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1.
Worldviews Evid Based Nurs ; 14(6): 473-483, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28755424

ABSTRACT

BACKGROUND: In 2013, an observational survey was conducted among 242 in-patients in a community hospital with a pressure ulcer (PU) prevalence of 34.3%. An evidence-based pressure ulcer prevention program (PUPP) was then implemented including a staff awareness campaign entitled "Healthy Skin Wins" with an online tutorial about PU prevention. AIMS: To determine the effectiveness of the PUPP in reducing the prevalence of PUs, to determine the effectiveness of the online tutorial in increasing hospital staff's knowledge level about PU prevention, and to explore frontline staff's perspectives of the PUPP. METHODS: This was a mixed methods study. A repeat observational survey discerned if the PUPP reduced PU prevalence. A pre-test post-test design was used to determine whether hospital staff's knowledge of PU prevention was enhanced by the online tutorial. Qualitative interviews were conducted with nurses, allied health professionals, and health care aides to explore staff's perspectives of the PUPP. RESULTS: A comparison of initial and repeat observational surveys (n = 239) identified a statistically significant reduction in the prevalence of PU to 7.53% (p < .001). The online tutorial enhanced staff knowledge level with a statistically significantly higher mean post-test score (n = 80). Thirty-five frontline staff shared their perspectives of the PUPP with "it's definitely a combination of everything" and "there's a disconnect between what's needed and what's available" as the main themes. CONCLUSIONS: Incorporating evidence-based PU prevention into clinical practice greatly reduced the prevalence of PUs among hospital in-patients. Due to the small sample size for the pre-test post-test component, the effectiveness of the online tutorial in improving the knowledge level of PU prevention among hospital staff requires further research. LINKING EVIDENCE TO ACTION: Evidence-based PU prevention strategies are facilitated by using a multidisciplinary approach. Educational tools about PU prevention must target all members of the healthcare team including healthcare aides, patients and families.


Subject(s)
Evidence-Based Practice/methods , Pressure Ulcer/nursing , Teaching/standards , Adolescent , Adult , British Columbia , Evidence-Based Practice/statistics & numerical data , Female , Humans , Male , Middle Aged , Prevalence , Qualitative Research , Quality Indicators, Health Care/statistics & numerical data , Surveys and Questionnaires , Teaching/statistics & numerical data
2.
Cell Biochem Funct ; 31(7): 551-9, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23316001

ABSTRACT

The effects of high dose ascorbic acid (10 000 mg·kg(-1) in the diet) and the transition metal on the presence of oxidative stress in the internal organs of growing chicks, as well as on the innate immune system status, were investigated. Supplementation with a high dose of ascorbic acid had pro-inflammatory effects on the intestinal mucosa, and lysozyme levels were decreased significantly in all organs studied. High-dose ascorbic acid caused an imbalance between prooxidative and antioxidative activities and was associated with the generation of semiquinone radicals. We observed that ascorbic acid increased iron and cadmium absorption. When a high dose of ascorbic acid was applied, elevated kidney and intestinal mucosa iron concentrations were observed. The amount of free malondialdehyde in the above organs has increased as well. These data have important implications for the mechanism of the oxidative stress development under the influence of high dose of ascorbic acid, indicating the importance of the side reactions of the mitochondrial electron transport chain with the formation of semiquinone radicals and the role of transition metals in this process.


Subject(s)
Antioxidants/pharmacology , Ascorbic Acid/pharmacology , Chickens/physiology , Immunity, Innate/drug effects , Oxidative Stress/drug effects , Adsorption , Animal Structures/drug effects , Animal Structures/physiology , Animals , Antioxidants/administration & dosage , Ascorbic Acid/administration & dosage , Benzoquinones/metabolism , Cadmium/metabolism , Electron Spin Resonance Spectroscopy , Iron/metabolism , Muramidase/metabolism , Organ Specificity , Reactive Oxygen Species/metabolism
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