Opzioni
Sex-Specific Associations of Blood-Based Nutrient Profiling With Body Composition in the Elderly
2019
Periodico
FRONTIERS IN PHYSIOLOGY
Abstract
The intake of adequate amounts and types of nutrients is key for sustaining health
and a good quality of life, particularly in the elderly population. There is considerable
evidence suggesting that physiological changes related to age and sex modify nutritional
needs, and this may be related to age-associated changes in body composition (BC),
specifically in lean and fat body mass. However, there is a clear lack of understanding
about the association of nutrients in blood and BC parameters in the elderly. This
study investigated the relationships among blood nutrients (amino acids, fatty acids,
major elements, trace-elements, and vitamins), BC and nutrient intake in a population
of 176 healthy male and female Italian adults between the ages of 65 and 79 years.
89 blood markers, 77 BC parameters and dietary intake were evaluated. Multivariate
data analysis was applied to infer relationships between datasets. As expected, the
major variability between BC and the blood nutrient profile (BNP) observed was related
to sex. Aside from clear sex-specific differences in BC, female subjects had higher
BNP levels of copper, copper-to-zinc ratio, phosphorous and holotranscobalamin II and
lower concentrations of branched-chain amino acids (BCAAs) and proline. Fat mass,
percentage of fat mass, percentage of lean mass and the skeletal muscle index (SMI)
correlated the most with BNP in both sexes. Our data showed positive correlations
in male subjects among ethanolamine, glycine, albumin, and sulfur with SMI, while
palmitoleic acid and oleic acid exhibited negative correlations. This differed in female
subjects, where SMI was positively associated with albumin, folic acid and sulfur,
while CRP, proline and cis-8,11,14-eicosatrienoic acid were negatively correlated. We
investigated the influence of diet on the observed BNP and BC correlations. Intriguingly,
most of the components of the BNP, except for folate, did not exhibit a correlation with
nutrient intake data. An understanding of the physiological and biochemical processes underpinning the observed sex-specific correlations between BNP and BC could help in
identifying nutritional strategies to manage BC-changes in aging. This would contribute
to a deeper understanding of aging-associated nutritional needs with the aim of helping
the elderly population to maintain metabolic health.
Diritti
open access
license:creative commons
license:creative commons
license uri:http://creativecommons.org/licenses/by/4.0/
license uri:http://creativecommons.org/licenses/by/4.0/