Literature DB >> 24584462

Analysis of blood flow and local expression of angiogenesis‑associated growth factors in infected wounds treated with negative pressure wound therapy.

Cheng-Yan Xia1, Ai-Xi Yu1, Baiwen Qi1, Min Zhou1, Zong-Huan Li1, Wei-Yang Wang1.   

Abstract

Angiogenesis is involved in the wound healing process. Increased angiogenesis and blood flow constitute a major mechanism of negative pressure wound therapy (NPWT), which has been shown to facilitate the healing of infected wounds. However, the effect on the expression of angiogensis‑related growth factor remains unknown. The goal of the current study was to investigate the angiogenic factor levels prior to and following NPWT in infected wounds. A total of 20 patients with infected wounds treated with NPWT were included in the study. Patients acted as their own control; the postoperative measurements of patients were considered as the experimental group, while preoperative measurements were considered as the controlled group. Blood flow was recorded prior to and during NPWT. A total of 10 angiogensis‑related growth factors were detected using a protein biochip array to analyze the change in protein levels prior to NPWT, and on the third day during NPWT. All wounds were successfully reconstructed by skin grafting or using local flaps following NPWT. NPWT resulted in significantly increased blood flow in the wound. There was a significant increase in vascular endothelial growth factor (VEGF), EGF, platelet‑derived growth factor and angiotesin‑2 following NPWT, while basic fibroblast growth factor decreased significantly. NPWT affects the local expression of angiogenesis‑associated growth factors, which represents another mechanism to explain how NPWT accelerates wound healing.

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Year:  2014        PMID: 24584462     DOI: 10.3892/mmr.2014.1997

Source DB:  PubMed          Journal:  Mol Med Rep        ISSN: 1791-2997            Impact factor:   2.952


  14 in total

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Review 3.  Negative pressure wound therapy for surgical wounds healing by primary closure.

Authors:  Gill Norman; Chunhu Shi; En Lin Goh; Elizabeth Ma Murphy; Adam Reid; Laura Chiverton; Monica Stankiewicz; Jo C Dumville
Journal:  Cochrane Database Syst Rev       Date:  2022-04-26

4.  Negative pressure wound therapy for surgical wounds healing by primary closure.

Authors:  Joan Webster; Zhenmi Liu; Gill Norman; Jo C Dumville; Laura Chiverton; Paul Scuffham; Monica Stankiewicz; Wendy P Chaboyer
Journal:  Cochrane Database Syst Rev       Date:  2019-03-26

5.  Negative pressure wound therapy for surgical wounds healing by primary closure.

Authors:  Gill Norman; En Lin Goh; Jo C Dumville; Chunhu Shi; Zhenmi Liu; Laura Chiverton; Monica Stankiewicz; Adam Reid
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7.  Effect of Prophylactic Negative Pressure Wound Therapy vs Standard Wound Dressing on Surgical-Site Infection in Obese Women After Cesarean Delivery: A Randomized Clinical Trial.

Authors:  Methodius G Tuuli; Jingxia Liu; Alan T N Tita; Sherri Longo; Amanda Trudell; Ebony B Carter; Anthony Shanks; Candice Woolfolk; Aaron B Caughey; David K Warren; Anthony O Odibo; Graham Colditz; George A Macones; Lorie Harper
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8.  Negative pressure wound therapy for surgical wounds healing by primary closure.

Authors:  Gill Norman; En Lin Goh; Jo C Dumville; Chunhu Shi; Zhenmi Liu; Laura Chiverton; Monica Stankiewicz; Adam Reid
Journal:  Cochrane Database Syst Rev       Date:  2020-06-15

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Authors:  Zhanjun Ma; Kangquan Shou; Zonghuan Li; Chao Jian; Baiwen Qi; Aixi Yu
Journal:  Exp Ther Med       Date:  2016-02-17       Impact factor: 2.447

10.  Negative pressure wound therapy: Regulating blood flow perfusion and microvessel maturation through microvascular pericytes.

Authors:  Zhanjun Ma; Zonghuan Li; Kangquan Shou; Chao Jian; Pengcheng Li; Yahui Niu; Baiwen Qi; Aixi Yu
Journal:  Int J Mol Med       Date:  2017-09-13       Impact factor: 4.101

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