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脱氧雪腐镰刀菌烯醇

    级别和纯度:
  • ≥98%
有货

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货号 (SKU) 包装规格 是否现货 价格 数量
B135944-1mg
1mg 现货 Stock Image
B135944-5mg
5mg 现货 Stock Image
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抗生素 (58) 膜转运体 (1142)

基本描述

别名 呕吐毒素 | 3a,7a,15-三羟基-12,13-环氧单端孢霉-9-烯-8-酮
英文别名 (1'R,2S,2'R,3'S,7'R,9'R,10'R)-3',10'-dihydroxy-2'-(hydroxymethyl)-1',5'-dimethyl-8'-oxaspiro[oxirane-2,12'-tricyclo[7.2.1.0?,?]dodecan]-5'-en-4'-one | AS-75858 | Trichothec-9-en-8-one, 12,13-epoxy-3,7,15-trihydroxy-, (3-alpha,7-alpha)- | Vomitoxin | 3J6 |
规格或纯度 ≥98%
英文名称 Deoxynivalenol
生化机理 脱氧雪腐镰刀菌烯醇(DON)通过抑制翻译过程,阻断DNA和RNA合成。
储存温度 -20°C储存
运输条件 超低温冰袋运输
产品介绍

脱氧雪腐镰刀菌烯醇是一种霉菌毒素,通常由镰刀菌属产生,经常在谷物中检测到。该化合物在高浓度下表现出免疫抑制特性,在低浓度下具有免疫刺激作用。这种霉菌毒素的其他作用包括下调参与蛋白质合成、增殖、核糖体蛋白和线粒体的基因。进一步的研究表明,脱氧雪腐镰刀菌烯醇是内质网钙释放的诱导剂。
一种镰刀菌毒素。脱氧雪腐镰刀菌烯醇的主要毒性作用是通过与核糖体结合抑制蛋白质合成。在农业研发中,它被广泛用于选择对镰刀菌抗性增强的作物品种。

应用:
脱氧雪腐镰刀菌烯醇已用于:
用作霉菌毒素,诱导猪空肠上皮细胞的细胞毒性,研究酿酒酵母(Saccharomyces cerevisiae)对宿主细胞活力的保护作用。
诱导裸鼠毒性,研究补充益生菌(鼠李糖乳杆菌GG (LGG)或嗜酸乳杆菌 (LA)对于宿主细胞的作用。
用作细胞荧光素酶报告基因(CALUX)测定中的甲状腺激素受体(TR)拮抗剂。

Deoxynivalenol is a mycotoxin usually produced by Fusarium species and is often detected in grains. This compound demonstrates immunosuppressive characteristics at high concentrations and immunostimulatory effects at low concentrations. Other effects of this mycotoxin include down-regulation of genes involved in protein synthesis, proliferation, ribosomal proteins, and mitochondria. Further studies show that Deoxynivalenol is an inducer of calcium release from the endoplasmic reticulum.
A Fusarium mycotoxin.The main toxic effect of Deoxynivalenol is inhibition of protein synthesis via binding to the ribosome.In agricultural R&D, it is widely used to select crops strains with increased resistance against Fusarium.


Application:

Deoxynivalenol has been used:
as a mycotoxin to induce cytotoxicity in porcine jejunal epithelial cells and study the protective effects of Saccharomyces cerevisiae on the cell viability of host cells.
to induce toxicity in nude mice to study the effect of probiotics (Lactobacillus rhamnosus GG (LGG) or Lactobacillus acidophilus (LA)) supplementation on host protection.
as a thyroid hormone receptor (TRβ) antagonist in cell-based luciferase reporter gene (CALUX) assay.

纯度 ≥98%

关联靶点(人)

K562 (73714 活性数据)
活性类型 Relation Activity value Units Action Type 期刊 PubMed Id doi Assay Aladdin ID

关联靶点(其它种属)

Bipolaris oryzae (287 活性数据)
活性类型 Relation Activity value Units Action Type 期刊 PubMed Id doi Assay Aladdin ID
Arabidopsis thaliana (307 活性数据)
活性类型 Relation Activity value Units Action Type 期刊 PubMed Id doi Assay Aladdin ID
Saccharomyces cerevisiae (19171 活性数据)
活性类型 Relation Activity value Units Action Type 期刊 PubMed Id doi Assay Aladdin ID
Mus musculus (284745 活性数据)
活性类型 Relation Activity value Units Action Type 期刊 PubMed Id doi Assay Aladdin ID

作用机制

作用机制 Action Type target ID Target Name Target Type Target Organism Binding Site Name 参考文献

名称和识别符

分子类型 小分子
IIUPAC Name (1R,2R,3S,7R,9R,10R,12S)-3,10-dihydroxy-2-(hydroxymethyl)-1,5-dimethylspiro[8-oxatricyclo[7.2.1.02,7]dodec-5-ene-12,2'-oxirane]-4-one
INCHI 1S/C15H20O6/c1-7-3-9-14(5-16,11(19)10(7)18)13(2)4-8(17)12(21-9)15(13)6-20-15/h3,8-9,11-12,16-17,19H,4-6H2,1-2H3/t8-,9-,11-,12-,13-,14-,15+/m1/s1
InChi Key LINOMUASTDIRTM-QGRHZQQGSA-N
Smiles CC1=CC2C(C(C1=O)O)(C3(CC(C(C34CO4)O2)O)C)CO
Isomeric SMILES CC1=C[C@@H]2[C@]([C@@H](C1=O)O)([C@]3(C[C@H]([C@H]([C@@]34CO4)O2)O)C)CO
分子量 296.32
Reaxy-Rn 36544681
Reaxys-RN link address https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=36544681&ln=

化学和物理性质

溶解性 Soluble in methanol, chloroform, water (slightly), ethanol (9.8 - 10.2 mg/ml), and DMSO.
敏感性 对湿度敏感
分子量 296.310 g/mol
XLogP3 -0.700
氢键供体数Hydrogen Bond Donor Count 3
氢键受体数Hydrogen Bond Acceptor Count 6
可旋转键计数Rotatable Bond Count 1
精确质量Exact Mass 296.126 Da
单同位素质量Monoisotopic Mass 296.126 Da
拓扑极表面积Topological Polar Surface Area 99.500 Ų
重原子数Heavy Atom Count 21
形式电荷Formal Charge 0
复杂度Complexity 558.000
同位素原子数Isotope Atom Count 0
定义的原子立体中心计数Defined Atom Stereocenter Count 7
未定义的原子立体中心计数Undefined Atom Stereocenter Count 0
定义的键立体中心计数Defined Bond Stereocenter Count 0
未定义的键立体中心计数Undefined Bond Stereocenter Count 0
所有立体化学键的总数The total count of all stereochemical bonds 0
共价键合单元计数Covalently-Bonded Unit Count 1

安全和危险性(GHS)

象形图 GHS06
信号词 危险
WGK Germany 3
RTECS YD0167000
个人防护装备 Eyeshields, Faceshields, Gloves, type P2 (EN 143) respirator cartridges

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批号(Lot Number) 证书类型 货号
H2522267 分析证书 B135944
H2522268 分析证书 B135944
J2421912 分析证书 B135944
J2421913 分析证书 B135944
K2212271 分析证书 B135944
H2110115 分析证书 B135944
H2110393 分析证书 B135944
K2212274 分析证书 B135944
G2408015 分析证书 B135944

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此产品的引用文献

引用文献

1. Ting Wang, Ting Zhou, Kang Wu, Junlin Cao, Yuze Feng, Jianguo Li, Anping Deng.  (2024)  A sensitive monoclonal antibody-based ELISA integrated with immunoaffinity column extraction for the detection of zearalenone in food and feed samples.  ANALYST,  149  (2): (442-450).  [PMID:38099486] [10.1039/D3AN01779F]
2. Peifang Chen, Caiyun Jiang, Zhouping Wang, Hong-zhen Lian, Xiaoyuan Ma.  (2023)  3D plasmonic SERS aptasensor for rapid detection of aflatoxin B1 combined with Au@Ag bimetallic nanostars and Fe3O4@MoS2 magnetic nanoflowers.  MICROCHEMICAL JOURNAL,  (109598).  [10.1016/j.microc.2023.109598]
3. Mingming Chen, Bihang Su, Huiying Wu, Yawen Dai, Tianwen Chen, Fengfu Fu, Zhenyu Lin, Yongqiang Dong.  (2024)  Hydrogel SERS chip with strong localized surface plasmon resonance for sensitive and rapid detection of T-2 toxin.  TALANTA,  268  (125329).  [PMID:37879204] [10.1016/j.talanta.2023.125329]
4. Ragini Singh, Wen Zhang, Xuecheng Liu, Bingyuan Zhang, Bingyuan Zhang, Santosh Kumar.  (2023)  Humanoid-shaped WaveFlex biosensor for the detection of food contamination.  Biomedical Optics Express,  14  (9): (4660-4676).  [PMID:37791266] [10.1364/BOE.500311]
5. Ziyang He, Jinxin Zhang, Mei Liu, Yonghong Meng.  (2024)  Polyvalent aptamer scaffold coordinating light-responsive oxidase-like nanozyme for sensitive detection of zearalenone.  FOOD CHEMISTRY,  431  (136908).  [PMID:37573743] [10.1016/j.foodchem.2023.136908]
6. Xuecheng Liu, Ragini Singh, Guoru Li, Carlos Marques, Bingyuan Zhang, Santosh Kumar.  (2023)  WaveFlex Biosensor-using Novel Tri-Tapered in Tapered Four-Core Fiber with Multimode Fiber Coupling for Detection of Aflatoxin B1.  JOURNAL OF LIGHTWAVE TECHNOLOGY,  PP  (99): (1-10).  [10.1109/JLT.2023.3301069]
7. Yijian Zhao, Tianyue Liu, Jinghui Gao, Qiaojuan Zhang, Mengyu Liao, He Cheng, Jingsheng Tian, Zhiyi Yao.  (2023)  Nanoassemblies Based on a Cationic Perylene Diimide Derivative and Sodium Dodecyl Sulfate: A Simple Fluorescent Platform for Efficient Analysis of Aflatoxin B1.  ANALYTICAL CHEMISTRY,  95  (21): (8250–8257).  [PMID:37186575] [10.1021/acs.analchem.3c00170]
8. Si-xuan Zhou, Xiao-tong Lin, Jie Wang, Hai-xiang Wang, Gui-tang Chen.  (2023)  Novel hydrocortisone magnetic molecularly imprinted polymers: Preparation, characterization, and application.  FOOD CHEMISTRY,  421  (136196).  [PMID:37116443] [10.1016/j.foodchem.2023.136196]
9. Sai Zhang, Yahui Wang, Qinglin Sheng, Tianli Yue.  (2023)  Electrochemical Aptasensor Based on ZnO-Au Nanocomposites for the Determination of Ochratoxin A in Wine and Beer.  Processes,  11  (3): (864).  [10.3390/pr11030864]
10. Jiameng Liu, Mengfei Wang, Chuanpan Guo, Zheng Tao, Minghua Wang, Linghao He, Baozhong Liu, Zhihong Zhang.  (2023)  Defective porphyrin-based metal-organic framework nanosheets derived from V2CTx MXene as a robust bioplatform for impedimetric aptasensing 17β-estradiol.  FOOD CHEMISTRY,  416  (135839).  [PMID:36893636] [10.1016/j.foodchem.2023.135839]
11. Xuecheng Liu, Ragini Singh, Muyang Li, Guoru Li, Rui Min, Carlos Marques, Bingyuan Zhang, Bingyuan Zhang, Santosh Kumar.  (2023)  Plasmonic sensor based on offset-splicing and waist-expanded taper using multicore fiber for detection of Aflatoxins B1 in critical sectors.  OPTICS EXPRESS,  31  (3): (4783-4802).  [PMID:36785437] [10.1364/OE.479870]
12. Ming-Hang Yu, Yun-Qi Feng, Yue-Hong Pang, Cheng Yang, Xiao-Fang Shen.  (2023)  Electrochemical Degradation and Toxicity Evaluation of Deoxynivalenol in Wheat Grains.  ACS Food Science & Technology,  (1): (224–230).  [10.1021/acsfoodscitech.2c00389]
13. Zhu Jing, Xu Wenxing, Yang Ye, Kong Rongmei, Wang Junmei.  (2023)  ssDNA-C3N4 conjugates-based nanozyme sensor array for discriminating mycotoxins.  MICROCHIMICA ACTA,  190  (1): (1-10).  [PMID:36471087] [10.1007/s00604-022-05593-y]
14. Pengfei Wang, Bin Luo, Ke Liu, Cheng Wang, Hongtu Dong, Xiaodong Wang, Peichen Hou, Aixue Li.  (2022)  A novel COOH–GO–COOH–MWNT/pDA/AuNPs based electrochemical aptasensor for detection of AFB1.  RSC Advances,  12  (43): (27940-27947).  [PMID:36320289] [10.1039/D2RA03883H]
15. Kezhuo Zhang, Huadong Cai, Min Lu, Daixian Wei, Jiaqi Yin, Nengshui Ding, Weihua Lai, Juan Peng.  (2022)  Quantum dot nanobead immunochromatographic assay based on bispecific monoclonal antibody for the simultaneous detection of aflatoxin B1 and amantadine.  FOOD AND AGRICULTURAL IMMUNOLOGY,  33  (1): (403-418).  [10.1080/09540105.2022.2080188]
16. Mei Liu, Jinxin Zhang, Shasha Liu, Baoxin Li.  (2022)  A label-free visual aptasensor for zearalenone detection based on target-responsive aptamer-cross-linked hydrogel and color change of gold nanoparticles.  FOOD CHEMISTRY,  389  (133078).  [PMID:35490524] [10.1016/j.foodchem.2022.133078]
17. Xiaoyuan Ma, Baoyi Shao, Zhouping Wang.  (2021)  Gold@silver nanodumbbell based inter-nanogap aptasensor for the surface enhanced Raman spectroscopy determination of ochratoxin A.  ANALYTICA CHIMICA ACTA,  1188  (339189).  [PMID:34794565] [10.1016/j.aca.2021.339189]
18. Hualin Guo, Yuhan Sun, Pengfei Ma, Imran Mahmood Khan, Nuo Duan, Zhouping Wang.  (2022)  Sensitive detection of patulin based on DNase Ⅰ-assisted fluorescent aptasensor by using AuNCs-modified truncated aptamer.  FOOD CONTROL,  131  (108430).  [10.1016/j.foodcont.2021.108430]
19. Feng Wang, Zhen-Feng Li, De-Bin Wan, Natalia Vasylieva, Yu-Dong Shen, Zhen-Lin Xu, Jin-Yi Yang, Jan Gettemans, Hong Wang, Bruce D. Hammock, Yuan-Ming Sun.  (2021)  Enhanced Non-Toxic Immunodetection of Alternaria Mycotoxin Tenuazonic Acid Based on Ferritin-Displayed Anti-Idiotypic Nanobody-Nanoluciferase Multimers.  JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY,  69  (16): (4911–4917).  [PMID:33870684] [10.1021/acs.jafc.1c01128]
20. Feng Wang, De-Bin Wan, Yu-Dong Shen, Yuan-Xin Tian, Zhi-Li Xiao, Zhen-Lin Xu, Jin-Yi Yang, Yuan-Ming Sun, Bruce D. Hammock, Hong Wang.  (2021)  Development of a chemiluminescence immunoassay for detection of tenuazonic acid mycotoxin in fruit juices with a specific camel polyclonal antibody.  Analytical Methods,  13  (15): (1795-1802).  [PMID:33885655] [10.1039/D1AY00200G]
21. Feng Wang, Zhen-Feng Li, Yuan-Yuan Yang, De-Bin Wan, Natalia Vasylieva, Yu-Qi Zhang, Jun Cai, Hong Wang, Yu-Dong Shen, Zhen-Lin Xu, Bruce D. Hammock.  (2020)  Chemiluminescent Enzyme Immunoassay and Bioluminescent Enzyme Immunoassay for Tenuazonic Acid Mycotoxin by Exploitation of Nanobody and Nanobody–Nanoluciferase Fusion.  ANALYTICAL CHEMISTRY,  92  (17): (11935–11942).  [PMID:32702970] [10.1021/acs.analchem.0c02338]
22. Xiaopeng Hu, Caiyun Wang, Meng Zhang, Faqiong Zhao, Baizhao Zeng.  (2020)  Ionic liquid assisted molecular self-assemble and molecular imprinting on gold nanoparticles decorated boron-doped ordered mesoporous carbon for the detection of zearalenone.  TALANTA,  217  (121032).  [PMID:32498821] [10.1016/j.talanta.2020.121032]
23. Yanhua He, Youwei Yu, Xiaoye Wen, Yan Shi, Jianhu Wu, Zhengping Guan, Meilin Cui, Chunling Xiao.  (2020)  A quencher-free 2-aminopurine modified hairpin aptasensor for ultrasensitive detection of Ochratoxin A.  SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY,  228  (117780).  [PMID:31753651] [10.1016/j.saa.2019.117780]
24. Tiange Li, Ge Guo, Meijun Lu, Puye Liang, Yan Ma, Lianjun Song, Xianqing Huang, Jiansheng Zhao, Tianlin Wang.  (2025)  A fluorescence and colorimetric dual-mode sensor based on the aptamer-adsorbed hollow cerium oxide for sensitive and visual detection of Aflatoxin B1 in food.  MICROCHEMICAL JOURNAL,  208  (112387).  [10.1016/j.microc.2024.112387]
25. Yuzheng CAI, Ge GUO, Yankun FU, Xianqing HUANG, Tianlin WANG, Tiange LI.  (2024)  A fluorescent aptasensor based on functional graphene oxide and FRET strategy simultaneously detects aflatoxins B1 and aflatoxins M1.  CHINESE JOURNAL OF ANALYTICAL CHEMISTRY,  52  (100408).  [10.1016/j.cjac.2024.100408]
26. Qi Liu, Sutong Li, Zongyi Li, Caifeng Zou, Shi Feng, Juncheng Song, Jie Zhang, Xiangyang Li.  (2025)  A novel multimodal nano-sensor detection system based on artificial intelligence and two-dimensional Mxenes for Ochratoxin A in food.  FOOD CONTROL,  170  (111055).  [10.1016/j.foodcont.2024.111055]
27. Yingao Yang, Ruipeng Chen, Yifen Guo, Jiaxin Zhang, Shuyue Ren, Huanying Zhou, Zhixian Gao.  (2025)  A two-color fluorescence sensing strategy based on functionalized tetrahedral DNAzyme nanotweezers for ochratoxin A detection.  TALANTA,  285  (127348).  [PMID:39675070] [10.1016/j.talanta.2024.127348]
28. Meijun Lu, Tianlin Wang, Tiange Li, Yan Ma, Xianqing Huang, Libin Wan, Fayun Wang, Lianjun Song.  (2025)  Aptamer based ratiometric determination of DON by exploiting the FRET between carbon dots and graphene oxide.  JOURNAL OF FOOD COMPOSITION AND ANALYSIS,  141  (107384).  [10.1016/j.jfca.2025.107384]
29. Lakshani Madushika, Yongming Huang, Menghan Sun, Yuxuan Liu, Linfang Lu, Xiaoli Li, Na Li, Kang Jiang, Sumei Ling, Shihua Wang.  (2025)  Development of sensitive and rapid immunoassays for Moniliformin (MON) detection based on nanomaterials labeled monoclonal antibodies.  FOOD CHEMISTRY,  (142911).  [PMID:39842210] [10.1016/j.foodchem.2025.142911]
30. Hongcheng Gao, Zhenzhen Xie, Shihao Xu, Changlong Jiang.  (2025)  MUA-modified Au nanocluster-driven fluorescence sensor for chromatographic test strips-based visual detection of patulin.  SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY,  (125736).  [PMID:39826168] [10.1016/j.saa.2025.125736]
31. Yu Wang, Xiaoming Ma.  (2025)  Nanosilver-Mediated Enzyme-Free Electrochemical Immunosensor with Enhanced Stability for Aflatoxin B1 Detection in Food Safety.  Analytical Methods,  [PMID:40099526] [10.1039/D5AY00248F]
32. Jinping Fan, Yuhan Zhang, Minyu Zuo, Shixuan Ding, Jingjing Li, Shengkai Feng, Yingping Xiao, Shiyu Tao.  (2024)  Novel mechanism by which extracellular vesicles derived from Lactobacillus murinus alleviates deoxynivalenol-induced intestinal barrier disruption.  ENVIRONMENT INTERNATIONAL,  185  (108525).  [PMID:38408410] [10.1016/j.envint.2024.108525]
33. Yue Feng, Jiakun Shen, Zishen Lin, Zeyi Chen, Min Zhou, Xi Ma.  (2024)  PXR Activation Relieves Deoxynivalenol-Induced Liver Oxidative Stress Via Malat1 LncRNA m6A Demethylation.  Advanced Science,  (2308742).  [PMID:38654691] [10.1002/advs.202308742]
34. Lianjun Song, Meijun Lu, Puye Liang, Tiange Li, Xianqing Huang, Yan Ma, Libin Wan, Tianlin Wang.  (2024)  Smartphone-assisted ratiometric FRET aptasensor based on quantum dots and gold nanoparticles for point-of-care testing of zearalenone in cereals.  FOOD CONTROL,  165  (110666).  [10.1016/j.foodcont.2024.110666]

溶液计算器