econazole-treated cells exposed to a p53-specific small-interfering RNA to eliminate p53 expression. These results provide evidence that econazole could be repurposed to induce gastric cancer cell death and inhibit cancer invasion.

Effect of Gleevec on Head and Neck Squamous Cell Carcinoma (두경부편평세포암종에서 Gleevec의 효과)

  • Chu Hyung-Ro;Weisman Robert A.
    • Korean Journal of Head & Neck Oncology
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    • v.21 no.2
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    • pp.158-164
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    • 2005
  • Purpose: The serine/threonine kinase Akt was described to inhibit apoptosis in cancer. This study was to examine the effect of Gleevec on head and neck squamous cell carcinoma(HNSCC) through the mechanism of Akt. Experimental Design: Gleevec was introduced into the HNSCC cell lines UMSCC10B, HN12 and HN30 in a range of concentrations. Cell viability was assessed by clonogenic survival analysis. Targets of Gleevec(PDGFR, c-Kit, and c-Abl) were evaluated by Western blot. HNSCC tissue samples were stained for PDGFR, c-Kit and phosphorylated Akt. Akt phosphorylation following Gleevec treatment was assessed using Western blot. Akt siRNA was used to as the positive control. Results: Colony forming efficiency decreased with an increase in concentration of Gleevec. Expressions of PDGFR, c-Kit, and c-Abl were observed in HNSCC cells. Immunohistochemistry confirmed high expression of PDGFR, c-Kit, and p-Akt in human HNSCC tissues. Akt kinase activity was significantly inhibited with increasing concentration of Gleevec in HNSCC cells, and near complete dephosphorylation of Akt was observed at $6{\mu}M$ of Gleevec in the UMSCC10B and HN30 cell lines. Conclusions: Gleevec at clinically comparable concentrations caused a dose dependant decrease in HNSCC survival. The decreased cell survival was related to the inhibition of Akt kinase activity and dephosphorylation of Akt. Akt signaling pathway may be a relevant target for Gleevec in treating HNSCC.

Neuroprotective Effects of Extracts from Diospyros kaki L. Peel (단감(Diospyros Kaki L.)껍질 추출물의 신경세포 보호 효과)

  • Lee, Mi-Ra;Moon, Seong-Hee;Choi, Ae-Ran;Lee, Seung-Cheol;Ahn, Kwnag-Hwan;Park, Hae-Ryong
    • Korean journal of food and cookery science
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    • v.27 no.4
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    • pp.67-73
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    • 2011
  • This study was performed to assess the neuroprotective effects of methanolic extracts from sweet persimmon peel (PPE) against glutamate-induced cytotoxicity in hybridoma N18-RE-105 cells. The neuroprotective effects of PPE in N18-RE-105 cells were measured using the MTT reduction assay, LDH release assay, and phase-contrast microscopy. The results of the MTT reduction assay showed that treating cells with 500 ${\mu}g/ml$ PPE resulted in cell viability of 66.9%. Additionally, the morphological changes and the results of the LDH release assay showed that glutamate-induced damage to nerve cells was strongly inhibited by PPE. GSH content of N18-RE-105 cells was 3.5 ${\mu}M$ compared to that of the control, whereas pretreatment with 500 ${\mu}g/ml$ PPE increased GSH content by 4.7 ${\mu}M$. PPE was fractionated with hexane, and that layer had the highest neuroprotective effects in glutamate-stressed N18-RE-105 cells. In conclusion, our data showed that glutamate potentiated the effects of N18-RE-105 cell death by a mechanism involving oxidative stress. Therefore, PPE may be a potential candidate for prevention and therapy of neurodegenerative diseases.

The Neuroprotective Effect of Rhizoma Arisaematis on 3-NP-induced Oxidative Injury of C6 Glial Cells (3-NP에 의해 유발된 신경교세포의 산화적 손상에 대한 남성(南星)의 보호효과)

  • Lee, Jung-Sup;Shin, Yong-Jin;Jeon, Ji-Young;Seol, Jae-Gyun;Choi, Chul-Won;Shin, Sun-Ho;Lee, In;Nam, Sang-Kyu
    • The Journal of Internal Korean Medicine
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    • v.28 no.3
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    • pp.586-596
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    • 2007
  • Objectives : This study aimed to investigate the underlying protective mechanism of Rhizoma Arisaematis(RA) on 3-NP-induced Cytotoxicity in rat C6 glial cells. Methods : We investigated treatment ofC6 cells with 20mM 3-NP and pretreatment with RA to cause loss of cell viability. and morphological change. which was associated with elevation of ROS level. increase in Bax/Bcl2 ratio and HIF-a protein expression Results : RA inhibited 3-NP-induced cell death in C6 glial cells and inhibited the changes of the : MMPT (mitochondria membrane potential transition) and inhibited the decrease of mitochondria complex II activity and 3-NP-induced ROS generation in C6 cells. And RA decreased the activity of HIF-a and Bax. and increased the activity of $Bcl_2$ in C6 glial cells Conclusions : RA markedly protects C6 glial cells from 3-NP-induced oxidative injury.

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Growth Inhibition of Uterine Leiomyoma Cells Using Rhubarb (대황이 자궁상종세포의 세포자멸사에 미치는 영향)

  • Yang Young Phil;Kim Hyun Tae;Kim Sang Chan;Baek Seung Hee;Kim Mi Rye;Kwon Young Kyu
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.18 no.1
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    • pp.200-205
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    • 2004
  • Uterine leiomyoma is the most common tumor in the female genital tract. Although the tumor is benign, it is of paramount importance since it often causes profuse menstrual bleeding, pressure symptoms, and infertility. Nevertheless, the etiology and patholphysiology of this abnormality remain poorly understood. The traditional definitive treatment for uterine leiomyomas is hysterectomy and, even today, symptomatic leiomyomas are the leading cause of hysterectomy in Korea. Clearly, the development of a safe, effective, and nonsurgical method of treatment for leiomyoma would be of great benefit to many women. The present study was designed to investigate the effect of Rhubarb on apoptosis in uterine leiomyoma cells. Results demonstrate that Rhubarb inhibited cell growth in dose-dependent manner. Cell growth significantly decreased to 60% of control in the treatment of Rhubarb (300㎍/㎖). Associated with the decreased response, there was a concomitant and significant delay of subG1 8.32% above baseline in the treatment of Rhubarb (300㎍/㎖). The delay of subG1 showed a dose-dependent manner, as evidenced by the flow cytometry. The reduced cellular viability on exposure to Rhubarb may represent the induction of apoptosis, at least in part, as concomitantly evidenced by enhanced DNA fragmentation, PARP cleavage and caspase 9 and decreased pro-caspase 3. In addition, Rhubarb decreased clAP1 expression levels in dose-dependent manner. Talcen together, there results suggest that Rhubarb can produce a potent inhibition effect of apoptosis and implicate the delay of G1 phase in the cell cycle and pathways of caspase 3 and 9 in the mechanism underlying inhibitory apoptosis effect of Rhubarb.

Effects of Arsenic Compounds $(AS_2O_3\;and\;AS_4O_6)$ on the Induction of Apoptotic Cell Death in A549 Human Non-small Cell Lung Cancer Cells (비소화합물에 의한 A549 폐암세포의 증식억제에 관한 연구)

  • Choi, Yung-Hyun;Choi, Woo-Young;Choi, Byung-Tae;Lee, Yong-Tae;Lee, Won-Ho
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.19 no.4
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    • pp.1050-1054
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    • 2005
  • Recently, arsenic compounds were considered as novel agents for treatment of acute promyelocytic leukemia and malignant tumors. However, it showed severe toxicity effect on normal tissue at the same time. In this study, to investigate the possible molecular mechanism (s) of arsenic compounds as candidate of anti-cancer drugs, we compared the abilities of two arsenic compounds, tetraarsenic oxide $(AS_4O_6)$ and arsenic trioxide (diarsenic oxide, $As_2O_3$), to induce cell growth inhibition as well as apoptosis induction in A549 human non-small cell lung cancer cells. Both $As_4O_6\;and\;As_2O_3$ treatment declined the cell growth and viability of A549 cells in a concentration-dependent manner, which was associated with induction of G1 arrest of the cell cycle and apoptotic cell death. However, $As_4O_6$ induced growth inhibition and apoptosis in A549 cells at much lower concentrations than $As_2O_3.\;As_4O_6$ down-regulated the levels of anti-apoptotic Bcl-2 protein, however, the levels of Bax, a pro-apoptotic protein, were up-regulated in a dose-dependent manner. In conclusion, $As_4O_6$ might be a new arsenic compound which may induce apoptosis in A549 cells by modulation the Bcl-2 family and deserves further evaluation.

Cytotoxic Effects of Radix Aconiti Extract in Lung Cancer Cell Lines (폐암세포에 대한 부자(附子) 추출물의 독성 효과)

  • Kwon, Kang-Beom;Kim, Eun-Kyung;Moon, Hyung-Cheal;Song, Yung-Sun;Ryu, Do-Gon
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.19 no.3
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    • pp.628-632
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    • 2005
  • The aim of this study was to investigate the cytotoxic effect and its mechanism on Radix Aconiti(RA) extract in lung cancer cell lines. RA extract treatment decreased the cell viability in a dose-dependent fashions in lung cancer cells including A549, H460, H23 and H157 cells. Many investigators reported that A549 and H460 cells expressed wild-type p53, but H23 and H157 cells preserved mutated p53. After treatment with RA extract in A549 and H460 cells, we measured the expression of p53 protein levels using Western blot. analysis. In both cells treated with RA extracts, p53 protein expressions were increased in a dose-dependent manner. In our experiments, RA extracts also have cytotoxic effects in H23 and H157, which have mutated p53. Treatment with RA extract decreased bcl-2 protein expressions in both cells. These results suggest that RA extracts have cytotoxic effects via p53 expression increase and bcl-2 inhibitable pathways in A549, H460 cells and H23, H157 cells, respectively.

Inhibitory Effect of Hyeonggaeyeongyo-tang Water Extract on production of Nitric Oxide, IL-6 and Expression of iNOS, COX-2 in LPS - Activated Raw 264.7 Cells (형개영교탕(荊芥蓮翹湯)이 lipopolysaccharide로 유도된 nitric oxide의 생성 및 iNOS와 COX-2의 발현, cytokine에 미치는 영향)

  • Kim, Min-Ji;Lee, Jong-Rok;Kim, Sang-Chan
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.21 no.2
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    • pp.491-497
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    • 2007
  • Hyeonggaeyeongyo-tang (HYT; Jingjielianqiao-tang), is known to be effective in lowering wind-heat blended as a pathogen of kidney. HYT has been traditionally used for the treatment of a syndrome in kidney meridian, due to invasion of pathogenic wind and heat. Nowadays, this prescription is used to treat diseases marked by excessive wind and heat in the kidney meridian, such as acute otitis media, empyema, hypertrophic rhinitis, nasal bleeding, nasal obstruction, acne and tonsillitis. The present study was conducted to evaluate the effect of HYT on the regulatory mechanism of cytokines and nitric oxide (NO) for the immunological activities in Raw 264.7 cells. After the treatment of HYT water extract, cell viability was measured by MTT assay, NO production was monitored by measuring the nitrite content in culture medium. Cyclooxygenase-2 (COX-2_ and inducible nitric oxide synthase (iNOS) were determined by immunoblot analysis, and levels of cytokine were analyzed by sandwich immunoassays. The production of No was significantly inhibited by pre-treatment (1h) with HYT(0.1-0.3 mg/ml) on LPS-activated Raw264.7 cells. The expression of iNOS and COX-2 protein were up-regulated by LPS, but the increased levels of iNOS and COX-2 were inhibited by pre-treatment of HYT (0.3-1.0 mg/ml), respectively. And the level of interleukin-6 (IL-6), cytokine released from macrophage, was reduced by HYT pre-treatment (0.3-1.0 mg/ml). Thus, the present data suggest that HYT may play an important role in adjunctive therapy in Gram-negative bacterial infections.

Protective Effects of Dodam Water Extract (Dodam) Against Rotenone-Induced Neurotoxicity in Neuro-2A Cells

  • Youn, Myung-Ja;Park, Seong-Yeol;Park, Cha-Nny;Kim, Jin-Kyung;Kim, Yun-Ha;Kim, Eun-Sook;Moon, Byung-Soon;So, Hong-Seob;Park, Raek-Il
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.2
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    • pp.438-445
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    • 2008
  • Dodam formula (Dodam) has been used for neurodegenerative disease in Oriental medicine. Dodam is capable of protecting diverse kinds of cells from damage caused by a variety of toxic stimuli. In the present study, we investigated the underlying protective mechanism of Dodam on rotenone-induced cytotoxicity in rat neuroblastoma Neuro-2A cells. Treatment with Neuro-2A cells with rotenone caused the loss of cell viability, and condensation and fragmentation of nuclei, which was associated with the elevation of ROS level, and lipid peroxidation, the increase in Bax/Bcl-2 ratio. Rotenone induced mitochondrial dysfunction characterized by mitochondrial membrane potential loss and cytochrome-c release. These phenotypes induced by rotenone were reversed by pretreatment with Dodam. Our results suggested that major features of rotenone-induced neurotoxicity are partially mediated by mitochondrial dysfunction and oxidative stress, and that Dodam markedly protects Neuro-2A cells from oxidative injury. These data indicated that Dodam might provide a useful therapeutic strategy in treatment of the neurodegenerative diseases caused by oxidative injuries.

Anthocyanin Extracts from Black Soybean (Glycine max L.) Protect Human Glial Cells Against Oxygen-Glucose Deprivation by Promoting Autophagy

  • Kim, Yong-Kwan;Yoon, Hye-Hyeon;Lee, Young-Dae;Youn, Dong-Ye;Ha, Tae-Joung;Kim, Ho-Shik;Lee, Jeong-Hwa
    • Biomolecules & Therapeutics
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    • v.20 no.1
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    • pp.68-74
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    • 2012
  • Anthocyanins have received growing attention as dietary antioxidants for the prevention of oxidative damage. Astrocytes, which are specialized glial cells, exert numerous essential, complex functions in both healthy and diseased central nervous system (CNS) through a process known as reactive astrogilosis. Therefore, the maintenance of glial cell viability may be important because of its role as a key modulator of neuropathological events. The aim of this study was to investigate the effect of anthocyanin on the survival of glial cells exposed to oxidative stress. Our results demonstrated that anthocyanin extracts from black soybean increased survival of U87 glioma cells in a dose dependent manner upon oxygen-glucose deprivation (OGD), accompanied by decrease levels of reactive oxygen species (ROS). While treatment cells with anthocyanin extracts or OGD stress individually activated autophagy induction, the effect was signifi cantly augmented by pretreatment cells with anthocyanin extracts prior to OGD. The contribution of autophagy induction to the protective effects of anthocyanin was verifi ed by the observation that silencing the Atg5 expression, an essential regulator of autophagy induction, reversed the cytoprotective effect of anthocyanin extracts against OGD stress. Treatment of U87 cells with rapamycin, an autophagy inducer, increased cell survival upon OGD stress comparable to anthocyanin, indicating that autophagy functions as a survival mechanism against oxidative stress-induced cytotoxicity in glial cells. Our results, therefore, provide a rationale for the use of anthocyanin as a preventive agent for brain dysfunction caused by oxidative damage, such as a stroke.