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1.
Curr Aging Sci ; 15(1): 37-48, 2022.
Article in English | MEDLINE | ID: mdl-35139785

ABSTRACT

AIMS: The present study aimed to develop and evaluate a new dairy by-product nutritional supplement with Buriti fruit to improve malnutrition in mice and elderly woman. BACKGROUND: Malnutrition is a prevalent problem in the elderly; therefore, oral dietary supplementation is an important strategy to reduce this health problem incidence. OBJECTIVE: The present study evaluated the effects of a low-cost food supplement, made from byproducts of the dairy and fruit industry in the Brazilian Cerrado (Buriti), on the nutritional status and on the recovery of the metabolic profile of malnourished animals and elderly women. METHODS: In the pre-clinical phase, Swiss mice were divided into six groups and subjected to malnutrition and renutrition. The clinical phase was carried out with 25 elderly women residing in a long-term institution, aged ≥ 65 years and with malnutrition or risk of malnutrition. RESULTS: The main results showed improvements in anthropometric parameters and an increase in serum albumin levels, in addition to lipid profile improvement in the preclinical phase and an increase in the red blood cells and hemoglobin in the clinical phase. CONCLUSION: The supplement based on Buriti was able to reverse malnutrition promoting improvements in anthropometric and biochemical parameters.


Subject(s)
Arecaceae , Malnutrition , Aged , Animals , Brazil/epidemiology , Dietary Supplements , Female , Fruit , Humans , Malnutrition/diagnosis , Malnutrition/prevention & control , Mice , Nutritional Status
2.
Food Chem ; 214: 400-405, 2017 Jan 01.
Article in English | MEDLINE | ID: mdl-27507491

ABSTRACT

Sorghum is a source of several minerals whose content may vary depending on the genotype and the production environment. The objective of this study was to screen sorghum genotypes for mineral content and to investigate the effect of water stress on it. A large variability was observed in the mineral content of 100 sorghum genotypes grown in environments without (WoWS) and with water stress (WthWS). The water stress decreased Mn, P, Mg and S contents in 100, 96, 93 and 56% of genotypes, respectively. The genotypes and other factors seemed to have more impact than water stress on K, Ca, Cu, Fe and Zn levels. In 100 sorghum genotypes, 2 were classified as excellent sources of Fe and 25 of Zn, in both environments. The best two genotypes to Fe content were SC21 and SC655 and to Zn were SC320 and SHAN-QUI-RED which showed great potential for use in biofortification.


Subject(s)
Desiccation , Genotype , Minerals/analysis , Sorghum/chemistry , Sorghum/genetics , Dehydration , Edible Grain/chemistry , Edible Grain/genetics
3.
Food Chem ; 173: 224-30, 2015 Apr 15.
Article in English | MEDLINE | ID: mdl-25466016

ABSTRACT

The profile and levels of bioactive amines in different sorghum lines were reported for the first time. The amines were quantified by ion-pair HPLC, post-column derivatisation with o-phthalaldehyde and fluorimetric detection. The extraction procedure was optimised: 420 µm particle size, extraction with 5% trichloroacetic acid and three extractions. The screening of 22 sorghum lines showed that four of the ten amines investigated were detected. Spermine and spermidine were the prevalent amines (100%), followed by putrescine (77%) and cadaverine (14%). Total amines ranged from 5.8 to 41.4 mg/100 g, and the polyamines represented 60-100% of the total. Sorghum without tannin had higher amines levels compared to sorghum with tannin and cadaverine was specific to samples without tannin. Hydric stress caused accumulation of spermidine in the grains and affected the levels of other amines at rates depending on the presence or not of tannin. Sorghum is a significant source of polyamines.


Subject(s)
Biogenic Amines/analysis , Sorghum/chemistry , Tannins/analysis , Chromatography, High Pressure Liquid , Droughts , Particle Size
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