Rhodamine 6G (BioDeep_00000855506)

   

Volatile Flavor Compounds


代谢物信息卡片


Rhodamine 6G

化学式: C28H31ClN2O3 (478.20230860000004)
中文名称: 罗丹明6G
谱图信息: 最多检出来源 () 0%

分子结构信息

SMILES: CCNC1=CC2=C(C=C1C)C(=C3C=C(C(=[NH+]CC)C=C3O2)C)C4=CC=CC=C4C(=O)OCC.[Cl-]
InChI: 1H

描述信息

D019995 - Laboratory Chemicals > D007202 - Indicators and Reagents > D049408 - Luminescent Agents
D019995 - Laboratory Chemicals > D007202 - Indicators and Reagents > D012235 - Rhodamines
D004396 - Coloring Agents > D005456 - Fluorescent Dyes
D000970 - Antineoplastic Agents

同义名列表

2 个代谢物同义名

Rhodamine 6G; Rhodamine 6G



数据库引用编号

7 个数据库交叉引用编号

分类词条

相关代谢途径

Reactome(0)

BioCyc(0)

PlantCyc(0)

代谢反应

0 个相关的代谢反应过程信息。

Reactome(0)

BioCyc(0)

WikiPathways(0)

Plant Reactome(0)

INOH(0)

PlantCyc(0)

COVID-19 Disease Map(0)

PathBank(0)

PharmGKB(0)

0 个相关的物种来源信息

在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:

  • PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
  • NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
  • Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
  • Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。

点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。



文献列表

  • Hossein Delavari Amrei, Zahra Khoobkar, Majid Mollavali. Accurate assessment of the effect of Rhodamine 6G solution as a spectral converter on biomass production of microalgae Chlorella sp., nitrate uptake, and energy consumption by the light source. Environmental science and pollution research international. 2023 Mar; 30(11):30692-30699. doi: 10.1007/s11356-022-24371-0. [PMID: 36441329]
  • Guojuan Yan, Bo Kong, Jiaqiang Zhao, Huanhuan Ni, Lei Zhan, Chengzhi Huang, Hongyan Zou. Fluorescence turn-on Cu2-xSe@HA-rhodamine 6G FRET nanoprobe for hyaluronidase detection and imaging. Journal of photochemistry and photobiology. B, Biology. 2022 Aug; 233(?):112496. doi: 10.1016/j.jphotobiol.2022.112496. [PMID: 35689932]
  • Prajwal Kulal, Vishalakshi Badalamoole. Evaluation of gum ghatti-g-poly(itaconic acid) magnetite nanocomposite as an adsorbent material for water purification. International journal of biological macromolecules. 2021 Dec; 193(Pt B):2232-2242. doi: 10.1016/j.ijbiomac.2021.11.055. [PMID: 34780891]
  • Terumasa Omatsu, Kisho Hori, Naoto Ishida, Kohji Maeda, Yumi Yoshida. Distribution of ion pairs into a bilayer lipid membrane and its effect on the ionic permeability. Biochimica et biophysica acta. Biomembranes. 2021 11; 1863(11):183724. doi: 10.1016/j.bbamem.2021.183724. [PMID: 34364888]
  • Jun Feng, Hao Lu, Yu Yang, Wenyi Huang, Hao Cheng, Hongxing Kong, Lijun Li. SERS-ELISA determination of human carboxylesterase 1 using metal-organic framework doped with gold nanoparticles as SERS substrate. Mikrochimica acta. 2021 07; 188(8):280. doi: 10.1007/s00604-021-04928-5. [PMID: 34331134]
  • Xiao Yu, Wanxiang Yu, Xiufen Han, Zuanguang Chen, Shumei Wang, Haiyun Zhai. Sensitive analysis of doxorubicin and curcumin by micellar electromagnetic chromatography with a double wavelength excitation source. Analytical and bioanalytical chemistry. 2021 Jan; 413(2):469-478. doi: 10.1007/s00216-020-03017-5. [PMID: 33118040]
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  • Juan Palacios-Ortega, Esperanza Rivera-de-Torre, José G Gavilanes, J Peter Slotte, Álvaro Martínez-Del-Pozo. Evaluation of different approaches used to study membrane permeabilization by actinoporins on model lipid vesicles. Biochimica et biophysica acta. Biomembranes. 2020 09; 1862(9):183311. doi: 10.1016/j.bbamem.2020.183311. [PMID: 32353378]
  • Zahra Khoobkar, Hossein Delavari Amrei. Effect of fluorescent dye positioning and concentration on the growth parameters and lipid content of Chlorella sp. in a flat panel photobioreactor. Biotechnology letters. 2020 Aug; 42(8):1397-1405. doi: 10.1007/s10529-020-02862-9. [PMID: 32166559]
  • Terumasa Omatsu, Kisho Hori, Yasuhiro Naka, Megumi Shimazaki, Kazushige Sakai, Koji Murakami, Kohji Maeda, Mao Fukuyama, Yumi Yoshida. Dynamic behavior analysis of ion transport through a bilayer lipid membrane by an electrochemical method combined with fluorometry. The Analyst. 2020 Jun; 145(11):3839-3845. doi: 10.1039/d0an00222d. [PMID: 32253394]
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  • Misato Sakamoto, Atsushi Shoji, Masao Sugawara. Giant unilamellar vesicles containing Rhodamine 6G as a marker for immunoassay of bovine serum albumin and lipocalin-2. Analytical biochemistry. 2016 07; 505(?):66-72. doi: 10.1016/j.ab.2016.04.011. [PMID: 27117116]
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  • Xiu-qing Zhang, Jun Peng, Jian Ling, Chao-juan Liu, Qiu-e Cao, Zhong-tao Ding. [Fluorescence Resonance Energy Transfer Detection of Cobalt Ions by Silver Triangular Nanoplates and Rhodamine 6G]. Guang pu xue yu guang pu fen xi = Guang pu. 2015 Apr; 35(4):951-5. doi: NULL. [PMID: 26197581]
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  • Suqin Han, Xia Li, Bei Wei. Silver nanoparticle enhanced chemiluminescence method for the determination of nitrazepam. Analytical sciences : the international journal of the Japan Society for Analytical Chemistry. 2014; 30(4):495-500. doi: 10.2116/analsci.30.495. [PMID: 24717660]
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  • Natalia Krisanova, Ludmila Kasatkina, Roman Sivko, Arseniy Borysov, Anastasiya Nazarova, Klaus Slenzka, Tatiana Borisova. Neurotoxic potential of lunar and martian dust: influence on em, proton gradient, active transport, and binding of glutamate in rat brain nerve terminals. Astrobiology. 2013 Aug; 13(8):679-92. doi: 10.1089/ast.2012.0950. [PMID: 23919751]
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