• Title/Summary/Keyword: Viability Mechanism

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Protective Effect of Cordyceps sinensis Extract on Cytokine-induced Cytotoxicity of Pancreatic ${\beta}-cells$ (싸이토카인에 의한 췌장 ${\beta}$세포 독성에 대한 동충하초(冬蟲夏草) 추출물의 보호 효과)

  • Song, Je-Ho;Park, Byung-Hyun;Ryu, Do-Gon;Kwon, Kang-Beom
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.4
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    • pp.791-795
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    • 2008
  • In the present study, Cordyceps sinensis extract (CSE) was evaluated to determine if it could protect pancreatic ${\beta}$ cells against cytokine-induced cytotoxicity of RINm5F cells. Treatment of cells with cytokines resulted in a decrease of viability, which was caused by increase of nitric oxide (NO) production. CSE protected cytokine-mediated viability reduction in a concentration-dependent manner. Incubation with CSE also induced a significant suppression of cytokine-induced inducible nitric oxide synthase (iNOS) protein and NO production. The molecular mechanism by which CSE inhibited iNOS protein expression appeared to involve the inhibition of $NF-{\kappa}B$ activation. The cytokine-stimulated RIN cells showed increases in $NF-{\kappa}B$ binding activity compared to unstimulated cells. However, pretreatment with CSE inhibited cytokines-induced $NF-{\kappa}B$ activation in RINm5F cells.

Induction of Apoptosis by Bile Acids in HepG2 Human Hepatocellular Carcinoma Cells

  • Baek, Jin-Hyen;Kim, Jung-Ae;Kang, Chang-Mo;Lee, Yong-Soo;Kim, Kyu-Won
    • The Korean Journal of Physiology and Pharmacology
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    • v.1 no.1
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    • pp.107-115
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    • 1997
  • We studied the effects of bile acids on the induction ofapoptosis in HepG2 human hepatocellular carcinoma cells. Treatment with either ursodeoxycholic acid (UDCA) or lithocholic acid (LCA) resulted in a dose- and time-dependent decrease in cell viability assessed by MTT assay. Both UDCA and LCA also induced genomic DNA fragmentation, a hallmark of apoptosis, indicating that the mechanism by which these bile acids induce cell death was through apoptosis. Cycloheximide, a protein synthesis inhibitor, blocked the apoptosis induced by these bile acids, implying that new protein synthesis may be required for the apoptosis. Intracellular $Ca^{2+}$ release blockers (dantrolene and 3,4,5-trimethoxybenzoic acid-8-(diethylamino)octyl ester) inhibited decreased cell viability and DNA fragmentation induced by these bile acids. Treatment of HepG2 cells with calcium ionophore A23l87 induced DNA fragmentation. These results suggest that UDCA and LCA induce apoptosis in the HepG2 cells and that the activation of intracellular $Ca^{2+}$ signals may play an important role in the apoptosis induced by these bile acids.

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Effects of Baicalin on the Proliferation and Activity of Osteoblastic Cells (Baicalin이 조골세포의 생성 및 활성에 미치는 영향)

  • Ko, Seon-Yle
    • Journal of Oral Medicine and Pain
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    • v.33 no.2
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    • pp.105-110
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    • 2008
  • Baicalin is a flavonoid compound isolated from the medicinal plant Scutellaria baicalensis. It is known to affect multiple biological functions, including of antibacterial, anti-viral, anti-inflammatory and analgesic effects. Baicalin can inhibit nuclear factor-kappaB activation. It has been reported that some flavonoids possess the effects of bone metabolism. The present study was undertaken to determine the possible cellular mechanism of action of baicalin in osteoblasts. The effects on the osteoblast were determined by measuring cell proliferation, cell viability, alkaline phosphatase activity, and osteoprotegerin secretion. Baicalin has no effect on the osteoblastic cell proliferation and cell viability. Baicalin treatment showed increase in alkaline phosphatase activity and osteoprotegerin secretion of osteoblasts. Thus, baicalin may be a regulatory protein within the bone.

Activation of pannexin-1 mediates triglyceride-induced macrophage cell death

  • Jung, Byung Chul;Kim, Sung Hoon;Lim, Jaewon;Kim, Yoon Suk
    • BMB Reports
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    • v.53 no.11
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    • pp.588-593
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    • 2020
  • The accumulation of triglycerides (TGs) in macrophages induces cell death, a risk factor in the pathogenesis of atherosclerosis. We had previously reported that TG-induced macrophage death is triggered by caspase-1 and -2, therefore we investigated the mechanism underlying this phenomenon. We found that potassium efflux is increased in TG-treated THP-1 macrophages and that the inhibition of potassium efflux blocks TG-induced cell death as well as caspase-1 and -2 activation. Furthermore, reducing ATP concentration (known to induce potassium efflux), restored cell viability and caspase-1 and -2 activity. The activation of pannexin-1 (a channel that releases ATP), was increased after TG treatment in THP-1 macrophages. Inhibition of pannexin-1 activity using its inhibitor, probenecid, recovered cell viability and blocked the activation of caspase-1 and -2 in TG-treated macrophages. These results suggest that TG-induced THP-1 macrophage cell death is induced via pannexin-1 activation, which increases extracellular ATP, leading to an increase in potassium efflux.

Effects of substance P on mineralization markers and heme oxygenase-1 Expression in human immortalized periodontal ligament cells

  • Cho, You-Min;Suh, Chung-Hwan;Chun, Sang-Woo;Kim, Eun-Cheol;Kang, Kyung-Hwa
    • International Journal of Oral Biology
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    • v.33 no.4
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    • pp.131-135
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    • 2008
  • Substance P (SP) is known to be expressed in the nerve fibers of dental pulp and periodontal tissues. It was recently reported that SP expression increased in response to orthodontic force. In the present study, we investigated the effect of SP on expression of mineralization markers and heme oxygenase-1 (HO-1) in human immortalized periodontal ligament (IPDL) cells. Cell viability was measured using a 3,4,5-dimethylthiazol-2-yl-2,5-diphenyl tetrazolium bromide (MTT) assay. The expression of mineralization markers, including alkaline phosphatase (ALP), osteonectin (ON) and bone sialoprotein (BSP), and heme oxygenase-1 (HO-1) was assessed by reverse transcription-polymerase chain reaction (RT-PCR) and Western blot analysis. SP did not significantly change human IPDL cell viability, with the exception of the 24 hour treatment group. Treatment of human IPDL cells with $10^{-10}$ to $10^{-4}M$ SP upregulated mineralization marker and HO-1 expression in a time- and concentration-dependent manner. Our results suggest that SP may modulate osteoblastic cell differentiation of human IPDL cells through a mechanism involving HO-1 expression.

Molecular Biological Study of Anti-cancer Effects of Bee Venom Aqua-acupuncture (봉독약침(蜂毒藥鍼)의 항암효과(抗癌效果)에 대한 분자생물학적(分子生物學的) 연구(硏究))

  • Park, Chan-Yol;Seo, Jung-Chul;Choi, Do-Young;Ahn, Byoung-Choul
    • Journal of Pharmacopuncture
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    • v.3 no.1
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    • pp.1-19
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    • 2000
  • To study anti-cancer effect and molecular biological mechanism of bee venom for aqua-acupuncture, the effects of bee venom on cell viability and apoptosis were analyzed using MTT assay, tryphan blue assay, $[^3H]$thymidine release assay, flow cytometric analysis, and activity of caspase-3 protease activity assay. To explore whether anti-cancer effects of bee venom are associated with the transcriptional control of gene expression, quantitative RT-PCR analysis of apoptosis-related genes was performed. The obtained results are summarized as follows: 1. The MTT assay demonstrated that cell viability was decreased by bee venom in a dose-dependant manner. 2. Significant induction of apoptosis was identified using tryphan blue assay, $[^3H]$thymidine release assay, and flow cytomet1 ric analysis of sub $G_1$ fraction. 3. In analysis of caspase-3 protease activity, the activity had increased significantly, in a dose-dependant manner. 4. Quantitative RT-PCR analysis of the apoptosis-related genes showed that Bcl-2 and Bcl-$X_L$ were down-regulated whereas Bax was up-regulated by bee venom treatment.

Effects of Chenopodium album Linne on Gastritis and Gastric Cancer Cell Growth

  • Kim, Pitna;Jeong, Choon-Sik
    • Biomolecules & Therapeutics
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    • v.19 no.4
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    • pp.487-492
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    • 2011
  • In our previous study, we investigated Chenopodium album Linne (CAL) ethanol extract and its fractions on anti-gastritic actions using the HCl/ethanol and indomethacin induced gastric lesion model and Helicobacter pylori (H. pylori). Based on the results, butanol fraction was most effective among fractions obtained from CAL. This study aims to elucidate the mechanisms of butanol fraction, and betaine as a constituent of the butanol fraction, on gastritis and anti-gastric cancer cell growth. First, we examined antioxidant properties using hydrogen peroxide and superoxide radical, and we found that butanol fraction and betaine may be good antioxidants. Second, cytotoxicity was assessed by measuring cell viability and 4,6-diamidino-2-phenylinodole dihydrochloride (DAPI) staining of human gastric cancer cells (AGS cells). We also examined the relationship between the cytotoxicity and intracellular $Ca^{2+}$ signaling mechanism. The butanol fraction demonstrated cell viability 71.49% at the concentration of 100 ${\mu}g/ml$ and increased intracellular $Ca^{2+}$ concentration in a dose dependent manner. Finally, we observed the mucus content as a defensive factor and gastric secretion as an aggressive factor, and found that the mucus content noticeably increased when treated with butanol fraction and betaine and gastric secretion decreased when treated with betaine in vivo study. From these results, we suggest that CAL butanol fraction and betaine may have protective effects on gastritis.

Domperidone, a Dopamine Receptor D2 Antagonist, Induces Apoptosis by Inhibiting the ERK/STAT3-Mediated Pathway in Human Colon Cancer HCT116 Cells

  • So Jin Sim;Jeong-Hoon Jang;Joon-Seok Choi;Kyung-Soo Chun
    • Biomolecules & Therapeutics
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    • v.32 no.5
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    • pp.568-576
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    • 2024
  • Colorectal cancer (CRC) continues to demonstrate high incidence and mortality rates, emphasizing that implementing strategic measures for prevention and treatment is crucial. Recently, the dopamine receptor D2 (DRD2), a G protein-coupled receptor, has been reported to play multiple roles in growth of tumor cells. This study investigated the anticancer potential of domperidone, a dopamine receptor D2 antagonist, in HCT116 human CRC cells. Domperidone demonstrated concentration- and time-dependent reductions in cell viability, thereby inducing apoptosis. The molecular mechanism revealed that domperidone modulated the mitochondrial pathway, decreasing mitochondrial Bcl-2 levels, elevating cytosolic cytochrome C expression, and triggering caspase-3, -7, and -9 cleavage. Domperidone decreased in formation of β-arrestin2/MEK complex, which contributing to inhibition of ERK activation. Additionally, treatment with domperidone diminished JAK2 and STAT3 activation. Treatment of U0126, the MEK inhibitor, resulted in reduced phosphorylation of MEK, ERK, and STAT3 without alteration of JAK2 activation, indicating that domperidone targeted both MEK-ERK-STAT3 and JAK2-STAT3 signaling pathways. Immunoblot analysis revealed that domperidone also downregulated DRD2 expression. Domperidone-induced reactive oxygen species (ROS) generation and N-acetylcysteine treatment mitigated ROS levels and restored cell viability. An in vivo xenograft study verified the significant antitumor effects of domperidone. These results emphasize the multifaceted anticancer effects of domperidone, highlighting its potential as a promising therapeutic agent for human CRC.

Magnolol Attenuates Neuronal Cell Death Induced by Kynurenine Metabolite (키누레닌 대사산물에 의한 신경세포 손상에 대한 Magnolol의 보호효과에 대한 연구)

  • Lee, Chang-Uk;Lee, Hyun-Jung;Kim, Do-Hee;Jang, Yeong-Mi;Lee, Sang-Hyung;Jeong, Yoonh-Wa;Kim, Dae-Jin;Chung, Yoon-Hee;Kim, Kyung-Yong;Kim, Sung-Su;Lee, Won-Bok
    • Korean Journal of Medicinal Crop Science
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    • v.17 no.2
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    • pp.145-150
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    • 2009
  • This study investigated the protective roles and mechanism of magnolol, from the stem bark of Magnolia officinalis against potential neurotoxin 3-hydroxykynurenine (3-HK)-induced neuronal cell death. For the evaluation of protective role of magnolol, we examined cell viability, apoptotic nuclei, change of mitochondrial membrane potential and caspase activity in human neuroblastoma SH-SY5Y cells. It was found that 3-HK induces neuronal cell death in the human neuroblastoma SH-SY5Y cell line. The reduced cell viability produced characteristic features such as cell shrinkages, plasma membrane blebbing, chromatin condensation, and nuclear fragmentation. The cells treated with 3-HK showed an increase in the concentration of reactive oxygen species (ROS) as well as in caspase activity. In addition, both are involved in the 3-HK-induced apoptosis. Magnolol attenuated the cell viability reduction by 3-HK in both a dose- and time-dependent manner. Optical microscopy showed that magnolol inhibited the cell morphological features in the 3-HK-treated cells. Furthermore, the increase in the ROS concentration and the caspase activities by 3-HK were also attenuated by magnolol. These results showed that magnolol has a protective effect on the 3-HK induced cell death by inhibiting ROS production and caspase activity.

Convergence Study of Cell Viability and Vascular Relaxtion of Hanbang-tea Prescrpition (한방차 조성물의 세포활성과 혈관이완 효과에 대한 융합적 연구)

  • Park, Sung-Hye;Min, Je-Ho
    • Journal of the Korea Convergence Society
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    • v.8 no.2
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    • pp.291-297
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    • 2017
  • This study was aimed to secure the basis for developing the hangbang-tea may help promote healthy blood vessels by natural herbal ingredients formulated in accordance with the basic principles of oriental medicinal theory. We investigated the vessels contracted by concentrations and safety assessment carried out by the cell viability of Taraxaci Herba, Gardeniae Fructus, Chrysanthemum indicum and Lonicerae Flos composition and concentration. We found cell survival were higher than the control group show a beneficial trend in the growth of normal liver and kidney cells. As a results of this study will be the basis to develop the hangbang-tea differentiated in the future oriental medicine resources. Medicinal resources will be hangbang-tea based on clinical trials utilizing herbal western and oriental medicine convergence principle and vascular relaxation mechanism.