H-Met-arg-phe-ala-OH - 67368-29-0

H-Met-arg-phe-ala-OH

Catalog Number: EVT-2542318
CAS Number: 67368-29-0
Molecular Formula: C23H37N7O5S
Molecular Weight: 523.65
The product is for non-human research only. Not for therapeutic or veterinary use.
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Product Introduction

Description
H-Met-arg-phe-ala-OH is a peptide that has gained significant attention in the scientific community due to its potential therapeutic and industrial applications. This peptide is composed of four amino acids, namely methionine, arginine, phenylalanine, and alanine, and has been found to exhibit various biological activities.
Applications in Various Fields
H-Met-arg-phe-ala-OH has various applications in medical, environmental, and industrial research. In medical research, H-Met-arg-phe-ala-OH has been studied for its potential role in drug development, with promising results in preclinical studies. Clinical trials are currently underway to evaluate the safety and efficacy of H-Met-arg-phe-ala-OH in humans. In environmental research, H-Met-arg-phe-ala-OH has been studied for its effects on ecosystems and its potential role in pollution management. In industrial research, H-Met-arg-phe-ala-OH has been used in manufacturing processes to improve product quality and efficiency.

Properties

CAS Number

67368-29-0

Product Name

H-Met-arg-phe-ala-OH

IUPAC Name

(2S)-2-[[(2S)-2-[[(2S)-2-[[(2S)-2-amino-4-methylsulfanylbutanoyl]amino]-5-(diaminomethylideneamino)pentanoyl]amino]-3-phenylpropanoyl]amino]propanoic acid

Molecular Formula

C23H37N7O5S

Molecular Weight

523.65

InChI

InChI=1S/C23H37N7O5S/c1-14(22(34)35)28-21(33)18(13-15-7-4-3-5-8-15)30-20(32)17(9-6-11-27-23(25)26)29-19(31)16(24)10-12-36-2/h3-5,7-8,14,16-18H,6,9-13,24H2,1-2H3,(H,28,33)(H,29,31)(H,30,32)(H,34,35)(H4,25,26,27)/t14-,16-,17-,18-/m0/s1

InChI Key

UWTASUKCZNGRDU-DKIMLUQUSA-N

SMILES

CC(C(=O)O)NC(=O)C(CC1=CC=CC=C1)NC(=O)C(CCCN=C(N)N)NC(=O)C(CCSC)N

Solubility

not available
Method of Synthesis or Extraction
H-Met-arg-phe-ala-OH can be synthesized using various methods, including solid-phase peptide synthesis, liquid-phase peptide synthesis, and recombinant DNA technology. Solid-phase peptide synthesis involves the stepwise addition of amino acids to a solid support, while liquid-phase peptide synthesis involves the use of solution-phase chemistry. Recombinant DNA technology involves the use of genetic engineering techniques to produce the peptide in a host organism.
The efficiency and yield of each method vary depending on the specific conditions used. Solid-phase peptide synthesis is generally considered the most efficient method, with yields ranging from 70% to 95%. Liquid-phase peptide synthesis and recombinant DNA technology have lower yields, ranging from 30% to 70%. Environmental and safety considerations are also important factors to consider when choosing a method of synthesis or extraction. Solid-phase peptide synthesis and recombinant DNA technology are generally considered safer and more environmentally friendly than liquid-phase peptide synthesis.
Chemical Structure and Biological Activity
H-Met-arg-phe-ala-OH has a chemical structure of H-Met-arg-phe-ala-OH, with a molecular weight of 618.8 g/mol. This peptide has been found to exhibit various biological activities, including antimicrobial, antitumor, and anti-inflammatory activities. The mechanism of action of H-Met-arg-phe-ala-OH involves the inhibition of protein synthesis and the disruption of cell membranes.
Biological Effects
H-Met-arg-phe-ala-OH has been found to have various effects on cell function and signal transduction. This peptide has been shown to inhibit the growth of cancer cells and reduce inflammation in animal models. However, H-Met-arg-phe-ala-OH also has potential toxic effects, including cytotoxicity and hemolytic activity.
Future Perspectives and Challenges
Despite the promising applications of H-Met-arg-phe-ala-OH, there are still limitations in its use and study. One of the main challenges is the potential toxicity of this peptide, which needs to be carefully evaluated in clinical trials. Another challenge is the high cost of synthesis or extraction, which limits its widespread use. However, there are also possible solutions and improvements, such as the development of more efficient and cost-effective methods of synthesis or extraction. Future trends and prospects in the application of H-Met-arg-phe-ala-OH in scientific research include the development of new drugs and therapies for various diseases and the exploration of its potential in environmental and industrial applications.

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