3-Hydroxybenzaldehyde: Vasculoprotective Effects, Anti-inflammatory and Anti-angiogenic Properties
Explore the powerful vascular protective, anti-inflammatory, and anti-angiogenic benefits of 3-Hydroxybenzaldehyde.
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3-Hydroxybenzaldehyde
This compound demonstrates significant potential as a therapeutic agent, offering a range of benefits for cardiovascular health. Its ability to protect blood vessels makes it a valuable asset in treating various vascular conditions.
- Investigating the 3-hydroxybenzaldehyde vasculoprotective effects is crucial for understanding its role in maintaining vascular integrity and function.
- The compound exhibits potent anti-inflammatory properties, effectively reducing endothelial cell inflammation and related pathways.
- 3-hydroxybenzaldehyde anti-angiogenic capabilities are being explored for their potential in managing conditions characterized by abnormal blood vessel growth.
- It is a key substrate for aldehyde dehydrogenase (ALDH), playing a role in metabolic processes.
Key Advantages
Inhibits VSMC Proliferation
Leverage the power of 3-hydroxybenzaldehyde VSMC proliferation inhibition to manage conditions related to excessive cell growth in blood vessels.
Reduces Inflammation
The anti-inflammatory action of 3-Hydroxybenzaldehyde helps mitigate inflammatory responses in endothelial cells, contributing to overall vascular health.
Prevents Thrombosis
Explore the 3-hydroxybenzaldehyde anti-thrombotic properties, which are vital for preventing blood clot formation and improving circulation.
Key Applications
Vascular Health
Utilizing 3-hydroxybenzaldehyde for atherosclerosis treatment and other vascular conditions by mitigating key pathological processes.
Fine Chemical Synthesis
Serves as a critical precursor compound for synthesizing various phenolic compounds and other complex organic molecules.
Biochemical Research
A valuable tool in biochemical research, particularly for studying aldehyde dehydrogenase pathways and enzyme kinetics.
Pharmaceutical Intermediates
Acts as an intermediate in the synthesis of various pharmaceutical agents, offering pathways to novel therapeutics.
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