• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Harmine induces apoptosis in HepG2 cells via mitochondrial signaling pathway

    2011-07-03 12:48:42MingRongCaoQiangLiZhiLongLiuHuiHuiLiuWeiWangXiaoLiLiaoYunLongPanandJianWeiJiang

    Ming-Rong Cao, Qiang Li, Zhi-Long Liu, Hui-Hui Liu, Wei Wang, Xiao-Li Liao, Yun-Long Pan and Jian-Wei Jiang

    Guangzhou, China

    Original Article / Liver

    Harmine induces apoptosis in HepG2 cells via mitochondrial signaling pathway

    Ming-Rong Cao, Qiang Li, Zhi-Long Liu, Hui-Hui Liu, Wei Wang, Xiao-Li Liao, Yun-Long Pan and Jian-Wei Jiang

    Guangzhou, China

    BACKGROUND:Harmine has antitumor and antinociceptive effects, and inhibits human DNA topoisomerase. However, no detailed data are available on the mechanisms of action of harmine in hepatocellular carcinoma. This study aimed to investigate the effects of harmine on proliferation and apoptosis, and the underlying mechanisms in the human hepatocellular carcinoma cell line HepG2.

    METHODS:The proliferation of HepG2 cells was determined by the cell counting kit-8 (CCK-8) assay and the clone formation test. The morphology of HepG2 cells was examined using fluorescence microscopy after Hoechst 33258 staining. Annexin V/propidium iodide (PI) was used to analyze apoptosis and PI to analyze the cell cycle. Western blotting was used to assess expression of the apoptosis-regulated genes Bcl-2, Bax, Bcl-xl, Mcl-1, caspase-3, and caspase-9. Mitochondrial transmembrane potential (Ψm) was determined using JC-1.

    RESULTS:Harmine inhibited the proliferation of HepG2 cells in a dose-dependent manner. Hoechst 33258 staining revealed nuclear fragmentation and chromosomal condensation, cell shrinkage, and attachment loss in HepG2 cells treated with harmine. The percentage of the sub/G1 fraction was increased in a concentration-dependent manner, indicating apoptotic cell death. PI staining showed that harmine changed the cell cycle distribution, by decreasing the proportion of cells inG0/G1 and increasing the proportion in S and G2/M. Harmine induced apoptosis in a concentration-dependent manner, with rates of 20.0%, 32.7% and 64.9%, respectively. JC-1 revealed a decrease inΨm. Apoptosis of HepG2 cells was associated with caspase-3 and caspase-9 activation, down-regulation of Bcl-2, Mcl-1, and Bcl-xl, and no change in Bax.

    CONCLUSIONS:Harmine had an anti-proliferative effect in HepG2 cells by inducing apoptosis. Mitochondrial signal pathways were involved in the apoptosis. The cancer-specific selectivity shown in this study suggested that harmine is a promising novel drug for human hepatocellular carcinoma.

    (Hepatobiliary Pancreat Dis Int 2011; 10: 599-604)

    hepatocellular carcinoma; harmine; Bcl-2 protein; caspase-3; apoptosis

    Introduction

    Hepatocellular carcinoma (HCC) is a common and aggressive malignant tumor worldwide. Primary liver cancer, which consists predominantly of HCC, is the fifth most common cancer worldwide and the third most common cause of cancer mortality. In China, HCC accounts for 90% of primary liver cancer, which is the second most common cause of death.[1]Recent data indicate that the mortality of HCC in China is tending to increase, severely threatening the health and life of people. Currently, the treatments for HCC are mainly surgery and chemotherapy, but the curative effect of existing chemotherapeutic drugs is not good enough and they have numerous side-effects, including myelosuppression, neutropenia, and thrombocytopenia.[2,3]Therefore, it has become a focus to search for drugs which are capable of preventing and treating HCC and other malignancies. One possible way to increase the efficacy of anticancer drugs and decrease toxicity or side-effects is to develop traditional medicines, especially from medicinal plants.[4-7]Herbalmedicines are an important source of novel agents with pharmaceutical potential. Harmine is a major component isolated from Peganum harmala L. (Zygophyllaceae) seed extract. The pharmacological characterization shows that harmine has antitumor[8,9]and antinociceptive effects,[10]and inhibits human DNA topoisomerase.[11]However, no detailed data are available on the mechanisms of action of harmine in HCC. We investigated its effect on the growth of human HepG2 cells and the underlying intracellular signal transduction pathways involved in regulating apoptosis.

    Methods

    Materials

    Harmine was from Xi'an Feida Bio-Tech Co., Ltd. The following were all from Cell Signaling (Danvers, Massachusetts, USA): antibodies for immunoblots anticaspase-3 (#9662), anti-caspase-9 (#9502), anti-Bcl-2 (#2870), anti-Mcl-1 (#4572), anti-Bcl-xl (#2764), anti-Bax (#2772), and GAPDH (#3683); and cell lysis buffer.

    Cell culture and treatment with harmine

    Cells were cultured in RPMI-1640 medium supplemented with 10% fetal bovine serum at 37 ℃in a humidified atmosphere containing 5% CO2. The harmine was dissolved in dimethyl sulfoxide (DMSO), and diluted to appropriate concentrations with culture medium. The final concentration of DMSO in the culture medium did not exceed 0.1%.

    CCK-8 assay

    The CCK-8 test was used to monitor cell proliferation. Cells were plated at a density of 5000 cells/well in 96-well plates. After 24 hours in culture, the cells were treated with harmine at the final concentrations 0, 0.625, 1.25, 2.5, 5, 10, or 20 μg/mL for 48 hours. Control cells were treated with DMSO. After addition of test compounds, 10 μL CCK-8 was added to each well. Absorbance was detected with an enzyme calibrator at 570 nm and then optical density (OD) values were measured. Inhibition of cell growth was computed by the percentage of viable cells compared with control. Percentage (%)=(ODCODT)/ODC×100%. ODT is the OD value of the treated sample, and ODC is the OD value of the control sample. Experiments were done in triplicate.

    Clone formation assay

    A clone formation assay was used to evaluate the effects of harmine on the proliferation of HepG2 cells.[12]Cells were first cultured in 12-well microplates (300 cells/well) in 2.5 mL of complete RPMI-1640 for 24 hours. Then the cells were treated with the indicated concentrations harmine for 7 days. Finally, the cells were stained in crystal violet for 20 minutes. Images of the colonies were captured by a digital camera.

    Fluorescence microscopy assay

    Harmine-induced apoptosis in HepG2 cells was assessed by Hoechst 33258 staining. Treated with 5 μg/mL harmine for 48 hours, the cells were harvested and smeared on slides. The slides were air-dried, fixed in methanol-acetone (3/1, v/v), and stained with Hoechst 33258 (5 μg/mL) at 37 ℃ for 20 minutes. Nuclear morphology was examined under fluorescence microscopy (DFC480; Leica Microsystems, Wetzlar, Germany) to identify cells undergoing apoptosis.

    Flow cytometry

    HepG2 cells at a density of 20 000 cells/well were incubated in 6-well plates for 48 hours with DMSO, 0, 5, 10, or 20 μg/mL harmine. After incubation, the cells were collected and analyzed by flow cytometry. Then the cells were harvested, washed with phosphate buffer solution (PBS), and fixed in 70% ice-cold ethanol overnight. The fixed cells were incubated with 20 U/mL RNaseiand 50 μg/mL propidium iodide (PI) for 30 minutes. The DNA content was determined by flow cytometry (Beckman Coulter, Fullerton, CA, USA). Apoptotic cells were identified by the sub-G1 phase in the cellcycle distribution. For assessment of the apoptotic rate, Annexin V-FITC/PI (Becton Dickinson, USA) staining was performed according to the manufacturer's protocol. The cells stained with Annexin V but not with PI were defined as apoptotic. The apoptotic rate was measured by flow cytometry (FCM, Becton Dickinson, USA) using CellQuest software.

    Western blotting

    Total proteins were extracted by incubation of cell pellets with lysis buffer. The protein concentration of the extracts was determined by bicinchoninic acid (Sigma) according to the manufacturer's instructions. Cell lysates (50 μg/well) were electrophoresed in 12% SDS-PAGE and then transferred onto nitrocellulose membranes. After blotting in 5% non-fat dry milk in TBST buffer, the membranes were incubated with primary antibodies in 5% non-fat milk overnight at 4 ℃, and then secondary antibodies conjugated with horseradish peroxidase for 1 hour at room temperature. Immunoreactive bands were visualized by enhanced chemiluminescence regents (Amersham, UK). To assessthe presence of comparable amounts of proteins in each lane, the membranes were stripped to assess GAPDH.

    Membrane potential of mitochondria (Ψm)

    Changes of Ψmwere monitored by determination of JC-1. HepG2 cells were treated with 5 μg/mL harmine for 48 hours, then the cells were harvested, washed with PBS, and fixed in JC-1 at 37 ℃ in the dark for 30 minutes, when they were harvested and smeared on slides. Changes in Ψmwere measured after staining under fluorescence microscopy.

    Statistical analysis

    Data were analyzed by ANOVA and Student's t test. These analyses were performed using SPSS 13.0 software. Differences withP<0.05 were considered significant.

    Results

    Harmine inhibits HepG2 cell proliferation

    Cell viability was decreased remarkably by harmine treatment (Fig. 1A). Harmine inhibited the growth of HepG2 cells in a dose-dependent manner (P<0.05 vs control), with an IC50of 9.80 μg/mL. To assess the effect of harmine on proliferation, the cells were treated with the indicated concentrations for 7 days. The result showed that harmine strongly inhibited their proliferation (Fig. 1B).

    Fig. 1. A: Effects of harmine on viability of HepG2 cells. The indicated concentrations of harmine were added, and the cells were incubated for 48 hours. Viability was measured by CCK-8 assay. Results represented 3 independent experiments. B: Clone formation assay was used to evaluate the effects of harmine on the proliferation of HepG2 cells. HepG2 cells were treated with 0, 0.625, 1.25, 2.5, or 5 μg/mL harmine for 7 days and stained in crystal violet for 20 minutes.

    Harmine induces apoptosis in HepG2 cells

    Apoptotic nuclear morphology was observed after Hoechst 33258 staining using fluorescence microscopy. After treatment with 5 μg/mL harmine for 48 hours, HepG2 cells began to exhibit apoptotic characteristics, such as cell shrinkage, nuclear condensation, and fragmentation. In the control group, the cells were regular in morphology and grew fully in patches and were confluent, rarely sloughing off (Fig. 2).

    Fig. 2. Harmine-induced apoptosis in HepG2 cells was assessed by Hoechst 33258 staining. Morphology of HepG2 cells exposed to harmine at different concentrations photographed under a fluorescence microscope (original magnification ×200). A: DMSO; B: 0 μg/mL; C: 5 μg/mL.

    Apoptosis was also detected through fluorescein Annexin V-FITC/PI double labeling.[13]The staining of cells with Annexin V-FITC and PI was used todistinguish and quantitatively determine the percentage of apoptotic cells. HepG2 cells underwent apoptosis after exposure to harmine at 5, 10, and 20 μg/mL for 48 hours. The percentage of apoptotic cells stained by Annexin V-FITC is shown in Fig. 3A. PI staining and flow cytometry were used to investigate whether harmine inhibited the growth of HepG2 cells by initiating the apoptotic pathway. HepG2 cells underwent apoptosis after being exposed to harmine at 5, 10, and 20 μg/mL for 48 hours (Fig. 3B). The percentage of apoptotic cells in the sub-G1 phase of the cell cycle increased. The percentage of the sub/G1 fraction, which was indicative of apoptotic cell death in harmine-treated cells, increased in a dose-dependent manner.

    Harmine changes the cell cycle in HepG2 cells

    Flow cytometry with only PI staining showed that treatment of HepG2 cells with 5, 10, and 20 μg/mL harmine for 48 hours resulted in a higher number of cells in S phase and G2/M phase compared with the control group (Fig. 4). This increase was coupled with the decreased percentage of cells in G0/G1 phase.

    Effect of harmine on the protein expression level

    Loss of Ψmis a crucial step in the apoptotic process and is lethal to cells because it leads to the release of diverse pro-apoptotic factors from the mitochondria into the cytoplasm.[14]In this study, we used the unique cationic dye JC-1 to determine the status of mitochondria. In non-apoptotic cells, JC-1 enters the negatively-charged mitochondria where it aggregates and turns red. However, in cells undergoing apoptosis, where Ψmhas collapsed, JC-1 exists as monomers in the cytosol and turns green. Our results showed that harmine induced a depletion of Ψmin HepG2 cells (Fig. 5A).

    The Bcl-2 family of proteins are key regulators of mitochondrial permeability.[15]Therefore, we investigated whether the mitochondria-mediated apoptosis in HepG2 cells induced by harmine was modulated by Bcl-2 family members. Harmine suppressed the expression of Bcl-2, Mcl-1, and Bcl-xl, and did not change the expression of Bax (Fig. 5B). As a result of these changes, the ratios of Bcl-2/Bax, Mcl-1/Bax, and Bcl-xl/Bax were reduced significantly during apoptosis. To delineate the possible signaling pathways by which harmine induced HepG2 cellapoptosis, we determined the changes in the expression levels of various apoptosis-regulating proteins.

    Fig. 3. Staining cells with Annexin V-FITC and PI was used to distinguish and quantitatively determine the percentage of apoptotic cells. The rate of apoptosis increased in a dose-dependent manner.

    Fig. 4. PI staining showed characteristic features of apoptosis in harmine-exposed cells. The number of cells in S phase and G2/M phase increased and the percentage of cells in G0/G1 phase decreased compared with the control group.

    Fig. 5. Harmine induced apoptosis of HepG2 cells through a mitochondrial signaling pathway. A: Change of Ψmwas evaluated by fluorescence microscopy. HepG2 cells were treated with 5 μg/mL harmine for 48 hours. B, C: Harmine activated Bcl-2 family members, caspase-3 and caspase-9. HepG2 cells were treated with 0, 1.25, 2.5, and 5 μg/mL harmine for 48 hours. The effect of harmine on the protein expression level was evaluated by immunoblotting. Immunoblotting data were quantitated from at least three separate experiments.

    Caspase, a family of cysteine acid proteases, is known to act as an important mediator of apoptosis and contributes to the overall apoptotic morphology by cleavage of various cellular substrates. Exposure of HepG2 cells to harmine resulted in cleavage of caspase-3 and caspase-9 (Fig. 5C).

    Discussion

    Although contemporary therapeutic strategies have shown remarkable anticancer ability, severe sideeffects are unavoidable. The search for new antitumor agents that are more effective but less toxic has kindled great interest. Since apoptosis plays an important role in developmental processes, homeostasis, and the elimination of damaged cells, accumulating data indicate that many anticancer drugs cause the death of tumor cells through the induction of apoptosis.[16,17]Although harmine shows effective antitumor activity, its effects on human hepatocytes are still unclear. Therefore, the purpose of the present study was to reveal the underlying molecular mechanism by which harmine induces apoptosis in the human HCC cell line HepG2.

    We demonstrated that harmine dose-dependently inhibited the proliferation of HepG2 cells, and moreover, it also induced apoptosis and arrested the cell cycle. Morphological changes in apoptotic characteristics, such as cellular shrinkage, rounding, poor adherence, and round floating shapes in harmine-treated cells were also observed by fluorescence microscopy. Flow cytometry analysis revealed that harmine treatment resulted in an increase of apoptotic cells. These results suggested that the growth inhibition of HepG2 cells by harmine is due to its ability to induce apoptosis.

    Mitochondria play an essential role in apoptosis, since both the intrinsic and extrinsic apoptosis pathways converge at the mitochondrial level and trigger mitochondrial membrane permeabilization.[15]Mitochondria-mediated apoptosis is precisely regulated by Bcl-2 family proteins, which can be divided into two subfamilies:[15,18,19]one is anti-apoptotic such as Bcl-2 and Bcl-xl, the other is pro-apoptotic like Bax, Bad, and Bid.[20]The expression of Bcl-2 and Bax is important in the balance of pro-apoptotic and anti-apoptotic signals at the mitochondrial level.[21]In our experiments, harmine had no effect on expression of the pro-apoptotic Bax protein but decreased the expression levels of anti-apoptotic Bcl-2, Bcl-xl, and Mcl-1, leading to up-regulation of the Bax/Bcl-2, Bax/Bcl-xl, and Bax/Mcl-1 ratios. This might be responsible for the concomitant execution phase of apoptosis, which included disruption of Ψm.

    Caspase, a family of cysteine proteases, is an integral part of the apoptotic pathway. Caspase-9 is the apical caspase in the intrinsic or mitochondriainitiated apoptosis pathway and requires the release of cytochrome C from the mitochondria. Activation of caspase-3 correlates with activation of caspase-9. Caspase-3 in particular, when activated, has many cellular targets.[22]During apoptosis, caspase-3 is one of the key executioners of apoptosis in response to various stimuli.[23]In many studies, it has been determined that a variety of chemotherapeutic agents induce apoptosis through the activation of caspase.[16]Consistent with an increase in the ratio of Bax/Bcl-2 and disruption of Ψm, this study showed that harmine resulted in dosedependent activation of caspase-9 and caspase-3.

    In conclusion, we found that harmine-induced apoptosis was accompanied by modulation of the Bcl-2 family, mitochondrial dysfunction and activation of caspase in HepG2 cells, implying that harmine induced apoptosis via the mitochondrial death pathway. Therefore, we believe that harmine might be a promising molecule in cancer chemoprevention or chemotherapy and further efforts to explore this therapeutic strategy are needed.

    Funding:This study was supported by grants from the Sci-Tech Project Foundation of Guangdong Province, China (2010B031600248) and the National Natural Science Foundation of China (30772131).Ethical approval:Not needed.

    Contributors:CMR, LQ and JJW proposed the study and wrote the first draft. LQ analyzed the data. All authors contributed to the design and interpretation of the study and to further drafts. JJW is the guarantor.

    Competing interest:No benefits in any form have been received or will be received from a commercial party related directly or indirectly to the subject of this article.

    1 Chen JA, Shi M, Li JQ, Qian CN. Angiogenesis: multiple masks in hepatocellular carcinoma and liver regeneration. Hepatol Int 2010;4:537-547.

    2 Chau GY, Lui WY, Tsay SH, Chao Y, King KL, Wu CW. Postresectional adjuvant intraportal chemotherapy in patients with hepatocellular carcinoma: a case-control study. Ann Surg Oncol 2006;13:1329-1337.

    3 Lo CM, Liu CL, Chan SC, Lam CM, Poon RT, Ng IO, et al. A randomized, controlled trial of postoperative adjuvant interferon therapy after resection of hepatocellular carcinoma. Ann Surg 2007;245:831-842.

    4 Dai ZJ, Wang XJ, Li ZF, Ji ZZ, Ren HT, Tang W, et al. Scutellaria barbate extract induces apoptosis of hepatoma H22 cells via the mitochondrial pathway involving caspase-3. World J Gastroenterol 2008;14:7321-7328.

    5 El Gendy MA, Somayaji V, El-Kadi AO. Peganum harmala L. is a candidate herbal plant for preventing dioxin mediated effects. Planta Med 2010;76:671-677.

    6 Astulla A, Zaima K, Matsuno Y, Hirasawa Y, Ekasari W, Widyawaruyanti A, et al. Alkaloids from the seeds of Peganum harmala showing antiplasmodial and vasorelaxant activities. J Nat Med 2008;62:470-472.

    7 Li H, Wang LJ, Qiu GF, Yu JQ, Liang SC, Hu XM. Apoptosis of Hela cells induced by extract from Cremanthodium humile. Food Chem Toxicol 2007;45:2040-2046.

    8 El Gendy MA, El-Kadi AO. Peganum harmala L. differentially modulates cytochrome P450 gene expression in human hepatoma HepG2 cells. Drug Metab Lett 2009;3:212-216.

    9 Farouk L, Laroubi A, Aboufatima R, Benharref A, Chait A. Evaluation of the analgesic effect of alkaloid extract of Peganum harmala L: possible mechanisms involved. J Ethnopharmacol 2008;115:449-454.

    10 Wu C, Jiang XL, Shen HW, Yu AM. Effects of CYP2D6 status on harmaline metabolism, pharmacokinetics and pharmacodynamics, and a pharmacogenetics-based pharmacokinetic model. Biochem Pharmacol 2009;78:617-624.

    11 Singh Y, Palombo M, Sinko PJ. Recent trends in targeted anticancer prodrug and conjugate design. Curr Med Chem 2008;15:1802-1826.

    12 Shao XD, Wu KC, Guo XZ, Xie MJ, Zhang J, Fan DM. Expression and significance of HERG protein in gastric cancer. Cancer Biol Ther 2008;7:45-50.

    13 Chen S, Cheng AC, Wang MS, Peng X. Detection of apoptosis induced by new type gosling viral enteritis virus in vitro through fluorescein annexin V-FITC/PI double labeling. World J Gastroenterol 2008;14:2174-2178.

    14 Marzetti E, Wohlgemuth SE, Lees HA, Chung HY, Giovannini S, Leeuwenburgh C. Age-related activation of mitochondrial caspase-independent apoptotic signaling in rat gastrocnemius muscle. Mech Ageing Dev 2008;129:542-549.

    15 Wang JB, Qi LL, Zheng SD, Wu TX. Curcumin induces apoptosis through the mitochondria-mediated apoptotic pathway in HT-29 cells. J Zhejiang Univ Sci B 2009;10:93-102.

    16 Lah JJ, Cui W, Hu KQ. Effects and mechanisms of silibinin on human hepatoma cell lines. World J Gastroenterol 2007; 13:5299-5305.

    17 Edderkaoui M, Odinokova I, Ohno I, Gukovsky I, Go VL, Pandol SJ, et al. Ellagic acid induces apoptosis through inhibition of nuclear factor kappa B in pancreatic cancer cells. World J Gastroenterol 2008;14:3672-3680.

    18 Suzuki S, Yokoyama U, Abe T, Kiyonari H, Yamashita N, Kato Y, et al. Differential roles of Epac in regulating cell death in neuronal and myocardial cells. J Biol Chem 2010;285:24248-24259.

    19 Ghibelli L, Diederich M. Multistep and multitask Bax activation. Mitochondrion 2010;10:604-613.

    20 Roos DH, Puntel RL, Lugokenski TH, Ineu RP, Bohrer D, Burger ME, et al. Complex methylmercury-cysteine alters mercury accumulation in different tissues of mice. Basic Clin Pharmacol Toxicol 2010;107:789-792.

    21 Hetz CA. ER stress signaling and the BCL-2 family of proteins: from adaptation to irreversible cellular damage. Antioxid Redox Signal 2007;9:2345-2355.

    22 Bialik S, Zalckvar E, Ber Y, Rubinstein AD, Kimchi A. Systems biology analysis of programmed cell death. Trends Biochem Sci 2010;35:556-564.

    23 Lüthi AU, Martin SJ. The CASBAH: a searchable database of caspase substrates. Cell Death Differ 2007;14:641-650.

    Received December 27, 2010

    Accepted after revision May 19, 2011

    Author Affiliations: Department of General Surgery, First Affiliated Hospital, Jinan University, Guangzhou 510632, China (Cao MR, Li Q, Liu ZL and Pan YL); Department of Anesthesiology, First Affiliated Hospital, Guangzhou University of TCM, Guangzhou 510632, China (Liu HH); Department of Biochemistry, Medical College of Jinan University, Guangzhou 510632, China (Wang W, Liao XL and Jiang JW)

    Jian-Wei Jiang, MD, Department of Biochemistry, Medical College of Jinan University, Guangzhou 510632, China (Tel: 86-20-85220256; Email: jjw703@163.com)

    ? 2011, Hepatobiliary Pancreat Dis Int. All rights reserved.

    10.1016/S1499-3872(11)60102-1

    久久精品91蜜桃| 亚洲国产中文字幕在线视频| 日本撒尿小便嘘嘘汇集6| 成人三级做爰电影| 在线观看舔阴道视频| 熟女电影av网| 欧美黑人精品巨大| 色播亚洲综合网| 国产成人欧美在线观看| netflix在线观看网站| 亚洲精品在线美女| 国产高清视频在线观看网站| 亚洲成av人片免费观看| 国产片内射在线| 老司机深夜福利视频在线观看| 别揉我奶头~嗯~啊~动态视频| 精品无人区乱码1区二区| 国产成人av激情在线播放| 777久久人妻少妇嫩草av网站| 18禁观看日本| 麻豆国产97在线/欧美 | 淫妇啪啪啪对白视频| 国产精品电影一区二区三区| 精品少妇一区二区三区视频日本电影| 在线视频色国产色| 日韩欧美免费精品| 国产成人欧美在线观看| 天堂√8在线中文| 久久这里只有精品中国| 日本 欧美在线| 国产不卡一卡二| 日韩欧美国产一区二区入口| 欧美日韩精品网址| 久久精品国产综合久久久| 欧美日韩瑟瑟在线播放| 又紧又爽又黄一区二区| 日韩免费av在线播放| 欧美av亚洲av综合av国产av| 久久亚洲精品不卡| 床上黄色一级片| 岛国在线免费视频观看| 在线观看免费日韩欧美大片| 免费在线观看成人毛片| 黄色片一级片一级黄色片| 午夜老司机福利片| 黄色丝袜av网址大全| 日日摸夜夜添夜夜添小说| 一区二区三区高清视频在线| av有码第一页| 狂野欧美白嫩少妇大欣赏| 啦啦啦韩国在线观看视频| 亚洲 欧美 日韩 在线 免费| 国产精品一及| 日韩大码丰满熟妇| 淫妇啪啪啪对白视频| 欧美日韩福利视频一区二区| 真人做人爱边吃奶动态| 女人高潮潮喷娇喘18禁视频| 国产精品自产拍在线观看55亚洲| 一级作爱视频免费观看| 高潮久久久久久久久久久不卡| 老司机在亚洲福利影院| 男女下面进入的视频免费午夜| 91成年电影在线观看| 制服诱惑二区| 久久人妻av系列| 亚洲成人免费电影在线观看| 在线观看一区二区三区| 天天躁夜夜躁狠狠躁躁| 婷婷丁香在线五月| 国产成人欧美在线观看| 两个人看的免费小视频| 99久久99久久久精品蜜桃| 国产精品99久久99久久久不卡| 在线a可以看的网站| 午夜福利在线在线| 一进一出好大好爽视频| 国产三级黄色录像| 国产精品久久视频播放| 午夜老司机福利片| 一本精品99久久精品77| 国产亚洲精品一区二区www| 国产亚洲精品久久久久久毛片| 一a级毛片在线观看| av超薄肉色丝袜交足视频| 成熟少妇高潮喷水视频| 欧美日韩瑟瑟在线播放| 一区福利在线观看| 桃红色精品国产亚洲av| 真人做人爱边吃奶动态| 巨乳人妻的诱惑在线观看| 国产精品久久久久久人妻精品电影| xxxwww97欧美| 亚洲最大成人中文| 亚洲,欧美精品.| 两性夫妻黄色片| 免费观看精品视频网站| 亚洲中文字幕一区二区三区有码在线看 | 久久草成人影院| 哪里可以看免费的av片| 国产精品久久久久久人妻精品电影| 亚洲国产欧美一区二区综合| 99久久国产精品久久久| 最近最新中文字幕大全电影3| 久久久久国产一级毛片高清牌| 精品无人区乱码1区二区| 国产在线精品亚洲第一网站| 国产亚洲精品一区二区www| 老汉色∧v一级毛片| 免费看a级黄色片| 十八禁网站免费在线| 一级片免费观看大全| 校园春色视频在线观看| 国产亚洲av高清不卡| 99热只有精品国产| 精品无人区乱码1区二区| 一本大道久久a久久精品| 一a级毛片在线观看| 久久久久国内视频| 久久 成人 亚洲| av中文乱码字幕在线| 国产精品自产拍在线观看55亚洲| 午夜老司机福利片| 欧美日韩精品网址| 亚洲精品国产精品久久久不卡| 亚洲一卡2卡3卡4卡5卡精品中文| 成人精品一区二区免费| 亚洲美女黄片视频| 久久亚洲真实| 看免费av毛片| 日韩欧美精品v在线| 成人午夜高清在线视频| 91老司机精品| 亚洲全国av大片| 久久中文字幕人妻熟女| 亚洲av电影不卡..在线观看| 欧美精品亚洲一区二区| 欧美性猛交黑人性爽| 国产单亲对白刺激| 全区人妻精品视频| 亚洲人成77777在线视频| 国产v大片淫在线免费观看| 国产精品1区2区在线观看.| 他把我摸到了高潮在线观看| 国内精品久久久久久久电影| 国产黄片美女视频| 国产精品九九99| 99久久精品国产亚洲精品| 亚洲一区中文字幕在线| 一二三四社区在线视频社区8| 日韩高清综合在线| 99久久99久久久精品蜜桃| www日本黄色视频网| 久久久久九九精品影院| 亚洲av片天天在线观看| 国产高清激情床上av| 禁无遮挡网站| 亚洲av片天天在线观看| 91麻豆精品激情在线观看国产| a级毛片在线看网站| 夜夜躁狠狠躁天天躁| 久久精品人妻少妇| 欧美在线一区亚洲| 精品久久久久久久人妻蜜臀av| 亚洲全国av大片| 精品免费久久久久久久清纯| 国产精品 欧美亚洲| 亚洲人成网站在线播放欧美日韩| 亚洲国产欧洲综合997久久,| 99久久综合精品五月天人人| 少妇粗大呻吟视频| 18禁美女被吸乳视频| 国内久久婷婷六月综合欲色啪| 精品不卡国产一区二区三区| 麻豆国产97在线/欧美 | 亚洲成人免费电影在线观看| 精品久久久久久久毛片微露脸| 国产精品亚洲av一区麻豆| av免费在线观看网站| 麻豆国产97在线/欧美 | 国产三级在线视频| 久久九九热精品免费| 午夜日韩欧美国产| 巨乳人妻的诱惑在线观看| 久久九九热精品免费| 一卡2卡三卡四卡精品乱码亚洲| 婷婷精品国产亚洲av| 精品乱码久久久久久99久播| 国产69精品久久久久777片 | 久久精品aⅴ一区二区三区四区| 日韩高清综合在线| 搞女人的毛片| 久久香蕉国产精品| 日韩欧美在线二视频| 欧美日韩黄片免| 日韩欧美免费精品| 丁香六月欧美| 国产欧美日韩一区二区三| 久久久国产成人免费| 亚洲国产日韩欧美精品在线观看 | 此物有八面人人有两片| 欧美zozozo另类| 国产精品电影一区二区三区| 国产精品久久久久久精品电影| 色综合站精品国产| 美女 人体艺术 gogo| 国产亚洲精品一区二区www| 亚洲人成网站高清观看| 国产真实乱freesex| 欧美日韩亚洲综合一区二区三区_| av天堂在线播放| 久久久久久久久免费视频了| 91麻豆精品激情在线观看国产| 午夜福利免费观看在线| 最新在线观看一区二区三区| 50天的宝宝边吃奶边哭怎么回事| 欧美乱色亚洲激情| 欧美乱码精品一区二区三区| 99国产精品99久久久久| 一进一出抽搐gif免费好疼| 黄色女人牲交| 精品免费久久久久久久清纯| 免费在线观看亚洲国产| 在线观看舔阴道视频| 国产精品综合久久久久久久免费| 天堂√8在线中文| 久久久国产成人免费| 男女那种视频在线观看| 麻豆久久精品国产亚洲av| 亚洲精品美女久久av网站| 久久精品91无色码中文字幕| 国产精品亚洲av一区麻豆| 婷婷精品国产亚洲av| 国产成年人精品一区二区| 操出白浆在线播放| 亚洲男人天堂网一区| 免费看a级黄色片| 国产欧美日韩精品亚洲av| 亚洲成av人片免费观看| 中文字幕最新亚洲高清| 丁香六月欧美| 久久国产乱子伦精品免费另类| 男人舔女人下体高潮全视频| 亚洲精品久久国产高清桃花| 夜夜躁狠狠躁天天躁| 日韩中文字幕欧美一区二区| 在线免费观看的www视频| 国产成人aa在线观看| 国产成人av激情在线播放| 小说图片视频综合网站| 哪里可以看免费的av片| 久久性视频一级片| 正在播放国产对白刺激| xxx96com| 亚洲电影在线观看av| 亚洲av美国av| 久久性视频一级片| 天堂av国产一区二区熟女人妻 | 亚洲 欧美 日韩 在线 免费| 亚洲成人国产一区在线观看| 久久性视频一级片| 丁香六月欧美| 欧美又色又爽又黄视频| 国产伦人伦偷精品视频| 亚洲一区高清亚洲精品| 香蕉久久夜色| 国产精品久久久av美女十八| 国产精品久久久久久人妻精品电影| 色尼玛亚洲综合影院| 三级男女做爰猛烈吃奶摸视频| 久久99热这里只有精品18| 男人的好看免费观看在线视频 | 99久久久亚洲精品蜜臀av| 色在线成人网| 露出奶头的视频| 亚洲人成电影免费在线| 看免费av毛片| 精华霜和精华液先用哪个| 国产黄色小视频在线观看| 精品一区二区三区四区五区乱码| 久久久久性生活片| 久久久久久久久免费视频了| 夜夜看夜夜爽夜夜摸| 无遮挡黄片免费观看| 欧美又色又爽又黄视频| 99久久无色码亚洲精品果冻| 日本三级黄在线观看| 免费无遮挡裸体视频| 国产一区二区在线av高清观看| 可以在线观看的亚洲视频| 欧美日韩瑟瑟在线播放| 亚洲成人免费电影在线观看| 国产激情偷乱视频一区二区| 亚洲成人精品中文字幕电影| 两个人看的免费小视频| 欧美日韩精品网址| 欧美午夜高清在线| 这个男人来自地球电影免费观看| 亚洲免费av在线视频| 高清在线国产一区| 午夜日韩欧美国产| 国产精品一及| 嫁个100分男人电影在线观看| 欧美人与性动交α欧美精品济南到| 亚洲精华国产精华精| 看免费av毛片| 两性午夜刺激爽爽歪歪视频在线观看 | 脱女人内裤的视频| 亚洲全国av大片| 国产黄色小视频在线观看| √禁漫天堂资源中文www| 国产亚洲精品久久久久久毛片| 国产成年人精品一区二区| 别揉我奶头~嗯~啊~动态视频| 99久久99久久久精品蜜桃| 午夜福利18| 大型av网站在线播放| 级片在线观看| 午夜视频精品福利| 亚洲人成77777在线视频| 欧美黄色淫秽网站| 777久久人妻少妇嫩草av网站| 欧美黑人精品巨大| 欧美人与性动交α欧美精品济南到| 国产99久久九九免费精品| 妹子高潮喷水视频| 黄色视频不卡| 国产69精品久久久久777片 | 亚洲自偷自拍图片 自拍| 美女黄网站色视频| a级毛片a级免费在线| 一卡2卡三卡四卡精品乱码亚洲| 国产视频一区二区在线看| 欧美日韩乱码在线| 欧美最黄视频在线播放免费| 2021天堂中文幕一二区在线观| 久久中文字幕人妻熟女| 亚洲国产中文字幕在线视频| 亚洲色图 男人天堂 中文字幕| 最近最新中文字幕大全电影3| 少妇熟女aⅴ在线视频| 丰满的人妻完整版| 久久久国产成人免费| 久久精品国产综合久久久| 精品久久久久久,| 久久久久九九精品影院| 国产成人av激情在线播放| 午夜福利欧美成人| 国产欧美日韩一区二区精品| 老司机深夜福利视频在线观看| 亚洲国产看品久久| 禁无遮挡网站| 中文字幕久久专区| 久热爱精品视频在线9| 日韩精品免费视频一区二区三区| 亚洲国产欧美一区二区综合| 日日爽夜夜爽网站| 国产野战对白在线观看| 亚洲aⅴ乱码一区二区在线播放 | 人人妻,人人澡人人爽秒播| 亚洲人成77777在线视频| 老司机福利观看| 日韩欧美 国产精品| 日本免费a在线| 日本一本二区三区精品| 色在线成人网| 后天国语完整版免费观看| 午夜日韩欧美国产| 国产主播在线观看一区二区| 99在线视频只有这里精品首页| 一级毛片女人18水好多| 欧美一区二区精品小视频在线| 视频区欧美日本亚洲| 国产视频内射| 国产精品一区二区精品视频观看| 十八禁网站免费在线| 夜夜夜夜夜久久久久| 在线十欧美十亚洲十日本专区| 天天躁夜夜躁狠狠躁躁| av视频在线观看入口| 国产99久久九九免费精品| 搡老岳熟女国产| 中国美女看黄片| 国产精品野战在线观看| 亚洲精品一卡2卡三卡4卡5卡| 欧美在线黄色| 国产精华一区二区三区| 精品久久久久久久人妻蜜臀av| 成人av一区二区三区在线看| 丝袜美腿诱惑在线| 婷婷丁香在线五月| 精品国产超薄肉色丝袜足j| 国产亚洲欧美在线一区二区| svipshipincom国产片| 熟女电影av网| 嫩草影院精品99| 国产精品 欧美亚洲| 成人特级黄色片久久久久久久| 亚洲国产精品sss在线观看| 男人的好看免费观看在线视频 | 亚洲国产精品999在线| www.www免费av| 成人国产综合亚洲| 免费看美女性在线毛片视频| 亚洲av成人一区二区三| 国产高清激情床上av| 制服诱惑二区| 精品国产乱子伦一区二区三区| 日韩成人在线观看一区二区三区| 最近最新中文字幕大全免费视频| 亚洲精品国产一区二区精华液| 久久精品亚洲精品国产色婷小说| 亚洲熟妇中文字幕五十中出| 成年免费大片在线观看| 久久久久久人人人人人| 久久久精品欧美日韩精品| 国产人伦9x9x在线观看| 色在线成人网| 免费在线观看黄色视频的| av免费在线观看网站| 听说在线观看完整版免费高清| 欧美丝袜亚洲另类 | 我要搜黄色片| 丰满人妻熟妇乱又伦精品不卡| 久热爱精品视频在线9| av在线天堂中文字幕| 99精品在免费线老司机午夜| 草草在线视频免费看| 99国产精品99久久久久| 日韩精品免费视频一区二区三区| 久99久视频精品免费| 在线a可以看的网站| 国产精品爽爽va在线观看网站| 色综合欧美亚洲国产小说| 婷婷精品国产亚洲av在线| 久久中文字幕一级| 中文字幕久久专区| 国产在线观看jvid| 久久这里只有精品19| 在线观看午夜福利视频| 国内久久婷婷六月综合欲色啪| 两性午夜刺激爽爽歪歪视频在线观看 | 国产精品一及| 在线看三级毛片| 伊人久久大香线蕉亚洲五| 一边摸一边抽搐一进一小说| 欧美精品啪啪一区二区三区| 国产精品一及| 蜜桃久久精品国产亚洲av| 天天躁狠狠躁夜夜躁狠狠躁| 久久久久性生活片| 精品一区二区三区视频在线观看免费| 国产一区二区激情短视频| 国产精品永久免费网站| 亚洲第一电影网av| 老熟妇乱子伦视频在线观看| 舔av片在线| 啦啦啦观看免费观看视频高清| 悠悠久久av| av视频在线观看入口| 免费一级毛片在线播放高清视频| 一进一出好大好爽视频| 欧美黄色淫秽网站| 99国产极品粉嫩在线观看| 精品熟女少妇八av免费久了| 日韩中文字幕欧美一区二区| a在线观看视频网站| 小说图片视频综合网站| 国产高清有码在线观看视频 | 久热爱精品视频在线9| 一夜夜www| 无限看片的www在线观看| 欧美日韩亚洲综合一区二区三区_| 午夜日韩欧美国产| 亚洲中文av在线| 夜夜躁狠狠躁天天躁| 亚洲男人天堂网一区| 日韩欧美国产在线观看| 婷婷六月久久综合丁香| 首页视频小说图片口味搜索| 人人妻人人澡欧美一区二区| 成人av在线播放网站| 日韩免费av在线播放| 黄色片一级片一级黄色片| 日韩免费av在线播放| 国产精品美女特级片免费视频播放器 | 狂野欧美激情性xxxx| 日韩免费av在线播放| 午夜福利视频1000在线观看| 亚洲精品一卡2卡三卡4卡5卡| 丝袜美腿诱惑在线| 久久久久久久久中文| 18禁国产床啪视频网站| 特大巨黑吊av在线直播| 99re在线观看精品视频| 亚洲一区高清亚洲精品| 亚洲国产精品sss在线观看| 最新在线观看一区二区三区| 亚洲av成人不卡在线观看播放网| 18禁裸乳无遮挡免费网站照片| 久久中文字幕一级| 在线观看免费午夜福利视频| 亚洲精品中文字幕在线视频| 国产成人影院久久av| 国产精品久久久久久久电影 | 婷婷亚洲欧美| 叶爱在线成人免费视频播放| 国产av麻豆久久久久久久| 亚洲av日韩精品久久久久久密| 亚洲av中文字字幕乱码综合| 长腿黑丝高跟| 日韩大尺度精品在线看网址| 久久中文看片网| 久久人妻av系列| 在线免费观看的www视频| 国产成人啪精品午夜网站| 无遮挡黄片免费观看| 欧美色欧美亚洲另类二区| 国产成人系列免费观看| 亚洲男人的天堂狠狠| 午夜影院日韩av| 国产精品亚洲av一区麻豆| 色在线成人网| 欧美另类亚洲清纯唯美| 国产欧美日韩一区二区三| 欧洲精品卡2卡3卡4卡5卡区| 天天躁狠狠躁夜夜躁狠狠躁| 午夜激情福利司机影院| 亚洲专区中文字幕在线| 午夜福利视频1000在线观看| 黑人巨大精品欧美一区二区mp4| 香蕉丝袜av| 一本综合久久免费| av视频在线观看入口| 亚洲欧美精品综合一区二区三区| 久久精品国产亚洲av高清一级| 亚洲av片天天在线观看| 亚洲av电影在线进入| 欧美乱码精品一区二区三区| 日本a在线网址| 一本大道久久a久久精品| 国产伦人伦偷精品视频| 99国产精品一区二区三区| 午夜福利在线观看吧| 国产亚洲av高清不卡| 精品久久久久久久末码| 日日爽夜夜爽网站| 一个人免费在线观看的高清视频| 中文字幕av在线有码专区| 日韩欧美免费精品| 两性午夜刺激爽爽歪歪视频在线观看 | 别揉我奶头~嗯~啊~动态视频| 亚洲电影在线观看av| 国产欧美日韩一区二区精品| 一区二区三区国产精品乱码| 91成年电影在线观看| 国产精品亚洲美女久久久| 亚洲av第一区精品v没综合| 又黄又爽又免费观看的视频| 午夜福利在线观看吧| 麻豆成人av在线观看| 一边摸一边抽搐一进一小说| 岛国在线观看网站| 久久天躁狠狠躁夜夜2o2o| 妹子高潮喷水视频| 久久久久亚洲av毛片大全| 国产97色在线日韩免费| 亚洲精品久久成人aⅴ小说| 久久久精品大字幕| 国产精品av久久久久免费| 婷婷精品国产亚洲av| 在线观看免费日韩欧美大片| 日韩免费av在线播放| 很黄的视频免费| 男人舔女人下体高潮全视频| 中文字幕最新亚洲高清| 亚洲精品美女久久久久99蜜臀| 久久国产精品人妻蜜桃| 色综合站精品国产| 日本熟妇午夜| 99久久无色码亚洲精品果冻| 亚洲国产高清在线一区二区三| 母亲3免费完整高清在线观看| 国产午夜精品论理片| 日日干狠狠操夜夜爽| 又紧又爽又黄一区二区| 真人一进一出gif抽搐免费| www.自偷自拍.com| 欧美一级毛片孕妇| 在线观看一区二区三区| 国产精品亚洲av一区麻豆| 丰满的人妻完整版| 欧美最黄视频在线播放免费| 嫩草影院精品99| 亚洲国产精品合色在线| 午夜免费激情av| 国产三级中文精品| 老司机午夜福利在线观看视频| 两个人免费观看高清视频| 啦啦啦观看免费观看视频高清| 亚洲av电影在线进入| 在线十欧美十亚洲十日本专区| 日韩av在线大香蕉| 少妇粗大呻吟视频| 桃色一区二区三区在线观看| 精品国产美女av久久久久小说| 一本精品99久久精品77| 国产亚洲欧美在线一区二区| 不卡av一区二区三区| 国模一区二区三区四区视频 | 久久国产精品影院| 别揉我奶头~嗯~啊~动态视频| 女人高潮潮喷娇喘18禁视频| 老司机午夜福利在线观看视频| 国产真人三级小视频在线观看|