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1.
J Cancer ; 15(15): 4939-4954, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-39132166

RESUMEN

Circular RNAs (circRNAs) are involved in the pathogenesis of esophageal squamous cell carcinoma (ESCC). This study aimed to explore the mechanisms of aberrant expression and functions of circ_0006168 in ESCC. In this study, real-time qPCR and fluorescence in situ hybridization (FISH) are adopted to estimate the expression and localization of circ_0006168 in cancer tissues and cells. Methylated RNA immunoprecipitation (MeRIP) was performed to detect the N6-methyladenosine (m6A) modification of circ_0006168. Gain- and loss-of-functions of circ_0006168 were performed to identify its role in ESCC progression. RNA-binding protein immunoprecipitation (RIP) was used to detect the interaction of circ_0006168 with IGF2BP2. Luciferase reporter assay and RIP are used to confirm the circ_0006168/miR-384/STAT3 ceRNA network. Our results showed that the expression of circ_0006168 was upregulated in ESCC tissues and cells. METTL3-mediated m6A modification increased the expression of circ_0006168 via IGF2BP2-dependent way in TE-1 cells. Circ_0006168 promoted cell proliferation, migration, invasion, cell cycle progression and inhibited cell apoptosis, while knockdown of circ_0006168 had the reverse effects. Mechanistically, circ_0006168 acted its functions via miR-384/STAT3/Snail axis in TE-1 cells. In conclusion, circ_0006168 is upregulated in ESCC and m6A methylation increased its expression via IGF2BP2. CircRNA_0006168 promotes cell migration, invasion by regulating EMT via miR-384/STAT3/Snail axis in ESCC.

2.
J Cell Biochem ; 120(10): 18172-18185, 2019 10.
Artículo en Inglés | MEDLINE | ID: mdl-31144362

RESUMEN

Adenosine is a promising cytotoxic reagent for tumors, long noncoding RNA (lncRNA) maternally expressed gene 3 (MEG3) has been indicated to play critical roles in tumorigenesis, ILF3 has been recognized as a MEG3-binding protein, however, the roles of adenosine and MEG3 on hepatoma are still ambiguous. To clarify the effects of MEG3 on the adenosine-induced cytotoxicity in hepatoma, MEG3 and ILF3 lentivirus were transduced into human hepatoma HepG2 cells to stimulate overexpression of MEG3 (OE MEG3) and overexpression of ILF3 (OE ILF3), furthermore, ILF3 small interfering RNA (siRNA) was also applied to downregulate the expression of ILF3. In this study, autophagy was markedly inhibited by low concentration of adenosine, which present by not only inhibited transformation from LC3-I to LC3-II and autophagosomes formation, but also the elevation of mTOR and reduction of beclin-1 proteins. Furthermore, low concentration of adenosine also exerted marked cytotoxicity representing induced cell apoptosis together with reductions of cell viability and migration, which were also markedly enhanced by OE MEG3. Novelly and excitingly, adenosine markedly stimulated MEG3 expression, OE MEG3 markedly decreased the ILF3 expression in HepG2 cells, and the adenosine-induced autophagy inhibition, together with the ratio of p-PI3K/PI3K, p-AKT/AKT, and p-mTOR/mTOR were also boosted by OE MEG3. More interestingly, OE ILF3 increased autophagy, whereas downregulated ILF3, especially in the case of adenosine, led to marked autophagy inhibition by decreasing beclin-1. The present study demonstrates autophagy inhibition is involved in the adenosine-induced cytotoxicity in HepG2 cells, the cytotoxicity can be synergized by OE MEG3 via downregulated ILF3 to activate PI3K/Akt/mTOR and inactivate the beclin-1 signaling pathway. In conclusion, MEG3 and inhibition of autophagy might be potential targets for augmenting adenosine-induced cytotoxicity in hepatoma.


Asunto(s)
Adenosina/farmacología , Autofagia/efectos de los fármacos , Beclina-1/metabolismo , Proteínas del Factor Nuclear 90/genética , Fosfotransferasas/metabolismo , ARN Largo no Codificante/genética , Transducción de Señal/efectos de los fármacos , Apoptosis/efectos de los fármacos , Apoptosis/genética , Autofagia/genética , Carcinoma Hepatocelular/genética , Carcinoma Hepatocelular/metabolismo , Carcinoma Hepatocelular/patología , Supervivencia Celular/efectos de los fármacos , Supervivencia Celular/genética , Regulación hacia Abajo/efectos de los fármacos , Regulación Neoplásica de la Expresión Génica/efectos de los fármacos , Regulación Neoplásica de la Expresión Génica/genética , Células Hep G2 , Humanos , Neoplasias Hepáticas/genética , Neoplasias Hepáticas/metabolismo , Neoplasias Hepáticas/patología , Proteínas del Factor Nuclear 90/metabolismo , Fosfatidilinositol 3-Quinasas/metabolismo , Proteínas Proto-Oncogénicas c-akt/metabolismo , Transducción de Señal/genética , Serina-Treonina Quinasas TOR/metabolismo
3.
Oncol Rep ; 41(2): 829-838, 2019 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-30535464

RESUMEN

In cancer research, autophagy acts as a double­edged sword: it increases cell viability or induces cell apoptosis depending upon the cell context and functional status. Recent studies have shown that adenosine (Ado) has cytotoxic effects in many tumors. However, the role of autophagy in Ado­induced apoptosis is still poorly understood. In the present study, Ado­induced apoptotic death and autophagy in hepatoblastoma HepG2 cells was investigated and the relationship between autophagy and apoptosis was identified. In the present study, it was demonstrated that Ado inhibited HepG2 cell growth in a time­ and concentration­dependent manner and activated endoplasmic reticulum (ER) stress, as indicated by G0/G1 cell cycle arrest, the increased mRNA and protein levels of GRP78/BiP, PERK, ATF4, CHOP, cleaved caspase­3, cytochrome c and the loss of mitochon-drial membrane potential (ΔΨm). Ado also induced autophagic flux, revealed by the increased expression of the autophagy marker microtubule­associated protein 1 light chain 3­II (LC3­II), Beclin­1, autophagosomes, and the degradation of p62, as revealed by western blot analysis and macrophage­derived chemokine (MDC) staining. Blocking autophagy using LY294002 notably entrenched Ado­induced growth inhibition and cell apoptosis, as demonstrated with the increased expression of cytochrome c and p62, and the decreased expression of LC3­II. Conversely, the autophagy inducer rapamycin alleviated Ado­induced apoptosis and markedly increased the ΔΨm. Moreover, knockdown of AMPK with si­AMPK partially abolished Ado­induced ULK1 activation and mTOR inhibition, and thus reinforced CHOP expression and Ado­induced apoptosis. These results indicated that Ado­induced ER stress resulted in apoptosis and autophagy concurrently. The AMPK/mTOR/ULK1 signaling pathway played a protective role in the apoptotic procession. Inhibition of autophagy may effectively enhance the anticancer effect of Ado in human hepatoblastoma HepG2 cells.


Asunto(s)
Adenosina/farmacología , Apoptosis/efectos de los fármacos , Autofagia/efectos de los fármacos , Hepatoblastoma/tratamiento farmacológico , Neoplasias Hepáticas/tratamiento farmacológico , Proteínas Quinasas Activadas por AMP/genética , Proteínas Quinasas Activadas por AMP/metabolismo , Adenosina/uso terapéutico , Homólogo de la Proteína 1 Relacionada con la Autofagia/metabolismo , Supervivencia Celular/efectos de los fármacos , Cromonas/farmacología , Relación Dosis-Respuesta a Droga , Chaperón BiP del Retículo Endoplásmico , Estrés del Retículo Endoplásmico/efectos de los fármacos , Puntos de Control de la Fase G1 del Ciclo Celular/efectos de los fármacos , Técnicas de Silenciamiento del Gen , Células Hep G2 , Hepatoblastoma/patología , Humanos , Péptidos y Proteínas de Señalización Intracelular/metabolismo , Neoplasias Hepáticas/patología , Morfolinas/farmacología , ARN Interferente Pequeño/metabolismo , Transducción de Señal/efectos de los fármacos , Transducción de Señal/genética , Sirolimus/farmacología , Serina-Treonina Quinasas TOR/metabolismo
4.
Int J Oncol ; 48(1): 421-9, 2016 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-26647875

RESUMEN

Long non-coding RNA MEG3 is suggested to function as a tumor suppressor. However, the activation mechanism of MEG3 is still not well understood and data are not available on its role under adenosine-induced apoptosis. In this study, HepG2 cells were treated with adenosine or 5-Aza­cdR. Methylation status of MEG3 promoter was detected by methylation specific PCR (MSP) and MEG3 expression was determined by qRT-PCR. PcDNA3.1-MEG3 recombinant plasmid was constructed and transfected to hepatoma HepG2 and Huh7 cells. Cell growth, morphological changes, cell-cycle distribution and apoptosis were analyzed by MTT assay, fluorescence microscopy and flow cytometry. The mRNA and protein expression levels were detected by qRT-PCR and western blot analysis. MEG3 binding proteins were screened by the improved MS2 biotin tagged RNA affinity purification method. The co-expression network of MEG3 was generated by GO analysis and ILF3 was identified as MEG3 binding protein by RNA pulldown and western blot analysis. Both adenosine and 5-Aza-CdR increased MEG3 mRNA expression and the CpG island of MEG3 gene in HepG2 cells was typical hypermethylation. Ectopic expression of MEG3 inhibited hepatoma cell growth in a time-dependent manner, resulted in cell cycle arrest and induced apoptosis. Ectopic expression of MEG3 increased p53, caspase-3 mRNA and protein levels, decreased MDM2 and cyclin D1 mRNA and protein levels, as well as ILF3 protein expression in HepG2 cells. These findings are the first to identify that adenosine increases MEG3 expression by inhibition of DNA methylation and its antitumor effects is involved in MEG3 activation. ILF3 may participate in the anticancer regulation of MEG3 by interacting with MEG3.


Asunto(s)
Apoptosis/efectos de los fármacos , Carcinoma Hepatocelular/genética , Neoplasias Hepáticas/genética , ARN Largo no Codificante/biosíntesis , Adenosina/administración & dosificación , Azacitidina/administración & dosificación , Carcinoma Hepatocelular/tratamiento farmacológico , Carcinoma Hepatocelular/patología , Proliferación Celular/efectos de los fármacos , Islas de CpG/genética , Regulación Neoplásica de la Expresión Génica/efectos de los fármacos , Células Hep G2 , Humanos , Neoplasias Hepáticas/tratamiento farmacológico , Neoplasias Hepáticas/patología , Proteínas de Neoplasias/biosíntesis , Regiones Promotoras Genéticas , ARN Largo no Codificante/genética
5.
Int J Mol Sci ; 15(1): 525-44, 2014 Jan 03.
Artículo en Inglés | MEDLINE | ID: mdl-24394318

RESUMEN

Our previous studies show that adenosine-induced apoptosis is involved in endoplasmic reticulum stress in HepG2 cells. In this study, we have investigated whether knockdown of GRP78 by short hairpin RNA (shRNA) increases the cytotoxic effects of adenosine in HepG2 cells. The adenovirus vector-delivered shRNA targeting GRP78 (Ad-shGRP78) was constructed and transfected into HepG2 cells. RT-PCR assay was used to determine RNA interference efficiency. Effects of knockdown of GRP78 on adenosine-induced cell viabilities, cell-cycle distribution and apoptosis, as well as relative protein expressions were determined by flow cytometry and/or Western blot analysis. The intracellular Ca2+ concentration was detected by laser scanning confocal microscope. Mitochondrial membrane potential (ΔΨm) was measured by a fluorospectrophotometer. The results revealed that GRP78 mRNA was significantly downregulated by Ad-shGRP78 transfection. Knockdown of GRP78 enhanced HepG2 cell sensitivity to adenosine by modulating G0/G1 arrest and stimulating Bax, Bak, m-calpain, caspase-4 and CHOP protein levels. Knockdown of GRP78 worsened cytosolic Ca2+ overload and ΔΨm loss. Knockdown of caspase-4 by shRNA decreased caspase-3 mRNA expression and cell apoptosis. These findings indicate that GRP 78 plays a protective role in ER stress-induced apoptosis and show that the combination of chemotherapy drug and RNA interference adenoviruses provides a new treatment strategy against malignant tumors.


Asunto(s)
Adenosina/toxicidad , Antineoplásicos/farmacología , Apoptosis/efectos de los fármacos , Proteínas de Choque Térmico/metabolismo , ARN Interferente Pequeño/metabolismo , Adenoviridae/genética , Antineoplásicos/metabolismo , Proteínas Reguladoras de la Apoptosis/metabolismo , Carcinoma Hepatocelular/metabolismo , Carcinoma Hepatocelular/patología , Caspasas Iniciadoras/metabolismo , Regulación hacia Abajo/efectos de los fármacos , Chaperón BiP del Retículo Endoplásmico , Puntos de Control de la Fase G1 del Ciclo Celular/efectos de los fármacos , Vectores Genéticos/metabolismo , Proteínas de Choque Térmico/antagonistas & inhibidores , Proteínas de Choque Térmico/genética , Células Hep G2 , Humanos , Neoplasias Hepáticas/metabolismo , Neoplasias Hepáticas/patología , Potencial de la Membrana Mitocondrial/efectos de los fármacos , Interferencia de ARN , ARN Mensajero/metabolismo , Transducción de Señal/efectos de los fármacos , Factor de Transcripción CHOP/metabolismo
6.
Int J Mol Med ; 30(4): 797-804, 2012 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-22859272

RESUMEN

Apoptosis plays a critical role in the development and homeostasis of multicellular organisms, and endoplasmic reticulum stress (ERS) is one of the intrinsic apoptosis pathways. Previous studies have shown that adenosine induces apoptosis in several cancer cell lines. However, the molecular mechanism remains poorly understood. In this study, we explored whether adenosine triggers apoptosis of EC109 esophageal carcinoma (EC) cells by ERS. The MTT assay was used to determine cell proliferation; cell cycle detection (FCM) and terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) assay were performed to determine cell apoptosis. The subcellular distribution and expression of the ERS-related proteins GRP78, cleaved caspase-3, cleaved caspase-4, CHOP and NF-κB p65 were detected by western blot techniques. NF-κB activation was measured by electrophoretic mobility shift assay (EMSA). The MTT assay demonstrated that adenosine inhibited EC109 cell proliferation in a dose- and time-dependent manner. FCM and TUNEL assay verified that adenosine caused an apoptotic peak in cell cycle arrest and a higher percentage of apoptotic cells. Western blot analysis confirmed that the expression of GRP78, cleaved caspase-4, CHOP, NF-κB p65 and cleaved caspase-3 were upregulated in a dose-dependent manner after adenosine treatment. EMSA revealed that adenosine activated NF-κB p65. This is the first demonstration that adenosine inhibits cell proliferation, increases GRP78 and NF-κB p65 expression and induces apoptosis by CHOP and caspase-4 pathways. The ERS pathway is involved in adenosine-induced apoptosis in EC109 cells.


Asunto(s)
Adenosina/metabolismo , Apoptosis , Estrés del Retículo Endoplásmico , Neoplasias Esofágicas/metabolismo , Caspasa 3/metabolismo , Caspasas Iniciadoras/metabolismo , Línea Celular Tumoral , Proliferación Celular , Chaperón BiP del Retículo Endoplásmico , Proteínas de Choque Térmico/metabolismo , Humanos , FN-kappa B/metabolismo , Factor de Transcripción CHOP/metabolismo
7.
Oncol Rep ; 26(1): 73-9, 2011 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-21479362

RESUMEN

Endoplasmic reticulum stress (ERS)-mediated cell apoptosis has been implicated in the development of multiple diseases such as cancer, neurodegenerative diseases and ischemic reperfusion damage. Previous studies have demonstrated the adenosine-induced apoptosis in several tumor cell lines. However, the role of ERS in adenosine-induced human hepatoma HepG2 cell apoptosis remains unclear. The present study was designed to determine whether ERS is involved in adenosine-induced HepG2 cell apoptosis. The MTT assay was used to determine proliferation, and DAPI staining of cell nuclei was performed to determine cell apoptosis. The translocation of CHOP and caspase-3 was observed by immunofluorescence analysis, and the protein expression of CHOP, caspase-4 and caspase-3 was detected by Western blotting. The MTT assay demonstrated that adenosine inhibited HepG2 cell proliferation in a dose-dependent manner. DAPI staining of cell nuclei and cell cycle analysis verified cell apoptosis. The immunofluorescence assay demonstrated that adenosine induced the translocation of CHOP and of caspase-3 from the cytoplasm to the nucleus. Western blotting confirmed that CHOP, caspase-4 and caspase-3 were up-regulated in HepG2 cells after treatment with adenosine. However, JNK protein expression was not altered. These results show that ERS is involved in the adenosine-induced HepG2 cell apoptosis.


Asunto(s)
Apoptosis , Carcinoma Hepatocelular/metabolismo , Caspasa 3/metabolismo , Caspasas Iniciadoras/metabolismo , Retículo Endoplásmico/patología , Regulación Neoplásica de la Expresión Génica , Proteínas de Choque Térmico/metabolismo , Neoplasias Hepáticas/metabolismo , Factor de Transcripción CHOP/metabolismo , Adenosina/metabolismo , Adenosina/farmacología , Proliferación Celular , Relación Dosis-Respuesta a Droga , Chaperón BiP del Retículo Endoplásmico , Células Hep G2 , Humanos , Sales de Tetrazolio/farmacología , Tiazoles/farmacología
8.
Biochem Cell Biol ; 88(4): 705-14, 2010 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-20651843

RESUMEN

Adenosine can exhibit cytotoxic activity in vivo and in vitro, though its mechanisms are still uncertain. In this study, we investigated the adenosine-mediated apoptotic signaling pathway and the role of NF-kappaB in human hepatocellular carcinoma HepG2 cells. HepG2 cells were treated with different concentrations of adenosine for 12-48 h, and the effect of adenosine on cell proliferation was evaluated by MTT assay. The cytotoxicity of adenosine alone or in combination with an NF-kappaB inhibitor, pyrrolidine dithiocarbamate (PDTC), was also evaluated by MTT assay and the mode of cell death was detected by Hoechst 33342 staining. Cell cycle progress was performed by flow cytometry with PI staining. The protein expressions of Bcl-2, p53, NF-kappaB subunit p65, and caspase-3 were assayed by Western blot. Caspase-3 activity was measured by spectrophotomteric assay. The results showed that adenosine significantly reduced the viability of HepG2 cells in a dose- and time-dependent manner, with IC 50 (24 and 48 h) of 2.52 and 1.89 mmol x L(-1), respectively. The apoptotic index (percentage of sub-G1 phase) of HepG2 cells in adenosine treatment alone for 12 and 24 h or in combination with PDTC were 8.30%, 22.32% and 20.18%, 30.89%, respectively. All of them were higher than that in the control group (0.81%, p < 0.01). The characteristic changes of cell apoptosis (chromatin condensation and sub-G1 peak) were observed under fluorescent microscopy and flow cytometry. We also found that the apoptotic process triggered by adenosine was involved in G0-G1 cell-cycle arrest, enhanced the activity of caspase-3, upregulated p53 and NF-kappaB p65 expression, and downregulated Bcl-2 expression. Inhibition of NF-kappaB by PDTC decreased NF-kappaB p65 expression, enhanced cell apoptosis ratio, and increased caspase-3 activity. NF-kappaB may play an anti-apoptosis role in adenosine-induced HepG2 cytotoxicity.


Asunto(s)
Adenosina/farmacología , Apoptosis/efectos de los fármacos , Carcinoma Hepatocelular/patología , Neoplasias Hepáticas/patología , FN-kappa B/fisiología , Adenosina/metabolismo , Antineoplásicos/farmacología , Proteínas Reguladoras de la Apoptosis/metabolismo , Carcinoma Hepatocelular/metabolismo , Caspasa 3/metabolismo , Ciclo Celular/efectos de los fármacos , Supervivencia Celular/efectos de los fármacos , Relación Dosis-Respuesta a Droga , Evaluación Preclínica de Medicamentos , Espacio Extracelular/efectos de los fármacos , Espacio Extracelular/metabolismo , Células Hep G2 , Humanos , Neoplasias Hepáticas/metabolismo , FN-kappa B/metabolismo , Prolina/análogos & derivados , Prolina/farmacología , Tiocarbamatos/farmacología
9.
J Surg Oncol ; 97(5): 439-44, 2008 Apr 01.
Artículo en Inglés | MEDLINE | ID: mdl-18163448

RESUMEN

BACKGROUND AND OBJECTIVES: NF-kappa B, ubiquitin and proteasome have been shown be important factors in oncogenesis. The aim of this study was to determine whether NF-kappa B could be a sensitive biomarker for gastric carcinoma. METHODS: Tumor and adjacent mucosal tissue specimens in 92 patients with gastric carcinoma were studied. The expression of NF-kappa B was evaluated by immunohistochemistry. The expression of I kappa B alpha, ubiquitin in cytoplasm and NF-kappa B in nucleoplasm was assayed by Western blot. DNA binding-activity of NF-kappa B was confirmed by electrophoretic mobility shift assay (EMSA). Fluorogenic technique was performed to measure the 26S proteasome activity. RESULTS: NF-kappa B positive expression in tumor tissues (82.4%) was significant higher than that in adjacent mucosal tissues (32.7%, P < 0.05). The increase of NF-kappa B activation was accompanied by the increases of ubiqutin, 26S proteasome activation and a degradation of I kappa B alpha but not the ubiquitin-conjugated I kappa B alpha/NF-kappa B complex in gastric carcinoma. NF-kappa B expression was significantly increased in patients with lymph node metastasis, TNM stage III/IV or with the habit of high intake of pickled vegetables. CONCLUSIONS: This study demonstrates that the constitutive activation of NF-kappa B is likely due to the activation of ubiquitin-proteasome pathway and NF-kappa B can be used as a prognostic biomarker.


Asunto(s)
Carcinoma/metabolismo , FN-kappa B/metabolismo , Complejo de la Endopetidasa Proteasomal/metabolismo , Neoplasias Gástricas/metabolismo , Ubiquitina/metabolismo , Anciano , Anciano de 80 o más Años , Biomarcadores de Tumor/metabolismo , Western Blotting , Carcinoma/patología , Núcleo Celular/metabolismo , Citoplasma/metabolismo , Dieta , Ensayo de Cambio de Movilidad Electroforética , Femenino , Humanos , Proteínas I-kappa B/metabolismo , Inmunohistoquímica , Metástasis Linfática , Masculino , Persona de Mediana Edad , Inhibidor NF-kappaB alfa , Neoplasias Gástricas/patología
10.
Acta Pharmacol Sin ; 27(4): 477-84, 2006 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-16539849

RESUMEN

AIM: To investigate effects of adenosine on cell proliferation and apoptosis in human HepG2 cells. METHODS: HepG2 cells were incubated in the presence of adenosine (0.1-5 mmol/L) for 12-48 h, and the effect of adenosine on cell proliferation was evaluated by using 3-(4,5-dimethyl-2-yl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay. Hoechst 33342 fluorescent staining, dUTP-fluorescein isothiocyanate (FITC) fluorescence and flow cytometric analysis techniques were used to observe cell apoptosis. The effects of adenosine receptor (A1, A2a, A3 and nonspecific receptor) antagonists (8-cpt, DMPX, MRS1191, and theophylline) and an adenosine transporter protein inhibitor (dipyridamole) on adenosine-induced cell apoptosis were observed. Mitochondrial membrane potential was analyzed using DePsipher fluorescent staining, and caspase activity was detected using a Fluorometric assay kit and a fluorescence microplate reader. RESULTS: Adenosine significantly reduced cell viability in a dose- and time-dependent manner. The cytotoxicity of adenosine was related to the induction of cell apoptosis. Four adenosine receptor antagonists had no effect on cell apoptosis. However, dipyridamole significantly reduced the percentage of adenosine-induced apoptotic cells from 27.3% to 7.1% (P<0.05). At 48 h after treatment, 3 mmol/L adenosine increased caspase-3 activity 3.5-fold; dipyridamole markedly decreased caspase-3 activity 1.6-fold, and decreased apoptotic cell numbers. When HepG2 cells were treated with 3 mmol/L adenosine, mitochondrial membrane potential and the activity of caspase-8 or -9 remained unchanged. CONCLUSION: Our results suggest that adenosine-induced apoptosis in HepG2 cells is related to intracellular events rather than cell surface receptors, and that a caspase-3 cascade activation is required, which is not mediated via a mitochondrial pathway.


Asunto(s)
Adenosina/farmacología , Apoptosis/efectos de los fármacos , Carcinoma Hepatocelular/patología , Neoplasias Hepáticas/patología , Carcinoma Hepatocelular/metabolismo , Caspasa 3 , Caspasas/metabolismo , Línea Celular Tumoral , Proliferación Celular/efectos de los fármacos , Supervivencia Celular/efectos de los fármacos , Fragmentación del ADN/efectos de los fármacos , Dipiridamol/farmacología , Relación Dosis-Respuesta a Droga , Activación Enzimática/efectos de los fármacos , Humanos , Neoplasias Hepáticas/metabolismo , Potenciales de la Membrana/efectos de los fármacos , Mitocondrias Hepáticas/fisiología , Teofilina/análogos & derivados , Teofilina/farmacología
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