• Title/Summary/Keyword: Apoptotic Cell Death

검색결과 1,138건 처리시간 0.037초

인체 대장암 세포주(HT-29)에서 담즙산 합성유도체(HS-1200)의 세포 사망 기전 (A Novel Chenodeoxycholic Derivative HS-1200 Induces Apoptosis in Human HT-29 Colon Cancer Cells)

  • 오신근;양광모;허원주;유영현;서홍석;이형식
    • Radiation Oncology Journal
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    • 제20권4호
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    • pp.367-374
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    • 2002
  • 목적 : 인체 대장암 세포주인 HT-29에 새로운 CDCA 합성유도체인 HS-1200을 처치하여 암세포의 증식에 미치는 영향과 아포토시스 유도 활성을 관찰하고 기전을 연구하고자 하였다. 대상 및 방법 : 지수증식기의 HT-29 세포에 다양한 농도의 CDCA 합성유도체인 HS-1200을 투약하여 $IC_{50}$를 구하였다. $IC_{50}$의 농도를 참조하여, 세포 생존능의 실험은 frypan blue exclusion assay를 이용하였고, 아포토시스 유도에 관한 관찰 실험은 agarose gel electrophoresis, TUNEL assay 및 Hoechst staining을 이용하였다. Western blotting을 통한 PARP [poly (ADP-ribose) polymerasel, caspase-3 및 DFF (DNA fragmentation factor)의 degradation 및 cleavage 등을 관찰하였다. Immunofluorescent method를 통한 cytochrome c 방출 측정 및 미토콘드리아 막전위 측정을 실시하였다. 결과 : HS-1200은 agarose gel electrophoresis 실험에서 DNA ladder의 관찰, TUNEL assay 및 Hoechst staining 에서 아포토시스 세포들이 대량으로 관찰되는 결과로 미루어 아포토시스에 의한 세포 사망을 유도하는 것으로 사료되었다. 아포토시스에 의한 세포 사망을 검증하기 위한 Western blotting을 통한 PARP cleavage, caspase-3 및 DFF 발현 관찰에서 공히 HS-1200 처치 후 4시간 째부터 PARP, caspase-3 및 DFF의 degradation 및 cleavage가 관찰되었다. HS-1200의 아포토시스 유도에 이르는 기전연구에서 미토콘드리아의 역할에 주목하고 시행한 cytochrome c 방출 측정 및 미토콘드리아막 전위 $(\Delta\Psi_m)$ 측정에서 공히 cytochrome c 방출 및 미토콘드리아막 전위 $(\Delta\Psi_m)$의 감소가 관찰되었다. 결론 : 인체 대장암 세포주(HT-29)에서 CDCA 합성유도체인 HS-1200을 이용한 세포 증식억제 및 세포사망 기전 연구에서, 아포토시스의 유도가 HS-1200의 세포 사망 기전에 중요한 역할을 하는 것을 확인하였다. 이러한 아포토시스의 유도에는 미토콘드리아의 역할이 중요하게 관련되는 것으로 관찰되었다. 상기 결과를 토대로 HS-1200의 항암 치료제로서의 역할에 관한 기초 자료로 서의 유용성을 제시할 수 있었다.

Role of Citrate Synthase in Acetate Utilization and Protection from Stress-Induced Apoptosis

  • Lee, Yong-Joo;Kang, Hong-Yong;Maeng, Pil Jae
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2008년도 International Meeting of the Microbiological Society of Korea
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    • pp.39-41
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    • 2008
  • The yeast Saccharomyces cerevisiae has been shown to contain three isoforms of citrate synthase (CS). The mitochondrial CS, Cit1, catalyzes the first reaction of the TCA cycle, i.e., condensation of acetyl-CoA and oxaloacetate to form citrate [1]. The peroxisomal CS, Cit2, participates in the glyoxylate cycle [2]. The third CS is a minor mitochondrial isofunctional enzyme, Cit3, and related to glycerol metabolism. However, the level of its intracellular activity is low and insufficient for metabolic needs of cells [3]. It has been reported that ${\Delta}cit1$ strain is not able to grow with acetate as a sole carbon source on either rich or minimal medium and that it shows a lag in attaining parental growth rates on nonfermentable carbon sources [2, 4, 5]. Cells of ${\Delta}cit2$, on the other hand, have similar growth phenotype as wild-type on various carbon sources. Thus, the biochemical basis of carbon metabolism in the yeast cells with deletion of CIT1 or CIT2 gene has not been clearly addressed yet. In the present study, we focused our efforts on understanding the function of Cit2 in utilizing $C_2$ carbon sources and then found that ${\Delta}cit1$ cells can grow on minimal medium containing $C_2$ carbon sources, such as acetate. We also analyzed that the characteristics of mutant strains defective in each of the genes encoding the enzymes involved in TCA and glyoxylate cycles and membrane carriers for metabolite transport. Our results suggest that citrate produced by peroxisomal CS can be utilized via glyoxylate cycle, and moreover that the glyoxylate cycle by itself functions as a fully competent metabolic pathway for acetate utilization in S. cerevisiae. We also studied the relationship between Cit1 and apoptosis in S. cerevisiae [6]. In multicellular organisms, apoptosis is a highly regulated process of cell death that allows a cell to self-degrade in order for the body to eliminate potentially threatening or undesired cells, and thus is a crucial event for common defense mechanisms and in development [7]. The process of cellular suicide is also present in unicellular organisms such as yeast Saccharomyces cerevisiae [8]. When unicellular organisms are exposed to harsh conditions, apoptosis may serve as a defense mechanism for the preservation of cell populations through the sacrifice of some members of a population to promote the survival of others [9]. Apoptosis in S. cerevisiae shows some typical features of mammalian apoptosis such as flipping of phosphatidylserine, membrane blebbing, chromatin condensation and margination, and DNA cleavage [10]. Yeast cells with ${\Delta}cit1$ deletion showed a temperature-sensitive growth phenotype, and displayed a rapid loss in viability associated with typical apoptotic hallmarks, i.e., ROS accumulation, nuclear fragmentation, DNA breakage, and phosphatidylserine translocation, when exposed to heat stress. Upon long-term cultivation, ${\Delta}cit1$ cells showed increased potentials for both aging-induced apoptosis and adaptive regrowth. Activation of the metacaspase Yca1 was detected during heat- or aging-induced apoptosis in ${\Delta}cit1$ cells, and accordingly, deletion of YCA1 suppressed the apoptotic phenotype caused by ${\Delta}cit1$ mutation. Cells with ${\Delta}cit1$ deletion showed higher tendency toward glutathione (GSH) depletion and subsequent ROS accumulation than the wild-type, which was rescued by exogenous GSH, glutamate, or glutathione disulfide (GSSG). Beside Cit1, other enzymes of TCA cycle and glutamate dehydrogenases (GDHs) were found to be involved in stress-induced apoptosis. Deletion of the genes encoding the TCA cycle enzymes and one of the three GDHs, Gdh3, caused increased sensitivity to heat stress. These results lead us to conclude that GSH deficiency in ${\Delta}cit1$ cells is caused by an insufficient supply of glutamate necessary for biosynthesis of GSH rather than the depletion of reducing power required for reduction of GSSG to GSH.

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저산소 상태에서 조골세포 고사의 신호전달 기전 (Effect of Hypoxia on the Signal Transduction of Apoptosis in Osteoblasts)

  • 박영주;오소택;강경화;김상철
    • 대한치과교정학회지
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    • 제33권6호
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    • pp.453-463
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    • 2003
  • 본 연구는 MC3T3El 조골세포가 저산소증에 반응하여 유발될 수 있는 세포 고사조절 기전을 구명하고자 함에 목적이 있다. $2\%$ 저산소증의 조건하에서 MC3T3El 조골세포는 DNA 사다리 분절 헝성을 보였으며 형광성 염료인 Hoechst 33258로 염색된 핵 구조 형태 관찰시 시간이 지남에 따라 세포고사 현상을 관찰할 수 있었다 Pancaspase 억제제인 Z-VAD-FMK나 특정한 caspase-3 억제제인 Z-DEVD-CHO로 사전 처치하였을 경우에는 저산소증에 의한 DNA 사다리 분절형성이 농축에 비례하여 억제되었다. caspase-3류의 프로테아제(DEVDase) 활성 증가가 세포고사 중에 관찰되었으나 caspase-1 (YVADase)의 활성은 없었다. 어떤 caspase가 세포고사에 관여하는지를 확인하기 위하여 anti-caspase-3 또는 anti-caspase-6의 항체를 이용한 western blotting이 시행되었다. caspase-3의 활성산물에 해당하는 17-KDa단백질과 caspase-6의 활성산물인 20-KDa 단백질이 세포용해물에서 발생되었다. 또한 시간 경과와 더불어 caspase-6의 활동의 상징인 Lamin A의 분열을 일으켰으며, 사이토크롬 C를 cytosol로 방출하였다. 이로써 저산소증에 의한 조골세포의 고사 과정에 사이토크롬 C의 방출이 포함된 caspase의 활성이 관여한다는 것을 확인할 수 있었다.

Anti-Cancer Effect of the Combination of Thiacremonone and Docetaxel by Inactivation of NF-κB in Human Cancer Cells

  • Ban, Jung-Ok;Cho, Jin-Suk;Hwang, In-Guk;Noh, Jin-Woo;Kim, Wun-Jae;Lee, Ung-Soo;Moon, Dong-Cheul;Jeong, Heon-Sang;Lee, Hee-Soon;Hwang, Bang-Yeon;Jung, Jae-Kyung;Han, Sang-Bae;Hong, Jin-Tae
    • Biomolecules & Therapeutics
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    • 제17권4호
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    • pp.403-411
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    • 2009
  • Thiacremonone, the main component isolated from heated garlic (Allium sativum L.), is interested for using as a cancer preventive or therapeutic agent since garlic has been known to be useful plant in the treatment of cancers. Nuclear factor kappaB (NF-${\kappa}B$) is constitutively activated in the prostate cancer and activation of NF-${\kappa}B$ is implicated in drug resistance in cancer cells. Docetaxel, a semisynthetic analog of paclitaxel, is an antineoplastic drug widely used for advanced various cancer. In previous studies, we found that thiacremonone inhibited activation of NF-${\kappa}B$ in cancer cells and marcrophages. In the present study, we investigated whether thiacremonone could increase susceptibility of prostate cancer cells (PC-3 and DU145) to docetaxel via inactivation of NF-${\kappa}B$. We found that the combination treatment of thiacremonone (50 ${\mu}g$/ml) with docetaxel (5 nM) was more effective in the inhibition of prostate cancer cell growth and induction of apoptosis accompanied with the significant inhibition of NF-${\kappa}B$ activity than those by the treatment of thiacremonone or docetaxel alone. It was also found that NF-${\kappa}B$ target gene expression of Bax, caspase-3 and caspase-9 was much more significantly enhanced, but the expression of Bcl-2 was also much more significantly inhibited by the combination treatment. These results indicate that thiacremonone inhibits NF-${\kappa}B$, and enhances the susceptibility of prostate cancer cells to docetaxel. Thus, thiacremonone could be useful as an adjuvant anti-cancer agent.

가자(Terminalia chebula Retz.) 추출물의 간섬유화 억제활성 (Suppressive Activity of Extract of Termialia chebula Retz. on Hepatic Fibrosis)

  • 이현순;구윤창;이광원
    • 한국식품과학회지
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    • 제41권5호
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    • pp.597-601
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    • 2009
  • 간성상세포(HSC)는 간섬유화와 간경변에 중요한 역할을 한다고 알려져 있다. 간손상에 의해 둥근 모양의 간성상세포는 활성화되어 세포외기질(ECM)을 생산하는 myofibroblast와 같은 모양으로 활성화 된다. 활성화된 간성상세포의 특징은 빠른 증식 속도와 collagen과 같은 세포외 기질의 생산이다. 활성화된 간성상 세포의 제거방법은 apoptosis를 유도하는 것이다. 가자 추출물은 정상 간세포(rat primary hepatocyte), 간세포주(HepG2) 및 활성화된 간성상세포주인 T-HSC/Cl-6에 $1,000{\mu}g/mL$의 농도까지 처리하여 세포독성을 확인하였다. 그 결과 hepatocyte나 HepG2에서는 최고 농도에서도 독성이 없었으나 T-HSC/Cl-6는 U-shape 모양으로 사멸하는 것을 확인 하였다. T-HSC/Cl-6의 사멸이 apoptosis에 의한 것인지를 Annexin-V/PI double staining을 통하여 확인한 결과 apoptosis에 의해 T-HSC/Cl-6의 사멸이 일어나는 것을 확인하였다.

Kimchi attenuates fatty streak formation in the aorta of low-density lipoprotein receptor knockout mice via inhibition of endoplasmic reticulum stress and apoptosis

  • Woo, Minji;Kim, Mijeong;Noh, Jeong Sook;Park, Chan Hum;Song, Yeong Ok
    • Nutrition Research and Practice
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    • 제11권6호
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    • pp.445-451
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    • 2017
  • BACKGROUND/OBJECTIVES: Endoplasmic reticulum (ER) stress is positively associated with atherosclerosis via elevating macrophage cell death and plaque formation, in which oxidative stress plays a pivotal role. Antioxidative, lipid-lowering, and anti-atherogenic effects of kimchi, a Korean fermented vegetable, have been established, wherein capsaicin, ascorbic acid, quercetin, 3-(4'-hydroxyl-3',5'-dimethoxyphenyl)propionic acid, and lactic acids were identified. In this study, mechanisms of action of kimchi methanol extracts (KME) on fatty streak formation via suppression of ER stress and apoptosis in aorta were examined in low-density lipoprotein receptor knockout mice. MATERIALS AND METHODS: Mice fed a high cholesterol diet with an oral administration of KME (KME group, $200 mg{\cdot}kg-bw^{-1}{\cdot}day^{-1}$) or distilled water (control group) for 8 weeks (n = 20 for group). Plasma lipid and oxidative stress levels were evaluated. Protein expression was measured by western blot assay. Fatty streak lesion size and the degree of apoptosis were examined in the aorta. RESULTS: Compared to the control group, in the KME group, plasma lipids levels were decreased and oxidative stress was alleviated (P < 0.05). Protein expression levels of nuclear factor (erythroid-derived 2)-like 2-mediated antioxidants in aorta were increased whereas those for ER stress markers, glucose regulated protein 78, phospho-protein kinase RNA-like ER kinase, phospho-eukaryotic initiation factor 2 subunit ${\alpha}$, X-box binding protein 1, and C/EBP homologous protein were decreased in the KME group (P < 0.05). Moreover, apoptosis was suppressed via downregulation of phospho-c-Jun N-terminal kinase, bcl-2-associated X protein, caspases-9, and -3 with a concomitant upregulation of anti-apoptotic protein, B-cell lymphoma 2 (P < 0.05). Fatty streak lesion size was reduced and the degree of apoptosis was less severe in the KME group (P < 0.05). CONCLUSIONS: In conclusion, antioxidant activity of KME might prevent fatty streak formation through, in part, inhibition of ER stress and apoptosis in aortic sinus where macrophages are harbored.

T-Type Calcium Channels Are Required to Maintain Viability of Neural Progenitor Cells

  • Kim, Ji-Woon;Oh, Hyun Ah;Lee, Sung Hoon;Kim, Ki Chan;Eun, Pyung Hwa;Ko, Mee Jung;Gonzales, Edson Luck T.;Seung, Hana;Kim, Seonmin;Bahn, Geon Ho;Shin, Chan Young
    • Biomolecules & Therapeutics
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    • 제26권5호
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    • pp.439-445
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    • 2018
  • T-type calcium channels are low voltage-activated calcium channels that evoke small and transient calcium currents. Recently, T-type calcium channels have been implicated in neurodevelopmental disorders such as autism spectrum disorder and neural tube defects. However, their function during embryonic development is largely unknown. Here, we investigated the function and expression of T-type calcium channels in embryonic neural progenitor cells (NPCs). First, we compared the expression of T-type calcium channel subtypes (CaV3.1, 3.2, and 3.3) in NPCs and differentiated neural cells (neurons and astrocytes). We detected all subtypes in neurons but not in astrocytes. In NPCs, CaV3.1 was the dominant subtype, whereas CaV3.2 was weakly expressed, and CaV3.3 was not detected. Next, we determined CaV3.1 expression levels in the cortex during early brain development. Expression levels of CaV3.1 in the embryonic period were transiently decreased during the perinatal period and increased at postnatal day 11. We then pharmacologically blocked T-type calcium channels to determine the effects in neuronal cells. The blockade of T-type calcium channels reduced cell viability, and induced apoptotic cell death in NPCs but not in differentiated astrocytes. Furthermore, blocking T-type calcium channels rapidly reduced AKT-phosphorylation (Ser473) and $GSK3{\beta}$-phosphorylation (Ser9). Our results suggest that T-type calcium channels play essential roles in maintaining NPC viability, and T-type calcium channel blockers are toxic to embryonic neural cells, and may potentially be responsible for neurodevelopmental disorders.

Heme Oxygenase-1 Determines the Differential Response of Breast Cancer and Normal Cells to Piperlongumine

  • Lee, Ha-Na;Jin, Hyeon-Ok;Park, Jin-Ah;Kim, Jin-Hee;Kim, Ji-Young;Kim, BoRa;Kim, Wonki;Hong, Sung-Eun;Lee, Yun-Han;Chang, Yoon Hwan;Hong, Seok-Il;Hong, Young Jun;Park, In-Chul;Surh, Young-Joon;Lee, Jin Kyung
    • Molecules and Cells
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    • 제38권4호
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    • pp.327-335
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    • 2015
  • Piperlongumine, a natural alkaloid isolated from the long pepper, selectively increases reactive oxygen species production and apoptotic cell death in cancer cells but not in normal cells. However, the molecular mechanism underlying piperlongumine-induced selective killing of cancer cells remains unclear. In the present study, we observed that human breast cancer MCF-7 cells are sensitive to piperlongumine-induced apoptosis relative to human MCF-10A breast epithelial cells. Interestingly, this opposing effect of piperlongumine appears to be mediated by heme oxygenase-1 (HO-1). Piperlongumine upregulated HO-1 expression through the activation of nuclear factor-erythroid-2-related factor-2 (Nrf2) signaling in both MCF-7 and MCF-10A cells. However, knockdown of HO-1 expression and pharmacological inhibition of its activity abolished the ability of piperlongumine to induce apoptosis in MCF-7 cells, whereas those promoted apoptosis in MCF-10A cells, indicating that HO-1 has anti-tumor functions in cancer cells but cytoprotective functions in normal cells. Moreover, it was found that piperlongumine-induced Nrf2 activation, HO-1 expression and cancer cell apoptosis are not dependent on the generation of reactive oxygen species. Instead, piperlongumine, which bears electrophilic ${\alpha},{\beta}$-unsaturated carbonyl groups, appears to inactivate Kelch-like ECH-associated protein-1 (Keap1) through thiol modification, thereby activating the Nrf2/HO-1 pathway and subsequently upregulating HO-1 expression, which accounts for piperlongumine-induced apoptosis in cancer cells. Taken together, these findings suggest that direct interaction of piperlongumine with Keap1 leads to the upregulation of Nrf2-mediated HO-1 expression, and HO-1 determines the differential response of breast normal cells and cancer cells to piperlongumine.

Silibnin의 지방세포분화 억제 및 세포사멸 유도 효과 (Silibinin Inhibits Adipogenesis and Induces Apoptosis in 3T3-L1 Adipocytes)

  • 이슬기;권택규;남주옥
    • 한국미생물·생명공학회지
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    • 제45권1호
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    • pp.27-34
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    • 2017
  • CCAAT/enhancer-binding protein beta, delta ($C/EBP{\beta}$, ${\delta}$)는 지방세포분화 과정의 초기에 필수적으로 요구되며 지방생성 주요 조절인자인 proliferator-activated receptor gamma ($PPAR{\gamma}$) and CCAAT/enhancer-binding protein-alpha ($C/EBP{\alpha}$)의 발현을 유도한다. 본 연구에서는 silibinin의 지방세포 분화 억제 효과 및 이러한 효과가 지방세포 분화초기에 $C/EBP{\beta}$$C/EBP{\delta}$의 발현 조절을 통해 일어난 다는 것을 확인하였다. Silibinin은 지방세포 내 지질축적을 억제하고 세포분화 과정 동안 관여하는 다양한 유전자의 mRNA 발현을 억제하였다. 또한 lipoprotein lipase (LPL), fatty acid binding protein 4 (AP2) 및 adiponectin과 같은 지방세포 분화 관련 유전자의 발현을 억제시켰다. 따라서, Silibinin의 지방세포 분화 억제효과는 $C/EBP{\beta}$$C/EBP{\delta}$의 발현억제에 의한 것으로 보인다. 더불어, Silibinin은 capspase-3 활성을 통해 분화하는 세포에 특이적으로 세포사멸을 유도하는 것을 확인하였다.

Auranofin Enhances Sulforaphane-Mediated Apoptosis in Hepatocellular Carcinoma Hep3B Cells through Inactivation of the PI3K/Akt Signaling Pathway

  • Hwangbo, Hyun;Kim, So Young;Lee, Hyesook;Park, Shin-Hyung;Hong, Su Hyun;Park, Cheol;Kim, Gi-Young;Leem, Sun-Hee;Hyun, Jin Won;Cheong, Jaehun;Choi, Yung Hyun
    • Biomolecules & Therapeutics
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    • 제28권5호
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    • pp.443-455
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    • 2020
  • The thioredoxin (Trx) system plays critical roles in regulating intracellular redox levels and defending organisms against oxidative stress. Recent studies indicated that Trx reductase (TrxR) was overexpressed in various types of human cancer cells indicating that the Trx-TrxR system may be a potential target for anti-cancer drug development. This study investigated the synergistic effect of auranofin, a TrxR-specific inhibitor, on sulforaphane-mediated apoptotic cell death using Hep3B cells. The results showed that sulforaphane significantly enhanced auranofin-induced apoptosis by inhibiting TrxR activity and cell proliferation compared to either single treatment. The synergistic effect of sulforaphane and auranofin on apoptosis was evidenced by an increased annexin-V-positive cells and Sub-G1 cells. The induction of apoptosis by the combined treatment caused the loss of mitochondrial membrane potential (ΔΨm) and upregulation of Bax. In addition, the proteolytic activities of caspases (-3, -8, and -9) and the degradation of poly (ADP-ribose) polymerase, a substrate protein of activated caspase-3, were also higher in the combined treatment. Moreover, combined treatment induced excessive generation of reactive oxygen species (ROS). However, treatment with N-acetyl-L-cysteine, a ROS scavenger, reduced combined treatment-induced ROS production and apoptosis. Thereby, these results deduce that ROS played a pivotal role in apoptosis induced by auranofin and sulforaphane. Furthermore, apoptosis induced by auranofin and sulforaphane was significantly increased through inhibition of the phosphoinositide 3-kinase (PI3K)/Akt pathway. Taken together, the present study demonstrated that down-regulation of TrxR activity contributed to the synergistic effect of auranofin and sulforaphane on apoptosis through ROS production and inhibition of PI3K/Akt signaling pathway.