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产品线
BioReagent
质量水平
方案
≥99.0% (HPLC)
表单
crystals
杂质
≤0.5% chlorin
溶解性
dichloromethane: soluble
荧光
λex 420 nm; λem 651 nm in toluene
适用性
suitable for fluorescence
储存温度
−20°C
SMILES字符串
c1ccc(cc1)-c2c3ccc(n3)c(-c4ccccc4)c5ccc([nH]5)c(-c6ccccc6)c7ccc(n7)c(-c8ccccc8)c9ccc2[nH]9
InChI
1S/C44H30N4/c1-5-13-29(14-6-1)41-33-21-23-35(45-33)42(30-15-7-2-8-16-30)37-25-27-39(47-37)44(32-19-11-4-12-20-32)40-28-26-38(48-40)43(31-17-9-3-10-18-31)36-24-22-34(41)46-36/h1-28,45,48H/b41-33-,41-34-,42-35-,42-37-,43-36-,43-38-,44-39-,44-40-
InChI key
YNHJECZULSZAQK-LWQDQPMZSA-N
基因信息
human ... TERT(7015)
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一般描述
四苯基卟啉是一种沉淀抑制剂。
生化/生理作用
四苯基卟啉是一种高效的镁及其合金抑制剂。它主要用作卟啉结构单元,用于制备配体和将金属引入卟啉中。
分析说明
除了在 651 nm 处的排放最大值外,在 717 nm 处有一个较低的最大值。
其他说明
光化学法产生单重态氧的增感剂
储存分类代码
11 - Combustible Solids
WGK
WGK 3
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves, type N95 (US)
Andrea Pantoja et al.
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Four priority target product profiles for the development of diagnostic tests for tuberculosis were identified: 1) Rapid sputum-based (RSP), 2) non-sputum Biomarker-based (BMT), 3) triage test followed by confirmatory test (TT), and 4) drug-susceptibility testing (DST). We assessed the cost
E.D. Mihelich et al.
The Journal of Organic Chemistry, 48, 4135-4135 (1983)
Phenotypic Screen Identifies a Small Molecule Modulating ERK2 and Promoting Stem Cell Proliferation.
Chang Yin et al.
Frontiers in pharmacology, 8, 726-726 (2017-11-09)
Stem cells display a fundamentally different mechanism of proliferation control when compared to somatic cells. Uncovering these mechanisms would maximize the impact in drug discovery with a higher translational applicability. The unbiased approach used in phenotype-based drug discovery (PDD) programs
W. Adam et al.
Journal of the American Chemical Society, 111, 203-203 (1989)
Fabio Antenucci et al.
Veterinary research, 48(1), 74-74 (2017-11-11)
Despite numerous actions to prevent disease, Actinobacillus pleuropneumoniae (A. pleuropneumoniae) remains a major cause of porcine pleuropneumonia, resulting in economic losses to the swine industry worldwide. In this paper, we describe the utilization of a reverse vaccinology approach for the
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