Back to Search Start Over

Maggot excretions/secretions promote diabetic wound angiogenesis via miR18a/19a - TSP-1 axis

Authors :
Wei Wang
Meng Lu
Jinshan Sun
Lan Liu
Yin-chen Chen
Ai-ping Wang
Tianyuan Wang
Yue-dong Chen
Hui Yang
Fei-fei Li
Wang Jing
Dong-mei Gu
Dong Jiang
Source :
Diabetes research and clinical practice. 165
Publication Year :
2019

Abstract

Aims The impaired angiogenesis is one of the main factors affecting the healing of diabetic foot ulcer (DFU) wounds. Maggot debridement therapy (MDT) promotes granulation tissue growth and angiogenesis during DFU wound healing. Non-coding microRNAs can also promote local angiogenesis in DFU wounds by regulating wound repairing related gene expression. The purpose of this study was to investigate the mechanism of microRNAs in MDT promoting DFU wound angiogenesis. Methods In this study, we applied MDT to treat DFU wound tissue and detect the expression of the miR-17–92 cluster. In vitro experiments, human umbilical vein endothelial cells (HUVECs) were treated with maggot excretions/secretions (ES), the miR-17–92 cluster and the predicted target gene expression were measured. Tube formation assay and cell scratch assay were performed when inhibition of miR-18a/19a or overexpression of thrombospondin-1 (TSP-1) were used in this study. Results miR-18a/19a transcription significantly up-regulated and TSP-1 expression down-regulated in patients wound tissue and in HUVECs. Inhibition of miR-18a/19a or overexpression of TSP-1 partially blocked the migration and tube formation ability stimulated by ES. Conclusion Targeted activation of miR-18a/19a transcription levels and subsequent regulation of TSP-1 expression may be a novel therapeutic strategy for DFU.

Details

ISSN :
18728227
Volume :
165
Database :
OpenAIRE
Journal :
Diabetes research and clinical practice
Accession number :
edsair.doi.dedup.....292350d0b06945662303832546281151