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117701por Zhou, Yanmeng, Xu, Bingbing, Yu, Haiyang, Zhao, Wei, Song, Xinxin, Liu, Yan, Wang, Kainan, Peacher, Nikoli, Zhao, Xiaomin, Zhang, Han-Ting“…Flow cytometry was used to measure neuronal apoptosis and reactive oxygen species (ROS) induced by H(2)O(2). …”
Publicado 2021
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117702por Cheung, Belamy B., Kleynhans, Ane, Mittra, Rituparna, Kim, Patrick Y., Holien, Jessica K., Nagy, Zsuzsanna, Ciampa, Olivia C., Seneviratne, Janith A., Mayoh, Chelsea, Raipuria, Mukesh, Gadde, Satyanarayana, Massudi, Hassina, Wong, Iris Poh Ling, Tan, Owen, Gong, Andrew, Suryano, Aldwin, Diakiw, Sonya M., Liu, Bing, Arndt, Greg M., Liu, Tao, Kumar, Naresh, Sangfelt, Olle, Zhu, Shizhen, Norris, Murray D., Haber, Michelle, Carter, Daniel R., Parker, Michael W., Marshall, Glenn M.“…Effects of drug combinations on cell viability, proliferation, apoptosis and colony forming were assessed in a panel of neuroblastoma cell lines. …”
Publicado 2021
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117703por Digregorio, Marina, Coppieters, Natacha, Lombard, Arnaud, Lumapat, Paul Noel, Scholtes, Felix, Rogister, Bernard“…Out of the two B7-H3 isoforms, only 2IgB7-H3 was detected in non-cancerous brain tissue, whereas 4IgB7-H3 was specific for GBM. 2IgB7-H3 expression was higher in GBM recurrences and increased resistance to temozolomide-mediated apoptosis. To conclude, 4IgB7-H3 is an interesting candidate for GBM targeted therapies, while 2IgB7-H3 could be involved in recurrence through resistance to chemotherapy. …”
Publicado 2021
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117704por Jiang, Fengjie, Tang, Xiaozhu, Tang, Chao, Hua, Zhen, Ke, Mengying, Wang, Chen, Zhao, Jiamin, Gao, Shengyao, Jurczyszyn, Artur, Janz, Siegfried, Beksac, Meral, Zhan, Fenghuang, Gu, Chunyan, Yang, Ye“…The depletion of HNRNPA2B1 in MM cells inhibited cell proliferation and induced apoptosis. On the contrary, the overexpression of HNRNPA2B1 promoted cell proliferation in vitro and in vivo. …”
Publicado 2021
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117705por Fonar, Gennadiy, Polis, Baruh, Sams, Dev Sharan, Levi, Almog, Malka, Assaf, Bal, Natalia, Maltsev, Alexander, Elliott, Evan, Samson, Abraham O.“…We report that mToxin reversibly inhibits α7AChR, though it attenuates Aβ-induced synaptic transmission abnormalities, and upregulates pathways supporting long-term potentiation and reducing apoptosis. Remarkably, mToxin demonstrates no toxicity in brain slices and mice. …”
Publicado 2021
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117706Targeting CXCR2 inhibits the progression of lung cancer and promotes therapeutic effect of cisplatinpor Cheng, Yuan, Mo, Fei, Li, Qingfang, Han, Xuejiao, Shi, Houhui, Chen, Siyuan, Wei, Yuquan, Wei, Xiawei“…Inhibition of CXCR2 promoted apoptosis, senescence, epithelial-to-mesenchymal transition (EMT), and anti-proliferation of lung cancer cells. …”
Publicado 2021
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117707por Cao, Guanghui, Zhang, Chan, Tian, Xiangyong, Jing, Gaopeng, Zhou, Xiaolin, Yan, Tianzhong“…RESULTS: circCEP128 and SDC1 were highly expressed and miR-515-5p was low expressed in bladder cancer tissues and cells. circCEP128 knockdown hindered cell proliferation, migration and invasion and promoted cell apoptosis in bladder cancer. circCEP128 loss increased miR-515-5p expression through direct interaction in bladder cancer cells. …”
Publicado 2021
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117708por Tijsen, Anke J., Cócera Ortega, Lucía, Reckman, Yolan J., Zhang, Xiaolei, van der Made, Ingeborg, Aufiero, Simona, Li, Jiuru, Kamps, Selina C., van den Bout, Anouk, Devalla, Harsha D., van Spaendonck-Zwarts, Karin Y., Engelhardt, Stefan, Gepstein, Lior, Ware, James S., Pinto, Yigal M.“…Selective loss of cTTN1 in human induced pluripotent stem cell–derived cardiomyocytes induced structural abnormalities, apoptosis, and reduced contractile force in engineered heart tissue. …”
Publicado 2021
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117709por Kim, Hyun-Kyoung, Lee, Geum-Hwa, Bhattarai, Kashi Raj, Lee, Myung-Shik, Back, Sung Hoon, Kim, Hyung-Ryong, Chae, Han-Jung“…TMBIM6 (transmembrane BAX inhibitor motif containing 6) is a Ca(2+) channel-like protein known to regulate ER stress response and apoptosis. In this study, we examined the as yet unknown role of TMBIM6 in regulating lysosomal Ca(2+) levels. …”
Publicado 2020
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117710por Zhu, Jane, Tran, Ly, Zheng, Frank, James, Judith, Guthridge, Joel, Chong, Benjamin“…Consequently, a novel approach in gene expression analyses was devised that groups genes into transcriptional modules (i.e., apoptosis, protein synthesis, inflammation) to identify important themes and relevant genes. …”
Publicado 2021
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117711por Tomić, Sergej, Petrović, Anđelija, Puač, Nevena, Škoro, Nikola, Bekić, Marina, Petrović, Zoran Lj., Čolić, Miodrag“…PAM induced an accumulation of reactive oxygen species (ROS), autophagy, apoptosis, and necrosis in a concentration-dependent manner. …”
Publicado 2021
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117712por Sun, Chao, Li, Bo, Duan, Huiquan, Tao, Bo, Zhao, Chenxi, Li, Wenxiang, Pang, Yilin, Fan, Baoyou, Feng, Shiqing“…CONCLUSIONS: The PI3K-Akt, Jak-STAT signaling pathway and apoptosis might participate in SCI restoration by NTP, while the MAPK and NOD-like receptor signaling pathway may participated in repairing SCI with NM. …”
Publicado 2021
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117713por Lake, Camille M., Voss, Kelsey, Bauman, Bradly M., Pohida, Katherine, Jiang, Timothy, Dveksler, Gabriela, Snow, Andrew L.“…Restimulation-induced cell death (RICD) is one such mechanism where by activated T cells receive subsequent antigenic stimulation, reach a critical signal threshold through the T cell receptor (TCR), and commit to apoptosis. Many details of this process remain unclear, including the role of co-stimulatory and co-inhibitory proteins that influence the TCR signaling cascade. …”
Publicado 2021
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117714“…Furthermore, ablation of Mfn2 alleviated SERCA2a-induced mitochondrial calcium overload and subsequent mito-apoptosis in the context of CMEC hypoxic injury. In vivo, compared with that in wild-type mice, the myocardial infarct size in Mfn2(KO) mice was significantly decreased. …”
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117715“…Since excessive levels of ROS can trigger apoptosis, treating cancer cells with ROS-stimulating agents may enhance their death. …”
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117716por Xie, Ning, Pan, Yifei, Wu, Jian, Bai, Yunfan, Xiao, Cailan, Gao, Xiaoliang, Wang, Jinhai, Liu, Na“…Further functional experiments demonstrate that ARL4C silencing leads to cell cycle arrest and increased cell apoptosis in AGS and MKN45 cells. CONCLUSION: Our data suggest that miR-302c and miR-302d may function as the upstream regulators of ARL4C. …”
Publicado 2021
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117717“…The mRNAs were mainly associated with “Innate immune system”, “Apoptosis”, as well as “NGF signaling” pathways. A multilayer regulatory network was constructed and several hub-DEGs (Tp53, STAT3, Jun, etc.), DEmiRs (miR-124, let-7b, etc.), TFs (NF-kB, etc.), and lncRNAs (HOTAIR, etc.) were introduced as potential factors in the pathogenesis of IgAN. …”
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117718por Wang, Zaizhong, Cheng, Lulu, Shang, Zhigang, Li, Zhihui, Zhao, Yuping, Jin, Wenwen, Li, Yingyue, Su, Fangchu, Mao, Xiaobo, Chen, Chuanliang, Zhang, Jianhua“…Conclusion: Wogonin might promote the apoptosis of glioma cells by upregulating proapoptotic factors, downregulating antiapoptotic factors, and inhibiting the inflammatory response, thereby inhibiting glioma progression.…”
Publicado 2021
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117719por Wu, Jia-qi, Mao, Lin-bo, Liu, Ling-feng, Li, Yong-mei, Wu, Jian, Yao, Jiao, Zhang, Feng-huan, Liu, Ting-yu, Yuan, Ling“…GO function and KEGG pathway enrichment analysis, among which endoplasmic reticulum, protein export, RNA transport, and apoptosis was the most significant dysregulated pathway. …”
Publicado 2021
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117720por Dasgupta, Subham, Dunham, Cheryl L., Truong, Lisa, Simonich, Michael T., Sullivan, Christopher M., Tanguay, Robyn L.“…These common miRs were also predicted to regulate a network of differentially expressed genes with diverse functions, including apoptosis, neurodevelopment, lipid regulation and inflammation. …”
Publicado 2021
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