Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Transplantation of Cultivated Fibroblasts on a Backing of Xenogenic Tissue in the Treatment of Wounds

View through CrossRef
Introduction. Trophic ulcers are a common health problem, and there are numerous treatment methods. Irreversible damage in the skin, subcutaneous tissue, and fascia with long-term ulcer existence make standard autotransplantation inneffective. Skin grafts are often complicated by partial or complete rejection of skin flaps. The aim of this study was to examine the feasibility of using transplanted cultivated allogenic fibroblasts on the backing of a cellularless xenogenic fabric for wound healing.Methods. Transplantation of cultured embryonic fibroblasts on a backing of xenogenic tissue was used in the complex treatment of trophic ulcers for stimulation of regenerative processes. Decellularization xenogenic film was previously held. Then allogenic fibroblasts were cultivated on the surface of collagen-elastin matrix. Since 2013, we treated 12 patients with giant ulcers caused by the following: lymphedema (2 patients), vascular disease (3 patients), diabetes (2 patients), after injury (4 patients), and radiation ulcer (1 patient). Dimensions of ulcers were from 150 to 600 cm2. Duration of the lower limb ulcers ranged from 8 months to 10 years. For a number of years, all patients were on a complex therapy, which had not resulted in healing wounds. During the operation when excision of granulation tissue was performed, plastic wounds perforated with the ratio 1:2 autoskin. Xenogenic fabric with cultured fibroblasts was applied on top. In this case, xenogenic film protected the skin from drying, created optimal microclimate, and cultured fibroblasts stimulating regeneration and improving engraftment.Results. The first redress was held on the fifth day. In all cases, the results of engraftment skin grafts achieved maximum possible (100%) and optimal (90%). Complete epithelialization of the cell perforation was seen in five patients on the fifth day and three on seventh day after skin plastics. Average period of inpatient treatment was 20.7 days. All patients were discharged with healed wounds.Conclusion. Thus, the treatment of trophic ulcers can be successfully solved using advances in biotechnology. Transplantation of cultivated allogenic fibroblasts on a backing of cellularless xenogenic fabric shows good clinical results due to the stimulation of regenerative processes and creates the optimum environment for autotransplants. 
Title: Transplantation of Cultivated Fibroblasts on a Backing of Xenogenic Tissue in the Treatment of Wounds
Description:
Introduction.
Trophic ulcers are a common health problem, and there are numerous treatment methods.
Irreversible damage in the skin, subcutaneous tissue, and fascia with long-term ulcer existence make standard autotransplantation inneffective.
Skin grafts are often complicated by partial or complete rejection of skin flaps.
The aim of this study was to examine the feasibility of using transplanted cultivated allogenic fibroblasts on the backing of a cellularless xenogenic fabric for wound healing.
Methods.
Transplantation of cultured embryonic fibroblasts on a backing of xenogenic tissue was used in the complex treatment of trophic ulcers for stimulation of regenerative processes.
Decellularization xenogenic film was previously held.
Then allogenic fibroblasts were cultivated on the surface of collagen-elastin matrix.
Since 2013, we treated 12 patients with giant ulcers caused by the following: lymphedema (2 patients), vascular disease (3 patients), diabetes (2 patients), after injury (4 patients), and radiation ulcer (1 patient).
Dimensions of ulcers were from 150 to 600 cm2.
Duration of the lower limb ulcers ranged from 8 months to 10 years.
For a number of years, all patients were on a complex therapy, which had not resulted in healing wounds.
During the operation when excision of granulation tissue was performed, plastic wounds perforated with the ratio 1:2 autoskin.
Xenogenic fabric with cultured fibroblasts was applied on top.
In this case, xenogenic film protected the skin from drying, created optimal microclimate, and cultured fibroblasts stimulating regeneration and improving engraftment.
Results.
The first redress was held on the fifth day.
In all cases, the results of engraftment skin grafts achieved maximum possible (100%) and optimal (90%).
Complete epithelialization of the cell perforation was seen in five patients on the fifth day and three on seventh day after skin plastics.
Average period of inpatient treatment was 20.
7 days.
All patients were discharged with healed wounds.
Conclusion.
Thus, the treatment of trophic ulcers can be successfully solved using advances in biotechnology.
Transplantation of cultivated allogenic fibroblasts on a backing of cellularless xenogenic fabric shows good clinical results due to the stimulation of regenerative processes and creates the optimum environment for autotransplants.
 .

Related Results

Survey on Prevalence and Impact of Chronic Non-Healing Wounds among Patients Attending Various Wound Clinics Around Trivandrum City
Survey on Prevalence and Impact of Chronic Non-Healing Wounds among Patients Attending Various Wound Clinics Around Trivandrum City
The survey on prevailing medical practices for non-healing chronic wounds and its impact provides valuable insights into the management and treatment strategies adopted in the cont...
SUMMARY
SUMMARY
SUMMARYThe purpose of the present monograph is to give an account of the distribution of fibrinolytic components in the organism, with special reference to the tissue activator of ...
Spatio-Temporal Analysis of Cultivated Land from 2010 to 2020 in Long’an County, Karst Region, China
Spatio-Temporal Analysis of Cultivated Land from 2010 to 2020 in Long’an County, Karst Region, China
Spatio-temporal changes in cultivated land have a profound impact on food security and sustainable development. However, existing studies on spatio-temporal changes in cultivated l...
Reduction of the Recipient Spleen Size After Living Donor Liver Transplantation A Retrospective Study.
Reduction of the Recipient Spleen Size After Living Donor Liver Transplantation A Retrospective Study.
Abstract Background: Liver transplantation is considered an important solution to patients with end stage liver disease and a glimpse of hope for some patients with terribl...
Reduction of Recipient Spleen Size after Living Donor Liver Transplantation: A Retrospective Study
Reduction of Recipient Spleen Size after Living Donor Liver Transplantation: A Retrospective Study
Abstract Background Liver transplantation is considered an important solution to patients with end stage liver disease and a gli...
Machine learning improves post-transplantation HCC recurrence prediction
Machine learning improves post-transplantation HCC recurrence prediction
We aimed to enhance post-transplantation HCC recurrence prediction by evaluating additional novel risk factors and leveraging state-of-the-art machine learning (ML) algorithms. Usi...
System Cognition and Analytic Technology of Cultivated Land Quality from a Data Perspective
System Cognition and Analytic Technology of Cultivated Land Quality from a Data Perspective
As cultivated land quality has been paid more and more scientific attention, its connotation generalization and cognitive bias are widespread, bringing many challenges to the inves...
Molecular and metabolomic characterization of hiPSC-derived cardiac fibroblasts transitioning to myofibroblasts
Molecular and metabolomic characterization of hiPSC-derived cardiac fibroblasts transitioning to myofibroblasts
1. Summary Mechanical stress and pathological signaling trigger the activation of fibroblasts to myofibroblasts, which impacts extracellular matrixc...

Back to Top