scholarly journals Mechanotransduction in Wound Healing and Fibrosis

2020 ◽  
Vol 9 (5) ◽  
pp. 1423 ◽  
Author(s):  
Britta Kuehlmann ◽  
Clark A. Bonham ◽  
Isabel Zucal ◽  
Lukas Prantl ◽  
Geoffrey C. Gurtner

Skin injury is a common occurrence and mechanical forces are known to significantly impact the biological processes of skin regeneration and wound healing. Immediately following the disruption of the skin, the process of wound healing begins, bringing together numerous cell types to collaborate in several sequential phases. These cells produce a multitude of molecules and initiate multiple signaling pathways that are associated with skin disorders and abnormal wound healing, including hypertrophic scars, keloids, and chronic wounds. Studies have shown that mechanical forces can alter the microenvironment of a healing wound, causing changes in cellular function, motility, and signaling. A better understanding of the mechanobiology of cells in the skin is essential in the development of efficacious therapeutics to reduce skin disorders, normalize abnormal wound healing, and minimize scar formation.

2019 ◽  
Vol 99 (1) ◽  
pp. 665-706 ◽  
Author(s):  
Melanie Rodrigues ◽  
Nina Kosaric ◽  
Clark A. Bonham ◽  
Geoffrey C. Gurtner

Wound healing is one of the most complex processes in the human body. It involves the spatial and temporal synchronization of a variety of cell types with distinct roles in the phases of hemostasis, inflammation, growth, re-epithelialization, and remodeling. With the evolution of single cell technologies, it has been possible to uncover phenotypic and functional heterogeneity within several of these cell types. There have also been discoveries of rare, stem cell subsets within the skin, which are unipotent in the uninjured state, but become multipotent following skin injury. Unraveling the roles of each of these cell types and their interactions with each other is important in understanding the mechanisms of normal wound closure. Changes in the microenvironment including alterations in mechanical forces, oxygen levels, chemokines, extracellular matrix and growth factor synthesis directly impact cellular recruitment and activation, leading to impaired states of wound healing. Single cell technologies can be used to decipher these cellular alterations in diseased states such as in chronic wounds and hypertrophic scarring so that effective therapeutic solutions for healing wounds can be developed.


2021 ◽  
Vol 5 (3) ◽  
pp. 095-104
Author(s):  
IM Cardoso-Daodu ◽  
CP Azubuike ◽  
MO Ilomuanya

Chronic wounds occur when one wound healing process or a sequence of wound healing events are affected resulting in slow healing of the wound thereby placing the patient in deep pain. Various diseases and conditions can delay the process of wound healing. Wound healing can be classified into four main stages: hemostasis, inflammation, remodeling, and scar tissue formation with each phase overlapping one another. The skin is the largest organ in the body. It protects the entire external surface of the human body and is the primary site of interaction with the outside environment. There is therefore a need to fabricate an ideal dressing through scientific research and investigations. Hydrogels are a three-dimensional network of hydrophilic polymers that can swell in water and absorb copious amounts of water while maintaining their structure because of their chemical or physical crosslinking of individual polymer chains. A hydrogel must be composed of at least 10% water. Hydrogels possess the flexibility and water percentage which is remarkably like tissues. They are biocompatible and biodegradable which makes them ideal for dermal wound healing.


2020 ◽  
pp. 74-80
Author(s):  
O.A. Toropov ◽  
D.S. Avetikov ◽  
K.P. Lokes ◽  
D.V. Steblovskyi ◽  
V.M. Skrypnyk ◽  
...  

As the trend to look beautiful is growing, so does the number of patients seeking reconstructive and aesthetic facial surgery, which leads to the rapid development of this field. To date, there exists a large number of techniques to eliminate a scar deformity, but none of them guarantees the optimal cosmetic effect. The purpose of the study. The study aims to search for and analyze scientific sources related to the prevention of pathological scars in Ukraine and the world. Materials and methods of research. To study the research materials, the bibliosemantic and analytical methods have been applied to process literature data, as well as research materials posted on the Internet. Skin is the largest human organ whose total surface area ranges from 1.7 to 2.6 m2 and can vary depending on height and weight. It acts as the main protective barrier from the environment. Violation of this barrier after injury, burns, or surgical resection can lead to chronic wounds and scars that affect patients physically and emotionally. Therefore, a better understanding of the cellular and molecular mechanisms underlying wound healing can potentially improve the lives of such people, as well as stimulate the development of new prevention and treatment methods. All wounds, except for surgical ones, are initially considered to be infected. Microorganisms get into the wound along with the damaging object, soil, pieces of clothing, air, and during hand touching. Once in the wound, microorganisms can cause suppuration and complications such as erysipelas. The most dangerous way for the microorganisms to enter the wound is in the absence of air which can cause anaerobic infection (gas gangrene). Another dangerous wound complication is a tetanus infection. For its prevention, all contaminated wounds (especially, by soil) should be treated with anti-tetanus toxoid or anti-tetanus serum. Thus, wound healing is one of the most difficult processes in the human body. It includes spatial and temporal synchronization of different cell types with different roles in the phases of hemostasis, inflammation, growth, reepithelialization, and remodeling. With the development of technology, it became possible to detect the phenotypic and functional heterogeneity of cell types. Discovering the role of each of these cell types and their interaction with each other is important for understanding the mechanisms of wound regeneration. The scar (Cicatrix) is a secondary morphological element of the skin, which is formed when it is damaged, and especially when the reticular dermis is damaged.  Laser therapy is used to prevent scarring, but the evidence for the effectiveness of laser treatment of surgical and hypertrophic scars, as well as keloids is somewhat insufficient, but generally suggests promising results. Multiple studies report a significant scar thickness improvement when applying the right program. Conclusion. Based on the bibliosemantic and analytical methods applied to process literature data, we believe that the study of intra- and postoperative prevention of pathological scars at different stages of their formation remains a topical issue and needs further study.


Open Biology ◽  
2018 ◽  
Vol 8 (9) ◽  
pp. 180053 ◽  
Author(s):  
Sasanka S. Chukkapalli ◽  
Tanmay P. Lele

The periodontium is a structurally and functionally complex tissue that facilitates the anchorage of teeth in jaws. The periodontium consists of various cell types including stem cells, fibroblasts and epithelial cells. Cells of the periodontium are constantly exposed to mechanical stresses generated by biological processes such as the chewing motions of teeth, by flows generated by tongue motions and by forces generated by implants. Mechanical stresses modulate the function of cells in the periodontium, and may play a significant role in the development of periodontal disease. Here, we review the literature on the effect of mechanical forces on periodontal cells in health and disease with an emphasis on molecular and cellular mechanisms.


2020 ◽  
Vol 27 (06) ◽  
pp. 1249-1254
Author(s):  
Ibrahim Yamin ◽  
Ayesha ◽  
Ramla ◽  
Muhammad Ajmal

Objectives: The use of human amniotic membrane is essential new concept in wound healing which functions as a biodegradable scaffold on wound surface, as it is a rich hub of stem cells which play an important role in wound healing. Study Design: Randomized Control Trial. Setting: Department of Surgery THQ Hospital Gojra. Period: 1st January 2019 to 30 September 2019. Material & Methods: Experimental study using clinical trial. A case series of 50 patient cases were picked from surgical OPD. Who fall in criteria of chronic non-healing wound with at least three months duration comprising of diabetic, venous ulcers and traumatic non healing wound and neuropathic ulcers. All located on lower limbs. Results: All 50 patient were treated with standard protocol by applying freshly prepared amniotic membrane out of which 4 chronic wounds more than 4 year duration were not healed and 2 cases escaped from the study. HAM dressing was changed after every 7 days and its effect were studied by seeing measuring the reduction in wound size and improvement in pain, swelling and mental stress. Success rate was found about 90% with complete healing. Conclusion: There is a dire need in developing countries to promote the use of HAM, in chronic non healing wounds which is a biological membrane, readily available (free if fresh) with simple sterilization techniques, easy storage and easy application with ultimate goal in achieving speedy cost effective wound healing.


2021 ◽  
Vol 2021 ◽  
pp. 1-16
Author(s):  
Elisa Seria ◽  
Sarah Samut Tagliaferro ◽  
Doreen Cutajar ◽  
Ruth Galdies ◽  
Alex Felice

We intended to reformulate an existing platelet-derived wound healing formula to target each phase of the healing wound with the appropriate phase-specific molecules. A decreased perfusion of the skin, often associated with conditions such as thalassemia, sickle cell disease, diabetes mellitus, and chronic vascular disease, is the most common etiology of cutaneous ulcers and chronic wounds. We had previously shown that a PDWHF topically applied to a chronic nonhealing ulcer of a β-thalassemia homozygote stimulated and accelerated closure of the wound. The PDWHF was prepared from a pooled platelet concentrate of a matching blood group, consisting of a combination of platelet α-granule-derived factors. Processing of the apheresis-pooled platelets yielded various amounts of proteins ( 3.36   g / mL ± 0.25 (SD) ( N = 10 )) by the better lysis buffer method. Immunoglobulin G was found to be the most abundant α-granule-secreted protein. Equally broad quantities of the IgG ( 10.76 ± 12.66 % (SD) ( N = 10 )) and IgG/albumin ratios ( 0.6 ± 0.4 (SD) ( N = 10 )) were quantified. We have developed a method using a reformulated lysis buffer followed by size exclusion chromatography and affinity chromatography to extract, identify, quantify, and purify IgG from activated platelets. IgG purification was confirmed by Western blot and flow cytometry. It was thought unlikely that the platelet IgG could be accounted for by adsorption of plasma protein, though the variable quantities could account for diversity in wound healing rates. The IgG could protect the wound even from subclinical infections and functionally advance healing. It may be useful in the management of skin ulcers in the early phase of wound healing.


2021 ◽  
Vol 15 (1) ◽  
Author(s):  
Vincenzo Davide Palumbo ◽  
Stefano Rizzuto ◽  
Giuseppe Damiano ◽  
Salvatore Fazzotta ◽  
Andrea Gottardo ◽  
...  

Abstract Background Wound healing is a complex and dynamic process. Healing of acute and chronic wounds can be impaired by patient factors (that is, comorbidities) and/or wound factors (that is, infection). Regenerative medicine products, such as autologous/homologous platelet-rich plasma gel, may speed up the healing process. Autologous/homologous platelet-rich plasma is an advanced wound therapy used for hard-to-heal acute and chronic wounds. The cytokines and growth factors contained in platelet-rich plasma play a crucial role in the healing process. Case presentation A 61-year-old Caucasian male patient, suffering from mental retardation following meningitis, with a transplanted kidney due to prior renal impairment, and under immunosuppressant therapy, was submitted to aneurysmectomy of his proximal left forearm arteriovenous fistula. A few days later, the patient came to our attention with substantial blood loss from the surgical site. The wound presented no signs of healing, and after fistula reparation and considering persistent infection of the surgical site (by methicillin-resistant Staphylococcus aureus), surgeons decided for second-intention healing. To favor healing, 10 mL homologous platelet concentrate gel was sequentially applied. After each application, wound was covered with nonadherent antiseptic dressing. After only seven applications of homologous platelet concentrate gel, wound completely recovered and no amputation was necessary. Conclusions Topical application of homologous platelet-rich plasma gel in healing wound shows beneficial results in wound size reduction and induces granulation tissue formation. Platelet-rich plasma could be a safe and cost-effective treatment for managing the cutaneous wound healing process to shorten the recovery period and thereby improve patient quality of life.


Open Medicine ◽  
2021 ◽  
Vol 16 (1) ◽  
pp. 1240-1255
Author(s):  
Jie Ding ◽  
Maiken Mellergaard ◽  
Zhensen Zhu ◽  
Peter Kwan ◽  
Deirdre Edge ◽  
...  

Abstract Skin grafting is often the only treatment for skin trauma when large areas of tissue are affected. This surgical intervention damages the deeper dermal layers of the skin with implications for wound healing and a risk of scar development. Photobiomodulation (PBM) therapy modulates biological processes in different tissues, with a positive effect on many cell types and pathways essential for wound healing. This study investigated the effect of fluorescent light energy (FLE) therapy, a novel type of PBM, on healing after skin grafting in a dermal fibrotic mouse model. Split-thickness human skin grafts were transplanted onto full-thickness excisional wounds on nude mice. Treated wounds were monitored, and excised xenografts were examined to assess healing and pathophysiological processes essential for developing chronic wounds or scarring. Results demonstrated that FLE treatment initially accelerated re-epithelialization and rete ridge formation, while later reduced neovascularization, collagen deposition, myofibroblast and mast cell accumulation, and connective tissue growth factor expression. While there was no visible difference in gross morphology, we found that FLE treatment promoted a balanced collagen remodeling. Collectively, these findings suggest that FLE has a conceivable effect at balancing healing after skin grafting, which reduces the risk of infections, chronic wound development, and fibrotic scarring.


TECHNOLOGY ◽  
2021 ◽  
pp. 1-7
Author(s):  
Sarah Susan Kelangi ◽  
Georgios Theocharidis ◽  
Aristidis Veves ◽  
William G. Austen ◽  
Robert Sheridan ◽  
...  

Cutaneous wound healing is a highly coordinated process involving numerous molecular pathways that regulate the function of specific skin cell types. One of the key decisions in acute and/or chronic wound healing management is to choose the skin substitute that, based on its composition and/or properties, may act as permanent skin replacement or temporary wound cover. The current products however are limited in their action, especially in the context of large chronic wounds or extensive second-/third-degree burns, due to the risk of developing infection, the limited vascularization, the inability to integrate to host tissue, and the lack in the healed area of skin apparatus responsible for temperature control, pigmentation, immune regulation, and nerve supply. In addition, the high cost of skin substitutes precludes their use in small- and moderate-size burns because they are economically impractical and protract the time to definitive wound closure. Thus, the need to develop cost-effective substitutes of high quality is imperative. The purpose of this review is to discuss current available products, their limitations and to provide some perspectives on future research toward generation of cost-effective, high-quality substitutes.


Author(s):  
Fahim M. Mahmood ◽  
Hayder B. Sahib ◽  
Khalid W. Qassim

Wound healing is a complex physiological and dynamic process required the coordination of numerous cell types and biological processes to regenerate damaged tissue and initiate repair which is dependent on a number of inter-related factors. This study was aimed to demonstrate whether the ?2 receptor has role in wound healing and angiogenesis. A murine wild-type (in vivo), excisional skin wound model was done to demonstrate that activation of ?2AR delay wound repair, twenty-four male albino mice were used to investigate the effect of the drug on experimental wound healing grossly, histo-pathologically and immune-histochemically compared with vehicle-only controls. The results showed that the rate of wound healing was significantly slower in salbutamol group than in control group (P


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