Javascript must be enabled to continue!
Huiyang Shengji decoction promotes wound healing in diabetic mice by activating the EGFR/PI3K/ATK pathway
View through CrossRef
Abstract
Background
Common chronic wounds include diabetic ulcers, venous ulcers, and pressure ulcers. The traditional Chinese medicine Huiyang Shengji decoction (HYSJD) has been shown to promote the healing of diabetic chronic wounds, however, its pharmacological mechanism is still unclear.
Purpose
This study aimed to determine the mechanism of HYSJD in promoting the healing of diabetic chronic skin ulcers.
Methods
Ultra-performance liquid chromatography was combined with tandem mass spectrometry (UPLC-MS/MS) to analyze the main components of HYSJD and the absorbed components in mouse serum at 30 min after oral administration of HYSJD. db/db mouse models for chronic skin ulcers were constructed by full-thickness skin resection. Wound tissues at day 7 post wound formation were used to perform microarray analysis of growth factors and chemokine expression. GO and KEGG enrichment analysis was performed on differentially expressed proteins. ELISA assays were used to measure differential expressed cytokines in the serum and Western blot analysis was used to determine the expression levels of related pathway proteins in the skin wounds.
Results
UPLC-MS/MS analysis showed that the main chemical components of HYSJD were flavonoids, terpenes, alkaloids, phenylpropanoids, and carbohydrates. At 30 min after oral administration of HYSJD, five absorbed components were detected in the serum, these included formononetin, calycosin, hypaconitine, calycosin-7-glucoside, and sinapic acid. HYSJD was found to increase the wound healing rate in chronic skin ulcers in db/db mice at days 3, 7, and 14 post wound formation, and promote the proliferation of epidermal cells. Two proteins that were differentially expressed between the different groups, i.e., IGF-1 and EGFR, were further validated. Serum ELISA assays showed that serum EGFR in the HYSJD treatment group was significantly increased. KEGG pathway analysis suggested that the PI3K/AKT pathway involved in HYSJD promoting the proliferation of epidermal cells in chronic wounds in db/db mice. Experimental verification showed that HYSJD activated the PI3K/AKT signaling pathway in mouse wound skin.
Conclusion
HYSJD promotes the proliferation of epidermal cells in chronic diabetic wounds by increasing EGFR expression in the wounds and activating the PI3K/AKT signaling pathway. Our study provides an experimental basis for the pharmacological mechanism of HYSJD.
Springer Science and Business Media LLC
Title: Huiyang Shengji decoction promotes wound healing in diabetic mice by activating the EGFR/PI3K/ATK pathway
Description:
Abstract
Background
Common chronic wounds include diabetic ulcers, venous ulcers, and pressure ulcers.
The traditional Chinese medicine Huiyang Shengji decoction (HYSJD) has been shown to promote the healing of diabetic chronic wounds, however, its pharmacological mechanism is still unclear.
Purpose
This study aimed to determine the mechanism of HYSJD in promoting the healing of diabetic chronic skin ulcers.
Methods
Ultra-performance liquid chromatography was combined with tandem mass spectrometry (UPLC-MS/MS) to analyze the main components of HYSJD and the absorbed components in mouse serum at 30 min after oral administration of HYSJD.
db/db mouse models for chronic skin ulcers were constructed by full-thickness skin resection.
Wound tissues at day 7 post wound formation were used to perform microarray analysis of growth factors and chemokine expression.
GO and KEGG enrichment analysis was performed on differentially expressed proteins.
ELISA assays were used to measure differential expressed cytokines in the serum and Western blot analysis was used to determine the expression levels of related pathway proteins in the skin wounds.
Results
UPLC-MS/MS analysis showed that the main chemical components of HYSJD were flavonoids, terpenes, alkaloids, phenylpropanoids, and carbohydrates.
At 30 min after oral administration of HYSJD, five absorbed components were detected in the serum, these included formononetin, calycosin, hypaconitine, calycosin-7-glucoside, and sinapic acid.
HYSJD was found to increase the wound healing rate in chronic skin ulcers in db/db mice at days 3, 7, and 14 post wound formation, and promote the proliferation of epidermal cells.
Two proteins that were differentially expressed between the different groups, i.
e.
, IGF-1 and EGFR, were further validated.
Serum ELISA assays showed that serum EGFR in the HYSJD treatment group was significantly increased.
KEGG pathway analysis suggested that the PI3K/AKT pathway involved in HYSJD promoting the proliferation of epidermal cells in chronic wounds in db/db mice.
Experimental verification showed that HYSJD activated the PI3K/AKT signaling pathway in mouse wound skin.
Conclusion
HYSJD promotes the proliferation of epidermal cells in chronic diabetic wounds by increasing EGFR expression in the wounds and activating the PI3K/AKT signaling pathway.
Our study provides an experimental basis for the pharmacological mechanism of HYSJD.
Related Results
Study on anti-inflammatory and healing mechanism of Jiawei Shengji Yuhong ointment on wound based on NF-κBp65 / IL-1β / VEGF pathway
Study on anti-inflammatory and healing mechanism of Jiawei Shengji Yuhong ointment on wound based on NF-κBp65 / IL-1β / VEGF pathway
Abstract
Objective: To observe the effect of Jiawei Shengjiyuhong Ointment on wound repair of rat model after anal fistula surgery by regulating NF-κBp65 / IL-1β / VEGF sig...
Rancang Bangun Sistem Pengelolaan ATK Menggungakan QR-Code Berbasis Website
Rancang Bangun Sistem Pengelolaan ATK Menggungakan QR-Code Berbasis Website
Perkembangan teknologi yang semakin pesat membutuhkan pengelolaan data yang efektif.Pandemi covid-19 berdampak terhadap pekerjaan terutama pada pengelolaan alat tuliskantor (ATK). ...
Abstract 5463: Development of a novel antibody-maytansinoid conjugate, IMGN289, for the treatment of EGFR-expressing solid tumors.
Abstract 5463: Development of a novel antibody-maytansinoid conjugate, IMGN289, for the treatment of EGFR-expressing solid tumors.
Abstract
EGFR is an attractive target for the treatment of a variety of solid tumors because of its role as a driver oncogene and high level of expression. Four EGFR...
Winyanghuayin Decoction and Xiaoqinglong Decoction Treatment Airway Inflammation of Cold Asthma Through PI3K-mTOR Signal Pathway
Winyanghuayin Decoction and Xiaoqinglong Decoction Treatment Airway Inflammation of Cold Asthma Through PI3K-mTOR Signal Pathway
Abstract
Background: Airway inflammation plays a pivotal role in cold asthma. Winyanghuayin decoction and Xiaoqinglong decoction can significantly improve airway inflammati...
Chronic Kidney Disease Predicts Adverse Major Cardiovascular Events and Adverse Limb Events in Patients With Diabetes and Peripheral Arterial Disease
Chronic Kidney Disease Predicts Adverse Major Cardiovascular Events and Adverse Limb Events in Patients With Diabetes and Peripheral Arterial Disease
This study aims to explore the effect in each stage of chronic kidney disease (CKD) on the major adverse cardiovascular events (MACE) in diabetes mellitus (DM) patients with periph...
Plasma ctDNA biomarker study in patients with non-small cell lung cancer with EGFR exon 20 insertion mutation treated with sunvozertinib.
Plasma ctDNA biomarker study in patients with non-small cell lung cancer with EGFR exon 20 insertion mutation treated with sunvozertinib.
8563 Background: There are limited reports on biomarker studies of non-small cell lung cancer (NSCLC) with epidermal growth factor receptor (EGFR) exon 20 insertion mutation (exon...
GW24-e2123 Effect of Sini Decoction on the expression of Sirt-1 and eNOS system in EAhy926 cells injured by homocysteine
GW24-e2123 Effect of Sini Decoction on the expression of Sirt-1 and eNOS system in EAhy926 cells injured by homocysteine
Objectives
To detect the effect of Sini Decoction on the expression of Sirt-1 and eNOS in EAhy926 cell injured by homocysteine.
...
Modified Hongyu Decoction promotes wound healing by activating the VEGF/PI3K/Akt signaling pathway
Modified Hongyu Decoction promotes wound healing by activating the VEGF/PI3K/Akt signaling pathway
Wound healing is a considerable problem for clinicians. Ever greater attention has been paid to the role of Chinese herbal monomers and compounds on wound healing. This study aims ...

