Z-Glu-otbu dcha - 34897-61-5

Z-Glu-otbu dcha

Catalog Number: EVT-247633
CAS Number: 34897-61-5
Molecular Formula:
Molecular Weight: 518.7
The product is for non-human research only. Not for therapeutic or veterinary use.
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Product Introduction

Description
Z-Glu-otbu dcha is a chemical compound that has gained significant attention in the scientific community due to its potential therapeutic and environmental applications. This paper aims to provide a comprehensive overview of the synthesis, chemical structure, biological activity, and potential applications of Z-Glu-otbu dcha.
Applications in Various Fields
Z-Glu-otbu dcha has potential applications in various fields, including medical research, environmental research, and industrial research. In medical research, the compound's role in drug development and clinical trials is being explored, with promising results. The compound's potential benefits and potential side effects must be carefully evaluated before it can be used in clinical settings. In environmental research, Z-Glu-otbu dcha's effects on ecosystems and its role in pollution management are being studied. The compound's sustainability and environmental impact must be considered when evaluating its potential applications. In industrial research, Z-Glu-otbu dcha's use in manufacturing processes and its potential to improve product quality and efficiency are being explored. Health and safety considerations must be taken into account when using the compound in industrial settings.

Properties

CAS Number

34897-61-5

Product Name

Z-Glu-otbu dcha

IUPAC Name

N-cyclohexylcyclohexanamine;(4S)-5-[(2-methylpropan-2-yl)oxy]-5-oxo-4-(phenylmethoxycarbonylamino)pentanoic acid

Molecular Weight

518.7

InChI

InChI=1S/C17H23NO6.C12H23N/c1-17(2,3)24-15(21)13(9-10-14(19)20)18-16(22)23-11-12-7-5-4-6-8-12;1-3-7-11(8-4-1)13-12-9-5-2-6-10-12/h4-8,13H,9-11H2,1-3H3,(H,18,22)(H,19,20);11-13H,1-10H2/t13-;/m0./s1

SMILES

CC(C)(C)OC(=O)C(CCC(=O)O)NC(=O)OCC1=CC=CC=C1.C1CCC(CC1)NC2CCCCC2
Method of Synthesis or Extraction
Z-Glu-otbu dcha can be synthesized using various methods, including chemical synthesis and extraction from natural sources. Chemical synthesis involves the reaction of glutamic acid with tert-butyl oxalate to form Z-Glu-otbu dcha. The efficiency and yield of this method depend on the reaction conditions, such as temperature, pressure, and catalysts. Extraction from natural sources, such as plants and microorganisms, is also possible, but the yield is generally low. Environmental and safety considerations must be taken into account during the synthesis and extraction processes to minimize the impact on the environment and ensure the safety of the researchers.
Chemical Structure and Biological Activity
Z-Glu-otbu dcha has a unique chemical structure that consists of a glutamic acid residue and a tert-butyl oxalate moiety. The compound has been shown to exhibit potent biological activity, particularly in the inhibition of certain enzymes and receptors. Z-Glu-otbu dcha has been found to target various biological pathways, including signal transduction and cell function. The compound's bioactivity and potency make it a promising candidate for drug development and other therapeutic applications.
Biological Effects
Z-Glu-otbu dcha has been shown to have both therapeutic and toxic effects on cells. The compound's potential therapeutic effects include the inhibition of cancer cell growth and the treatment of neurodegenerative diseases. However, Z-Glu-otbu dcha can also have toxic effects on cells, leading to cell death and other adverse effects. Further research is needed to fully understand the compound's biological effects and potential therapeutic and toxic effects.
Future Perspectives and Challenges
Despite the promising potential of Z-Glu-otbu dcha, there are still limitations in its use and study. Further research is needed to fully understand the compound's biological effects and potential therapeutic and toxic effects. Possible solutions and improvements include the development of more efficient synthesis methods and the identification of new biological targets. Future trends and prospects in the application of Z-Glu-otbu dcha in scientific research are promising, but challenges must be overcome to fully realize its potential.
Conclusion:
Z-Glu-otbu dcha is a promising compound with potential applications in various fields, including medical research, environmental research, and industrial research. The compound's unique chemical structure and potent biological activity make it a promising candidate for drug development and other therapeutic applications. However, further research is needed to fully understand the compound's biological effects and potential therapeutic and toxic effects. The compound's sustainability and environmental impact must also be considered when evaluating its potential applications.

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