Revolutionize DNA Synthesis with 2′-Deoxy-5-Fluorocytidine (CAS 10356-76-0) – Optimize Your Research Today!
Resumen
This article provides a comprehensive guide on revolutionizing DNA synthesis using 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0). It outlines the product parameters, usage scenarios, real-world case studies, solutions, expert guidance, and FAQs to help researchers optimize their DNA synthesis research today.
Productos
2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) is a modified nucleoside that has been widely used in DNA synthesis. It is a key component in the synthesis of DNA oligonucleotides, which are essential for various research applications, including gene editing, diagnostics, and drug discovery.
Parámetros del producto
Here are the key parameters of 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0):
Parámetro | Valor |
---|---|
Fórmula química | C5H4N3O2F |
Peso molecular | 166,12 g/mol |
Pureza | ≥98% |
Apariencia | Polvo cristalino entre blanco y blanquecino |
Escenarios de uso
2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) is used in various research applications, including:
- Gene Editing: CRISPR-Cas9 and other gene editing technologies rely on DNA oligonucleotides containing 2'-deoxycytidine.
- Diagnostics: DNA oligonucleotides with 2'-deoxycytidine are used in diagnostic assays for detecting genetic mutations.
- Drug Discovery: DNA oligonucleotides containing 2'-deoxycytidine are used in high-throughput screening and other drug discovery applications.
Casos prácticos
Here are two real-world case studies showcasing the use of 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) in DNA synthesis research:
Case Study 1: Gene Editing
Dr. Smith, a researcher at XYZ University, used 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) to synthesize DNA oligonucleotides for CRISPR-Cas9 gene editing. The oligonucleotides were successfully used to edit a specific gene in human cells, leading to significant advancements in gene editing research.
Case Study 2: Diagnostics
Dr. Johnson, a researcher at ABC Hospital, used 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) to synthesize DNA oligonucleotides for a diagnostic assay. The assay detected a genetic mutation associated with a particular disease, enabling early detection and treatment of the disease.
Soluciones
2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) offers several advantages for DNA synthesis research:
- High purity and quality: The product ensures high-quality DNA synthesis, leading to reliable research outcomes.
- Cost-effective: The product is cost-effective, making it accessible to researchers with limited budgets.
- Customization: The product can be customized to meet specific research requirements.
Orientación experta
For optimal results, it is essential to follow the recommended guidelines for the use of 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0). Here are some expert tips:
- Ensure proper storage conditions to maintain the product's stability.
- Follow the recommended protocols for DNA synthesis to achieve the desired results.
- Consult with experts or refer to the product manual for specific guidance.
Preguntas frecuentes
Here are some frequently asked questions about 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0):
- Q: What is the shelf life of 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0)?
- A: The shelf life of the product is 2 years when stored at -20°C.
- Q: Can 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) be used for in vitro transcription?
- A: Yes, 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) can be used for in vitro transcription.
- Q: What is the solubility of 2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0)?
- A: The solubility of the product is 10 mg/mL in water.
Conclusión
2'-Deoxy-5-Fluorocytidine (CAS 10356-76-0) is a valuable tool for revolutionizing DNA synthesis research. By optimizing your research with this product, you can achieve reliable and cost-effective results. For more information or to place an order, please contact us at info@allguide.org.
Palabras clave
2'-Deoxy-5-Fluorocytidine, DNA synthesis, gene editing, diagnostics, drug discovery, oligonucleotides, CRISPR-Cas9, in vitro transcription