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2351898-91-2

中文名稱 8pyDTZ
英文名稱 8pyDTZ
CAS 2351898-91-2
分子式 C24H18N4O
分子量 378.43
MOL 文件 2351898-91-2.mol
2351898-91-2 結(jié)構(gòu)式 2351898-91-2 結(jié)構(gòu)式

基本信息

中文別名
化合物 T19167
英文別名
8pyDTZ

物理化學(xué)性質(zhì)

沸點556.7±60.0 °C(Predicted)
密度1.26±0.1 g/cm3(Predicted)
儲存條件Store at -20°C,unstable in solution, ready to use.
溶解度DMSO: 12.5 mg/mL (33.03 mM; DMSO can inactivate 8pyDTZ's activity); EtOH+HCl: 2 mg/mL (5.28 mM; ultrasonic and adjust pH to 2 with 1M HCl; DMSO can inactivate 8pyDTZ's activity)
酸度系數(shù)(pKa)6.54±0.10(Predicted)
形態(tài)Solid
顏色Light brown to brown
水溶解性Water: < 0.1 mg/mL (insoluble; DMSO can inactivate 8pyDTZ's activity)
8pyDTZ價格(試劑級)
報價日期產(chǎn)品編號產(chǎn)品名稱CAS號包裝價格
2025/02/08HY-1353688pyDTZ2351898-91-21 mg2045元
2025/02/08HY-1353688pyDTZ
8pyDTZ
2351898-91-25mg4500元
2024/08/19HY-1353688pyDTZ
8pyDTZ
2351898-91-210mg6800元

常見問題列表

生物活性
8pyDTZ 是一種吡啶基二苯基叔嗪 (DTZ) 類似物,也是 一種 LumiLuc 熒光素酶的 ATP 非依賴性吡啶基底物。8pyDTZ 表現(xiàn)出光譜偏移的發(fā)射并改善了水溶性。8pyDTZ 具有出色的生物相容性和體內(nèi)敏感性,可用于生物體內(nèi)發(fā)光成像。
體外研究

Compared to DTZ, 8pyDTZ (compounds 3c) is able to emit red-shifted chemiluminescence or bioluminescence. 8pyDTZ shows the most red-shifted emission and red-shifted photons can penetrate through tissue better.
LumiLuc-8pyDTZ in human embryonic kidney (HEK) 293T cells transiently expressing the luciferase is evaluated. The LumiLuc-8pyDTZ pair produces ~3-5-fold more bioluminescence than teLuc-8pyDTZ. To compare far-red emission intensities of bioluminescent reporters, HEK 293T cells in the presence of a 600-700 nm band pass filter are imaged. At substrate concentrations from 6.25 to 100 μM, LumiLuc-8pyDTZ consistently produces 1.6-3.9-fold higher photon flux than teLuc-DTZ. No ATP perturbation is observed from 8pyDTZ-treated, LumiLucexpressing cells.

體內(nèi)研究

LumiLuc-8pyDTZ pair is compared with several benchmark reporters in a tumor xenograft mouse model. LumiLuc-8pyDTZ shows high sensitivity and does not need organic cosolvents for in vivo administration. LumiScarlet-8pyDTZ is comparable to Akaluc-AkaLumine, the brightest ATP-dependent luciferase-luciferin pair, for detecting cells in deep tissues of mice.

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