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661por Okur, Fatma Visal, Cevher, İnci, Özdemir, Cansu, Kocaefe, Çetin, Çetinkaya, Duygu Uçkan“…METHODS: Two different integration-free gene transfer methods (episomal and Sendai viral vectors) were tested and compared on the same set of patient samples exhibiting three different mutations associated with osteopetrosis. …”
Publicado 2019
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662por Wang, Li, Qiao, Xinyuan, Zhang, Sijia, Qin, Yue, Guo, Tiantian, Hao, Zhenye, Sun, Li, Wang, Xiaona, Wang, Yanan, Jiang, Yanping, Tang, Lijie, Xu, Yigang, Li, Yijing“…Abbreviations: TCID50: 50% tissue culture infectious dose; DMEM: Dulbecco’s Modified Eagle Medium; eNOS: Endothelial nitric oxide synthase; FBS: fetal bovine serum; IFA: Indirect immunofluorescence; IκB: inhibitor of nuclear factor kappa-B; IL: interleukin; IPEC-J2: intestinal epithelial cell lines J2; IKK: IκB kinase; Luc: luciferase reporter gene; mAbs: monoclonal antibodies; MOI: multiple of infection; Nsp: nonstructural protein; NF-κB: nuclear factor-kappa ; ORFs: open reading frames; PBS: phosphate-buffered saline; p65 p-p65: phosphorylated; RT-PCR: reverse transcription PC; SeV: Sendai virus; ST: swine testicular; TGEV: Transmissible gastroenteritis virus; TNF-α: tumor necrosis factor α; UV-TGEV: Ultraviolet light-inactivated TGEV; ZnF: zinc finger…”
Publicado 2018
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663“…Three days post-transfection, the cells were challenged by Sendai virus. The Human Antiviral Response PCR array system (Qiagen) was used to profile the antiviral gene expression in HEK-293 cells, using the fold regulation comparison and the manual normalisation methods. …”
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664por Tobias, Ian C., Kao, Mian-Mian C., Parmentier, Thomas, Hunter, Hailey, LaMarre, Jonathan, Betts, Dean H.“…METHODS: To better characterize the initial steps of pluripotency induction in canine somatic cells, we optimized an experimental system where canine fetal fibroblasts (cFFs) are transduced with the Yamanaka reprogramming factors by Sendai virus vectors. We use quantitative PCR arrays to measure the expression of 80 target genes at various stages of canine cell reprogramming. …”
Publicado 2020
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665por Portier, Lucie, Desterke, Christophe, Chaker, Diana, Oudrhiri, Noufissa, Asgarova, Afag, Dkhissi, Fatima, Turhan, Ali G., Bennaceur-Griscelli, Annelise, Griscelli, Frank“…Using peripheral blood mononuclear cells (PBMCs) of these two affected family members and two normal (BRCA1+/+) individuals, we established a number of iPSC clones via non-integrating Sendai virus-based delivery of the four OCT4, SOX2, KLF4, and c-MYC factors. …”
Publicado 2021
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666“…In this study, we confirm the ability of N(pro) to inhibit dsRNA-mediated apoptosis and show that N(pro) is also able to antagonize Sendai virus (SeV)-mediated apoptosis in PK-15 cells. …”
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667por Li, Aixin, Zhao, Kaitao, Zhang, Bei, Hua, Rong, Fang, Yujie, Jiang, Wuhui, Zhang, Jing, Hui, Lixia, Zheng, Yingcheng, Li, Yan, Zhu, Chengliang, Wang, Pei-Hui, Peng, Ke, Xia, Yuchen“…Moreover, IFN-β production induced by Sendai virus (SeV) infection or other stimulus was not affected by NSP12 at mRNA or protein level. …”
Publicado 2021
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668por Welch, Michael, Krueger, Karen, Zhang, Jianqiang, Piñeyro, Pablo, Magtoto, Ronaldo, Wang, Chong, Giménez-Lirola, Luis, Strait, Erin, Mogler, Mark, Gauger, Phillip“…It is closely related to bovine parainfluenza virus 3, human parainfluenza virus 1, and Sendai virus. Recent reports suggest PPIV-1 is widespread in swine herds in the United States and abroad. …”
Publicado 2022
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669por Chen, Jian, Liu, Jian, Chen, Zhilu, Peng, Haoran, Zhu, Cuisong, Feng, Daobin, Zhang, Shuye, Zhao, Ping, Zhang, Xiaoyan, Xu, Jianqing“…We identified that ACE2 was significantly upregulated by SARS-CoV-2 and Sendai virus (SeV) infection, and exogenous expression of ACE2 suppressed IFN-I production in a dose-dependent manner. …”
Publicado 2022
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670por Naik, Nenavath Gopal, Lee, See-Chi, Veronese, Beatriz H. S., Ma, Zhe, Toth, Zsolt“…We also found that NSP5 can inhibit Sendai virus-, RNA sensor-, and DNA sensor-mediated induction of IFNβ promoter, block the IFN response pathway, and reduce the expression of IFN-stimulated genes. …”
Publicado 2022
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671por Qiu, Haori, Yang, Bincai, Chen, Yuhai, Zhu, Qianwen, Wen, Faxin, Peng, Min, Wang, Guoqing, Guo, Guijie, Chen, Biao, Maarouf, Mohamed, Fang, Min, Chen, Ji-Long“…Furthermore, circMerTK overexpression or silencing accelerated or impeded IAV and Sendai virus replication, respectively. Silencing circMerTK enhanced the production of type I IFNs and interferon-stimulating genes (ISGs), whereas circMerTK overexpression suppressed their expression at both the mRNA and protein levels. …”
Publicado 2023
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672por Liu, Wei, Ma, Zhenling, Wu, Yaru, Yuan, Cui, Zhang, Yanyan, Liang, Zeyang, Yang, Yu, Zhang, Wenwen, Jiao, Pengtao“…Ectopic expression of MST4 suppressed the Poly (I:C) (polyino-sinic-polycytidylic acid)- and Sendai virus (SeV)-triggered production of type I IFN, while the knockdown of MST4 enhanced the production of type I IFN. …”
Publicado 2022
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673por Nagata, Shohei, Nakaya, Tomoki, Hanibuchi, Tomoya, Nakaya, Naoki, Hozawa, Atsushi“…METHODS: The samples of this study were users whose GPS logs were obtained in Sendai City, Miyagi Prefecture, Japan, during October 2019 (37,460 users, 36,059,000 logs), and some logs included information on daily step counts (731 users, 450,307 logs). …”
Publicado 2022
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674por Cai, Dongsheng, Wang, Xiaochen, Sun, Yaxun, Fan, Hangping, Zhou, Jingjun, Yang, Zongkuai, Qiu, Hangyuan, Wang, Jue, Su, Jun, Gong, Tingyu, Jiang, Chenyang, Liang, Ping“…Control and BrS patient-specific induced pluripotent stem cells (iPSCs) were generated from skin fibroblasts using nonintegrated Sendai virus. All iPSCs were differentiated into cardiomyocytes using monolayer-based differentiation protocol. …”
Publicado 2023
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675por Saito, Akiko, Ooki, Akio, Nakamura, Takashi, Onodera, Shoko, Hayashi, Kamichika, Hasegawa, Daigo, Okudaira, Takahito, Watanabe, Katsuhito, Kato, Hiroshi, Onda, Takeshi, Watanabe, Akira, Kosaki, Kenjiro, Nishimura, Ken, Ohtaka, Manami, Nakanishi, Mahito, Sakamoto, Teruo, Yamaguchi, Akira, Sueishi, Kenji, Azuma, Toshifumi“…METHODS: Two cases of CCD patient-derived induced pluripotent stem cells (CCD-iPSCs) were generated using retroviral vectors (OCT3/4, SOX2, KLF4, and c-MYC) or a Sendai virus SeVdp vector (KOSM302L). Reverted iPSCs were established using programmable nucleases, clustered regularly interspaced short palindromic repeats (CRISPR)/Cas-derived RNA-guided endonucleases, to correct mutations in CCD-iPSCs. …”
Publicado 2018
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676por Medinsky, M.A., Bechtold, W.E., Birnbaum, L.S., Bond, J.A., Burt, D.G., Cheng, Y.S., Gillett, N.A., Gulati, D.K., Hobbs, C.H., Pickrell, J.A.“…Viral titers for rats exposed to 50 mg ADA/m(3) were negative for Sendai virus and pneumonia virus of mice, which produce similar lesions. …”
Publicado 1990
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677por Xu, Yanjun, De Rosa, Maria Caterina, Quarta, Carmelo, Fisette, Alexander, Rausch, Richard, Fleischman, Amy Debra, Tschöp, Matthias H, García-Cáceres, Cristina, Hirschhorn, Joel N, Doege, Claudia A, Thaker, Vidhu V“…Peripheral mononuclear cells (PBMCs) from selected families were collected to generate induced pluripotent stem cells using non-integrating Sendai virus. Differentiation into disease-relevant hypothalamic neurons was performed using the published protocol (2). …”
Publicado 2020
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678por Hathy, Edit, Szabó, Eszter, Varga, Nóra, Erdei, Zsuzsa, Tordai, Csongor, Czehlár, Boróka, Baradits, Máté, Jezsó, Bálint, Koller, Júlia, Nagy, László, Molnár, Mária Judit, Homolya, László, Nemoda, Zsófia, Apáti, Ágota, Réthelyi, János M.“…METHODS: We identified a male SZ patient characterized by early disease onset and negative symptoms, who is a carrier of 3 non-synonymous DNMs in genes LRRC7, KHSRP, and KIR2DL1. iPSC lines were generated from his and his parents’ peripheral blood mononuclear cells using Sendai virus-based reprogramming and differentiated into neuronal progenitor cells (NPCs) and hippocampal dentate gyrus granule cells. …”
Publicado 2020
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679por Mishra, Gyan Prakash, Jha, Atimukta, Ahad, Abdul, Sen, Kaushik, Sen, Aishwarya, Podder, Sreeparna, Prusty, Subhasish, Biswas, Viplov Kumar, Gupta, Bhawna, Raghav, Sunil Kumar“…Consequently, the NCoR1 depleted cDC1 showed reduced Sendai Virus (SeV) clearance and cytotoxic potential of CD8(+) T cells upon TLR3 activation. …”
Publicado 2022
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680por Chen, Jiyao, Li, Zhuang, Guo, Jiahui, Xu, Shangen, Zhou, Junwei, Chen, Qian, Tong, Xue, Wang, Dang, Peng, Guiqing, Fang, Liurong, Xiao, Shaobo“…Furthermore, SARS-CoV-2 nsp5 exhibited stronger inhibition of Sendai virus (SEV)-induced interferon beta (IFN-β) production than SARS-CoV-2 nsp5 (S46A), while introduction of the A46S substitution in SARS-CoV nsp5 enhanced suppression of SEV-induced IFN-β production. …”
Publicado 2022
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