日韩欧美 a级,国产又色又爽又刺激在线观看,偷偷色噜狠狠狠狠的777米奇,浮妇高潮喷白浆视频

產(chǎn)品中心

Product center

氯霉素 HPLC≥98%

Chloramphenicol

源葉
B24216
56-75-7
C11H12Cl2N2O5
323.13
MFCD00078159
品牌 貨號(hào) 產(chǎn)品規(guī)格 價(jià)格(RMB) 庫(kù)存(上海) 北京 武漢 南京 購(gòu)買數(shù)量
源葉 B24216-500mg HPLC≥98% ¥150.00元 >10 2 10 -
產(chǎn)品介紹 參考文獻(xiàn)(78篇) 質(zhì)檢證書(shū)(COA) 摩爾濃度計(jì)算器 相關(guān)產(chǎn)品

產(chǎn)品介紹

Chloramphenicol 是一種口服有效的廣譜抗生素 (antibiotic)。Chloramphenicol 具有抗菌 (antibacterial) 活性。Chloramphenicol 抑制缺氧 A549 和 H1299 細(xì)胞中氧不穩(wěn)定轉(zhuǎn)錄因子和缺氧誘導(dǎo)因子-1α (HIF-1α)。Chloramphenicol 可抑制血管內(nèi)皮生長(zhǎng)因子 (VEGF) 和葡萄糖轉(zhuǎn)運(yùn)蛋白 1 (glucose transporter 1) 的 mRNA 水平,最終降低 VEGF 的釋放。Chloramphenicol 可用于厭氧菌感染和肺癌研究。

熔點(diǎn): 149-153°C
沸點(diǎn): 644.9 °C at 760 mmHg
外觀: 白色或微黃帶綠色針狀結(jié)晶
溶解性: DMSO  :  ≥  150  mg/mL  (464.21  mM)

Ethanol  :  100  mg/mL  (309.47  mM;  Need  ultrasonic)

H2O  :  3.06  mg/mL  (9.47  mM;  Need  ultrasonic)
儲(chǔ)存條件: 2-8℃
注意: 部分產(chǎn)品我司僅能提供部分信息,我司不保證所提供信息的權(quán)威性,僅供客戶參考交流研究之用。

參考文獻(xiàn)(78篇)

73. [IF=6.1] Qianwei Qu et al."Glabridin restore the sensitivity of colistin against mcr-1-positive Escherichia coli by polypharmacology mechanism."MICROBIOLOGICAL RESEARCH.2025 Apr;293:128070 72. [IF=10.4] Zhang Houpu et al."Integrating livestock and aquatic plant towards mitigating antibiotic resistance transmission from swine wastewater."npj Clean Water.2025 Feb;8(1):1-12 71. [IF=12.2] Zewen Tan et al."Biodegradation and bioaugmentation of the co-contamination of chloramphenicol and microplastics by Exiguobacterium sp. CAP4 isolated from a contaminated plastisphere."JOURNAL OF HAZARDOUS MATERIALS.2025 Mar;:137973 70. [IF=3.2] Xinyao Wang et al."Bigels as capsaicin and gallic acid co-delivery systems: Controlled release and enhanced bioavailability."JOURNAL OF FOOD SCIENCE.2025 Mar;90(3):e70147 69. [IF=3.1] Xiaojian Lin et al."UPLC-Q-TOF/MS-based study on chemical composition, in vivo metabolites, and tissue distribution of ethanol extract of Ganoderma lucidum."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2025 Apr;:116886 68. [IF=5] Chi Zhao et al."A novel high-level phenyllactic acid fungal producer, Kodamaea ohmeri w5 screened from fermented broad bean-chili-paste."INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY.2025 Jan;426:110923 67. [IF=2.7] Li Zheng et al."Selective adsorption and photodegradation of residual norfloxacin in water by mTiO2 based inorganic molecularly imprinted magnetic photocatalyst."NEW JOURNAL OF CHEMISTRY.2024 Aug;: 66. [IF=3.7] Tongtong Zhang et al."Insertion with long target duplication in polymyxin B-induced resistant mutant of Salmonella."Journal of Global Antimicrobial Resistance.2024 Sep;38:231 65. [IF=6.3] Yujiang Luo et al."The metabolic fate and detoxifying biotransformation of chloramphenicol by Citrobacter sp. SZW2."Journal of Water Process Engineering.2024 Aug;65:105802 64. [IF=3.6] Chen Zhang et al."Isolation of Bacillus velezensis from Silage and Its Effect on Aerobic Stability and In Vitro Methane Production of Whole-Plant Corn Silage."Agriculture-Basel".2024 Jun;14(6):830 63. [IF=3.7] Zhenbo Xu et al."Differential alteration in Lactiplantibacillus plantarum subsp. plantarum quorum-sensing systems and reduced Candida albicans yeast survival and virulence gene expression in dual-species interaction."Microbiology Spectrum.10.1128/spectrum 62. [IF=4.5] Danhong Wang et al."Prevalence of Antibiotic Resistance and Virulence Genes in Escherichia coli Carried by Migratory Birds on the Inner Mongolia Plateau of Northern China from 2018 to 2023."Microorganisms".2024 Jun;12(6):1076 61. [IF=9.9] Hui Feng et al."A facile electrochemical aptasensor for chloramphenicol detection based on synergistically photosensitization enhanced by SYBR Green I and MoS2."JOURNAL OF COLLOID AND INTERFACE SCIENCE".2024 May;: 60. [IF=4.4] Liping Sun et al."Optimisation of fermentation for developing a novel low-allergenic fermented milk beverage with reduced antigenicity."INTERNATIONAL JOURNAL OF DAIRY TECHNOLOGY".2024 Apr;: 59. [IF=3.9] Hangyu Guo et al."A Novel Electrochemical Sensor for Chloramphenicol Based on MXenes and Carbon Nanofiber from Bacterial Cellulose."JOURNAL OF THE ELECTROCHEMICAL SOCIETY".2024 Mar;: 58. [IF=13.6] Weimei Jin et al."Exposure to trace levels of live seaweed-derived antibacterial 2,4,6-tribromophenol modulates β-lactam antibiotics resistance in Vibrio."JOURNAL OF HAZARDOUS MATERIALS".2024 May;469:133774 57. [IF=4.8] Yuhang Fan et al."A bioluminescence method based on NLuc-TetR for the detection of nine Tetracyclines in milk."MICROCHEMICAL JOURNAL.2024 Apr;199:109931 56. [IF=8.1] Qing Gu et al."Selecting autochthonous lactic acid bacteria for co-inoculation in Chinese bayberry wine production: stress response, starter cultures application and volatilomic study."FOOD RESEARCH INTERNATIONAL.2024 Jan;:113976 55. [IF=2] Wentao Guo et al."Electrochemical Determination of Tetracycline Using the Synergy of a Molybdenum (IV) Sulfide-Thionine Nanocomposite with an Aptamer by Differential Pulse Voltammetry (DPV)."ANALYTICAL LETTERS. 54. [IF=5.8] Lujun Yin et al."Tyramine, one quorum sensing inhibitor, reduces pathogenicity and restores tetracycline susceptibility in Burkholderia cenocepacia."BIOCHEMICAL PHARMACOLOGY.2023 Nov;:115906 53. [IF=3.1] Tingxia Li et al."A portable test strip fabricated of luminescence lanthanide-functionalized metal-organic frameworks for rapid and visual detection of tetracycline antibiotics."Analytical Methods.2023 Aug;: 52. [IF=6] Shan Qin et al."Genomic and biogenic amine-reducing characterization of Lactiplantibacillus planatraum JB1 isolated from fermented dry sausage."FOOD CONTROL.2023 Dec;154:109971 51. [IF=2.8] Xiaoping Lu et al."Comparison of Antibiotic Resistance Profiles of Salmonella Isolates from Retail Meats in Nanchang, China, in Two Periods."Foodborne Pathogens and Disease. 50. [IF=5.4] Yi-min Liu et al."Uncovering the key pharmacodynamic material basis and possible molecular mechanism of extract of Epimedium against liver cancer through a comprehensive investigation."JOURNAL OF ETHNOPHARMACOLOGY.2023 Dec;317:116765 49. [IF=6.1] Junya Song et al."A smartphone-assisted paper-based ratio fluorescent probe for the rapid and on-site detection of tetracycline in food samples."TALANTA.2023 Dec;265:124874 48. [IF=6.7] Chen Kaifeng et al."BolA affects the biofilm formation ability, outer membrane permeability and virulence, thus is required for the adaptability of Salmonella enterica serotype Typhimurium to the harsh survival environment."MICROBIOLOGICAL RESEARCH.2023 J 47. [IF=15.1] Zhongwei Yuan et al."Celastrol Combats Methicillin-Resistant Staphylococcus aureus by Targeting Δ1-Pyrroline-5-Carboxylate Dehydrogenase."Advanced Science.2023 Jun;:2302459 46. [IF=6.056] Yang Wang et al."Photodynamic inactivation of curcumin combined with ascorbic acid against Penicillium italicum in vitro and on fresh-cut orange."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Jun;182:114900 45. [IF=5.227] Shaojie Wang et al."Inner filter effect-based near-infrared fluorescent probe for detection of metronidazole on a smartphone-integrated analytical platform."ANALYST.2023 Apr;: 44. [IF=5.318] Ruiyang Ma et al."A new attempt to develop fermented milk with low whey protein allergenic potential using a top-down method."Food Bioscience.2023 Jun;53:102594 43. [IF=9.231] Yumeng Li et al."Construction of a self-sufficient DNA circuit for amplified detection of kanamycin."FOOD CHEMISTRY.2023 Aug;418:136048 42. [IF=1.467] Wen-Xia Pi et al."Simultaneous quantification of multiple active components of the ginkgo ketoester tablet when combined with donepezil in four biological matrices from an Alzheimer’s animal model: Evaluation of drug distribution patterns in?vivo."JOURNA 41. [IF=5.295] Kuan Gu et al."Wogonin attenuates the pathogenicity of Streptococcus pneumoniae by double-target inhibition of Pneumolysin and Sortase A."JOURNAL OF CELLULAR AND MOLECULAR MEDICINE.2023 Feb;: 40. [IF=3.553] Lu Feng et al."Safety evaluation and application of lactic acid bacteria and yeast strains isolated from Sichuan broad bean paste."Food Science & Nutrition.2022 Dec;: 39. [IF=4.614] Hao Liu et al."Ti/PbO2 Electrode Efficiency in Catalytic Chloramphenicol Degradation and Its Effect on Antibiotic Resistance Genes."International Journal of Environmental Research and Public Health.2022 Jan;19(23):15632 38. [IF=6.212] Wenqian Hao et al."Integration of metabolomics and network pharmacology to validate the mechanism of Schisandra chinensis(Turcz.)Baill - Acorus tatarinowii Schott ameliorating the Alzheimer's disease by regulating the aromatase activity to affect local es 37. [IF=3.571] Gen Xue et al."The qualitative and quantitative profiling for quality assessment of Yinxing Mihuan Oral Solution and the stability study on the focused flavonol glycosides."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2022 Sep;219:114937 36. [IF=5.988] Kaihui Zhang et al."Pharmacokinetic Study of Four Major Bioactive Components of Liandan Xiaoyan Formula in Ulcerative Colitis and Control Rats Using UPLC-MS/MS."Frontiers in Pharmacology.2022; 13: 936846 35. [IF=0] Jian Gao et al."Comprehensive investigation on isolation, quantification, and activity evaluation of salvianolic acids for injection based on improved dry load injection technology."Separation Science Plus 34. [IF=4.821] Weidao Yu et al."A turn-on fluorescent aptasensor for ampicillin detection based on gold nanoparticles and CdTe QDs."Microchem J. 2022 Aug;179:107454 33. [IF=5.227] Shang Gao et al."The synergistic effects of MoS2 and reduced graphene oxide on sensing performances for electrochemical chloramphenicol sensor."FlatChem. 2022 May;33:100364 32. [IF=2.896] Chunhui Lu et al."Rapid quantitative detection of chloramphenicol in three food products by lanthanide-labeled fluorescent-nanoparticle immunochromatographic strips."Analytical Methods. 2022 May;14(17):1705-1714 31. [IF=5.875] Yutong Wang et al."Extra virgin olive oil-based phospholipid complex/self-microemulsion enhances oral absorption of salvianolic acid B through inhibition of catechol-O-methyltransferase-mediated metabolism."Int J Pharmaceut. 2022 Jan;611:121330 30. [IF=10.588] Yingying Zha et al."Size-dependent enhancement on conjugative transfer of antibiotic resistance genes by micro/nanoplastics."J Hazard Mater. 2022 Jun;431:128561 29. [IF=1.885] Cao Weiyi et al."Simultaneous Quantification of Aspirin, Its Metabolite Salicylic Acid, and Salvianolic Acid B in Human Plasma Using UPLC-MS/MS."Int J Anal Chem. 2021;2021:6620868 28. [IF=3.935] Runjing Zhang et al."Xiaoyan lidan formula ameliorates α-naphthylisothiocyanate-induced intrahepatic cholestatic liver injury in rats as revealed by non-targeted and targeted metabolomics."J Pharmaceut Biomed. 2020 Feb;179:112966 27. [IF=5.316] Shang Gao et al."Electrochemical chloramphenicol sensors-based on trace MoS2 modified carbon nanomaterials: Insight into carbon supports."J Alloy Compd. 2021 Aug;872:159687 26. [IF=5.34] Kaihui Zhang et al."A UPLC-MS/MS-based metabolomics analysis of the pharmacological mechanisms of rabdosia serra against cholestasis."Phytomedicine. 2021 Oct;91:153683 25. [IF=6.057] Ruirui Xie et al."Lanthanide-functionalized metal-organic frameworks based ratiometric fluorescent sensor array for identification and determination of antibiotics."Talanta. 2021 Aug;231:122366 24. [IF=6.529] Weiyi Cao et al."Drug-drug interactions between salvianolate injection and aspirin based on their metabolic enzymes."Biomed Pharmacother. 2021 Mar;135:111203 23. [IF=7.514] Baoshan He et al."Aptamer-based thin film gold electrode modified with gold nanoparticles and carboxylated multi-walled carbon nanotubes for detecting oxytetracycline in chicken samples."Food Chem. 2019 Dec;300:125179 22. [IF=7.991] Ming Lu et al."A polyethyleneimine reduced graphene oxide/gold nanocubes based electrochemical aptasensor for chloramphenicol detection using single-stranded DNA-binding protein."Mater Design. 2021 Feb;199:109409 21. [IF=2.896] Bao-Shan He et al."Electrochemical aptasensor based on aptamer-complimentary strand conjugate and thionine for sensitive detection of tetracycline with multi-walled carbon nanotubes and gold nanoparticles amplification."Anal Methods-Uk. 2018 Feb;10(7):783 20. [IF=4.379] Li Kai et al."Quantitative analysis, pharmacokinetics and metabolomics study for the comprehensive characterization of the salt-processing mechanism of Psoraleae Fructus."Sci Rep-Uk. 2019 Jan;9(1):1-10 19. Ai-Yue Hao, Xue-Qing Wang, Yan-Zhen Mei, Jun-Fang Nie, Ya-Qiong Yang, Chuan-Chao Dai, A smartphone-combined ratiometric fluorescence probe for specifically and visibly detecting cephalexin, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscop 18. Li, Lei, et al. "A TIMS-TOF mass spectrometry study of disaccharides from in situ ESI derivatization with 3-pyridinylboronate." Analyst 146.1 (2021): 75-84.DOI: 10.1039/D0AN01677B 17. He, Baoshan, et al. "Aptamer-based thin film gold electrode modified with gold nanoparticles and carboxylated multi-walled carbon nanotubes for detecting oxytetracycline in chicken samples." Food chemistry 300 (2019): 125179.https://doi.org/10.1016/j.foodc 16. Liu, Juan, et al. "Differential regulation and the underlying mechanisms of clay minerals to Escherichia coli under the stress of polymyxin B: Comparing halloysite with kaolinite." Chemosphere 265 (2021): 129095.https://doi.org/10.1016/j.chemosphere.2020.1 15. Cao, Weiyi, et al. "Simultaneous Quantification of Aspirin, Its Metabolite Salicylic Acid, and Salvianolic Acid B in Human Plasma Using UPLC-MS/MS." International Journal of Analytical Chemistry 2021 (2021). 14. Ming Lu, Chenyang Cao, Feng Wang, Guocong Liu, A polyethyleneimine reduced graphene oxide/gold nanocubes based electrochemical aptasensor for chloramphenicol detection using single-stranded DNA-binding protein, Materials & Design, Volume 199, 2021, 109409, 13. Tao, Yi, et al. "Comparative pharmacokinetic analysis of extracts of crude and wine-processed Dipsacus asper in rats by a sensitive ultra performance liquid chromatography–tandem mass spectrometry approach." Journal of Chromatography B 1036 (2016): 33-41.h 12. 張政,馬更勤,王宏勛,侯溫甫,周敏.副溶血弧菌耐藥誘導(dǎo)株的生物特性與多藥外排泵表達(dá)[J].現(xiàn)代食品科技,2020,36(08):15-22. 11. 劉敏芳, 曹夢(mèng)蕊, 李榮旭,等. 廣東部分地區(qū)水禽源沙門氏菌的分離鑒定與藥物敏感性分析[J]. 黑龍江畜牧獸醫(yī), 2018(10). 10. 楊春梅 曹唯儀 侯俊玲 等. 丹酚酸B、芍藥苷和甘草酸復(fù)配在大鼠體內(nèi)的藥動(dòng)學(xué)參數(shù)研究[J]. 西北藥學(xué)雜志 2018 33(03):94-99. 9. 楊春梅 曹唯儀 林珈好 等. SPG復(fù)方主要成分配伍給藥在大鼠體內(nèi)藥動(dòng)學(xué)參數(shù)研究[J]. 遼寧中醫(yī)藥大學(xué)學(xué)報(bào) 2018 020(010):32-35. 8. 惠和平 金輝 楊曉燕 李秀壯 辛愛(ài)一 秦波.蘭州百合多糖BHP-1的化學(xué)結(jié)構(gòu)與形貌分析[J].中國(guó)實(shí)驗(yàn)方劑學(xué)雜志 2020 26(08):170-175. 7. 高銘坤, 張智, 錢芳. 混合菌制劑(BMX)毒理,功能性試驗(yàn)及對(duì)育肥豬的作用效果[J]. 飼料研究, 2018, No.485(04):66-71. 6. 王露, 司曉萍, 唐輝,等. 禽畜肉中7種抗生素殘留檢測(cè)[J]. 分析試驗(yàn)室, 2019, 038(007):854-858. 5. 劉蘭, 黃家宇, 陳俊,等. 苗藥赤脛散提取物的體外抑菌活性研究[J]. 中國(guó)藥房, 2018, 29(010):1343-1347. 4. 李松龍, 茹仁萍, 杜永忠. 甘草酸二銨泡騰顆粒在兔體內(nèi)的藥動(dòng)學(xué)[J]. 中國(guó)醫(yī)藥工業(yè)雜志, 2013(06):597-599. 3. 唐仕榮,劉全德,劉輝,沈躍麗,顧永金,邢洪偉.氯霉素分子印跡聚合物中模板分子的洗脫方法[J].徐州工程學(xué)院學(xué)報(bào)(自然科學(xué)版),2011,26(03):68-71. 2. 馬君, 孔德地, 韓曉紅,等. 應(yīng)用銀溶膠膜探測(cè)水中抗生素的表面增強(qiáng)拉曼光譜研究[J]. 光譜學(xué)與光譜分析, 2013(10):2688-2693. 1. 王瀠莘, 趙衍輝, 王雪,等. 復(fù)方氯霉素硼酸酊的含量測(cè)定及有關(guān)物質(zhì)檢查[J]. 沈陽(yáng)藥科大學(xué)學(xué)報(bào), 2019(8).

質(zhì)檢證書(shū)(COA)

如何獲取質(zhì)檢證書(shū)(COA)?
請(qǐng)輸入貨號(hào)和一個(gè)與之匹配的批號(hào)。
例如:
批號(hào):C10000001 貨號(hào):A800001-25g
在貨品標(biāo)簽上如何找到貨號(hào)和批號(hào)?

摩爾濃度計(jì)算器

質(zhì)量 (mg) = 濃度 (mM) x 體積 (mL) x 分子摩爾量 (g/mol)

=
×
×

相關(guān)產(chǎn)品