4-(methoxymethoxy)benzoic Acid - 25458-44-0

4-(methoxymethoxy)benzoic Acid

Catalog Number: EVT-3159654
CAS Number: 25458-44-0
Molecular Formula: C9H10O4
Molecular Weight: 182.17 g/mol
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Product Introduction

Description
4-(Methoxymethoxy)benzoic acid is a chemical compound with potential applications in various fields, including medical, environmental, and industrial research. This paper aims to provide an overview of its synthesis methods, chemical structure, biological activity, effects on cell function, potential applications, and future perspectives.
Applications in Various Fields
In medical research, 4-(methoxymethoxy)benzoic acid has shown promise in drug development. It has been investigated for its role in treating various diseases, including cancer, inflammation, and neurodegenerative disorders. Clinical trials have provided preliminary findings on its efficacy and safety profile, highlighting its potential benefits and potential side effects.
In environmental research, the compound's effects on ecosystems and its role in pollution management have been explored. It has been found to have both positive and negative impacts on the environment, depending on its concentration and exposure duration. Sustainability and environmental impact assessments are necessary to ensure responsible use and minimize any adverse effects.
In industrial research, 4-(methoxymethoxy)benzoic acid has been utilized in manufacturing processes to improve product quality and efficiency. However, health and safety considerations must be taken into account to protect workers and the environment during its production and use.

Properties

CAS Number

25458-44-0

Product Name

4-(methoxymethoxy)benzoic Acid

IUPAC Name

4-(methoxymethoxy)benzoic acid

Molecular Formula

C9H10O4

Molecular Weight

182.17 g/mol

InChI

InChI=1S/C9H10O4/c1-12-6-13-8-4-2-7(3-5-8)9(10)11/h2-5H,6H2,1H3,(H,10,11)

InChI Key

XIFRBTZCMICRPL-UHFFFAOYSA-N

SMILES

COCOC1=CC=C(C=C1)C(=O)O

Canonical SMILES

COCOC1=CC=C(C=C1)C(=O)O
Method of Synthesis or Extraction
Several methods are commonly used for the synthesis of 4-(methoxymethoxy)benzoic acid. One such method involves the reaction of 4-hydroxybenzoic acid with methanol in the presence of a catalyst. This process typically yields a high efficiency and good yield of the desired product. However, it is important to consider environmental and safety considerations during the synthesis process. Proper waste disposal and adherence to safety protocols are crucial to minimize any potential risks.
Chemical Structure and Biological Activity
The chemical structure of 4-(methoxymethoxy)benzoic acid consists of a benzene ring with a methoxy group and a methoxymethoxy group attached to it. This compound has shown promising biological activity, particularly in its mechanism of action and biological targets. It has been found to interact with specific receptors or enzymes in the body, leading to various biological effects.
Biological Effects
The compound's interaction with cell function and signal transduction pathways has been extensively studied. It has been shown to modulate specific cellular processes, such as gene expression, protein synthesis, and cell proliferation. Additionally, 4-(methoxymethoxy)benzoic acid has demonstrated potential therapeutic effects in certain diseases, while also exhibiting potential toxic effects at higher concentrations. Further research is needed to fully understand its therapeutic and toxicological implications.
Future Perspectives and Challenges
Despite its potential applications, there are current limitations in the use and study of 4-(methoxymethoxy)benzoic acid. Further research is needed to fully elucidate its mechanisms of action, optimize synthesis methods, and assess its long-term effects. Possible solutions and improvements include the development of more efficient and sustainable synthesis methods, as well as the exploration of novel derivatives with enhanced biological activity.
Future trends and prospects in the application of 4-(methoxymethoxy)benzoic acid in scientific research include its potential use as a targeted therapy, the exploration of combination therapies, and the investigation of its role in personalized medicine. Additionally, advancements in nanotechnology and drug delivery systems may further enhance its therapeutic potential.
In conclusion, 4-(methoxymethoxy)benzoic acid holds promise in various fields of research. Its synthesis methods, chemical structure, biological activity, and potential applications have been discussed. However, further studies are required to fully understand its mechanisms of action, optimize its synthesis, and assess its long-term effects. With continued research and development, this compound may contribute to advancements in medicine, environmental management, and industrial processes.

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