Role of Platelet-Rich Plasma in Accelerating the Wound-Healing Process and Recovery in Patients Undergoing Operation for Pilonidal Sinus Disease: Preliminary Results

2009 ◽  
Vol 33 (8) ◽  
pp. 1770-1771 ◽  
Author(s):  
Jonathan Efron
2009 ◽  
Vol 33 (8) ◽  
pp. 1764-1769 ◽  
Author(s):  
Michail Spyridakis ◽  
Gregory Christodoulidis ◽  
Constantine Chatzitheofilou ◽  
Dimitris Symeonidis ◽  
Konstantinos Tepetes

2020 ◽  
Vol 99 (8) ◽  

Introduction: Despite the available guidelines, opinions of many surgeons are quite ambiguous when it comes to the therapy of pilonidal sinus disease. The treatment can be a frustrating problem both for the surgeon and the patient because it is associated with wound complications and high recurrence rate. The objective of this study was to analyze the results of patients with pilonidal sinus disease undergoing the Karydakis flap procedure. Methods: A total of 27 patients treated for primary and recurrent pilonidal disease using the Karydakis flap procedure at our department between October 23, 2018 and November 22, 2019 were analyzed prospectively. We evaluated postoperative wound healing, complications and recurrence of the disease in a short-term follow-up period. Disease recurrence was defined as prolonged healing or as a new disease requiring repeated surgery. Results: In December 2019 all 27 patients came for a follow-up visit. The result was a fully lateralized wound without any signs of a new disease in all patients. In May 2020 a follow-up visit by phone was performed. The median follow-up was 12 months. The healing process was free of any serious complications in 25 patients. Seroma formation cases were managed by puncture in the outpatient setting. Conclusion: According to the available evidence and guidelines, off-midline procedures – the Karydakis flap, Bascom cleft lift, and Limberg flap procedures – are associated with lower recurrence rates and better wound healing. An important goal is to achieve complete wound lateralization and to change the configuration of the gluteal cleft by reshaping it, which results in a nicely flattened gluteal crease.


2021 ◽  
Vol 165 ◽  
pp. 39
Author(s):  
Francesca Lombardi ◽  
Silvano Santini ◽  
Paola Palumbo ◽  
Valeria Cordone ◽  
Virginio Bignotti ◽  
...  

2021 ◽  
Author(s):  
Mary Yinghua Zhang ◽  
Shuyi Fang ◽  
Hongyu Gao ◽  
Xiaoli Zhang ◽  
Dongsheng Gu ◽  
...  

ABSTRACTWe report our discovery of an important player in the development of skin fibrosis, a hallmark of scleroderma. Scleroderma is a fibrotic disease, affecting 70,000 to 150,000 Americans. Fibrosis is a pathological wound healing process that produces an excessive extracellular matrix to interfere with normal organ function. Fibrosis contributes to nearly half of human mortality. Scleroderma has heterogeneous phenotypes, unpredictable outcomes, no validated biomarkers, and no effective treatment. Thus, strategies to slow down scleroderma progression represent an urgent medical need. While a pathological wound healing process like fibrosis leaves scars and weakens organ function, oral mucosa wound healing is a scarless process. After re-analyses of gene expression datasets from oral mucosa wound healing and skin fibrosis, we discovered that several pathways constitutively activated in skin fibrosis are transiently induced during oral mucosa wound healing process, particularly the amphiregulin (Areg) gene. Areg expression is upregulated ~10 folds 24hrs after oral mucosa wound but reduced to the basal level 3 days later. During bleomycin-induced skin fibrosis, a commonly used mouse model for skin fibrosis, Areg is up-regulated throughout the fibrogenesis and is associated with elevated cell proliferation in the dermis. To demonstrate the role of Areg for skin fibrosis, we used mice with Areg knockout, and found that Areg deficiency essentially prevents bleomycin-induced skin fibrosis. We further determined that bleomycin-induced cell proliferation in the dermis was not observed in the Areg null mice. Furthermore, we found that inhibiting MEK, a downstream signaling effector of Areg, by selumetinib also effectively blocked bleomycin-based skin fibrosis model. Based on these results, we concluded that the Areg-EGFR-MEK signaling axis is critical for skin fibrosis development. Blocking this signaling axis may be effective in treating scleroderma.


2018 ◽  
Vol 32 (8) ◽  
pp. 1011-1023 ◽  
Author(s):  
Ji-Ung Park ◽  
Seol-Ha Jeong ◽  
Eun-Ho Song ◽  
Juha Song ◽  
Hyoun-Ee Kim ◽  
...  

In this study, we evaluated the surface characterization of a novel chitosan–silica hybridized membrane and highlighted the substantial role of silica in the wound environment. The chemical coupling of chitosan and silica resulted in a more condensed network compared with pure chitosan, which was eventually able to stably maintain its framework, particularly in the wet state. In addition, we closely observed the wound-healing process along with the surface interaction between chitosan–silica and the wound site using large-surface-area wounds in a porcine model. Our evidence indicates that chitosan–silica exerts a synergetic effect of both materials to promote a remarkable wound-healing process. In particular, the silica in chitosan–silica accelerated wound closure including wound contraction, and re-epithelialization via enhancement of cell recruitment, epidermal maturity, neovascularization, and granulation tissue formation compared with pure chitosan and other commercial dressing materials. This advanced wound dressing material may lead to effective treatment for problematic cutaneous wounds and can be further applied for human skin regeneration.


2014 ◽  
Vol 10 (3) ◽  
pp. 417-428 ◽  
Author(s):  
Maria G. Roubelakis ◽  
Ourania Trohatou ◽  
Apostolos Roubelakis ◽  
Evgenia Mili ◽  
Ioannis Kalaitzopoulos ◽  
...  

Antibiotics ◽  
2021 ◽  
Vol 10 (11) ◽  
pp. 1377
Author(s):  
Oriana Simonetti ◽  
Giulio Rizzetto ◽  
Giulia Radi ◽  
Elisa Molinelli ◽  
Oscar Cirioni ◽  
...  

Among the most common complications of both chronic wound and surgical sites are staphylococcal skin infections, which slow down the wound healing process due to various virulence factors, including the ability to produce biofilms. Furthermore, staphylococcal skin infections are often caused by methicillin-resistant Staphylococcus aureus (MRSA) and become a therapeutic challenge. The aim of this narrative review is to collect the latest evidence on old and new anti-staphylococcal therapies, assessing their anti-biofilm properties and their effect on skin wound healing. We considered antibiotics, quorum sensing inhibitors, antimicrobial peptides, topical dressings, and antimicrobial photo-dynamic therapy. According to our review of the literature, targeting of biofilm is an important therapeutic choice in acute and chronic infected skin wounds both to overcome antibiotic resistance and to achieve better wound healing.


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