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1.
Transplant Proc ; 48(5): 1498-505, 2016 Jun.
Article in English | MEDLINE | ID: mdl-27496435

ABSTRACT

INTRODUCTION: Health benefits of a living-donor kidney transplantation are numerous and well known. There is, however, a dearth of knowledge on postoperative quality of life among the living-donor (LD) compared to deceased-donor (DD) transplant recipients. MATERIALS AND METHODS: The study involved 89 patients after renal transplantation: 48 from LDs and 41 from DDs. Interview data indirectly indicated the patients' health, whereas physiological parameters directly pinpointed the patients' health and the graft function. All study participants completed questionnaires to measure quality of life and the specificity of emotional and cognitive functioning. RESULTS: LD kidney recipients were younger than DD recipients (40 years vs. 49 years). LD and DD transplantation patients were similar in health status assessed by indirect methods (data from an interview) and direct methods (laboratory tests results). They, however, differed in their psychosocial functioning. LD patients had a greater sense of happiness (P < .01) and of self-efficacy (P = .07). Moreover, these patients were more actively involved in their social lives (P < .02) and were more satisfied with their social relationships (P = .07). LD recipients also had a higher quality of life in terms of mental functioning (P < .01) and satisfaction with their environments (P < .01). Additionally, there were significant correlations between quality of life and the quality of cognitive and emotional functioning in the group of LD recipients. The perceived impact of health on physical and professional activity and daily routines was similar in LD and DD groups. CONCLUSIONS: LD post-transplantation patients may derive greater psychosocial benefits from this form of treatment. This effect is not dependent on somatic parameters (comparable data from an interview and laboratory tests results). This study suggests that patients should be assisted by a multidisciplinary healthcare team, and receive continuous support from relatives during the post-transplantation adaptation process. This facilitates the patients' postoperative quality of life.


Subject(s)
Kidney Transplantation/methods , Kidney Transplantation/psychology , Living Donors , Tissue Donors/supply & distribution , Transplant Recipients/psychology , Adult , Death , Female , Graft Survival/physiology , Humans , Male , Middle Aged , Quality of Life , Surveys and Questionnaires
2.
Food Chem ; 168: 348-55, 2015 Feb 01.
Article in English | MEDLINE | ID: mdl-25172720

ABSTRACT

The effects of conventional industrial processing steps on global phytochemical composition of broccoli, tomato and carrot purees were investigated by using a range of complementary targeted and untargeted metabolomics approaches including LC-PDA for vitamins, (1)H NMR for polar metabolites, accurate mass LC-QTOF MS for semi-polar metabolites, LC-MRM for oxylipins, and headspace GC-MS for volatile compounds. An initial exploratory experiment indicated that the order of blending and thermal treatments had the highest impact on the phytochemicals in the purees. This blending-heating order effect was investigated in more depth by performing alternate blending-heating sequences in triplicate on the same batches of broccoli, tomato and carrot. For each vegetable and particularly in broccoli, a large proportion of the metabolites detected in the purees was significantly influenced by the blending-heating order, amongst which were potential health-related phytochemicals and flavour compounds like vitamins C and E, carotenoids, flavonoids, glucosinolates and oxylipins. Our metabolomics data indicates that during processing the activity of a series of endogenous plant enzymes, such as lipoxygenases, peroxidases and glycosidases, including myrosinase in broccoli, is key to the final metabolite composition and related quality of the purees.


Subject(s)
Food Handling , Metabolomics , Vegetables/chemistry , Ascorbic Acid/analysis , Brassica/chemistry , Carotenoids/analysis , Chromatography, Liquid , Daucus carota/chemistry , Flavonoids/analysis , Gas Chromatography-Mass Spectrometry , Solanum lycopersicum/chemistry , Mass Spectrometry , Phytochemicals/analysis
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