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黄曲霉毒素B1

    
分析标准品,Purity≥98%

AflatoxinB1

源叶
B24051 一键复制产品信息
1162-65-8
C17H12O6
312.27
MFCD00869647
黄曲霉毒素B1; 黄曲霉毒素 B1;;AFLATOXIN B1; Aflatoxin B1; Aflatoxin B1 Crystalline; Aflatoxin B1, crystalline;
货号 规格 价格 上海 北京 武汉 南京 购买数量
B24051-1mg 分析标准品,Purity≥98% ¥810.00 >10 - 3 7
B24051-5mg 分析标准品,Purity≥98% ¥3000.00 >10 - - -
B24051-10mg 分析标准品,Purity≥98% ¥5000.00 >10 - - -
产品介绍 参考文献(102篇) 质检证书(COA) 摩尔浓度计算器 相关产品

产品介绍

熔点: 268-269 °C
沸点: 372.21°C
比旋光度: D -558° (c = 0.1 in CHCl3); D -480° (c = 0.1 in DMF)
外观: 白色至类白色
溶解性: 氯仿,二氯甲烷,乙腈:1mg/ml
DMSO:10mg/ml
储存条件: 2-8℃
注意: 部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。

参考文献(102篇)

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[IF=13.3] Boyuan Jia et al."Investigation on fluorescence enhancement of DNA tetrahedral structures modified DNA-silver nanoclusters for biosensing."CHEMICAL ENGINEERING JOURNAL.2025 Apr;:162251 92. [IF=4.8] Yihao Li et al."A colorimetric and electrochemical dual-modal ochratoxin a aptasensor based on branched hybridization chain reaction signal amplification."BIOELECTROCHEMISTRY.2025 Oct;165:108984 91. [IF=6] Sixian Wang et al."Aptamer-based lateral flow strip for rapid detection of AFB1 in peanuts, soybeans, corn, and rice."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 May;223:117741 90. [IF=5.6] Shuang Liu et al."Catalytic hairpin assembly assists CRISPR/Cas12a-mediated high-sensitivity detection of aflatoxin B1."TALANTA.2025 Oct;293:128043 89. [IF=5.3] Guo Liang et al."Signal-enhanced electrochemical sensor employing MWCNTs/CMK-3/AuNPs and Au@Pd core–shell structure for sensitive determination of AFB1 in complex matrix."MICROCHIMICA ACTA.2024 Oct;191(10):1-13 88. [IF=5.7] Mingru Yao et al."A ratiometric fluorescent biosensing platform based on CDs and AuNCs@CGO for patulin detection."ANALYTICA CHIMICA ACTA.2024 Sep;:343279 87. [IF=8.5] Cong Wang et al."A multi-verse optimizer-based CNN-BiLSTM pixel-level detection model for peanut aflatoxins."FOOD CHEMISTRY.2025 Jan;463:141393 86. [IF=8.5] Huimin Zhou et al."Development of a mesoporous polypyrrole nanofiber mat for simultaneous detection of multiple mycotoxins in various foods."FOOD CHEMISTRY.2025 Jan;463:141153 85. [IF=12.2] Shunli Hu et al."Widespread Distribution of the DyP-carrying Bacteria Involved in the Aflatoxin B1 Biotransformation in Proteobacteria and Actinobacteria."JOURNAL OF HAZARDOUS MATERIALS.2024 Aug;:135493 84. [IF=3.1] Jiaying Sheng et al."Simultaneous detection of five mycotoxins in traditional Chinese medicines (TCMs) by visual protein microarray."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2024 Oct;249:116333 83. [IF=4.9] Qi Sun et al."Development of a “Signal-On” Fluorescent Aptasensor for Highly Selective and Sensitive Detection of ZEN in Cereal Products Using Nitrogen-Doped Carbon Dots Based on the Inner Filter Effect."Biosensors-Basel.2024 Jul;14(7):347 82. [IF=8.5] Chen Zhan et al."Magnetic relaxation switching immunosensor based on polystyrene microcolumn and tyramine signal amplification for ultrasensitive and user-friendly detection of aflatoxin B1 in corn."FOOD CHEMISTRY.2024 Jul;:140362 81. [IF=5.3] Guo Wentao et al."An electrochemical aptasensor for zearalenone detection based on the Co3O4/MoS2/Au nanocomposites and hybrid chain reaction."MICROCHIMICA ACTA.2024 Jul;191(7):1-13 80. [IF=4.2] Jia Guo et al."Identification of a Novel Aflatoxin B1-Degrading Strain, Bacillus halotolerans DDC-4, and Its Response Mechanisms to Aflatoxin B1."Toxins".2024 Jun;16(6):256 79. [IF=4.7] Qingru Geng et al."The Autophagy-Related Protein ATG8 Orchestrates Asexual Development and AFB1 Biosynthesis in Aspergillus flavus."Journal of Fungi".2024 May;10(5):349 78. [IF=4.8] Rou Zhang et al."Biotransformation of aflatoxin B1 by a novel strain Brevundimonas sp. LF-1."INTERNATIONAL BIODETERIORATION & BIODEGRADATION".2024 Jun;191:105810 77. [IF=7] Mingsan Miao et al."A controllable Y-shaped DNA structure assisted aptasensor for simultaneous detection of AFB1 and OTA based on ARGET ATRP."Journal of Materials Chemistry B".2024 May;: 76. [IF=8.8] Supan Cheng et al."A biosensor method based on surfactant-mediated surface droplet evaporation for the detection of Aflatoxin B1."FOOD CHEMISTRY".2024 Sep;453:139635 75. [IF=8.4] Zhuoqun Su et al."An aptamer-triggered hybridization chain reaction strategy for ultra-sensitive biological nanopore detection of aflatoxin B1."SENSORS AND ACTUATORS B-CHEMICAL".2024 May;407:135457 74. [IF=3.6] Xiaoni Wang et al."Isolation, Characterization, and Biopreservation of Lactobacillus brevis DN-1 to Inhibit Mold and Remove Aflatoxin B1 in Peanut and Sunflower Cakes."Agriculture-Basel".2024 May;14(5):698 73. [IF=6.1] Handong Yao et al."A magnetic graphene oxide and UiO-66 based homogeneous dual recognition electrochemical aptasensor for accurate and sensitive detection of aflatoxin B1."TALANTA".2024 Jun;273:125915 72. [IF=17.1] Peng Lu et al."A Wash-Free Spheres-on-Sphere Strategy for On-Site and Multiplexed Biosensing."ACS Nano".2024;XXXX(XXX):XXX-XXX 71. [IF=5.9] Jiaojiao Zhou et al."Aptamers Adsorbed on WSe2 Nanosheets in a Label-Free Colorimetric Aptasensor for Ochratoxin A."ACS Applied Nano Materials".2024;XXXX(XXX):XXX-XXX 70. [IF=3] Jingyang Zhang et al."Curcumin Mitigates Oxidative Damage in Broiler Liver and Ileum Caused by Aflatoxin B1-Contaminated Feed through Nrf2 Signaling Pathway."Animals.2024 Jan;14(3):409 69. [IF=8.4] Xin Gao et al."Bromoperoxidase mimicry based on Bi2O2.33 nanosheets for aptasensing."SENSORS AND ACTUATORS B-CHEMICAL.2024 Apr;405:135360 68. [IF=2] Mei Wu et al."Novel Label-Free GelRed-Aptamer Sensor for the Rapid Determination of Deoxynivalenol in Wheat Caused by Fusarium graminearum."ANALYTICAL LETTERS. 67. [IF=3.9] Huimin Ma et al."Effects of lycopene on the growth performance, meat quality, and antioxidant capacity of broiler chickens challenged with aflatoxin B1."JOURNAL OF FOOD SCIENCE.2023 Nov;: 66. [IF=5.2] Ajuan Niu et al."The Temporal Dynamics of Sensitivity, Aflatoxin Production, and Oxidative Stress of Aspergillus flavus in Response to Cinnamaldehyde Vapor."Foods.2023 Jan;12(23):4311 65. [IF=4.8] Zafar Iqbal Tanveer et al."Reduced graphene oxide-zinc iron oxide nanomaterial as selective dispersive solid-phase extraction sorbent for extraction and enrichment of aflatoxins from milk combined with UHPLC-MS/MS analysis."MICROCHEMICAL JOURNAL.10.1016/j. 64. [IF=6] Haocheng Liu et al."Rhodococcus turbidus PD630 enables efficient biodegradation of aflatoxin B1."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Aug;186:115225 63. [IF=6] Jianmei Li et al."A novel fluorescent sensing platform based on nitrogen-doped carbon quantum dots for rapid and sensitive detection of aflatoxin B1 in corn flour."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Aug;185:115130 62. [IF=6.2] Qi Sun et al."Development of a novel fluorescent aptasensor based on the interaction between hexagonal β-Co(OH)2 nanoplates and nitrogen-doped carbon dots for ultrasensitive detection of patulin."ANALYTICA CHIMICA ACTA.2023 Aug;:341710 61. [IF=2.9] Zafar Iqbal Tanveer et al."Evaluation of reduced graphene oxide-based nanomaterial as dispersive solid phase extraction sorbent for isolation and purification of aflatoxins from poultry feed, combined with UHPLC–MS/MS analysis."Food Additives and Contamin 60. [IF=7.3] Xinyu Yao et al."A new platform for rapid and indiscriminate detection of environmental pollutants based on surface-enhanced Raman spectroscopy."Environmental Science-Nano.2023 Jul;: 59. [IF=2.8] Kang Cheng et al."Hepatoprotective effects of chlorogenic acid on mice exposed to aflatoxin B1: Modulation of oxidative stress and inflammation."TOXICON.2023 Jun;:107177 58. [IF=2.8] Kang Cheng et al."Protective effects of polydatin on ileum injury in mice exposed to aflatoxin B1."TOXICON.2023 Jun;:107203 57. [IF=6.2] Na Zhang et al."In-situ synthesis of sepiolite-supported ceria nanocrystal composites for efficient removal of aflatoxin B1: Enhanced degradation of mycotoxins in the environment by sepiolite nanofibers."JOURNAL OF ALLOYS AND COMPOUNDS.2023 Oct;960:170800 56. [IF=14.9] Xu Guohua et al."Structural basis for high-affinity recognition of aflatoxin B1 by a DNA aptamer."NUCLEIC ACIDS RESEARCH.2023 Jun;: 55. [IF=9.231] Jiaojiao Zhou et al."Passion fruit-inspired dendritic mesoporous silica nanospheres-enriched quantum dots coupled with magnetism-controllable aptasensor enable sensitive detection of ochratoxin A in food products."FOOD CHEMISTRY.2023 Nov;425:136445 54. [IF=14.224] Letian Li et al.""Lollipop" particle counting immunoassay based on antigen-powered CRISPR-Cas12a dual signal amplification for the sensitive detection of deoxynivalenol in the environment and food samples."JOURNAL OF HAZARDOUS MATERIALS.2023 Aug;455:13157 53. [IF=11.072] Chun Wang et al."Converting waste expanded polystyrene into higher-value-added hyper-crosslinked porous polymer for rapid and high-efficient adsorption of aflatoxins."Journal of Cleaner Production.2023 Jul;408:137102 52. [IF=4.472] Kang Cheng et al."Aflatoxin-B1-Exposure-Induced Hepatic Injury Could Be Alleviated by Polydatin through Reducing Oxidative Stress, Inhibiting Inflammation and Improving Mitophagy."Toxics.2023 Apr;11(4):309 51. [IF=7.425] Lifeng Wang et al."A novel 3D bio-printing “liver lobule” microtissue biosensor for the detection of AFB1."FOOD RESEARCH INTERNATIONAL.2023 Jun;168:112778 50. [IF=10.753] Kai Wang et al."Electrochemical aptasensor based on exonuclease III-mediated signal amplification for sensitive detection of vomitoxin in cornmeal."SCIENCE OF THE TOTAL ENVIRONMENT.2023 Jun;875:162561 49. [IF=4.331] Yan Zhao et al."Removal of Aflatoxin B1 and Zearalenone in Mixed Aqueous Solution by Palygorskite-Montmorillonite Materials In Situ Prepared from Palygorskite Mineral."LANGMUIR.2023;XXXX(XXX):XXX-XXX 48. [IF=5.895] Zhilong Wang et al."CRISPR/Cas12a-Assisted Chemiluminescence Sensor for Aflatoxin B1 Detection in Cereal Based on Functional Nucleic Acid and In-Pipet Rolling Circle Amplification."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX 47. [IF=6.556] Cuiyun Zhou et al."Polystyrene microsphere-mediated optical sensing strategy for ultrasensitive determination of aflatoxin M1 in milk."TALANTA.2023 Jun;258:124357 46. [IF=12.545] Peng Lu et al."Cartridge voltage-sensitive micropump immunosensor based on a self-assembled polydopamine coating mediated signal amplification strategy."BIOSENSORS & BIOELECTRONICS.2023 Jan;:115087 45. [IF=7.425] Ajuan Niu et al."New insights into the persistent effect of transient cinnamaldehyde vapor treatment on the growth and aflatoxin synthesis of Aspergillus flavus."FOOD RESEARCH INTERNATIONAL.2023 Jan;163:112300 44. [IF=6.556] Bin Zhou et al."CRISPR/Cas14 provides a promising platform in facile and versatile aptasensing with improved sensitivity."TALANTA.2023 Mar;254:124120 43. [IF=9.231] Mingming Xu et al."Phenyl-imidazole based and nitrogen rich hyper-crosslinked polymer for sensitive determination of aflatoxins."FOOD CHEMISTRY.2023 Mar;405:134847 42. [IF=10.383] Liangqiong Ren et al."“Three-in-one” Zr-MOF Multifunctional Carrier-mediated Fluorescent and Colorimetric Dual-signal Readout Biosensing Platform to Enhance Analytical Performance."ACS Applied Materials & Interfaces.2022;XXXX(XXX):XXX-XXX 41. [IF=5.318] Mengmeng Ji et al."Synergistic effect of oregano essential oil fumigation combined with infrared heating on the inactivation of Aspergillus flavus."Food Bioscience.2022 Dec;50:102136 40. [IF=16.744] Qianqian Wang et al."Design of hyper-cross-linked polymers with tunable polarity for effective preconcentration of aflatoxins in grain."CHEMICAL ENGINEERING JOURNAL.2022 Oct;:139544 39. [IF=4.478] Wang Long et al."FeMOF-based nanostructured platforms for T-2 toxin detection in beer by a “fence-type” aptasensing principle."ANALYTICAL AND BIOANALYTICAL CHEMISTRY.2022 Sep;:1-10 38. [IF=16.744] Feng Hong et al."Kill three birds with one stone: Zr-MOF-mediated composite multi-functional materials to enhance the efficiency for fluorescent and colorimetric dual-signal readout bioassay."CHEMICAL ENGINEERING JOURNAL.2023 Jan;452:139149 37. [IF=3.2] Zheng Yi et al."Determination of Mycotoxins and Veterinary Medicines in Duck Flesh and Viscera and Assessment of Their Exposure."JOURNAL OF FOOD QUALITY.2022;2022:2734839 36. [IF=4.036] Chaoyi Zeng et al."Determination of aflatoxin B1 in Pixian Douban based on aptamer magnetic solid-phase extraction."RSC Advances.2022 Jun;12(30):19528-19536 35. [IF=5.561] Ruobing Liu et al."Selection and Characterization of DNA Aptamers for Constructing Aptamer-AuNPs Colorimetric Method for Detection of AFM1."Foods.2022 Jan;11(12):1802 34. [IF=6.911] Wenli Wu et al."Colorimetric liquid crystal-based assay for the ultrasensitive detection of AFB1 assisted with rolling circle amplification."ANALYTICA CHIMICA ACTA.2022 Aug;1220:340065 33. [IF=7.514] Supan Cheng et al."Surface-anchored liquid crystal droplets for the semi-quantitative detection of Aflatoxin B1 in food samples."FOOD CHEMISTRY. 2022 Oct;390:133202 32. [IF=4.35] Sanjun Jin et al."Dietary Curcumin Alleviated Aflatoxin B1-Induced Acute Liver Damage in Ducks by Regulating NLRP3–Caspase-1 Signaling Pathways."Foods. 2021 Dec;10(12):3086 31. [IF=2.752] Fangju Liu et al."Resveratrol Relieved Acute Liver Damage in Ducks (Anas platyrhynchos) Induced by AFB1 via Modulation of Apoptosis and Nrf2 Signaling Pathways."Animals-Basel. 2021 Dec;11(12):3516 30. [IF=10.588] Rui Chen et al."Polydopamine nanoparticle-mediated, click chemistry triggered, microparticle-counting immunosensor for the sensitive detection of ochratoxin A."J Hazard Mater. 2022 Apr;428:128206 29. [IF=4.098] Hongyan Zhang et al."Visual detection of aflatoxin B1 based on specific aptamer recognition combining with triple amplification strategy."Spectrochim Acta A. 2022 Jan;:120862 28. [IF=3.591] Liangrui Lv et al."A switchable electrochemical hairpin-aptasensor for ochratoxin A detection based on the double signal amplification effect of gold nanospheres."New J Chem. 2022 Jan;: 27. [IF=2.217] Xiaoli Wan et al."Lycopene alleviates aflatoxin B1 induced liver damage through inhibiting cytochrome 450 isozymes and improving detoxification and antioxidant systems in broiler chickens."Ital J Anim Sci. 2022;21(1):31-40 26. [IF=1.559] Huang Tao et al."Effects of dietary supplementation with Ampelopsis grossedentata extract on production performance and body health of hens."Trop Anim Health Pro. 2022 Feb;54(1):1-14 25. [IF=7.312] Yan Li et al."Self-templating construction of flower-like mesoporous magnesium silicate composites from sepiolite for high-efficiency adsorption of aflatoxin B1."Sep Purif Technol. 2022 Jun;291:120953 24. [IF=2.752] Md Touhiduzzaman Sarker et al.Dietary Lycopene Supplementation Could Alleviate Aflatoxin B1 Induced Intestinal Damage through Improving Immune Function and Anti-Oxidant Capacity in Broilers.Animals-Basel. 2021 Nov;11(11):3165 23. [IF=1.749] Md Touhiduzzaman Sarker et al."Evaluation of the protective effect of lycopene on growth performance, intestinal morphology, and digestive enzyme activities of aflatoxinB1 challenged broilers."Anim Sci J. 2021 Jan;92(1):e13540 22. [IF=3.352] X.L. Wan et al."Protective effects of lycopene on mitochondrial oxidative injury and dysfunction in the liver of aflatoxin B1-exposed broilers."Poultry Sci. 2021 Nov;100:101441 21. [IF=5.373] Han Yan et al."A label-free electrochemical immunosensing platform based on PEI-rGO/Pt@Au NRs for rapid and sensitive detection of zearalenone."Bioelectrochemistry. 2022 Feb;143:107955 20. [IF=5.64] Zhao Qiannan et al."Inhibitory Effects of Eurotium cristatum on Growth and Aflatoxin B1 Biosynthesis in Aspergillus flavus."Front Microbiol. 2020 May;0:921 19. [IF=5.833] He Baoshan et al."An amperometric zearalenone aptasensor based on signal amplification by using a composite prepared from porous platinum nanotubes, gold nanoparticles and thionine-labelled graphene oxide."Microchim Acta. 2019 Jun;186(6):1-10 18. [IF=7.46] Long Wang et al."A DNAzyme-assisted triple-amplified electrochemical aptasensor for ultra-sensitive detection of T-2 toxin."Sensor Actuat B-Chem. 2021 Feb;328:129063 17. [IF=7.46] Baoshan He et al."A “signal-on” voltammetric aptasensor fabricated by hcPt@AuNFs/PEI-rGO and Fe3O4NRs/rGO for the detection of zearalenone."Sensor Actuat B-Chem. 2019 Jul;290:477 16. [IF=9.038] Junpeng Zhao et al."Horseradish peroxidase-catalyzed formation of polydopamine for ultra-sensitive magnetic relaxation sensing of aflatoxin B1."J Hazard Mater. 2021 Jun;:126403 15. [IF=10.588] Zhiwei Sun et al."Functionalized nanoflower-like hydroxyl magnesium silicate for effective adsorption of aflatoxin B1."J Hazard Mater. 2020 Apr;387:121792 14. [IF=10.618] Feng Hong et al."Highly sensitive magnetic relaxation sensing method for aflatoxin B1 detection based on Au NP-assisted triple self-assembly cascade signal amplification."Biosens Bioelectron. 2021 Nov;192:113489 13. [IF=13.273] Baoshan He et al."Nb.BbvCI powered DNA walking machine-based Zr-MOFs-labeled electrochemical aptasensor using Pt@AuNRs/Fe-MOFs/PEI-rGO as electrode modification material for patulin detection."Chem Eng J. 2021 Feb;405:126642 12. [IF=1.554] Pinzhu Qin et al."A potential reusable fluorescent aptasensor based on magnetic nanoparticles for ochratoxin A analysis."Open Chem. 2019 Jan;17(1):1301-1308 11. [IF=6.057] Yongmei Jia et al."A label-free fluorescent aptasensor for the detection of Aflatoxin B1 in food samples using AIEgens and graphene oxide."Talanta. 2019 Jun;198:71 10. Wan, Xiaoli, et al. "Lycopene alleviates AFB1-induced liver damage possibly through inhibiting cytochrome 450 isozymes and improving Nrf2-miediated detoxi cation and antioxidant systems in broiler chickens." (2020). 9. Baoshan He, Xiaoze Dong, Nb.BbvCI powered DNA walking machine-based Zr-MOFs-labeled electrochemical aptasensor using Pt@AuNRs/Fe-MOFs/PEI-rGO as electrode modification material for patulin detection, Chemical Engineering Journal, Volume 405, 2021, 126642, 8. Baoshan He, Xiaohai Yan, A “signal-on” voltammetric aptasensor fabricated by hcPt@AuNFs/PEI-rGO and Fe3O4NRs/rGO for the detection of zearalenone, Sensors and Actuators B: Chemical, Volume 290, 2019, Pages 477-483, ISSN 0925-4005, https://doi.org/10.1016/j 7. Zhiming Sun, Ankang Song, Bin Wang, Gaofeng Wang, Shuilin Zheng, Adsorption behaviors of aflatoxin B1 and zearalenone by organo-rectorite modified with quaternary ammonium salts, Journal of Molecular Liquids, Volume 264, 2018, Pages 645-651, ISSN 0167-7322 6. Sun, Zhiwei, et al. "Functionalized nanoflower-like hydroxyl magnesium silicate for effective adsorption of aflatoxin B1." Journal of hazardous materials 387 (2020): 121792.https://doi.org/10.1016/j.jhazmat.2019.121792 5. Zhao, Qiannan, et al. "Inhibitory Effects of Eurotium cristatum on Growth and Aflatoxin B1 Biosynthesis in Aspergillus flavus." Frontiers in Microbiology 11 (2020): 921.https://doi.org/10.3389/fmicb.2020.00921 4. He, B., Yan, X. An amperometric zearalenone aptasensor based on signal amplification by using a composite prepared from porous platinum nanotubes, gold nanoparticles and thionine-labelled graphene oxide. Microchim Acta 186, 383 (2019). https://doi.org/10.1 3. 李满秀, 任光明, 杜丽娟,等. 碳量子点/银复合材料用于食用油中黄曲霉毒素B1的检测[J]. 中国油脂, 2018, 43(4): 53-56. 2. 刘若云,傅春妮,胡婷婷,郑祉迅,秦顺义.壳聚糖硒对饲喂黄曲霉毒素B_1小鼠生长及抗氧化功能的影响[J].养殖与饲料,2020,19(08):40-41. 1. 王春燕, 蒋晓青, 周泊. 基于Cu-TPA的电化学生物传感器对黄曲霉毒素B1的检测[J]. 高等学校化学学报, 2019, 40(11).

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摩尔浓度计算器

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