Academic literature on the topic 'Shijiazhuang yin chao chang'

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Journal articles on the topic "Shijiazhuang yin chao chang"

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Hanafi, Norhafiz, Meng-Hsien Chen, Ying Giat Seah, Chih-Wei Chang, Shang Yin Vanson Liu, and Ning Labbish Chao. "Johnius sasakii, a new species of croaker (Perciformes: Sciaenidae) with a key to Johnius from East Malaysia, Borneo." Zootaxa 5116, no. 3 (2022): 393–409. https://doi.org/10.11646/zootaxa.5116.3.5.

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Hanafi, Norhafiz, Chen, Meng-Hsien, Seah, Ying Giat, Chang, Chih-Wei, Liu, Shang Yin Vanson, Chao, Ning Labbish (2022): Johnius sasakii, a new species of croaker (Perciformes: Sciaenidae) with a key to Johnius from East Malaysia, Borneo. Zootaxa 5116 (3): 393-409, DOI: 10.11646/zootaxa.5116.3.5
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Chan, Michael W. Y., Yin-Chen Chen, Ching-Wen Lin, et al. "Abstract 97: A E2F6 ceRNA network suppresses dendritic cell function, via PBX1/IL-10 signaling, in ovarian cancer." Cancer Research 84, no. 6_Supplement (2024): 97. http://dx.doi.org/10.1158/1538-7445.am2024-97.

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Abstract It is reported that long-term use of estrogen could increase the risk of ovarian cancer. However, the role of estrogen in immunoevasion is not fully explored. We have previously demonstrated that estrogen-mediated upregulation of E2F6, and, c-Kit, by epigenetic silencing of miR-193a, and a competing endogenous (ceRNA) mechanism. In this study, we found that PBX1, a transcriptional activator of the immunosuppressive cytokine, IL-10, is also a target of miR-193a. Importantly, overexpression of the E2F6 3’UTR upregulates both E2F6 and, PBX1, as well as IL10 in ovarian cancer cell lines,
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Wang, Zichun, Di Zhan, Qikuan Chen, et al. "Abstract 5499: A comparison of spheroid formation using AcroCyte‘s 3-dimensional R3CE spheroid culture platform versus traditional 3D culture methods." Cancer Research 85, no. 8_Supplement_1 (2025): 5499. https://doi.org/10.1158/1538-7445.am2025-5499.

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Abstract Three-dimensional (3D) spheroid culture systems have gained attention due to their evident advantages in mimicking the in vivo tumor microenvironment, making them highly valuable for drug testing and cancer research, as the behavior of 3D-cultured cells is more reflective of in vivo cellular responses. However, traditional spheroid methods, including ultra-low attachment plates, Matrigel, and soft agar, have limitations, especially for certain cell lines that fail to form stable spheroids. Here, we introduce a novel 3D spheroid culture method using the AcroCyte R3CE plate, and compare
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Su, Wu-Chou, Li-Yuan Bai, Hui-Hua Hsiao, et al. "Abstract CT167: Trial in progress: Phase 1 dose escalation study of T-1101, a first-in-class oral Hec1/Nek2 inhibitor, in patients with advanced refractory solid tumors." Cancer Research 84, no. 7_Supplement (2024): CT167. http://dx.doi.org/10.1158/1538-7445.am2024-ct167.

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Abstract Background: T-1101, a novel small molecule, is the first-in-class oral agent that specifically disrupts the interaction between two commonly overexpressed, critical mitotic regulators, Hec1 and Nek2, within cancer cells. Such disruption leads to abnormal mitosis followed by apoptosis of cancer cells and provides a potential therapeutic strategy for cancer treatment. T-1101, with growth inhibition concentrations (IC50) ranging from14 to 74 nM across various human cancer cell lines, exhibited potent anti-liver and breastcancer activities in vivo, and highly active (IC50 7-19 nM) in MDR
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Fang, Yin-Ying, Chi-Fang Chen, and Sheng-Ju Wu. "Feature identification using acoustic signature of Ocean Researcher III (ORIII) of Taiwan." ANZIAM Journal 59 (July 25, 2019): C318—C357. http://dx.doi.org/10.21914/anziamj.v59i0.12655.

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Underwater acoustic signature identification has been employed as a technique for detecting underwater vehicles, such as in anti-submarine warfare or harbour security systems. The underwater sound channel, however, has interference due to spatial variations in topography or sea state conditions and temporal variations in water column properties, which cause multipath and scattering in acoustic propagation. Thus, acoustic data quality control can be very challenging. One of challenges for an identification system is how to recognise the same target signature from measurements under different te
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6

Caiana, Rodrigo Ribeiro Alves, Joyse Maria Braga dos Santos, Josivan Pereira da Silva Júnior, Jadson de Farias Silva, Wylly Araújo de Oliveira та Juliano Carlo Rufino Freitas. "Síntese e avaliação antifúngica do benzil 2,3-didesoxi-α-D-eritro-hex-2-enopiranosídeo contra espécies de Candida spp. e estudo da associação com anfotericina B". ARCHIVES OF HEALTH INVESTIGATION 9, № 5 (2020): 395–402. http://dx.doi.org/10.21270/archi.v9i5.4867.

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Introdução: O número crescente de infecções causadas por fungos e o surgimento de microrganismos resistentes tem sinalizado a necessidade da busca por novos agentes antifúngicos, fomentando a pesquisa em moléculas promissoras, como os O-glicosídeos. Objetivo: Partindo dessa premissa, objetivamos a síntese e investigação da atividade antifúngica do benzil 2,3-didesoxi-α-D-eritro-hex-2-enopiranosídeo isolado e quando associado com a anfotericina B. Material e métodos: Inicialmente foi sintetizado o benzil 4,6-di-O-acetil-2,3-didesoxi-α-D-eritro-hex-2-enopiranosídeo a partir da reação entre o 3,4
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Books on the topic "Shijiazhuang yin chao chang"

1

Shijiazhuang yin chao chang zhi bian ji wei yuan hui. 石家庄印钞厂志, (1991-2000). Zhongguo jin rong chu ban she, 2002.

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2

"Beijing yin chao chang zhi" bian ji wei yuan hui., ed. Beijing yin chao chang zhi. Zhongguo jin rong chu ban she, 1993.

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3

Zhu, Chuhong. Cheng yu yu yi chao chang yin shen xin tan. Yu wen chu ban she, 2010.

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4

Yu, Hong. Beijing yin chao chang jian shi, 1908 nian-1949 nian. Beijing yin chao chang li shi bian wei hui bian ji shi, 1987.

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Xi'an yin chao chang zhi bian ji wei yuan hui. 西安印钞厂志, (1991-2000). Zhongguo jin rong chu ban she, 2002.

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Beijing yin chao chang zhi bian zuan wei yuan hui. 北京印钞厂志, (1991-2000). Zhongguo jin rong chu ban she, 2002.

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7

translator, Huang Yahui, ed. Chao gao ling she hui de xiao fei xing wei xue: Zhang wo zhong gao ling zu qun xin li, dong cha yin fa shi chang xin qu shi. Jing ji xin chao she, 2015.

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Xin yuan xuan gong zuo shi, ed. Wan wei: Can yin Ying yu qing song shuo! : 30 da qing jing zhu ti x 100 ge shi yong dui hua x chao guo 365 dao chang jian Zhong Fa Yi cai ming dui zhao. Shang qi zi xun gu fen you xian gong si, 2014.

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9

Da Ming wang chao de yin mi li shi: Yi chang dian fu huang quan de zheng zhi you xi. Zhongguo hua qiao chu ban she, 2007.

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