Auxiliar de síntese eficiente de péptidos: Éster N-Fmoc-Try para uma maior eficiência laboratorial

Efficient Peptide Synthesis Aid: N-Fmoc-Try Ester for Enhanced Lab Efficiency

This comprehensive guide aims to provide an in-depth understanding of the N-Fmoc-Try Ester, an innovative peptide synthesis aid designed to enhance lab efficiency. The article will delve into various aspects of the product, including its parameters, usage scenarios, case studies, solutions, expert guidance, and frequently asked questions (FAQs). By the end, readers will have a clear understanding of how this product can revolutionize their peptide synthesis processes.

Visão geral do produto

The N-Fmoc-Try Ester is a versatile peptide synthesis aid that offers several advantages over traditional methods. It is a protected amino acid derivative, which simplifies the synthesis process and improves the overall efficiency of peptide production. The product is designed to be used in various applications, such as drug discovery, biochemistry, and material science.

Parâmetros do produto

Here are the key parameters of the N-Fmoc-Try Ester:

Parâmetro Valor
Fórmula química C24H28N6O6
Peso molecular 460.5 g/mol
Pureza ≥98%
Condição de armazenamento 2-8°C, ao abrigo da luz e da humidade

Cenários de utilização

The N-Fmoc-Try Ester is suitable for various applications in the lab, including:

  • Peptide synthesis: The product can be used as a building block for the synthesis of peptides with Tyr residues.
  • Drug discovery: It can be used to create Tyr-containing peptides for drug screening and development.
  • Biochemistry: The N-Fmoc-Try Ester can be used to study the structure and function of Tyr-containing proteins.
  • Material science: It can be used to create Tyr-containing peptides for material development and testing.

Estudos de caso

Here are two case studies showcasing the use of the N-Fmoc-Try Ester in real-world applications:

Estudo de caso 1: Descoberta de medicamentos

Company A, a biotech firm specializing in drug discovery, used the N-Fmoc-Try Ester to synthesize Tyr-containing peptides for their drug screening program. The product's high purity and ease of use allowed the company to produce high-quality peptides in a timely manner, ultimately leading to the identification of a promising lead compound.

Case Study 2: Biochemistry

University B's biochemistry department used the N-Fmoc-Try Ester to study the structure and function of Tyr-containing proteins. The product's versatility and efficiency enabled the researchers to produce Tyr-containing peptides for their experiments, leading to significant advancements in their research.

Soluções

The N-Fmoc-Try Ester offers several solutions for peptide synthesis, including:

  • Improved efficiency: The product simplifies the synthesis process, reducing the time and effort required to produce Tyr-containing peptides.
  • High purity: The N-Fmoc-Try Ester ensures high-purity peptides, which is crucial for accurate experimental results.
  • Cost-effective: The product offers a cost-effective solution for peptide synthesis, making it accessible to researchers and companies of all sizes.

Orientação especializada

For optimal results, it is recommended to follow these guidelines when using the N-Fmoc-Try Ester:

  • Ensure the product is stored at 2-8°C, away from light and moisture.
  • Use the product within the recommended shelf life.
  • Follow the manufacturer's instructions for peptide synthesis.

Perguntas mais frequentes (FAQs)

Here are some common FAQs about the N-Fmoc-Try Ester:

Q: What is the difference between N-Fmoc-Try Ester and other Tyr-containing amino acids?

A: The N-Fmoc-Try Ester is a protected amino acid derivative that simplifies the synthesis process and improves the overall efficiency of peptide production. It offers several advantages over other Tyr-containing amino acids, such as improved purity and ease of use.

Q: How does the N-Fmoc-Try Ester enhance lab efficiency?

A: The N-Fmoc-Try Ester simplifies the synthesis process, reducing the time and effort required to produce Tyr-containing peptides. This, in turn, enhances lab efficiency and allows researchers to focus on other critical tasks.

Conclusão

The N-Fmoc-Try Ester is an innovative peptide synthesis aid that offers several advantages for researchers and companies involved in drug discovery, biochemistry, and material science. Its high purity, ease of use, and versatility make it an excellent choice for peptide synthesis. By following the guidelines and expert advice provided in this guide, users can achieve optimal results and enhance their lab efficiency.

Palavras-chave

N-Fmoc-Try Ester, peptide synthesis, lab efficiency, drug discovery, biochemistry, material science

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