Name | Florfenicol |
Synonyms | NUFLOR AQUAFEN SCH-25298 Florfeniol Flofenicol FLORFENICAL Florfenicol FLEROXACINLACTATE 2,2-dichloro-N-{1-(fluoromethyl)-2-hydroxy-2-[4-(methylsulfanyl)phenyl]ethyl}acetamide 2,2-Dichloro-N-[(1R,2S)-3-fluoro-1-hydroxy-1-(4-methylsulfonylphenyl)propan-2-yl]acetamide 2,2-dichloro-N-[(1R,2S)-3-fluoro-1-hydroxy-1-(4-methylsulfonylphenyl)propan-2-yl]ethanamide 2,2-dichloro-N-{(1R,2S)-3-fluoro-1-hydroxy-1-[4-(methylsulfonyl)phenyl]propan-2-yl}acetamide [R-(R*,S*)]-2,2-DICHLORO-N-[1-(FLUOROMETHYL)-2-HYDROXY-2-[4-(METHYLSULFONYL)PHENYL]ETHYL]ACETAMIDE |
CAS | 76639-94-6 73231-34-2 |
EINECS | 620-107-1 |
InChI | InChI=1/C12H14Cl2FNO2S/c1-19-8-4-2-7(3-5-8)10(17)9(6-15)16-12(18)11(13)14/h2-5,9-11,17H,6H2,1H3,(H,16,18) |
Molecular Formula | C12H14Cl2FNO4S |
Molar Mass | 358.21 |
Density | 1.39g/cm3 |
Melting Point | 153°C |
Boling Point | 531.3°C at 760 mmHg |
Specific Rotation(α) | 26 +17.9° (DMF) |
Flash Point | 275.1°C |
Solubility | Dimethylformamide is very easy to dissolve, dissolved in methanol, slightly dissolved in glacial acetic acid, and slightly dissolved in water or chloroform. |
Vapor Presure | 4.05E-12mmHg at 25°C |
Appearance | solid |
Storage Condition | 2-8℃ |
Refractive Index | 1.575 |
MDL | MFCD00864834 |
Physical and Chemical Properties | Appearance: white or white crystalline powder content: (dry product calculation) ≥ 98% moisture: ≤ 0.5% residue: ≤ 0.1% heavy metals: ≤ 20ppm acidity: 4.5-6.5 chloride: ≤ 0.02% fluorine: ≥ 4.8% related substances: sum of impurity spots ≤ 2% |
Use | Veterinary antibacterial agents for bacterial diseases of pigs, chickens and fish caused by sensitive bacteria, especially for respiratory infections and intestinal infections |
Safety Description | 24/25 - Avoid contact with skin and eyes. |
WGK Germany | 3 |
HS Code | 29419090 |
Raw Materials | Methyl p-tolyl sulfone Copper(II) sulfate Bromine |
Reference Show more | 1. Zhao Suhua, fan Hongjie. Serotype identification and drug resistance analysis of avian Escherichia coli in northern Anhui [J]. Journal of Animal Husbandry and Veterinary Medicine, 2017, 49(004):95-98. 2. Liu Minfang, Cao mengrui, Li Rongxu, etc. Isolation, identification and drug sensitivity analysis of salmonella from waterfowl in some areas of Guangdong province [J]. Heilongjiang Journal of Animal Science and Veterinary Medicine, 2018(10). 3. Lu Wang, Xiao-ping si, Hui Tang, et al. Determination of seven antibiotics residues in meat [J]. Analytical Laboratory, 2019, 038(007):854-858. 4. [IF = 7.46] Yufeng Sun et al."Volatile sensor for chlorphencol determination based on a dual signal enhancement strategy with ordered mesopourous carbon @ polydopamine and β-clodex trin." Sensor Actuat B- Chem. 2018 Feb;255:2155 5. [IF=1.786] Weixuan Lan et al."Comparative pharmacokinetics of florfenicol in healthy and Pasteurella multocida-infected Gaoyou ducks."J Vet Pharmacol Ther. 2019 May;42(3):355-360 6. [IF=6.419] Yucai Wei et al."Enrofloxacin/florfenicol loaded cyclodextrin metal-organic-framework for drug delivery and controlled release."Drug Deliv. 2021;28(1):372-379 7. [IF=6.057] Song Hu et al."Reliable performance of aggregation-induced emission nanoparticle-based lateral flow assay for norfloxacin detection in nine types of animal-derived food."Talanta. 2020 Nov;219:121245 8. [IF=5.64] Xiao Xia et al."In vivo Pharmacokinetic and Pharmacodynamic (PK/PD) Modeling and Establishment of the PK/PD Cutoff of Florfenicol Against Pasteurella multocida in Ducks."Front Microbiol. 2021 Jan;0:3321 9. [IF=4.379] Fan Guoqing et al."Comparative muscle irritation and pharmacokinetics of florfenicol-hydroxypropyl-β-cyclodextrin inclusion complex freeze-dried powder injection and florfenicol commercial injection in beagle dogs."Sci Rep-Uk. 2019 Nov;9(1):1-9 10. [IF=2.082] Qin Guo et al."Synergistic inhibition effects of tea polyphenols as adjuvant of oxytetracycline on Vibrio parahaemolyticus and enhancement of Vibriosis resistance of Exopalaemon carinicauda."Aquac Res. 2021 Aug;52(8):3900-3910 |
uses | veterinary antibacterial agents for bacterial diseases of pigs, chickens and fish caused by sensitive bacteria, especially for respiratory infection and intestinal infection, the curative effect is significant |