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Charm ROSA FAST5黄/曲霉毒素(定量)快速检测

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  • ¥5999 - 9999
  • Charm
  • 美国
  • LF-AFQ-FAST5-100K
  • 2026年02月02日
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  • 企业认证

    • 详细信息
    • 询价记录
    • 文献和实验
    • 技术资料
    • 保存条件

      2~8℃

    • 保质期

      1年以上

    • 英文名

      Charm ROSA FAST5 Aflatoxin (Quantitative) Rapid Test Strips

    • 库存

      大量

    • 供应商

      北京中检葆泰生物技术有限公司 

    • CAS号

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    产品详细信息----------------------------------------------------------------------------------------------------------------------------------------------------------

    产品名称:Charm ROSA FAST5黄/曲霉毒素(定量)快速检测条                  品牌:Charm
    货号:LF-AFQ-FAST5-100K                                                                       英文名:Charm ROSA FAST5 Aflatoxin (Quantitative) Rapid Test Strips
    供应商:北京中检葆泰生物技术有限公司                                                     产地:美国
    保质期:一年                                                                                              保存条件:2-30℃环境下干燥保存。


    产品简介--------------------------------------------------------------------------------------------------------------------------------------------------------------

    Charm®SL™黄/曲霉毒素M1快速检测条以免疫层析法为基础,运用ROSA-M侧流技术,采用美国限量(500 ppt,见表1)标准,定量检测牛奶中黄/曲霉毒素M1含量。牛奶样品与有颜色的微粒反应,反应完成后,使用ROSA-M读数仪读取检测区的颜色强度,并将结果换算为样品中黄/曲霉毒素M1浓度(以ppt计)。本产品可应用于奶站、养殖户、实验室、田间和检控人员。
    Charm®ROSA FAST5黄/曲霉毒素(定量)快速检测条以免疫层析法为原理,运用ROSA侧流技术,使用70%甲醇提取样品中的黄/曲霉毒素。样品提取物与检测条中有颜色的微粒反应。反应完成后,使用ROSA-M 读数仪读取检测区的颜色强度,并将结果换算为样品中黄/曲霉毒素浓度(以ppb计)

    产品亮点--------------------------------------------------------------------------------------------------------------------------------------------------------------

    • 定量结果(ppb)
    • 检测范围:0-150ppb
    • 快速一步检测
    • 灵敏、可靠、准确
    • 5分钟出结果
    • 70%甲醇提取
    • 大多数样品通过GIPSA认证
    • 同一套仪器适用于所有ROSA霉菌毒素检测条
    • 5分钟快速定量检测;

    • 拥有业内 、最完整的霉菌毒素检测卡组合;

    • 样品制备过程简单快速,呕吐毒素用水提取即可;

    • 检测过程中无需添加标准品,对检测人员无毒无害 ;

    • 检测结果与国标方法具有较高的一致性;

    • 广泛适用于实验室、粮仓、田间地头、农产品收购站等各种场合 ;

    • 产品通过USDA-GIPSA(美国农业部-美国谷物检验、批发及畜牧场管理局)和FGIS(联邦谷物检测局)认证  ;

    • 产品为中国国家粮食局行业标注!


    注意事项--------------------------------------------------------------------------------------------------------------------------------------------------------------

      高脂肪样品(>6.0%)会导致无效结果。不要将无效的检测条插入读数仪。
    2) 检测条上的碎片会影响读数仪光学性能,因此将检测条插入读数仪前,应擦去检测条上的灰尘和牛奶残渣,以保持设备清洁。
    3) ROSA-M孵育器或Charm EZ-M应保持清洁和水平,温度必须适宜。建议定期进行温度检查。不用时放低孵育器盖子但不要锁定。
    4) ROSA-M孵育器达到适合的温度需要10分钟左右,具体时间取决于室温。
    5) 移取时避免产生气泡和泡沫。
    6) 检测需在奶挤出5天内进行。
    7) 检测时,样品和SLAFMQ稀释缓冲液保持0-7℃。
    8) 检测需在室温下(10-30℃)进行。
    9) 孵育完成后,应在3分钟内读取结果,若延迟读数阳性结果会越来越强,而阴性结果则保持稳定。
    10)打开Charm EZ-M时如果没有SD卡会出现错误信息。

    储存条件--------------------------------------------------------------------------------------------------------------------------------------------------------------

    1. 储藏条件:2-30℃环境下干燥保存

    订货信息--------------------------------------------------------------------------------------------------------------------------------------------------------------
     

    订货信息

    产品名称 产品编号 规格
    Charm®ROSA FAST5黄/曲霉毒素(定量)快速检测条 LF-AFQ-FAST5-100K 100条
    45℃孵育器 LF-INC4-8-45D 1台
    Rosa-M Reader读数仪 LF-ROSAREADER-M-NB 1台

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    • 作者
    • 内容
    • 询问日期
    图标文献和实验
    该产品被引用文献
    引用文献--------------------------------------------------------------------------------------------------------------------------------------------------------------
     
    1刘晓庚. 储粮中真菌毒素及其防控[J]. 粮食与油脂,2008(8): 37-41.
     LIU X G. Mycotoxins in stored grains and their prevention and control [J]. Cereals Oils, 2008(8):37-41.
    2CREPPY E E. Update of survey, regulation and toxic effects of mycotoxins in Europe [J]. Toxicol. Lett., 2002,127(1-3): 19-28.
    3ZAIN M E. Impact of mycotoxins on humans and animals [J]. J. Saudi Chem. Soc., 2011,15(2):129-144.
    4MARCZUK J, OBREMSKI K, LUTNICKI K, et al.. Zearalenone and deoxynivalenol mycotoxicosis in dairy cattle herds [J]. Polish J. Vet. Sci., 2012,15(2):365-372.
    5BENNETT J W, KLICH M. Mycotoxins [J]. Clinical Microbiol. Rev., 2003,16(3):497-516.
    6MARIN S, RAMOS A J, CANO-SANCHO G, et al.. Mycotoxins: occurrence, toxicology, and exposure assessment [J]. Food Chem. Toxicol., 2013,60:218-237.
    7ESKOLA M, KOS G, ELLIOTT C T, et al.. Worldwide contamination of food-crops with mycotoxins: validity of the widely cited ‘FAO estimate’ of 25% [J]. Critical Rev. Food Sci. Nutr., 2020,60(16):2773-2789.
    8尚艳娥,杨卫民. CAC、欧盟、美国与中国粮食中真菌毒素限量标准的差异分析[J]. 食品科学技术学报,2019,37(1):10-15.
     SHANG Y E, YANG W M. Variation analysis of cereals mycotoxin limit standards of CAC, EU, USA, and China [J]. J. Food Sci. Technol., 2019,37(1):10-15.
    9李俊玲,王书舟,吴俊威,等.河南省粮食及其制品中真菌毒素污染情况调查[J]. 中国食品卫生杂志,2020,32(4):418-421.
     LI J L, WANG S Z, WU J W, et al.. Investigation of mycotoxin contamination in grain and its products in Henan province [J]. Chin. J. Food Hygiene, 2020,32(4):418-421.
    10VIARO H P, SILVA J, LARISSA D, et al.. The first report of Anovoparasiticus, Aarachidicola and Apseudocaelatus in Brazilian corn kernels [J]. Int. J. Food Microbiol.,2017,243:46-51.
    11YUNUS A W, RAZZZAI-FAZELI E, BOHM J. Aflatoxin B1 in affecting broiler’s performance, immunity, and gastrointestinal tract: a review of history and contemporary issues [J]. Toxins, 2011,3(6):566-590.
    12BENFORD D, BOLGER P M, CARTHEW P, et al.. Application of the margin of exposure (MOE) approach to substances in food that are genotoxic and carcinogenic [J]. Food and Chemical Toxicology, 2010, 48(1): 34-41.
    13PELLICER-CASTELL E, BELENGUER-SAPIA C, AMOROS P, et al.. Bimodal porous silica nanomaterials as sorbents for an efficient and inexpensive determination of aflatoxin M1 in milk and dairy products [J/OL]. Food Chem., 2020, 333: 127421[2021-06-29]. .
    14JUAN-GARCIA A, CARBONE S, BEN-MAHMOUD M, et al.. Beauvericin and ochratoxin A mycotoxins individually and combined in HepG2 cells alter lipid peroxidation, levels of reactive oxygen species and glutathione [J/OL]. Food Chem. Toxicol., 2020,139(1):111247 [2021-06-29]. .
    15CIMBALO A, ALONSQ-GARRIDO M, FONT G, et al.. Toxicity of mycotoxins in vivo on vertebrate organisms: a review [J/OL]. Food Chem. Toxicol., 2020, 137: 111161 [2021-06-29]. .
    16MARÍA L F C, MARCIA L M, JOSÉ L T. Mycotoxins in fruits and their processed products: analysis, occurrence and health implications [J]. J. Adv. Res., 2010,1(2):113-122.
    17MCMILLAN A, RENAUD J B, BURGESS K, et al.. Aflatoxin exposure in Nigerian children with severe acute malnutrition [J]. Food Chem. Toxicol., 2018,111:356-362.
    18WOOD J E, GILL B D, INDYK H E, et al.. Determination of aflatoxin M1 in liquid milk, cheese, and selected milk proteins by automated online immunoaffinity cleanup with liquid chromatography fluorescence detection [J]. J. AOAC Int., 2021,104(3):719-724.
    19劳文艳,林素珍.黄/曲霉毒素对食品的污染及危害[J]. 北京联合大学学报(自然科学版),2011,25(1): 64-69.
     LAO W Y, LIN S Z. The contamination and hazards of aflatoxin on food [J]. J. Beijing Union Univ. (Nat. Sci.), 2011,25(1):64-69.
    20孙丽娟,徐春春,胡学旭,等.我国谷物质量安全隐患浅析[J]. 中国农业科技导报,2017,19(9):8-14.
     SUN L J, XU C C, HU X X, et al.. Risk analysis of grain safety and quality in China [J]. J. Agric. Sci. Technol., 2017, 19(9):8-14.
    21GURBAN A M, EPURE P, OANCEA F, et al.. Achievements and prospects in electrochemical-based biosensing platforms for aflatoxin M1 detection in milk and dairy products [J/OL]. Sensors, 2017,17(12):2951 [2021-06-29]. .
    22MOLLAYUSEFIAN I, RANAEI V, PILEVAR Z, et al.. The concentration of aflatoxin M1 in raw and pasteurized livestock milk: a systematic review and meta-analysis [J]. Trends Food Sci. Technol., 2021,115:22-30.
    23黄/曲霉毒素高风险点在哪?过程控制如何到位? [N]. 中国市场监管报,2021-04-08(008).
    24国家卫生和计划生育委员会,国家食品药品监督管理总局. 食品安全国家标准食品中真菌毒素限量: [S]. 北京:中国标准出版社,2017.
    25U.S. Food and Drug Administration. Manual of compliance policy guides-chapter5-food, colors, and cosmetics [EB/OL] [2021-06-29]. .
    26Codex Alimentarius Commission. Codex general standard for contaminants and toxins in food and feed: Codex Stan 193-2017 [S]. Rome, 2017.
    27Specifications and standards for foods, additivesfood, etc. under the food sanitation law (abstracts) [S]. Standards Information Service, Japan External Trade Organization (JETRO), 2011.
    28U.S. Food and Drug Administration. Compliance program guidance manual, mycotoxins in domestic and imported foods: FY 15/16 7307.001, [S]. USA: Food and Drug Administration, 2015.
    29The Commission of The European Communities. REGULATION (EC) No 1881 /2006 of 19 December 2006 setting maximum levels for certain contaminants in foodstuffs: (EC) No 1881 /2006 [S]. Brussels, 2006.
    30SHEPHARD G S. Aflatoxin analysis at the beginning of the twenty-first century [J]. Anal. Bioanalytical Chem., 2009,395(5):1215-1224.
    31SADOK I, SZMAGARA A, STANISZEWSKA M M. The validated and sensitive HPLC-DAD method for determination of patulin in strawberries [J]. Food Chem., 2018, 245(15):364-370.
    32NARJIS N, AIZA K, KINZA K, et al.. Quantitative scrutinization of aflatoxins in different spices from Pakistan [J/OL]. Int. J. Environ. Anal. Chem., 2016, 2016:4907425 [2021-06-29]. .
    33ROMERA D, MATEO E M, Mateo-Castro R, et al.. Determination of multiple mycotoxins in feedstuffs by combined use of UPLCMS/MS and UPLCQTOF-MS [J]. Food Chem., 2018,267:140-148.
    34TARANNUM N, NIPA M N, DAS S, et al.. Aflatoxin M1 detection by ELISA in raw and processed milk in Bangladesh-Science Direct [J]. Toxicol. Rep., 2020,7:1339-1343.
    35TANG X Q, LI P W, ZHANG Q, et al.. Time-resolved fluorescence immunochromatographic assay developed using two idiotypic nanobodies for rapid, quantitative, and simultaneous detection of aflatoxin and zearalenone in maize and its products [J]. Anal. Chem., 2017, 89(21):11520-11528.
    36HU S R, DOU X W, ZHANG L, et al.. Rapid detection of aflatoxin B1 in medicinal materials of radix and rhizome by gold immunochromatographic assay [J]. Toxicon, 2018, 150:144-150.
    37LEE K M, HERRMAN T J, BISRAT Y, et al.. Feasibility of surface-enhanced Raman spectroscopy for rapid detection of aflatoxins in maize [J]. J. Agric. Food Chem., 2014, 62(19):4466-4474.
    38BHARDWAJ H, SUMANA G, MARQUETTE C A. Gold nanobipyramids integrated ultrasensitive optical and electrochemical biosensor for aflatoxin B1 detection [J/OL]. Talanta, 2020, 222: 121578 [2021-06-29]. .
    39邵瑞婷,张丽华,史娜,等. 免疫亲和净化-超高效液相色谱-串联质谱法测定食品中玉米赤霉烯酮类真菌毒素[J]. 食品科学, 2017, 38(16):274-279.
     SHAO R T, ZHANG L H, SHI N, et al.. Determination of zeranols in food by ultra performance liquid chromatography-tandem mass spectrometry with immunoaffinity column clean-up [J]. Food Sci., 2017,38(16): 274-279.
    40李丽,吴宇,王海波,等. 全自动免疫亲和固相萃取超高效液相色谱法测定粮油中黄/曲霉毒素[J]. 中国粮油学报,2020, 35(07): 157-164.
     LI L, WU Y, WANG H B, et al.. High throughput method for analysis of aflatoxins in cereals and oils using automated immunoaffinity cleaning up and ultra-high performance liquid chromatography [J]. J. Chin. Cereals Oils Association, 2020,35(7):157-164.
    41周欣,张琳,毛婵,等.免疫亲和柱-液相色谱法测定麦麸中黄/曲霉毒素含量[J]. 食品工业,2019,40(2):327-330.
     ZHOU X, ZHANG L, MAO C, et al.. Determination of aflatoxin content in wheat bran by immunoaffinity column-liquid chromatography [J]. Food Ind., 2019,40(2):327-330.
    42靳雨婷,陈金嫒,任涛涛,等. 食品中恩诺沙星残留检测方法研究进展[J/OL]. 食品科学,2021,[2021-05-23]. .
    43SAINI S S, ABDEL-REHIM M. Integrated extraction approach for trace analysis of aflatoxin B1 in domestic water tanks using HPLC [J]. Separation Sci. Plus, 2020,3(5):167-174.
    44MOHAMMAD K, AKNAR M, MEHRGARDI M A. Aptamer functionalized magnetic nanoparticles for effective extraction of ultratrace amounts of aflatoxin M1 prior its determination by HPLC [J]. J. Chromatography A, 2018,1564:85-93.
    45李金宝. 高效液相色谱和液相色谱串联质谱技术在检测苹果制品中展青霉素的研究进展[J]. 食品安全质量检测学报,2020, 11(5): 1347-1353.
     LI J B. Research progress of high performance liquid chromatography and liquid chromatography tandem mass spectrometry for the determination of penicillin in apple products [J]. J. Food Saf. Quality, 2020,11(5):1347-1353.
    46刘业萍.液质联用技术在非法添加检验工作中的应用[J]. 北方药学,2014,11(12):177.
    47陈鑫璐,邱月,张建友,等. 国内外谷物中多种真菌毒素限量和同步检测标准及方法研究进展[J/OL]. 中国粮油学报, 2021 [2021-05-23]. .
     CHEN X L, QIU Y, ZHANG J Y, et al.. Domestic and foreign research progress on the limit standards and simultaneous detection standards and methods of multiple mycotoxins in grain [J/OL]. J. Chin. Cereals Oils Association, 2021 [2021-05-23]. .
    48DENG Y, WANG Y, DENG Q, et al.. Simultaneous quantification of aflatoxin B1, T-2 toxin, ochratoxin A and deoxynivalenol in dried seafood products by LC-MS/MS [J/OL]. Toxins, 2020,12(8):488 [2021-06-29]. .
    相关实验
    • 胶体金三线定量法,革新的霉菌毒素检测方法

      的快速定性或定量检测,是一种稳定、灵敏的检测方法。该方法操作简单,无需专业培训,几分钟即可完成检测,非常适用于现场快速检测。目前胶体金免疫层析技术在霉菌毒素检测中的应用已经非常广泛,但是由于只有一条检测线和一条质控线,通常只能进行定性检测,无法准确定量。针对这一情况,美国 Charm公 司的科学家对定性霉菌毒素检测进行了改进,增加了一条检测线,全球首创三线定量检测即包括两条检测线和一条质控线,同时结合读数仪,可实现准确定量Charm Rosa 霉菌毒素定量检测系统采用的就是三线定量

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    Charm ROSA FAST5黄/曲霉毒素(定量)快速检测
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