• <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 ?

    High-risk HPVs, microbiota and epithelial carcinogenesis: state of the art and research contribution of in vitro 3D models

    2019-07-29 04:25:24DilettaFrancescaSquarzantiRitaSorrentinoBarbaraAzzimonti

    Diletta Francesca Squarzanti, Rita Sorrentino, Barbara Azzimonti

    1Laboratory of applied Microbiology, Center for Translational Research on Allergic and Autoimmune Diseases, Department of Health Sciences, Medical School, Università del Piemonte Orientale, Novara 28100, Italy.

    2Department of Health Sciences, Medical School, Università del Piemonte Orientale, Novara 28100, Italy.

    3Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali, Firenze 50121, Italy (Local Unit of Università del Piemonte Orientale, Novara 28100, Italy).

    #Authors contributed equally.

    Abstract Persistent high-risk human papillomavirus (HR-HPV) infection is associated with anogenital and head & neck squamous epithelial (HNSCC) tumors, which altogether cause about 550,000 new cases every year.Several evidences suggest that the microbiota could have a role on the inflammatory, epithelial mesenchymal transition and tumorigenesis processes promoted by HR-HPV infection, yet the mechanisms involved remain to be clarified.In this review we report the state of the art on this topic and on the most promising in vitro developed models for studying the host-pathogen interactions.Using MEDLINE, several terms were searched and combined to select the most pertinent papers.The investigation was limited to the international indexed articles published in PubMed in the last 10 years.This review reports the latest knowledge in the field of the microbial-associated anogenital tumors and HNSCC.In addition, we also discuss the in vitro epithelial culture systems that reproduce the pathophysiological features of the tumoral microenvironment and the in vivo response to microbial agents,thus representing a useful tool for analyzing at cellular and molecular levels the role played by infective agents in tumorigenesis.

    Keywords: High risk human papillomavirus, microbiota, Fusobacterium nucleatum, epithelial-mesenchymal transition, anogenital cancer, head & neck squamous cell carcinoma, colorectal cancer, transepithelial electrical resistance

    INTRODUCTION

    As referred in the last human papillomavirus (HPV) cancer report of the HPV Information Centre[1],unremitting HPV infection, mainly promoted by high-risk HPV (HR-HPV) 16 and 18 E6 and E7 oncoproteins, is the main microbial etiological factor till now recognized that is necessary, yet not sufficient, for the development of anogenital and of head & neck cancers (namely of the tonsil, tongue and oropharynx).

    Despite the progresses in vaccination and screening prevention led to the reduction of cases number[2,3],these tumors are still diffuse among the general population, with the highest mortality rate in countries with a low socio-economic level[3].

    Cervical cancer is the 3rd most frequent female tumor in the world (2nd in the age range 15-44) with about 600,000 new cases/year and a 50% mortality rate[4,5].

    In the last three decades oropharyngeal tumors, which include some 450,000 new cases/year (mostly affecting older tobacco and alcohol users worldwide), have increased also in young people, due to sexual habits changes predisposing to HR-HPV infection[6].

    It has been reported that oncogenic HPV-related oropharyngeal tumors have a better prognosis than those HPV negative[7,8].On the other hand, it is known that HR-HPV-mediated cervical oncogenesis generally develops after a long latency (about 10-30 years from infection).Thus, it remains a conundrum the fact that tumor latency and prognosis differ in the two populations of patients, regardless of the treatment and of the fact that both types of cancer share a common infective cause[9].Seemingly, HR-HPV infection is notper seenough to cause these cancers, though viruses are classified as Class 1 carcinogens by the International Agency for Research on Cancer[4].Recent evidences suggest that the microbiota of the cervical and oropharyngeal niches (that includes bacteria, protozoa, viruses and fungi, although sometimes the term specifically refers only to bacterial communities) can have both a harmful and a protective role.Further, the microbiota can influence persistent HPV-mediated inflammation, epithelial mesenchymal transition (EMT) and tumorigenesis, although the mechanisms involved are still largely unknown and controversial[10].In fact, just as a balanced bacteriota may be constituted by both pathogens and commensals, the human virota can include, among the others, both low risk and HR-HPVs, without inducing morbidity for its host if the immune surveillance and the whole microbiota itself are able to control its load and persistence[11].

    Therefore, an open question is if commensal HPV types, belonging to the human virota, play a protective role against the oncogenic ones or not[12-15].What is sure is that cancer often arises from a metabolic imbalance.Given this assumption, the metabolic profile of the microenvironment, in which host cells directly cooperate with viruses and bacteria, could reveal a snapshot of their functional and complex interactions that are at the basis of HPV infection, persistence susceptibility, inflammation, EMT,uncontrolled cell proliferation and cancer progression.

    To learn more about it, researchers have developed severalin vitroco-culture systems that could mimic the physiological appearance of the tumoral microenvironment[16].

    On this basis, the purpose of this study was to show the state of the art on epithelial carcinogenesis and on the most suitablein vitro3D models till now developed for the study of host-pathogens interactions.

    By using MEDLINE, terms such as “microbiota”, “virota”, “virus”, “epitheliotropic virus”, “HPV”,“bacteriota”,“bacteria”, “Fusobacterium nucleatum”, “Porphyromonas gingivalis”, “EMT”, “eukaryotic cells”,“keratinocytes”, “epithelial cells” “epithelial infection”, “epithelial cancer”, “anogenital cancer”, “head and neck squamous cell carcinoma (HNSCC)”, “epithelial models”, “2D”, “3D”, “3D epithelial cultures”, “rafts”,“spheroids”, “reconstructed tissues”, both in single and mutually combined, were searched in titles and abstracts in order to find PubMed indexed most pertinent articles; only original research articles published in peer review journal were considered.Papers including EBV or other epitheliotropic viruses other than HPV were excluded.

    The literature search was limited to the most recent scientific publications (10 years); six thousand and five hundred nine appropriate abstracts and full papers were carefully read and reviewed; those relevant (216)were reconsidered based on the above described inclusion and exclusion criteria and then 70 were reported in detail and included in the text.

    Overall, our findings highlight the most recent advances in the field of host-pathogens interactions.We focused on thein vitro3D modeling for the study of the microbial induced epithelial carcinogenesis and emphasized its ability in mimicking at best the role of bacteria and viruses within anin vivomicroenvironment.

    mICRObIOTa, ImmUNe RespONse aND epITHeLIaL CaNCeR

    Several studies, among which that conducted by Kyrgiouet al.[10], underlined that vaginal microbiota may drastically influence host innate immune response, infection susceptibility and cervical cancer development, but without proving causality and thus making necessary further longitudinal studies.In this direction, Ilhanet al.[17], through a triple approach based on liquid chromatography mass spectrometry,16S rRNA gene sequencing and immunoassay, evaluated and integrated the metabolic signature of the vaginal microbiota and the inflammatory status changes of 78 women, including HPV-negative/positive controls, low-/high-grade cervical-dysplasia or -cancer affected females.These authors found that unique cervicovaginal metabolites and microbes allow to discriminate clearly the affected patients from healthy subjects, thus providing novel cancer hallmarks.For example, the lipidic three-hydroxy-butyrate,eicosenoate, and oleate/vaccenate are distinctive of cancer patients, while sphingolipids, plasmalogens and linoleate positively correlate with cervicovaginal inflammation.

    Regarding this niche, the absence of dysbiosis and a dominance of peculiar gram-positive bacteria belonging to the Lactobacillus genus may inhibit several pathogens, preserve aminoacidic and nucleotide metabolisms and avoid the inflammatory state.Conversely, Fusobacterium spp.,F.nucleatumin primis, promotes cell survival, proliferation, dysregulated carcinogenesis and cervical cancer through the induction of the WNT/Beta catenin signaling pathway, as emerged by research in colorectal cancer (CRC)[12,18,19].

    Since it has been demonstrated a significant correlation between bacteria belonging to the Fusobacteria genus, mainlySneathia sanguinegens, and high-grade squamous intraepithelial lesions, they could be hired as microbiological markers of clinically significant cervical diseases[10].

    This evidence has also been observed in another study by Mitraet al.[12], who found that a relative abundance of Fusobacterium spp.associates with higher levels of cytokines such as IL-4 and TGF-1β, which have been shown to generate local immunosuppression, HPV immune evasion and cancer development.

    MoreoverF.nucleatuminversely correlates with CD3+-T cell counts, whose aberrant signaling and function is typical in cervical carcinogenesis.

    Al-Hebshiet al.[15]have reported an abundance of the periodontal pathogenF.nucleatum, selected by the tumor environment, followed to a lesser extent by Campylobacter, Parvimonas and Prevotella spp.in oral squamous cell carcinoma, while the Streptococci are frequently associated with a healthy status.

    Although the results obtained from clinical studies vary in the oral cancer associated microbiota composition, partially due to differences in the methodological approaches, the functional data consistently show an enrichment of a virulent, chronic inflammatory bacteriota that, as a passenger within the tumor environment, contributes to the worsening of the tumoral disease.

    HIGH-RIsK HpVs, mICRObIOTa, epITHeLIaL meseNCHYmaL TRaNsITION aND CaNCeR pROGessION

    As known, EMT associates with cell migration, invasion, resistance to chemotherapy and anoikis.During this process, several signaling pathways, such as those involving TGF-β, Wnt, Hedgehog, β-catenin, Notch,Nanog, STAT3 and ERK, are activated in the cell leading to a pro-metastatic behavior[20,21].In this context,EMT can be also regulated by HR-HPVs[22,23].

    Despite anogenital and oropharyngeal squamous cell carcinomas (OPSCC) promoted by these viruses have a more favorable prognosis respect to HPV negative ones, EMT usually associates with an aggressive tumoral behavior, making HPV role an open issue.In a study on a cohort of 296 OPSCC-patients, EMT was confirmed as an adverse marker of evolution of HPV related carcinomas[24].

    In another research, the expression of five EMT markers was assessed in normal and tumoral cervical tissues, revealing that E-cadherin and β-catenin expression decreases gradually, while that of N-cadherin,vimentin and fibronectin increases during malignant progression[25].Moreover, Suet al.[26]studied the role of DNA methylation of the ten-eleven translocation methyl-cytosine dioxygenase 1 (TET1), which oxidizes 5-methylcytosine to 5-hydroxymethylcytosine within cervical lesions.At a precancerous level,TET1 inhibits EMT, interacting with chromatin modifiers and downregulating mesenchymal genes such asZEB1andVIM[26].In vitroculture of cervical cancer cells revealed that p68, an ATP-dependent RNA helicase, induces EMT through the transcriptional activation of the TGF-β1 pathway, inducing cancer progression[27].

    Finally, Panget al.[28]reported that HPV18 E6 regulates YB-1 mRNA expression by promoting EMT and cervical lesion progression through the enhanced Snail expression.

    Moreover, both HPV and EMT upregulate programmed cell death ligand-1 (PD-L1) expression, an immune checkpoint and therapeutic target in OPSCC, whose efficacy is currently under investigation[29,30].Precisely, PD-L1 is overexpressed in about half of OPSCC that seem to have a better response to anti-PD-1 therapy[31].

    Regarding the involvement of bacterial microbiota in EMT,F.nucleatumhas been frequently found in stools and bioptic specimens of CRC affected patients, and more recently also of OPSCC patients.It has been suggested that this bacterium triggers EMT to malignant transformation by interacting with E-cadherin, as suggested byin vitroexperiments on NCM460 cells[32,33].In a cohort of stage III/IV CRC affected patients, Yanet al.[34]found a significant correlation between the presence ofF.nucleatumand tumor progression also in relation to chemotherapy efficacy, suggesting its role as a biomarker for atherapeutic approach improvement.Panebiancoet al.[35]also confirmed this link.Moreover, the same authors underlined that not only gut bacteria, but also the intratumor ones, may influence patients’response toward chemo- and immuno-therapeutic drugs andvice versa[36].

    More recently, it has emerged that EMT can also be promoted byPorphyromonas gingivalis, an anaerobe frequently found in chronic periodontitis.In fact, it has been observed that this bacterium causes an early EMT of chronically infected human oral epithelial cells (OECs) that, through PI3K/Akt activation,ultimately lead to the loss of E-cadherin and to the accumulation of β-catenin, together with an increased expression of Zeb1, vimentin, MMP-2, -7, and -9.Moreover, upon stimulation with this bacterium, OECs migratory capacity increases proportionally[37-39].

    BothF.nucleatumandP.gingivalisdetermine an enhanced transcription of mesenchymal markers, an increase of TGF-β1, TNF-α and EGF and a downregulation of those associated to epithelial layer integrity,as evidenced by transepithelial electrical resistance measures[40].

    Recently, a new tumor metastasis model has been proposed.Till now it was supposed that epitheliallike cancer cells acquire mesenchymal features in order to produce metastasis by exploiting the vascular system, and then switch back to an epithelial phenotype to establish the new tumor.The existence of a stable population of hybrid epithelial/mesenchymal cells, possessing epithelial and mesenchymal characteristics with both tumorigenic and metastatic properties, has been hypothesized[41,42].Moreover,in predisposed individuals, with defects in the innate immunity response or with a specific epigenetic background, bacterial or viral infections could lead to EMT, causing a chronic inflammatory state, through the activation NF-kB and MAPK[43].Considering this and the emerging role of the microbiota on EMT and cancer progression, more rational and shared laboratory models should be used to better investigate the microbiota composition[44]and its relationship with the human host.

    IN VITRO epITHeLIaL mODeLs FOR sTUDYING THe HOsT-paTHOGeNs INTeRaCTIONs

    The first studies focused on host-pathogens connections started in the 1970s with Todaro[45]and Taylor-Robinson[46], who described the interactions between oncogenic viruses and human cells, and mycoplasma pneumonia and ciliated tracheal epithelium, respectively.Since then,in vitromodels acquired popularity in the microbiology field, due to their reproducibility, higher versatility and high-throughput data acquisition respect toin vivomodels[47][Table 1][5,16,38,45-62].Undeniably, due to the improvement in imaging and screening techniques and to thein vitromodels features, nowadays it is possible to directly analyse characteristics such as: specific surface-adhesion processes (i.e., biofilm formation), spreading capabilities,immune system escapes aptitudes, migration in 3D matrices, and host’s cell-type-specific interactions in general.

    The development of functional co-culture systems mostly depends on their ability to allow the physiological growth of cellular components in optimized culture media inside trans-well devices or microfluidic chambers.In this regard, Di Giulioet al.[50]developed a model in whichStreptococcus mitiswas grown with human gingival fibroblasts in saliva sterilized stocks enriched with 1% sucrose as culture medium.With this system, the authors demonstrated thatS.mitiscan penetrate within fibroblasts, via a FAK-integrin β1-vinculin-actin mediated process, which is modulated by the saliva and the microenvironment themselves.

    Sterilized artificial saliva has also been used in more complex models such as the multi-culture trans-well system developed by Millhouseet al.[51], in which a complex multispecies biofilm, composed byS.mitis,F.nucleatum,P.gingivalisandAggregatibacter actinomycetemcomitans, was grown on a glass slide and cocultivated in a trans-well together with immortalized oral keratinocytes (OKF6-TERT2).With this system,these authors validated the efficacy of commercially available oral hygiene products.

    Table 1.Epithelial study models’ overview (images created with BioRender.com)

    Despite these findings and the evidences on the cytoskeletal modifications, the impaired proliferation rate and the gene expression changes occurring in cells infected by bacterial or viral pathogens[50,63-66],some limitations arise when more complex evaluations are required.According to the literature, the microenvironment highly modifies cells behaviour; therefore, the lack of the “3D” in manyin vitromodels reduces the transferability potential of thein vitrodata[52].This is particularly true for epitheliotropic viruses, such as HPVs, for which the intracellular expression of viral proteins is conditioned by the epithelial renewal/stratification process that cannot be detected within 2D cultures.

    In fact, most 3D models enable not only viral life cycle, but also virus induced cellular modifications.They are generally constituted by HPV infected keratinocytes, cultivated onto fibroblast repopulated matrices and let to stratify at the air-liquid interface in specific culture media.They can be easily analysed by western blot, histology, high throughput sequencing and protein-protein interaction assays.

    These models made possible to identify novel pro-oncogenic co-factors, such as p130[53]or 53BP1[5],important for investigating novel antiviral targets.

    3D RAFT (real architecture for 3D tissue) cultures also allowed to elucidate the effect of HPV chronic infection onto eukaryotic cells mitosis; as showed by Banerjeeet al.[54], HPV DNA amplification occurs during host’s cell G2 phase, despite DNA eukaryotic amplification normally occurs in the S phase; in particular, they elucidated the key role of E7 in forcing host cells permanence in the G2 phase via cyclin B1 cytoplasmic accumulation.

    Additionally, RAFT cultures are a more reliable and cheaper solution to study antiviral drugs respect to xenografts in SCID mice, since they are more suitable to be analysed byin situhybridization and RT-qPCR techniques[55].

    Moreover, they can allow the study of host-virus interactions in absence of other cell types or tissues that could hide fundamental pathways promoted by the pathogen, especially when the studies require miRNA or EMT analysis.

    As previously described, HR-HPVs E6 and E7 proteins interact and inhibit host p53 and pRb oncosuppressors respectively.Recently, the idea that E6 and E7 can also bind host miRNA or miRNA regulators has been evaluated[67].Indeed, despite HPV inability to encode for miRNAs, HPV mediated indirect regulation of both onco-suppressive or tumorigenic miRNAs may offer the opportunity to identify novel therapeutic targets.

    RaFT CULTRes, DRUG ResIsTaNCe aND emT ReseaRCH

    Regarding drug resistance and EMT markers expression analysis, RAFT cultures can overcome both 2D and spheroid cultures limitations.Melissaridouet al.[16], working with 5 HNSCC-derived cell lines grown in both 2D and spheroids assays, observed that, while 2D eukaryotic cells and spheroid conformation changes the receptor topography and gene expression, and erases the drug resistance pathways that occurin vivo, 3D cultures can better mimic what happens duringin vivotherapies and allow to study EMT expression markers such as CDH1, NANOG, SOX and EGFR.

    However, when epithelial models are necessarily to be used, spheroids utility is limited, because of the less reliability of the data they produce respect to those obtained with the organotypic models.In fact, although they are both made up of epithelial cells, spheroids morphology and structure are too much simplified and do not reproduce the mucosal epithelium in such a representative way as the 3D epithelial RAFTs do.Therefore, compared to 3D RAFTs, the spheroids are less performant for studies on the specific interactions that occur in a well-definedin vivoenvironment.

    On the other hand, RAFT cultures can be built with both isolated healthy or tumour/cancer associated keratinocytes and fibroblasts, able to better elucidate the interactions between stromal and epithelial compartments that are at the basis of the initial steps of the carcinogenetic process[56].Moreover, they recapitulate all the epithelial layers, the physiological cytokeratin differentiation and the carcinogenic process.

    By usingin vitroreconstructed epithelial systems, Hogervorstet al.[57]highlighted the importance of the papillary-reticular fibroblasts switch.In fact, when epithelial cultures are grown in presence of switched fibroblasts, the expression of CAF associated markers (α-SMA and vimentin) and EMT markers (SNAIL2,N-cadherin and ZEB1) increase, thus suggesting that the fibroblasts switch could be considered an indicator of squamous cell carcinoma (SCC) progression.Similarly, Fullaret al.[58]proved that HPV16 induces the modification of connective matrix that, by the action of epithelial Matrix Metalloproteinase MMP-7 and fibroblast-produced MMP-2, loses collagen and fibronectin in favour of laminin, thus facilitating EMT and carcinogenic events.Comparable effects on MMP super-families were also observed in other HR-HPV positive models[68].

    In agreement with the above, the last trend is to reproduce tissue models with the whole organ complexity[69]; in fact, the models have been implemented with the vascular component, with macrophages and T-cells, thus allowing to further improve the knowledge in the microbiology field[59-61].

    In line with the technological progress, in the last few years several authors have focused their attention on the bacterial-induced EMT.For instance, Sztukowskaet al.[38]showed thatP.gingivalis, associated with OPSCC development, is able in a gingival 3D equivalent to induce the expression and the nuclear relocalization of ZEB1, a well-known EMT transcriptional factor.This effect is reduced by the lack of the bacterial fimbrial FimA protein, while it is enhanced by the co-infection withF.nucleatumorS.gordonii.A similar study conducted by Leeet al.[37]showed that the carcinogenic properties ofP.gingivalisare unrelated to the presence of chronic inflammation periodontitis.In this study, the authors showed that in addition to ZEB1, also glycogen synthase kinase-3 beta (p-GSK3β), Slug, Snail, and vimentin usually increase during EMT under the influence ofP.gingivalis.Moreover, the co-infection withF.nucleatuminduces the loss of adhesive molecules such as E-cadherin and β-catenin in cancer-committed cells and the overexpression of MMP-2, -7 and -9 as showed for HPV infection[69].These findings confirm those obtained in an established periodontitis-associated oral tumorigenesis murine model used to demonstrate that bothP.gingivalisandF.nucleatuminduce tumorigenesis independently from the inflammatory status[70].In this latter study, the interaction of bacteria with the keratinocytes Toll-like receptor and the consequent activation of the IL-6-STAT3 axis was possibly involved in the tumorigenesis process.

    The above cellular models can be also used to quantify the microorganisms’ migration potential, as made by Dabija-Wolteret al.[62]whoin vitroreconstructed a gingiva to evaluate the migration ofF.nucleatumthrough a keratinized squamous epithelium without destroying it, while establishing a chronic infection[Figure 1].

    Summarizing, in the last few years, thanks to their suitability to exceed the limitations of monolayer adherent cell cultures, as well as ofin vivomodels and spheroids, 3D epithelial co-cultures have become indispensable tools for investigating the interactions between microbial agents and their hosts.

    Although several questions are still open, soon further improvements might help to generate microenvironments that also mimic the bacteria and virus migratory potential.

    CONCLUsION

    Overall this review highlights the importance of thein vitro3D modeling research field for the study of microbial induced epithelial carcinogenesis.Yet, further improvements are still needed to reach the level of complexity of the real tissue.These models will hopefully help to better understand the respective roles of virus and bacteria in HR-HPV-related cancers.

    DeCLaRaTIONs

    Acknowledgments

    Authors thank Michelle Schoeman for the linguistic revision.

    Authors’ contributions

    Wrote part of the paper and prepared Table 1: Squarzanti DF

    Wrote part of the paper and prepared Figure 1: Sorrentino R

    Designed the review article and wrote part of the paper: Azzimonti B

    Availability of data and materials

    Not applicable.

    Financial support and sponsorship

    DFS was partially supported by BioLab Srl/Probiotical SpA.

    Conflicts of interest

    All authors declared that there are no conflicts of interest.

    Ethical approval and consent to participate

    Not applicable.

    Consent for publication

    Not applicable.

    Copyright

    ? The Author(s) 2019.

    日日干狠狠操夜夜爽| 欧美一区二区精品小视频在线| 亚洲 国产 在线| 亚洲熟女毛片儿| 久热爱精品视频在线9| 久久精品91蜜桃| 999久久久国产精品视频| 国产男靠女视频免费网站| 欧美日本亚洲视频在线播放| 日韩欧美一区视频在线观看| 波多野结衣av一区二区av| avwww免费| 十八禁网站免费在线| 国产精品精品国产色婷婷| cao死你这个sao货| 这个男人来自地球电影免费观看| 又大又爽又粗| 亚洲五月婷婷丁香| 亚洲人成77777在线视频| 黄色视频不卡| 日韩三级视频一区二区三区| 1024香蕉在线观看| 在线观看免费视频网站a站| 韩国精品一区二区三区| 国产视频一区二区在线看| 国产伦一二天堂av在线观看| 成人18禁在线播放| 欧美色欧美亚洲另类二区 | 久久亚洲真实| 久久中文字幕人妻熟女| 99热只有精品国产| 1024香蕉在线观看| 99热只有精品国产| АⅤ资源中文在线天堂| 亚洲av电影在线进入| 国产伦人伦偷精品视频| 人成视频在线观看免费观看| 亚洲国产欧美一区二区综合| 久久精品91无色码中文字幕| 99riav亚洲国产免费| 亚洲人成电影免费在线| aaaaa片日本免费| 国产精品一区二区免费欧美| 一边摸一边做爽爽视频免费| 97人妻精品一区二区三区麻豆 | 99国产精品免费福利视频| 久久久久久久久久久久大奶| 国产成人啪精品午夜网站| 天天一区二区日本电影三级 | 日韩一卡2卡3卡4卡2021年| 成人亚洲精品av一区二区| 在线国产一区二区在线| 久久久久亚洲av毛片大全| 国产91精品成人一区二区三区| 国产伦人伦偷精品视频| 99久久精品国产亚洲精品| 日日爽夜夜爽网站| 999精品在线视频| 在线永久观看黄色视频| cao死你这个sao货| 精品日产1卡2卡| 亚洲国产欧美网| 亚洲精品中文字幕在线视频| 亚洲成av片中文字幕在线观看| 久久天躁狠狠躁夜夜2o2o| www.精华液| 久久精品亚洲熟妇少妇任你| 国产又色又爽无遮挡免费看| 久久久久久久久久久久大奶| 欧美黄色淫秽网站| 热re99久久国产66热| 麻豆久久精品国产亚洲av| 1024香蕉在线观看| 日韩大码丰满熟妇| 夜夜躁狠狠躁天天躁| 亚洲国产高清在线一区二区三 | 19禁男女啪啪无遮挡网站| 国产成人影院久久av| 在线播放国产精品三级| 亚洲成人久久性| 长腿黑丝高跟| 99香蕉大伊视频| 免费在线观看日本一区| 精品电影一区二区在线| av在线天堂中文字幕| 男人的好看免费观看在线视频 | 动漫黄色视频在线观看| 亚洲成人久久性| 一二三四在线观看免费中文在| 咕卡用的链子| 久久久久精品国产欧美久久久| 亚洲成a人片在线一区二区| 亚洲一卡2卡3卡4卡5卡精品中文| av福利片在线| 亚洲成a人片在线一区二区| 色av中文字幕| 久久久久精品国产欧美久久久| 免费一级毛片在线播放高清视频 | 变态另类丝袜制服| 黑丝袜美女国产一区| 日韩高清综合在线| 免费久久久久久久精品成人欧美视频| 精品国产乱子伦一区二区三区| 国产熟女xx| 久久香蕉精品热| 精品久久久久久,| 国产欧美日韩精品亚洲av| a在线观看视频网站| 青草久久国产| 91大片在线观看| 久久久久久免费高清国产稀缺| 亚洲成av片中文字幕在线观看| 久9热在线精品视频| 窝窝影院91人妻| 大型黄色视频在线免费观看| 日本a在线网址| 色av中文字幕| 不卡一级毛片| 叶爱在线成人免费视频播放| 亚洲国产精品久久男人天堂| 亚洲成人久久性| 亚洲av日韩精品久久久久久密| 性少妇av在线| 老司机在亚洲福利影院| 久久久水蜜桃国产精品网| 99香蕉大伊视频| 国产成人精品久久二区二区免费| av在线播放免费不卡| 亚洲精华国产精华精| 久久影院123| 不卡一级毛片| 成人亚洲精品一区在线观看| 成人三级做爰电影| 色播在线永久视频| 亚洲av五月六月丁香网| 两人在一起打扑克的视频| 九色国产91popny在线| 999久久久精品免费观看国产| 日韩欧美三级三区| 麻豆av在线久日| www.熟女人妻精品国产| 少妇 在线观看| 男女午夜视频在线观看| 亚洲久久久国产精品| 日韩av在线大香蕉| 黄色a级毛片大全视频| 久久人人97超碰香蕉20202| 叶爱在线成人免费视频播放| 人人澡人人妻人| 97碰自拍视频| 最近最新免费中文字幕在线| 成人欧美大片| 国产一区在线观看成人免费| 久久久久九九精品影院| 韩国av一区二区三区四区| 国产又色又爽无遮挡免费看| 久99久视频精品免费| 无限看片的www在线观看| 日韩欧美一区二区三区在线观看| 香蕉国产在线看| 91在线观看av| 黄片小视频在线播放| 人人妻人人澡人人看| 757午夜福利合集在线观看| 欧美老熟妇乱子伦牲交| 精品国产一区二区久久| 亚洲国产精品合色在线| 亚洲片人在线观看| 丝袜人妻中文字幕| 精品久久久久久久人妻蜜臀av | 亚洲人成77777在线视频| 狂野欧美激情性xxxx| 国产亚洲精品久久久久久毛片| 涩涩av久久男人的天堂| 国产亚洲精品久久久久5区| 亚洲激情在线av| 丁香欧美五月| 亚洲欧美一区二区三区黑人| 成人欧美大片| 欧美+亚洲+日韩+国产| 午夜福利一区二区在线看| 一夜夜www| √禁漫天堂资源中文www| 精品福利观看| 国产精品久久久久久精品电影 | 黄色女人牲交| 日韩一卡2卡3卡4卡2021年| 久久 成人 亚洲| 亚洲中文字幕日韩| 99精品欧美一区二区三区四区| 日本撒尿小便嘘嘘汇集6| 精品高清国产在线一区| 国产男靠女视频免费网站| 国产精品自产拍在线观看55亚洲| 午夜老司机福利片| 欧美精品啪啪一区二区三区| 一区二区日韩欧美中文字幕| 国产伦人伦偷精品视频| 久久久国产成人精品二区| 欧美一级毛片孕妇| 欧美 亚洲 国产 日韩一| 村上凉子中文字幕在线| 两个人视频免费观看高清| 亚洲成国产人片在线观看| 麻豆成人av在线观看| 精品人妻在线不人妻| 日日干狠狠操夜夜爽| 亚洲欧美精品综合久久99| 在线十欧美十亚洲十日本专区| 好男人电影高清在线观看| 叶爱在线成人免费视频播放| 国内精品久久久久久久电影| 99久久国产精品久久久| 如日韩欧美国产精品一区二区三区| 国产野战对白在线观看| 亚洲中文字幕一区二区三区有码在线看 | 久久亚洲精品不卡| 搡老岳熟女国产| 日韩精品青青久久久久久| 亚洲中文字幕一区二区三区有码在线看 | 精品久久久久久久毛片微露脸| 美女 人体艺术 gogo| 免费在线观看日本一区| 日本欧美视频一区| 亚洲九九香蕉| 日本撒尿小便嘘嘘汇集6| 国产成人免费无遮挡视频| 中文字幕人妻熟女乱码| 热re99久久国产66热| 精品国产亚洲在线| 国产一区二区激情短视频| 啪啪无遮挡十八禁网站| 黄色毛片三级朝国网站| 国产亚洲精品第一综合不卡| 亚洲一卡2卡3卡4卡5卡精品中文| 日日夜夜操网爽| 少妇粗大呻吟视频| 欧美日韩乱码在线| 天堂影院成人在线观看| 亚洲电影在线观看av| 国产私拍福利视频在线观看| 亚洲五月婷婷丁香| 欧美最黄视频在线播放免费| 神马国产精品三级电影在线观看 | 夜夜看夜夜爽夜夜摸| 日韩欧美三级三区| 亚洲av美国av| 国产午夜精品久久久久久| 久久久精品欧美日韩精品| 亚洲欧美一区二区三区黑人| 国产高清videossex| 欧美日韩精品网址| 亚洲激情在线av| 中亚洲国语对白在线视频| 国产熟女xx| 女人高潮潮喷娇喘18禁视频| 最近最新中文字幕大全免费视频| 亚洲第一电影网av| 成年版毛片免费区| 午夜福利,免费看| 青草久久国产| 精品国产乱子伦一区二区三区| 少妇粗大呻吟视频| 国产三级黄色录像| 国内久久婷婷六月综合欲色啪| 757午夜福利合集在线观看| 男人舔女人下体高潮全视频| 国产av又大| 成人国产综合亚洲| 黄色女人牲交| 欧美日韩福利视频一区二区| 成人特级黄色片久久久久久久| 满18在线观看网站| 欧美中文综合在线视频| 动漫黄色视频在线观看| 天堂√8在线中文| 亚洲七黄色美女视频| 成人18禁在线播放| 午夜福利高清视频| 中文字幕人妻熟女乱码| 精品久久久久久久久久免费视频| 久久狼人影院| 欧美色欧美亚洲另类二区 | 久久精品国产亚洲av高清一级| 中出人妻视频一区二区| 午夜福利高清视频| 亚洲国产精品成人综合色| 国产熟女xx| 美女午夜性视频免费| 欧美乱妇无乱码| 丝袜美足系列| 国产主播在线观看一区二区| 美女午夜性视频免费| 两性夫妻黄色片| 久久人妻av系列| 在线观看免费视频网站a站| 亚洲国产精品成人综合色| 91精品国产国语对白视频| 久久久久亚洲av毛片大全| а√天堂www在线а√下载| 成熟少妇高潮喷水视频| 少妇粗大呻吟视频| 男人的好看免费观看在线视频 | 国产高清有码在线观看视频 | 黄色 视频免费看| 国产精品香港三级国产av潘金莲| 成年人黄色毛片网站| 熟女少妇亚洲综合色aaa.| 侵犯人妻中文字幕一二三四区| 国产高清有码在线观看视频 | 亚洲视频免费观看视频| 亚洲一卡2卡3卡4卡5卡精品中文| 色哟哟哟哟哟哟| 99国产综合亚洲精品| 怎么达到女性高潮| 一级毛片高清免费大全| 97人妻精品一区二区三区麻豆 | 成人特级黄色片久久久久久久| 成人国产综合亚洲| 午夜福利一区二区在线看| 亚洲精品粉嫩美女一区| 国产精品日韩av在线免费观看 | 亚洲在线自拍视频| 精品乱码久久久久久99久播| 女人被狂操c到高潮| 天天躁夜夜躁狠狠躁躁| 久久久久国内视频| 欧美日韩亚洲综合一区二区三区_| 桃色一区二区三区在线观看| 亚洲成a人片在线一区二区| 午夜免费激情av| 免费搜索国产男女视频| 夜夜爽天天搞| 日日干狠狠操夜夜爽| 久99久视频精品免费| 少妇熟女aⅴ在线视频| 免费少妇av软件| 国产精品一区二区三区四区久久 | 在线av久久热| 高潮久久久久久久久久久不卡| 一进一出抽搐gif免费好疼| 91麻豆精品激情在线观看国产| 国产精品久久久人人做人人爽| 午夜亚洲福利在线播放| 国产熟女午夜一区二区三区| 精品一区二区三区av网在线观看| 国产成+人综合+亚洲专区| 美女大奶头视频| 免费在线观看亚洲国产| 宅男免费午夜| xxx96com| 国产欧美日韩精品亚洲av| 亚洲情色 制服丝袜| 亚洲精品在线观看二区| 久久这里只有精品19| 欧美不卡视频在线免费观看 | 国产av在哪里看| 丝袜美腿诱惑在线| √禁漫天堂资源中文www| 欧美亚洲日本最大视频资源| 亚洲成av片中文字幕在线观看| 亚洲一区高清亚洲精品| 女同久久另类99精品国产91| 免费看美女性在线毛片视频| 麻豆一二三区av精品| 欧美黑人精品巨大| 大香蕉久久成人网| 亚洲成人久久性| 国产精品精品国产色婷婷| netflix在线观看网站| 18禁国产床啪视频网站| 成人18禁高潮啪啪吃奶动态图| 国产野战对白在线观看| 在线av久久热| 国产欧美日韩一区二区三区在线| 国产精品秋霞免费鲁丝片| 曰老女人黄片| cao死你这个sao货| 精品国产国语对白av| 久久久精品欧美日韩精品| 亚洲欧美精品综合久久99| 欧美av亚洲av综合av国产av| 可以在线观看的亚洲视频| 大型黄色视频在线免费观看| 久久久久久久精品吃奶| 麻豆成人av在线观看| 日韩大码丰满熟妇| 色老头精品视频在线观看| 欧美激情 高清一区二区三区| 欧美黄色淫秽网站| 国产在线观看jvid| 免费在线观看亚洲国产| 一级黄色大片毛片| 大香蕉久久成人网| 两性午夜刺激爽爽歪歪视频在线观看 | 熟女少妇亚洲综合色aaa.| 亚洲国产看品久久| 一卡2卡三卡四卡精品乱码亚洲| 午夜精品国产一区二区电影| 午夜精品久久久久久毛片777| 国产精品一区二区精品视频观看| 琪琪午夜伦伦电影理论片6080| 看黄色毛片网站| 国产精品精品国产色婷婷| 精品一区二区三区av网在线观看| 老汉色av国产亚洲站长工具| 亚洲欧洲精品一区二区精品久久久| 免费av毛片视频| 国产成人欧美在线观看| 一a级毛片在线观看| 亚洲人成电影免费在线| 国产精品影院久久| 国产熟女午夜一区二区三区| 此物有八面人人有两片| 一区在线观看完整版| 亚洲全国av大片| 高清黄色对白视频在线免费看| 欧美日韩精品网址| 免费高清在线观看日韩| 精品一区二区三区av网在线观看| 久久精品国产亚洲av香蕉五月| 国产激情久久老熟女| 欧美+亚洲+日韩+国产| 女人精品久久久久毛片| 亚洲专区中文字幕在线| 国产亚洲欧美98| 亚洲中文字幕一区二区三区有码在线看 | 久久久国产成人免费| 午夜福利高清视频| 久久精品91无色码中文字幕| 亚洲一区二区三区色噜噜| 亚洲国产欧美一区二区综合| 精品一区二区三区视频在线观看免费| 中亚洲国语对白在线视频| 久久精品91蜜桃| 亚洲黑人精品在线| 精品一区二区三区视频在线观看免费| 久久人妻熟女aⅴ| 亚洲一区中文字幕在线| 久久久久久久午夜电影| 99国产精品一区二区三区| 黄片小视频在线播放| 中文字幕人妻熟女乱码| 美女国产高潮福利片在线看| av超薄肉色丝袜交足视频| 国产99白浆流出| 亚洲,欧美精品.| 色综合欧美亚洲国产小说| 国产主播在线观看一区二区| 国产成人欧美在线观看| 色综合亚洲欧美另类图片| 99久久综合精品五月天人人| 国产精品,欧美在线| 国产精品亚洲av一区麻豆| 男女下面进入的视频免费午夜 | 性少妇av在线| 久久久久久人人人人人| 色精品久久人妻99蜜桃| 欧美不卡视频在线免费观看 | 美国免费a级毛片| 满18在线观看网站| 日韩国内少妇激情av| 一个人观看的视频www高清免费观看 | av天堂久久9| 久久婷婷成人综合色麻豆| 亚洲一码二码三码区别大吗| 欧美日本视频| 色播亚洲综合网| 岛国在线观看网站| 国产伦人伦偷精品视频| 亚洲欧美日韩另类电影网站| 日韩av在线大香蕉| 在线国产一区二区在线| cao死你这个sao货| 亚洲国产精品合色在线| 欧美成狂野欧美在线观看| 国产精品98久久久久久宅男小说| 精品免费久久久久久久清纯| 丁香六月欧美| 亚洲精品中文字幕一二三四区| 看黄色毛片网站| 亚洲久久久国产精品| 91在线观看av| 亚洲中文av在线| 91老司机精品| 日本免费一区二区三区高清不卡 | 妹子高潮喷水视频| 中亚洲国语对白在线视频| 12—13女人毛片做爰片一| 国产一区二区三区在线臀色熟女| 50天的宝宝边吃奶边哭怎么回事| 国产91精品成人一区二区三区| 精品久久久久久久人妻蜜臀av | 午夜免费激情av| 岛国在线观看网站| 黄色视频,在线免费观看| 日韩精品中文字幕看吧| 午夜福利免费观看在线| 精品福利观看| 制服丝袜大香蕉在线| 一本综合久久免费| 国产精品自产拍在线观看55亚洲| 一级a爱视频在线免费观看| 国产精品久久久久久人妻精品电影| 少妇熟女aⅴ在线视频| 给我免费播放毛片高清在线观看| 一边摸一边做爽爽视频免费| cao死你这个sao货| 12—13女人毛片做爰片一| 这个男人来自地球电影免费观看| 亚洲色图av天堂| 中文字幕人妻熟女乱码| 黄色 视频免费看| 免费搜索国产男女视频| 午夜激情av网站| 一级,二级,三级黄色视频| 999久久久国产精品视频| 久99久视频精品免费| 999精品在线视频| 少妇的丰满在线观看| 亚洲精品在线观看二区| 69av精品久久久久久| 每晚都被弄得嗷嗷叫到高潮| 久久九九热精品免费| 村上凉子中文字幕在线| 桃色一区二区三区在线观看| 亚洲av成人不卡在线观看播放网| 午夜亚洲福利在线播放| 久久精品亚洲熟妇少妇任你| 欧美激情 高清一区二区三区| 亚洲国产日韩欧美精品在线观看 | 精品久久久久久久人妻蜜臀av | 久久久久久人人人人人| 亚洲五月婷婷丁香| 99国产精品一区二区三区| 欧美乱妇无乱码| 亚洲专区国产一区二区| 久久久久久久久久久久大奶| 亚洲全国av大片| 99久久国产精品久久久| 亚洲五月色婷婷综合| 性少妇av在线| 男人舔女人的私密视频| 一区在线观看完整版| 国产一区在线观看成人免费| 色综合欧美亚洲国产小说| 村上凉子中文字幕在线| 黄片播放在线免费| 亚洲视频免费观看视频| √禁漫天堂资源中文www| 久久久国产精品麻豆| 99国产精品99久久久久| 久久天躁狠狠躁夜夜2o2o| 亚洲欧美精品综合一区二区三区| 欧美成人性av电影在线观看| 女人被躁到高潮嗷嗷叫费观| 99久久国产精品久久久| 亚洲精品在线美女| 在线av久久热| 人人妻,人人澡人人爽秒播| 女人精品久久久久毛片| 男女床上黄色一级片免费看| 国产成人av激情在线播放| 他把我摸到了高潮在线观看| 99久久99久久久精品蜜桃| 丝袜美腿诱惑在线| 成人精品一区二区免费| 嫩草影院精品99| 又黄又粗又硬又大视频| 成年人黄色毛片网站| 黄色 视频免费看| 成人手机av| 亚洲国产精品999在线| 久久久久久亚洲精品国产蜜桃av| 久久久久亚洲av毛片大全| 最近最新中文字幕大全电影3 | 热re99久久国产66热| 国产精品久久视频播放| 在线观看免费视频日本深夜| 国产三级黄色录像| 国产亚洲av高清不卡| 免费看十八禁软件| 久久久国产欧美日韩av| 99久久综合精品五月天人人| 午夜影院日韩av| 久久热在线av| 岛国视频午夜一区免费看| 国产成人av激情在线播放| 日韩av在线大香蕉| 国产精品乱码一区二三区的特点 | 女人精品久久久久毛片| 亚洲av美国av| 色综合欧美亚洲国产小说| 男女做爰动态图高潮gif福利片 | 国产在线精品亚洲第一网站| 欧美日本中文国产一区发布| √禁漫天堂资源中文www| 国产成人欧美| 日日干狠狠操夜夜爽| 欧美最黄视频在线播放免费| 亚洲成av片中文字幕在线观看| 人人妻人人澡人人看| 女人高潮潮喷娇喘18禁视频| 免费女性裸体啪啪无遮挡网站| 天天添夜夜摸| 免费搜索国产男女视频| 久久人妻av系列| 精品久久久久久,| 黄色片一级片一级黄色片| 亚洲欧美激情在线| 亚洲九九香蕉| 久久青草综合色| 欧美黄色片欧美黄色片| 夜夜夜夜夜久久久久| 黑人巨大精品欧美一区二区mp4|