| Literature DB >> 29951552 |
Alberto López-Delis1,2, Suélia de S Rodrigues Fleury Rosa2, Paulo Eduardo Narcizo de Souza3, Marcella Lemos Brettas Carneiro4, Mário Fabrício Fleury Rosa2,5, Yasmin Carneiro Lobo Macedo2, Fabiane Hiratsuka Veiga-Souza6,7, Adson Ferreira da Rocha2.
Abstract
The present study aims at evaluating the correlation between the free radical formation and the healing action of lower limbs' ulcers in a randomized controlled trial with the use of an adhesive derived from natural latex associated with a light-emitting diode (LED) circuit. The sample consists of 15 participants with lower limb lesions divided into three groups: group 1 case (5 participants) received the proposed dressing system adhesive of the natural latex associated with the LED circuit; group 2 control (5 participants) received the dressings at home performed by nurses according to and established by the clinic of wounds (treated with calcium alginate or silver foam); and group 3 (5 participants) also received the dressing in their homes with the use of the dressing adhesive derived from the natural latex associated with the LED circuit. The collected data were analyzed qualitatively and quantitatively by electron paramagnetic resonance for determination of free radical formation. Kruskal-Wallis statistical test was used to evaluate the effect of treatment on the lower limb's ulcer cicatrization process and its correlation with free radical. The results obtained corroborated the hypothesis about the reduction of the quantity of these molecules in the end of treatment related to the healing wound.Entities:
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Year: 2018 PMID: 29951552 PMCID: PMC5989169 DOI: 10.1155/2018/4641364
Source DB: PubMed Journal: J Diabetes Res Impact factor: 4.011
Figure 1Flowchart for the application of the randomized clinical trial of research participants with wounds: natural latex and light-emitting circuit of LEDs.
Figure 2Collection of wound tissues on tissue samples before treatment and collection of blood in the wound bed (50 μL).
Figure 3Electron paramagnetic resonance spectrometer EMXplus (Bruker, Germany).
Figure 4CM· quantification in the wound (a), venous blood (b), and wound tissues (c).
Figure 5The statistical dispersion obtained along the sample collection stages in the three sample groups with statistical signification in the wound (a), venous blood (b), and wound tissues (c).