推荐产品
表单
powder
质量水平
组成
Dye content, 90%
技术
microbe id | staining: suitable
mp
>240 °C (dec.) (lit.)
λmax
591 nm
630 nm (2nd)
ε (消光系数)
≥16000 at 242-248 nm in H2O
≥28000 at 284-290 nm in H2O
≥36000 at 588-594 nm in H2O
≥44000 at 629-635 nm in H2O
应用
diagnostic assay manufacturing
hematology
histology
储存温度
room temp
SMILES字符串
[Cl-].[Cl-].[Cl-].[Cl-].Cl[Zn]Cl.CCNc1cc2[s+]c3cc(NCC)c(C)cc3nc2cc1C.CCNc4cc5[s+]c6cc(NCC)c(C)cc6nc5cc4C
InChI
1S/2C18H22N3S.4ClH.Zn/c2*1-5-19-13-9-17-15(7-11(13)3)21-16-8-12(4)14(20-6-2)10-18(16)22-17;;;;;/h2*7-10,19-20H,5-6H2,1-4H3;4*1H;/q2*+1;;;;;+2/p-4
InChI key
MCBJJSJOIVJYQY-UHFFFAOYSA-J
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应用
新亚甲基蓝N氯化锌复盐已用作植物病原真菌尖孢炭疽菌和胶孢炭疽菌的体外光动力杀菌效果的光敏剂。它还已用于测定须癣毛癣菌和红色毛癣菌对光动力抗菌化学疗法(PACT)的体外敏感性。
生化/生理作用
新亚甲蓝N氯化锌复盐又称亚甲蓝N,是一种偶氮染料。它能与核糖核酸结合、中和和交联。这导致核糖体和残余核糖核酸与线粒体和铁蛋白团共沉淀。这些事件使活性、年轻红细胞在显微镜下可见,呈深蓝色簇合物和细丝,称为网状组织。新亚甲蓝N氯化锌复盐有助于网织红细胞(含有核糖核酸的红细胞)的计数。
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
dust mask type N95 (US), Eyeshields, Gloves
Mary Turgeon
Linne & Ringsrud's Clinical Laboratory Science (2011)
PHOTODEGRADATION OF NEW METHYLENE BLUE N IN
AQUEOUS SOLUTION USING ZINC OXIDE AND
TITANIUM DIOXIDE AS CATALYST
AQUEOUS SOLUTION USING ZINC OXIDE AND
TITANIUM DIOXIDE AS CATALYST
ALI R
Jurnal Teknologi, 45, 31-42 (2006)
In Vitro Photodynamic Inactivation of Plant-Pathogenic Fungi Colletotrichum acutatum and Colletotrichum gloeosporioides with Novel Phenothiazinium Photosensitizers
de Menezes HD
Applied and Environmental Microbiology, 80, 1623-1632 (2014)
Susceptibilities of the dermatophytes Trichophyton mentagrophytes and T. rubrum microconidia to photodynamic antimicrobial chemotherapy with novel phenothiazinium photosensitizers and red light
Rodrigues GB
Journal of Photochemistry and Photobiology. B, Biology, 89-94 (2012)
Gabriela Braga Rodrigues et al.
Journal of photochemistry and photobiology. B, Biology, 209, 111942-111942 (2020-07-06)
Antimicrobial photodynamic treatment (APDT) has emerged as an effective therapy against pathogenic fungi with both acquired and intrinsic resistance to commonly used antifungal agents. Success of APDT depends on the availability of effective photosensitizers capable of acting on different fungal
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