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120221por Chatterjee, Anuja, van de Wetering, Gijs, Goeree, Ron, Owen, Carolyn, Desbois, Anne Marie, Barakat, Stephane, Manzoor, Beenish S., Sail, Kavita“…BACKGROUND: Venetoclax is a first-in-class targeted therapy option that is an inducer of apoptosis in chronic lymphocytic leukemia (CLL) cells. …”
Publicado 2022
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120222por Zhou, Tianxing, Xie, Yongjie, Hou, Xupeng, Bai, Weiwei, Li, Xueyang, Liu, Ziyun, Man, Quan, Sun, Jingyan, Fu, Danqi, Yan, Jingrui, Zhang, Zhaoyu, Wang, Yifei, Wang, Hongwei, Jiang, Wenna, Gao, Song, Zhao, Tiansuo, Chang, Antao, Wang, Xiuchao, Sun, Hongxia, Zhang, Xiufeng, Yang, Shengyu, Huang, Chongbiao, Hao, Jihui, Liu, Jing“…The effects of the compounds were evaluated with a CellTiter-Glo-3D assay, organoid apoptosis assay and in vivo patient-derived xenograft (PDX), patient-derived organoid (PDO) and LSL-Kras(G12D/+); LSL-Trp53(R172H/+); Pdx1-Cre (KPC) genetically engineered mouse models. …”
Publicado 2023
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120223por Liu, Feng, Zhou, Qian, Jiang, Hai-feng, Zhang, Ting-ting, Miao, Cheng, Xu, Xiao-hong, Wu, Jia-xing, Yin, Song-lin, Xu, Shi-jie, Peng, Jing-yi, Gao, Pan-pan, Cao, Xuan, Pan, Feng, He, Ximiao, Chen, Xiao Qian“…PL restored ROS level (mainly via reversing Duox2/Gpx2), activated oxidative stress/inflammation/immune responses signature genes, reduced cancer cell proliferation/invasion, increased apoptosis and CD3(+)/CD4(+)/CD8(+) T-lymphocytes in G422(TN)-tumor on the basis of RT/TMZ regimen. …”
Publicado 2023
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120224“…Additionally, qRT-PCR was used to quantify genes having a role in drug resistance phenotype (ABCB1, ABCC1, ABCC2, ABCC3, ABCC4, ABCC5, and ABCG2); apoptosis (caspases-3, and -7, Bcl2, Bax, and p53); anti-oxidation (NRF2); expression of melatonin receptors (MT1, MT2, and MT3); besides, programmed death receptor PD-1 gene. …”
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120225por Feng, Wen-Qing, Zhang, Yu-Chen, Xu, Zhuo-Qing, Yu, Su-Yue, Huo, Jian-ting, Tuersun, Abudumaimaitijiang, Zheng, Min-Hua, Zhao, Jing-Kun, Zong, Ya-Ping, Lu, Ai-Guo“…The expression of pyroptosis associated proteins including cleaved caspase-4, cleaved gasdermin-D (GSDMD), IL-1β, receptor activator of nuclear NOD-like receptor family pyrin domain containing 3 (NLRP3), apoptosis-associated speck like protein containing a card (ASC), and factor-kappa B was measured through western blotting. …”
Publicado 2023
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120226por Song, Ruiyao, Guo, Yunchu, Fu, Yu, Ren, Hongling, Wang, Hairong, Yan, Hongting, Ge, Yusong“…The hotpots of mitochondrial dysfunction in AD were as follows: “oxidative stress,” “amyloid-beta-protein,” “tau,” “apoptosis,” “inflammation,” “autophagy,” “precursor protein,” “endoplasmic-reticulum,” “dynamics” and “mitochondrial unfolded protein response.” …”
Publicado 2023
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120227por Oon, Chern Ein, Subramaniam, Ayappa V, Ooi, Lik Yang, Yehya, Ashwaq Hamid Salem, Lee, Yeuan Ting, Kaur, Gurjeet, Sasidharan, Sreenivasan, Qiu, Beiying, Wang, Xiaomeng“…The compound also arrested the cells at G1 phase and induced apoptosis in the EC. In mouse choroids, BZD9L1 inhibited sprouting and regressed sprouting vessels compared to the negative control. …”
Publicado 2023
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120228por Shi, Liu, Zhou, Li, Han, Ming, Zhang, Yu, Zhang, Yang, Yuan, Xiao-Xue, Lu, Hong-Ping, Wang, Yun, Yang, Xue-Liang, Liu, Chen, Wang, Jun, Liang, Pu, Liu, Shun-Ai, Liu, Xiao-Jing, Cheng, Jun, Lin, Shu-Mei“…NS3TP1 inhibited the apoptosis of HSCs. Moreover, both Smad3 and p65 could bind to NS3TP1, and p65 increased the promoter activity of NS3TP1, while NS3TP1 increased the promoter activity of TGFβ1 receptor I, as indicated by coimmunoprecipitation and luciferase assay results. …”
Publicado 2023
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120229por Meng, Fanyi, Zhang, Siqi, Xie, Juan, Zhou, Yuan, Wu, Qingling, Lu, Binyan, Zhou, Shixin, Zhao, Xiangyu, Li, Yang“…The transcriptomic analysis and validation assays of hnCD16- and hnCD16FR-transduced NK cells showed that hnCD16FR transduction remodeled immune-related transcriptome in NK cells, where significant upregulation of genes related to cytotoxicity, high cytokines releasing, induced tumor cell apoptosis, and ADCC in comparison with hnCD16 transduction were highlighted. …”
Publicado 2023
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120230por Radhakrishnan, Anukrishna, Mukherjee, Tathagata, Mahish, Chandan, Kumar, P Sanjai, Goswami, Chandan, Chattopadhyay, Subhasis“…The same was confirmed by studying the levels of activation markers (major histocompatibility complex II (MHCII), cluster of differentiation (CD) 80 (CD80), and CD86, pro-inflammatory cytokines (tumor necrosis factor (TNF) and interleukin 6 (IL-6)), NO (nitric oxide) production, differential expression of mitogen-activated protein kinase (MAPK) signaling pathways (p-p38 MAPK, phospho-extracellular signal-regulated kinase 1/2 (p-ERK 1/2), and phosphor-stress-activated protein kinase/c-Jun N-terminal kinase (p-SAPK/JNK)), and induction of apoptosis. Additionally, TRPA1 has been found to be an important contributor to intracellular calcium levels toward Hsp90 inhibition in LPS or PMA-stimulated macrophages. …”
Publicado 2023
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120231por Shin, Seol Hwa, Ju, Eun Jin, Park, Jin, Ko, Eun Jung, Kwon, Mi Ri, Lee, Hye Won, Son, Ga Won, Park, Yun-Yong, Kim, Yeon Joo, Song, Si Yeol, Lee, Sangkwang, Seo, Beom Seok, Song, Jin-A, Lim, Sangbin, Jung, Doohwan, Kim, Sunyoung, Lee, Hyangsook, Park, Seok Soon, Jeong, Seong-Yun, Choi, Eun Kyung“…RESULTS: ITC-6102RO inhibited cell viability in B7-H3-positive lung and breast cancer cell lines, inducing cell cycle arrest in the S phase, DNA damage, and apoptosis in vitro. The binding activity and selectivity of ITC-6102RO with B7-H3 were comparable to those of the unconjugated anti-B7-H3 antibody. …”
Publicado 2023
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120232“…Furthermore, adapalene induced DNA damage in AMO1 cells. It also induced apoptosis and autophagy, as demonstrated by flow cytometry and western blotting. …”
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120233por Lin, Kun-Chen, Fang, Wen-Feng, Sung, Pei-Hsun, Huang, Kuo-Tung, Chiang, John Y., Chen, Yi-Ling, Huang, Chi-Ruei, Li, Yi-Chen, Lee, Mel S., Yip, Hon-Kan“…By day 5 after ARDS induction, the SaO(2)%/immune regulatory T cells were highest in group 1, lowest in group 2, significantly lower in group 4 than in groups 3/5, and significantly lower in group 3 than in group 5, whereas the circulatory/bronchioalveolar lavage fluid inflammatory cells (CD11b-c+/LyG6+/MPO+)/circulatory immune cells (CD3-C4+/CD3-CD8+)/lung-leakage-albumin level/lung injury score/lung protein expressions of inflammatory (HMGB-1/TLR-2/TLR-4/MAL/TRAM/MyD88/TRIF/TRAF6/IκB-β/p-NF-κB/IL-1β/TNF-α)/fibrotic (p-SMad3/TGF-β), apoptosis (mitochondrial-Bax/cleaved-caspase-3)/oxidative-cell-stress (NOX-1/NOX-2/ASK1/p-MKK4/p-MKK7/p-JNKs/p-cJUN)/mitochondrial damaged (cyclophilin-D/DRP1/cytosolic-cytochrome-C) biomarkers displayed an opposite pattern of SaO(2)% among the groups (all P < 0.0001). …”
Publicado 2023
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120234por Hsieh, Yu-Tung, Chen, Yi-Cheng, Chou, Yu-Chi, Kuo, Pin‑Yu, Yen, Yi-Ting, Tsai, Hung-Wen, Wang, Chrong-Reen“…BACKGROUND: Dysregulated long noncoding RNA (lncRNA) expression with increased apoptosis has been demonstrated in systemic lupus erythematosus (SLE) patients with alveolar hemorrhage (AH). …”
Publicado 2023
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120235por Li, Shumin, Yan, Bin, Wu, Binbin, Su, Junhao, Lu, Jianliang, Lam, Tak-Wah, Boheler, Kenneth R., Poon, Ellen Ngar-Yun, Luo, Ruibang“…However, genes related to apoptosis, cell cycle and proliferation, and transmembrane transport showed a high degree of divergence between in vitro and in vivo derived late-stage CMs. …”
Publicado 2023
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120236por Matieta, Valaire Y., Mbaveng, Armelle T., Nouemsi, Guy R. Sado, Tankeo, Simplice B., Kamsu, Gabriel T., Nayim, Paul, Lannang, Alain M., Çelik, İlhami, Efferth, Thomas, Kuete, Victor“…The resazurin reduction assay (RRA) was used to evaluate the cytotoxicity of samples, propidium iodide (PI) for apoptosis, 5,5′,6,6′-tetrachloro-1,1′,3,3′-tetraethylbenzimidazolylcarbocyanine iodide (JC-1) staining for mitochondrial membrane potential (MMP) analysis, 2´,7´-dichlorodihydrofluoresceine diacetate (H2DCFH-DA) staining for the quantification of reactive oxygen species (ROS), whereas Caspase Glo assays were combined by means of flow cytometry. …”
Publicado 2023
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120237por Qiao, Lei, Hu, Jiayi, Qiu, Xiaohan, Wang, Chunlin, Peng, Jieqiong, Zhang, Cheng, Zhang, Meng, Lu, Huixia, Chen, Wenqiang“…Abbreviation: ACSL4: acyl-CoA synthetase long-chain family member 4; AD: Alzheimer disease; Ag: antigens; APP: amyloid beta precursor protein; ATG14: autophagy related 14; AVSF: autophagic vacuoles with unique sarcolemmal features; BBC3/PUMA: BCL2 binding component 3; CCD: C-terminal coiled coil domain; CMA: chaperone-mediated autophagy; CVDs: cardiovascular diseases; DDIT4/REDD1: DNA damage inducible transcript 4; ECs: endothelial cells; ER: endoplasmic reticulum; ESCs: embryonic stem cells; GAPDH: glyceraldehyde-3-phosphate dehydrogenase; GBA/β-glucocerebrosidase: glucosylceramidase beta; GSCs: glioblastoma stem cells; HCC: hepatocellular carcinoma; HD: Huntington disease; HSCs: hematopoietic stem cells; HSPA8/HSC70: heat shock protein family A (Hsp70) member 8; IL3: interleukin 3; IR: ischemia-reperfusion; LAMP2: lysosomal associated membrane protein 2; LDs: lipid droplets; LRRK2: leucine rich repeat kinase 2; MA: macroautophagy; MHC: major histocompatibility complex; MST1: macrophage stimulating 1; NAFLD: nonalcoholic fatty liver disease; NFE2L2/NRF2: NFE2 like bZIP transcription factor 2; NLRP3: NLR family pyrin domain containing 3; PARK7: Parkinsonism associated deglycase; PD: Parkinson disease; PEA15/PED: proliferation and apoptosis adaptor protein 15; PKM/PKM2: pyruvate kinase M1/2; RA: rheumatoid arthritis; RARA: retinoic acid receptor alpha; RCAN1: regulator of calcineurin 1; RCC: renal cell carcinoma; RDA: RNautophagy and DNautophagy; RNAi: RNA interference; RND3: Rho Family GTPase 3; SG-NOS3/eNOS: deleterious glutathionylated NOS3; SLE: systemic lupus erythematosus; TAMs: tumor-associated macrophages; TME: tumor microenvironment; UCHL1: ubiquitin C-terminal hydrolase L1; VAMP8: vesicle associated membrane protein 8…”
Publicado 2023
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120238por Palmieri, Michela, Nookaew, Intawat, Jose Schuller-Almeida, Maria, Kim, Ha-Neui, Jospeh, Teenamol E, Manolagas, Stavros C, O'Brien, Charles A, Ambrogini, Elena“…Transgenic expression of a single chain (scFv) form of the antigen-binding domain of E06 IgM (E06-scFv) increases bone mass in 6-month-old mice and attenuates high fat diet- and age-induced bone loss by increasing osteoblast number and bone formation rate and reducing osteoblast apoptosis. To elucidate the mechanism(s) mediating the bone anabolic effect of E06-scFv we performed bulk-RNA sequencing (bulk-RNA-seq) of vertebral bone and single cell RNA-sequencing (scRNA-seq) of mesenchymal and myeloid cells from long bones of WT and E06-scFv transgenic mice. …”
Publicado 2023
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120239por Imtiaz Rafiqi, Shafiya, Aldasouqi, Ahmad, faisal, sarah, Qureshi, Salauddin, Mahmood, Asif, Carlos Jaume, Juan, Imam, Shahnawaz“…To investigate any off-target effects of (GC7 and anti-DLL4), live, dead, and apoptotic cell count at 24, 48, 96 hours, and 7 days post-treatment using dead cell apoptosis kit (Invitrogen). In our study, there was no significant difference between treatment and control groups in terms of live, dead, and apoptotic cells at different time intervals. …”
Publicado 2023
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120240por Lavelle, Kristen, Chamberlain, Chester, Stuart Anderson, Mark, Scott German, Michael, Nip, Angel, Eric Gitelman, Stephen“…In vivo studies have demonstrated that it targets anti-diabetic pathways as well: imatinib inhibits c-Abl in pancreatic beta cells, thereby blunting endoplasmic reticulum stress responses and reducing apoptosis. It also inhibits platelet-derived growth factor receptors, thereby increasing adiponectin and improving insulin sensitivity. …”
Publicado 2023
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