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3481por Thirusangu, Prabhu, Ray, Upasana, Sarkar Bhattacharya, Sayantani, Oien, Derek B., Jin, Ling, Staub, Julie, Kannan, Nagarajan, Molina, Julian R., Shridhar, Viji“…Inhibition of PFKFB3 by the glycolytic inhibitor PFK158 and by shRNA stable knockdown in small cell lung carcinoma (SCLC) cell lines inhibited glycolysis, proliferation, spheroid formation, and the expression of cancer stem cell markers CD133, Aldh1, CD44, Sox2, and ABCG2. …”
Publicado 2022
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3482por Huang, Hsi-Chien, Sung, Yun-Chieh, Li, Chung-Pin, Wan, Dehui, Chao, Po-Han, Tseng, Yu-Ting, Liao, Bo-Wen, Cheng, Hui-Teng, Hsu, Fu-Fei, Huang, Chieh-Cheng, Chen, Yi-Ting, Liao, Yu-Hui, Hsieh, Hsin Tzu, Shih, Yu-Chuan, Liu, I-Ju, Wu, Han-Chung, Lu, Tsai-Te, Wang, Jane, Chen, Yunching“…We then constructed a stroma-targeted nanogel modified with phage display-identified tumour stroma-targeting peptides to co-deliver NO and TRAIL to PDAC and examined the anticancer effect in three-dimensional spheroid cultures in vitro and in orthotopic PDAC models in vivo. …”
Publicado 2022
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3483por Zhang, Shihong, Black, R. Graeme, Kohli, Karan, Hayes, Brian J., Miller, Cassandra, Koehne, Amanda, Schroeder, Brett A., Abrams, Kraig, Schulte, Brian C., Alexiev, Borislav A., Heimberger, Amy B., Zhang, Ali, Jing, Weiqing, Ng, Juliana Chi Kei, Shinglot, Himaly, Seguin, Bernard, Salter, Alexander I., Riddell, Stanley R., Jensen, Michael C., Gottschalk, Stephen, Moore, Peter F., Torok-Storb, Beverly, Pollack, Seth M.“…After refining activation, transduction, and expansion methods, we confirmed target killing in a tumor spheroid three-dimensional assay. We designed a B7-H3 canine CAR T-cell and achieved consistently high levels of transduction efficacy, expansion, and in vitro tumor killing. …”
Publicado 2022
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3484por Li, Qian, Demir, Salih, Del Río-Álvarez, Álvaro, Maxwell, Rebecca, Wagner, Alexandra, Carrillo-Reixach, Juan, Armengol, Carolina, Vokuhl, Christian, Häberle, Beate, von Schweinitz, Dietrich, Schmid, Irene, Cairo, Stefano, Kappler, Roland“…Moreover, mebendazole treatment resulted in reduced colony and tumor spheroid formation capabilities, cell cycle arrest, and induction of apoptosis of hepatoblastoma cells. …”
Publicado 2022
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3485por Tao, Miaomiao, Ma, Hongbo, Fu, Xiaoyuan, Wang, Cancan, Li, Yanyan, Hu, Xiaoqiao, Lv, Renming, Zhou, Gendou, Wang, Jun, Liu, Ruyan, Zhou, Meiyu, Xu, Guofa, Wang, Zexin, Qin, Xiurong, Long, Yi, Huang, Qunzhen, Chen, Min, Zhou, Qi“…Upregulation of SEMA3F in multicellular spheroid culture (MSC) could increase p27 phosphorylation at serine 10 (Ser10), subsequently promote the cytosolic translocation of P27. …”
Publicado 2022
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3486por Sekhar, Konjeti R., Hanna, David N., Cyr, Sriram, Baechle, Jordan J., Kuravi, Sudhakiranmayi, Balusu, Ramesh, Rathmell, Kimryn, Baregamian, Naira“…We treated human TC cells (K1, MDA-T68, MDA-T32, TPC1) with (1S,3R)-RSL3 (RSL3), a small-molecule inhibitor of GPX4 and examined the effects on ferroptosis, tumor cell survival and migration, spheroid formation, oxidative stress, DNA damage repair response, and mTOR signaling pathway in vitro. …”
Publicado 2022
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3487“…To determine the anticancer efficacy of TS on TNBC cells, cell proliferation, wound healing, cell invasion, and 3D spheroid formation assays were performed and excellent anticancer activities of TS were displayed. …”
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3488por Lee, Seung-Ryeol, Kim, Youngtaek, Kim, Suryong, Kim, Jiho, Park, Seonghyuk, Rhee, Stephen, Park, Dohyun, Lee, Byungjun, Baek, Kyusuk, Kim, Ho-Young, Jeon, Noo Li“…Here, we present an injection-molded plastic array 3D universal culture platform (U-IMPACT) for various biological applications in a single platform, such as cocultures of various cell types, and spheroids (e.g., tumor spheroids, neurospheres) and tissues (e.g., microvessels). …”
Publicado 2022
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3489por Khan, Husain Yar, Kamgar, Mandana, Aboukameel, Amro, Bannoura, Sahar, Chung, Brian Y., Li, Yiwei, Hallak, Mohammed Najeeb Al, Philip, Philip A., Tsai, Susan, Luther, Sanjeev, Hall, William A., Azmi, Asfar S.“…The synergistic effects of CPI-613-RT and chemotherapeutic agents (gemcitabine or 5-fluorouracil) were measured in MiaPaCa-2 cells using a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and spheroid formation assay. Changes in energy metabolism were determined by profiling metabolites treated with either RT, CPI-613, or both using liquid chromatography-mass spectrometry. …”
Publicado 2022
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3490“…The analysis of both cell migration and invasiveness in vitro require more complex systems based on the Boyden chamber principle (Transwell migration/invasive test, xCELLigence system), or microfluidic devices with three-dimensional (3D) microscopy visualization. 3D culture techniques are rapidly becoming routine and involve multicellular spheroid invasion assays or array chip-based, spherical approaches, multi-layer/multi-zone culture, or organoid non-spherical models, including multi-organ microfluidic chips. …”
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3491por Kuznetcova, Irina, Ostojić, Marija, Gligorijević, Nevenka, Aranđelović, Sandra, Arion, Vladimir B.“…Antiproliferative activity of 5 in 3D multicellular tumor spheroid model of cancer cells (HCT116, LS-174) superior to that of cisplatin was found. …”
Publicado 2022
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3492por Huh, Haein, Chen, Ding-Wen, Foldvari, Marianna, Slavcev, Roderick, Blay, Jonathan“…Interference with spheroid formation persisted over the duration of culture. …”
Publicado 2022
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3493por Williams, Natecia L., Hong, Lauren, Jaffe, Maya, Shields, Cara E., Haynes, Karmella A.“…SRA-expressing BT-549 cells showed reduced spheroid size in Matrigel over time, loss of invasion, and activation of apoptosis. …”
Publicado 2023
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3494por Becconi, Maila, De Zio, Simona, Falciani, Francesco, Santamaria, Marzia, Malferrari, Marco, Rapino, Stefania“…Characterization of the spheroid population obtained as a function of culturing time was performed by phase-contrast and confocal fluorescence microscopies. …”
Publicado 2023
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3495por Zhang, Qingyu, Li, Ning, Deng, Limei, Jiang, Xingmei, Zhang, Yuming, Lee, Leo Tsz On, Zhang, Haitao“…The formation of ovarian cancer spheroids helps to counteract the hostile microenvironment of the peritoneal cavity with low oxygen, shortage of nutrients, and subjected to platinum therapy. …”
Publicado 2023
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3496por Ndemazie, Nkafu Bechem, Bulusu, Raviteja, Zhu, Xue You, Frimpong, Esther Kesewaah, Inkoom, Andriana, Okoro, Joy, Ebesoh, Dexter, Rogers, Sherise, Han, Bo, Agyare, Edward“…Both Miapaca-2 and Panc-1 treated with Zhubech showed reduced viability, two- or four-fold lower than that of MFU-treated cells in 3D spheroid (IC(50Zhubech) = 3.4 ± 1.0 μM vs. IC(50MFU) = 6.8 ± 1.1 μM) and organoid (IC(50Zhubech) = 9.8 ± 1.4 μM vs. …”
Publicado 2023
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3497por Hamza, Shaimaa, Garanina, Ekaterina E., Alsaadi, Mohammad, Khaiboullina, Svetlana F., Tezcan, Gulcin“…LPS/ATP treatment prevented spheroid formation in MDA-MB-231 cells but did not affect MCF7. …”
Publicado 2023
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3498“…Current methods for CSC enrichment, such as 3D spheroid culture, genetic modification, and stem cell conditioning, are time consuming, expensive, and unsuitable for high-throughput assays. …”
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3499por Li, Nianshuang, Xu, Xinbo, Zhan, Yuan, Fei, Xiao, Ouyang, Yaobin, Zheng, Pan, Zhou, Yanan, He, Cong, Xie, Chuan, Hu, Yi, Hong, Junbo, Lu, Nonghua, Ge, Zhongming, Zhu, Yin“…Western blot, immunofluorescence, luciferase, RT-PCR, immunoprecipitation, cell counting kit-8 (CCK8), EdU and spheroid assays were used. H. pylori infection promoted YAP and β-catenin nuclear accumulation and transcriptional activity in gastric epithelial cells and transgenic insulin–gastrin (INS-GAS) mice, whereas silencing of both YAP and β-catenin synergistically inhibited H. pylori-induced cell proliferation and expansion. …”
Publicado 2023
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3500por Mas-Rosario, Javier A., Medor, Josue D., Jeffway, Mary I., Martínez-Montes, José M., Farkas, Michelle E.“…We also observed decreases in iNos-eGFP signal in the macrophages in co-culture assays with 4T1- or EMT6-based spheroids. We then showed that iNos production is enhanced in these cancer models using PBI1, tracking increased fluorescence. …”
Publicado 2023
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