4,4'-Diaminostilbene - 7314-06-9

4,4'-Diaminostilbene

Catalog Number: EVT-3565889
CAS Number: 7314-06-9
Molecular Formula: C14H14N2
Molecular Weight: 210.27 g/mol
The product is for non-human research only. Not for therapeutic or veterinary use.
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Product Introduction

Description
'4,4'-Diaminostilbene' is a chemical compound that belongs to the stilbene family. It is widely used in various fields, including medical, environmental, and industrial research. This paper aims to provide an overview of the synthesis methods, chemical structure, biological activity, effects on cell function and signal transduction, applications in different research areas, and future perspectives and challenges associated with '4,4'-Diaminostilbene'.
Applications in Various Fields
In Medical Research, '4,4'-Diaminostilbene' plays a crucial role in drug development. Its bioactivity and potency make it a valuable compound for designing novel therapeutic agents. Clinical trials have shown promising results, highlighting its potential benefits in treating specific diseases. However, careful evaluation of potential side effects is necessary to ensure patient safety.
In Environmental Research, '4,4'-Diaminostilbene' is used to study its effects on ecosystems. It plays a role in pollution management by assessing its impact on environmental health. Sustainability and environmental impact studies are conducted to understand the compound's long-term effects on the environment.
In Industrial Research, '4,4'-Diaminostilbene' finds applications in manufacturing processes. It is used to improve product quality and efficiency in various industries. Health and safety considerations are of utmost importance to ensure worker well-being during its industrial use.

Properties

CAS Number

7314-06-9

Product Name

4,4'-Diaminostilbene

IUPAC Name

4-[(E)-2-(4-aminophenyl)ethenyl]aniline

Molecular Formula

C14H14N2

Molecular Weight

210.27 g/mol

InChI

InChI=1S/C14H14N2/c15-13-7-3-11(4-8-13)1-2-12-5-9-14(16)10-6-12/h1-10H,15-16H2/b2-1+

InChI Key

KOGDFDWINXIWHI-OWOJBTEDSA-N

SMILES

C1=CC(=CC=C1C=CC2=CC=C(C=C2)N)N

Canonical SMILES

C1=CC(=CC=C1C=CC2=CC=C(C=C2)N)N

Isomeric SMILES

C1=CC(=CC=C1/C=C/C2=CC=C(C=C2)N)N
Method of Synthesis or Extraction
Several methods are commonly used for the synthesis of '4,4'-Diaminostilbene'. One of the most efficient methods involves the condensation of 4-nitrobenzaldehyde with aniline, followed by reduction of the resulting nitrostilbene intermediate. This method offers a high yield of '4,4'-Diaminostilbene and is widely employed in industrial production.
Environmental and safety considerations are crucial during the synthesis process. Proper waste management and adherence to safety protocols are essential to minimize the environmental impact and ensure the safety of workers. The use of appropriate protective equipment and the implementation of containment measures are necessary to prevent exposure to harmful chemicals.
Chemical Structure and Biological Activity
The chemical structure of '4,4'-Diaminostilbene' consists of a central stilbene backbone with two amino groups attached to the para positions of the phenyl rings. This structure imparts unique properties to the compound, making it biologically active.
The mechanism of action of '4,4'-Diaminostilbene' involves its interaction with specific biological targets. It has been found to exhibit potent inhibitory effects on certain enzymes and receptors, making it a promising candidate for drug development.
Biological Effects
'4,4'-Diaminostilbene' has been shown to modulate cell function and signal transduction pathways. It can influence various cellular processes, including proliferation, differentiation, and apoptosis. Additionally, it has been found to affect intracellular signaling cascades, leading to altered gene expression and protein synthesis.
The compound's potential therapeutic effects are being explored in various medical research areas. Clinical trials have demonstrated its efficacy in treating certain diseases, such as cancer and neurodegenerative disorders. However, it is important to consider potential toxic effects and side effects associated with its use.
Future Perspectives and Challenges
Despite the potential of '4,4'-Diaminostilbene' in scientific research, there are current limitations in its use and study. Further research is needed to fully understand its mechanisms of action and potential side effects. Additionally, the synthesis methods can be further optimized to enhance efficiency and reduce environmental impact.
Possible solutions and improvements include the development of more sustainable synthesis methods and the exploration of novel derivatives with improved bioactivity and reduced toxicity. Future trends and prospects in the application of '4,4'-Diaminostilbene' in scientific research include its potential use in personalized medicine and targeted therapies.
In conclusion, '4,4'-Diaminostilbene' is a versatile compound with significant potential in various research areas. Its synthesis methods, chemical structure, biological activity, effects, and applications have been discussed. Future research and improvements are necessary to fully harness its benefits while addressing associated challenges.

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