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Fluorescent Red Mega 485_分子结构_CAS_)
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Fluorescent Red Mega 485

产品号 30487 公司名称 Sigma Aldrich
CAS号 公司网站 http://www.sigmaaldrich.com
分子式 C25H30N2O7S 电 话 1-800-521-8956
分子量 502.5799 传 真
纯 度 ≥85% (HPLC) 电子邮件
保 存 Chembase数据库ID: 157275

产品价格信息

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产品别名

标题
Fluorescent Red Mega 485
IUPAC标准名
4-{7-[(5-carboxypentyl)(ethyl)amino]-2-oxo-2H-chromen-3-yl}-1-(3-sulfonatopropyl)pyridin-1-ium
IUPAC传统名
4-{7-[(5-carboxypentyl)(ethyl)amino]-2-oxochromen-3-yl}-1-(3-sulfonatopropyl)pyridin-1-ium

产品登记号

MDL号 MFCD06798172

产品性质

级别 for fluorescence
纯度 ≥85% (HPLC)
荧光 λex 482 nm; λem 559 nm in 0.1 M phosphate pH 7.0
MSDS下载 下载链接
个人保护装置 Eyeshields, Gloves, type N95 (US), type P1 (EN143) respirator filter
保存温度 2-8°C
德国WGK号 3

产品详细信息

详细说明 (English)
General description
Fluorescent red Mega 485 and other Mega dyes are specifically designed for multicolor techniques. It is characterized by an extremely large stoke′s shift between excitation and emission maxima. This dye is especially well suited for excitation by argon lasers or other short wavelength excitation light. This also means, that it can be excited with the same light source or filter arrangement than fluorescein and other widely used dyes as well as other Mega dye. Due to the different emission wavelength several different labels can be detected independently in the same experiment. Due to the small size of the Mega-labels and the direct conversion of excitation light into emission without using a FRET mechanism we foresee a variety of possible applications including DNA sequencing and FISH microscopy.
详细说明 (简体中文)
General description
Fluorescent red Mega 485 and other Mega dyes are specifically designed for multicolor techniques. It is characterized by an extremely large stoke′s shift between excitation and emission maxima. This dye is especially well suited for excitation by argon lasers or other short wavelength excitation light. This also means, that it can be excited with the same light source or filter arrangement than fluorescein and other widely used dyes as well as other Mega dye. Due to the different emission wavelength several different labels can be detected independently in the same experiment. Due to the small size of the Mega-labels and the direct conversion of excitation light into emission without using a FRET mechanism we foresee a variety of possible applications including DNA sequencing and FISH microscopy.

参考文献