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Unilateral Lung Volume Analysis Using Micro-CT for Enhanced Assessment of Pulmonary Fibrosis in Preclinical Models
Published on: June 20, 2025
[Research advances on baicalin and baicalein as potential therapeutic agents for fibrotic disease]
1School of Traditional Chinese Medicine, Shandong University of Traditional Chinese Medicine, Ji'nan 250355, China.
Abstract:
Tissue and organ fibrosis is the major cause for disability and death related to a variety of diseases worldwide. As specific therapies to halt, or even to reverse the existing tissue fibrosis are not yet available, it is of great significance to find new anti-fibrosis therapeutic agents. Tissue and organ fibrosis is a nonphysiological scarring process, associated with excessive deposition of extracellular matrix, and leads to impairment of organ function. Fibrotic lesions of all organs show similar histological abnormalities. In recent years, plenty of studies showed that Baicalin and baicalein had anti-fibrosis effects in different tissues or organs. In this paper, the effects and mechanisms of baicalin and baicalein on different organ fibrosis were reviewed. Baicalin and its aglycone baicalein had similarity in structural and pharmacological characteristics, with broad biotransformation effect within the body. The research suggested that baicalin and baicalein can suppress different tissue and organ fibrosis occurrence and development via various mechanisms, including down-regulating expression of promote-fibrosis cytokines, inhibiting pro-fibrogenic signaling pathways, anti-inflammatory and anti-oxidant effects. Though baicalin and baicalein are promising anti-fibrosis agents, there is still a long way to go before being approved as specific anti-fibrotic drugs.
Insights
Baicalin and baicalein show promise in combating tissue and organ fibrosis by reducing scarring and inflammation. Further research is needed to develop these natural compounds into approved anti-fibrosis drugs.
Area of Science:
- Pharmacology and Pathology
- Natural Product Research
Background:
- Tissue and organ fibrosis is a leading cause of death and disability globally.
- Current therapies for fibrosis are limited, highlighting the need for novel anti-fibrosis agents.
- Fibrotic lesions share common histological features across different organs.
Purpose of the Study:
- To review the anti-fibrosis effects and mechanisms of baicalin and baicalein.
- To explore their potential as therapeutic agents for various organ fibroses.
Main Methods:
- Literature review of studies on baicalin and baicalein in different fibrotic models.
- Analysis of their structural and pharmacological characteristics.
- Examination of their biotransformation within the body.
Main Results:
- Baicalin and baicalein demonstrate anti-fibrosis effects across various tissues and organs.
- Mechanisms include down-regulating pro-fibrosis cytokines, inhibiting signaling pathways, and exhibiting anti-inflammatory and anti-oxidant properties.
- These compounds share structural and pharmacological similarities and undergo extensive biotransformation.
Conclusions:
- Baicalin and baicalein are promising natural compounds for suppressing fibrosis development.
- While effective through multiple mechanisms, they require further investigation before clinical approval as anti-fibrotic drugs.