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1.
Burns ; 47(3): 601-610, 2021 05.
Artículo en Inglés | MEDLINE | ID: mdl-32843238

RESUMEN

Definitive treatment to achieve wound healing in major burns frequently include skin transplantation, where split-thickness skin grafts is considered gold standard. This method is associated with several drawbacks. To overcome these hurdles, efforts have been made to develop tissue engineered skin substitutes, often comprised of a combination of cells and biomaterials. In the present study, we aimed to investigate transplantation of autologous keratinocytes and fibroblasts seeded on porous gelatin microcarriers using a porcine wound model. Pre-seeded microcarriers were transplanted to a total of 168 surgical full-thickness wounds (2cm diameter) on eight adult female pigs and covered with occlusive dressings. The experimental groups included wounds transplanted with microcarriers seeded with the combination of keratinocytes and fibroblasts, microcarriers seeded with each cell type individually, microcarriers without cells, each cell type in suspension, and NaCl control. Wounds were allowed to heal for one, two, four or eight weeks before being excised and fixated for subsequent histological and immunohistochemical analysis. In vitro, we confirmed that viable cells populate the surface and the pores of the microcarriers. In vivo, the microcarriers were to a large extent degraded after two weeks. After one week, all treatment groups, with the exception of microcarriers alone, displayed significantly thicker neo-epidermis compared to controls. After two weeks, wounds transplanted with microcarriers seeded with cells displayed significantly thicker neo-epidermis compared to controls. After four weeks there was no difference in the thickness of neo-epidermis. In conclusion, the experiments performed illustrate that autologous cells seeded on porous gelatin microcarriers stimulates the re-epithelialization of wounds. This method could be a promising candidate for skin transplantation. Future studies will focus on additional outcome parameters to evaluate long-term quality of healing following transplantation.


Asunto(s)
Trasplante de Células/métodos , Gelatina/farmacología , Trasplante Autólogo/métodos , Cicatrización de Heridas/efectos de los fármacos , Animales , Materiales Biocompatibles/farmacología , Materiales Biocompatibles/uso terapéutico , Trasplante de Células/estadística & datos numéricos , Modelos Animales de Enfermedad , Gelatina/uso terapéutico , Suspensiones/farmacología , Suspensiones/uso terapéutico , Porcinos , Trasplante Autólogo/estadística & datos numéricos , Cicatrización de Heridas/fisiología
2.
Radiat Prot Dosimetry ; 157(3): 331-8, 2013 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-23771956

RESUMEN

The influence of temporal daily exposure to global system for mobile communications (GSM) and universal mobile telecommunications systems and high speed downlink packet access (UMTS-HSDPA) is investigated using spectrum analyser measurements in two countries, France and Belgium. Temporal variations and traffic distributions are investigated. Three different methods to estimate maximal electric-field exposure are compared. The maximal realistic (99 %) and the maximal theoretical extrapolation factor used to extrapolate the measured broadcast control channel (BCCH) for GSM and the common pilot channel (CPICH) for UMTS are presented and compared for the first time in the two countries. Similar conclusions are found in the two countries for both urban and rural areas: worst-case exposure assessment overestimates realistic maximal exposure up to 5.7 dB for the considered example. In France, the values are the highest, because of the higher population density. The results for the maximal realistic extrapolation factor at the weekdays are similar to those from weekend days.


Asunto(s)
Teléfono Celular , Campos Electromagnéticos/efectos adversos , Exposición a Riesgos Ambientales/efectos adversos , Monitoreo de Radiación/métodos , Telecomunicaciones , Bélgica , Francia , Humanos
3.
Bioelectromagnetics ; 33(4): 288-97, 2012 May.
Artículo en Inglés | MEDLINE | ID: mdl-21960463

RESUMEN

In this article, the general public daily exposure to broadcast signals and Global System for Mobile Communications (GSM) or Universal Mobile Telecommunications System (UMTS) mobile telephone signals in indoor areas is investigated. Temporal variations and traffic distributions during a day at different indoor sites in urban and rural zones are presented. The goal is to analyze the real exposure compared to the maximum assessment imposed by radio protection standards and to characterize the ratio between daily and maximum theoretical values. Hence, a realistic maximum is proposed based on the statistical analysis performed using measurements. Broadcast signals remain constant over the day so they are best fitted with a Normal distribution while the mobile telephone signals depend on the traffic demand during the day so they fit a three-Gaussian distribution model. A general mask is also constructed for underlining the maximum equivalent active traffic for different periods in the day. Also, relations between the mean values over 24 h, the realistic maximal values (at 99%) and the maximal theoretical values are presented. The realistic maximum is also presented with a sliding time average of 6 min applied to the measurements in accordance with international standards. An extrapolation factor is given for the different systems to easily assess the maximum values starting from an instantaneous measurement. The extrapolation factor is also given for a broadband measurement to estimate the maximum potential exposure during the day.


Asunto(s)
Ambiente , Exposición a la Radiación/análisis , Tecnología Inalámbrica/instrumentación , Teléfono Celular/instrumentación , Ciudades , Humanos , Ondas de Radio , Población Rural , Factores de Tiempo
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