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CAS RN: 64-75-5 | 产品编码: T2525
Tetracycline Hydrochloride
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技术规格
Appearance | Light yellow to Amber to Dark green powder to crystal |
Purity(HPLC) | min. 95.0 area% |
Purity(Nonaqueous Titration) | min. 98.0 % |
Specific rotation [a]20/D | -240 to -255 deg(C=0.5, 0.1mol/L HCl) |
物性(参考值)
熔点 | 214 °C(dec.) |
比旋光度 [α]D | -253° (C=0.5,0.1mol/L HCl) |
水溶性 | 可溶 |
GHS
象形图 |
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信号词 | Warning |
危险性说明 | H361 : Suspected of damaging fertility or the unborn child. |
防范说明 | P501 : Dispose of contents/ container to an approved waste disposal plant. P202 : Do not handle until all safety precautions have been read and understood. P201 : Obtain special instructions before use. P280 : Wear protective gloves/ protective clothing/ eye protection/ face protection. P308 + P313 : IF exposed or concerned: Get medical advice/ attention. P405 : Store locked up. |
相关法规
RTECS# | QI9100000 |
运输信息
HS编码* | 2941.30-000 |
应用
DNA aptamer research
Reference
- Single-stranded DNA aptamers specific for antibiotics tetracyclines
应用
Tetracycline: a Broad Spectrum Polyketide Antibiotic and a Selective Reagent Genetically Engineered Cells
Tetracycline is a polyketide antibiotic isolated from Streptomyces genus. Tetracycline has broad activity against Gram-negative bacteria and Gram-positive bacteria, with a few exceptions, such as Pseudomonas aeruginosa and Proteus species. Tetracycline inhibits protein synthesis in susceptible organisms by binding to the A-site on the 50S subunit of a bacterial ribosome. However, tetracycline-resistant bacterial strains appeared soon after its introduction. Tetracycline is used in molecular biology as a selective reagent most commonly to isolate bacteria coupled to a gene coding for tetracycline resistance, which is one of the most frequently used selection markers for obtaining transgenic cells. Recently, tetracycline is used for tetracycline-controlled transcriptional activation systems in cells.
References
- Tetracyclines. Antibiotic action, uptake, and resistance mechanisms (a review)
- Crystal structures of complexes of the small ribosomal subunit with tetracycline, edeine and IF3
- The structural basis for the action of the antibiotics tetracycline, pactamycin, and hygromycin B on the 30S ribosomal subunit
- Tetracycline resistance determinants: mechanisms of action, regulation of expression, genetic mobility, and distribution (a review)
- Update on acquired tetracycline resistance genes
- In vivo gene regulation using tetracycline-regulatable systems
参考文献
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