Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 386
Filter
1.
Age Ageing ; 53(Supplement_2): ii13-ii19, 2024 May 11.
Article in English | MEDLINE | ID: mdl-38745486

ABSTRACT

BACKGROUND: Emerging evidence suggests health-promoting properties of increased protein intake. There is increased interest in plant protein but a dearth of information in relation to its impact on muscle function. The objective of the present work was to examine the impact of intake of different types of proteins on muscle functional parameters including handgrip strength, biomarkers of metabolic health, sleep quality and quality of life in a group of older adults. METHODS: Healthy men and women aged 50 years and older entered a double-blinded, randomised, controlled nutritional intervention study with three parallel arms: high plant protein, high dairy protein and low protein. Participants consumed once daily a ready-to-mix shake (containing 20 g of protein in high protein groups) for 12 weeks. Changes in handgrip and leg strength, body composition, metabolic health, quality of life and sleep quality were analysed by linear mixed models in an intention-to-treat approach. RESULTS: Eligible participants (n = 171) were randomly assigned to the groups (plant: n = 60, dairy: n = 56, low protein: n = 55) and 141 completed the study. Handgrip strength increased after the intervention (Ptime = 0.038), with no significant difference between the groups. There was no significant difference between groups for any other health outcomes. CONCLUSIONS: In a population of older adults, increasing protein intake by 20 g daily for 12 weeks (whether plant-based or dairy-based) did not result in significant differences in muscle function, body composition, metabolic health, sleep quality or quality of life, compared with the low protein group.


Subject(s)
Body Composition , Hand Strength , Quality of Life , Sleep , Humans , Male , Female , Double-Blind Method , Aged , Middle Aged , Sleep/physiology , Plant Proteins, Dietary/administration & dosage , Dietary Proteins/administration & dosage , Muscle, Skeletal/physiology , Time Factors , Age Factors , Diet, High-Protein , Nutritional Status
2.
Nutrients ; 16(9)2024 Apr 25.
Article in English | MEDLINE | ID: mdl-38732531

ABSTRACT

Few studies have examined dietary protein intake and sources, in combination with longitudinal changes in brain structure markers. Our study aimed to examine the association between dietary protein intake and different sources of dietary protein, with the longitudinal rate of change in brain structural markers. A total of 2723 and 2679 participants from the UK Biobank were separately included in the analysis. The relative and absolute amounts of dietary protein intake were calculated using a 24 h dietary recall questionnaire. The longitudinal change rates of brain structural biomarkers were computed using two waves of brain imaging data. The average interval between the assessments was three years. We utilized multiple linear regression to examine the association between dietary protein and different sources and the longitudinal changes in brain structural biomarkers. Restrictive cubic splines were used to explore nonlinear relationships, and stratified and sensitivity analyses were conducted. Increasing the proportion of animal protein in dietary protein intake was associated with a slower reduction in the total hippocampus volume (THV, ß: 0.02524, p < 0.05), left hippocampus volume (LHV, ß: 0.02435, p < 0.01) and right hippocampus volume (RHV, ß: 0.02544, p < 0.05). A higher intake of animal protein relative to plant protein was linked to a lower atrophy rate in the THV (ß: 0.01249, p < 0.05) and LHV (ß: 0.01173, p < 0.05) and RHV (ß: 0.01193, p < 0.05). Individuals with a higher intake of seafood exhibited a higher longitudinal rate of change in the HV compared to those that did not consume seafood (THV, ß: 0.004514; p < 0.05; RHV, ß: 0.005527, p < 0.05). In the subgroup and sensitivity analyses, there were no significant alterations. A moderate increase in an individual's intake and the proportion of animal protein in their diet, especially from seafood, is associated with a lower atrophy rate in the hippocampus volume.


Subject(s)
Brain , Dietary Proteins , Hippocampus , Humans , Male , Female , Middle Aged , Longitudinal Studies , Dietary Proteins/administration & dosage , Aged , Magnetic Resonance Imaging , Atrophy , Animal Proteins, Dietary/administration & dosage , Diet , Adult , United Kingdom , Plant Proteins, Dietary/administration & dosage
3.
Am J Clin Nutr ; 119(5): 1164-1174, 2024 May.
Article in English | MEDLINE | ID: mdl-38479550

ABSTRACT

BACKGROUND: Epidemiological evidence suggests that a potential association between dietary protein intake and cardiovascular disease (CVD) may depend on the protein source, that is, plant- or animal-derived, but past research was limited and inconclusive. OBJECTIVES: To evaluate the association of dietary plant- or animal-derived protein consumption with risk of CVD, and its components ischemic heart disease (IHD) and stroke. METHODS: This analysis in the European Prospective Investigation into Cancer and Nutrition (EPIC)-CVD case-cohort study included 16,244 incident CVD cases (10,784 IHD and 6423 stroke cases) and 15,141 subcohort members from 7 European countries. We investigated the association of estimated dietary protein intake with CVD, IHD, and stroke (total, fatal, and nonfatal) using multivariable-adjusted Prentice-weighted Cox regression. We estimated isocaloric substitutions of replacing fats and carbohydrates with plant- or animal-derived protein and replacing food-specific animal protein with plant protein. Multiplicative interactions between dietary protein and prespecified variables were tested. RESULTS: Neither plant- nor animal-derived protein intake was associated with incident CVD, IHD, or stroke in adjusted analyses without or with macronutrient-specified substitution analyses. Higher plant-derived protein intake was associated with 22% lower total stroke incidence among never smokers [HR 0.78, 95% confidence intervals (CI): 0.62, 0.99], but not among current smokers (HR 1.08, 95% CI: 0.83, 1.40, P-interaction = 0.004). Moreover, higher plant-derived protein (per 3% total energy) when replacing red meat protein (HR 0.52, 95% CI: 0.31, 0.88), processed meat protein (HR 0.39, 95% CI: 0.17, 0.90), and dairy protein (HR 0.54, 95% CI: 0.30, 0.98) was associated with lower incidence of fatal stroke. CONCLUSION: Plant- or animal-derived protein intake was not associated with overall CVD. However, the association of plant-derived protein consumption with lower total stroke incidence among nonsmokers, and with lower incidence of fatal stroke highlights the importance of investigating CVD subtypes and potential interactions. These observations warrant further investigation in diverse populations with varying macronutrient intakes and dietary patterns.


Subject(s)
Cardiovascular Diseases , Humans , Male , Female , Middle Aged , Cardiovascular Diseases/epidemiology , Europe/epidemiology , Prospective Studies , Aged , Plant Proteins, Dietary/administration & dosage , Animal Proteins, Dietary/administration & dosage , Incidence , Stroke/epidemiology , Cohort Studies , Adult , Risk Factors , Dietary Proteins/administration & dosage , Diet , Case-Control Studies
4.
J Hum Nutr Diet ; 37(3): 762-771, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38534044

ABSTRACT

BACKGROUND: This study examined the effects of animal protein- and plant protein-rich diets on postprandial phosphorus metabolism in healthy male subjects. METHODS: The study was conducted by randomised parallel-group comparison of healthy men aged 21-24 years. In Study 1, participants were divided into two groups and consumed either a 70% animal protein diet (AD, n = 6) or a 70% plant protein diet (PD, n = 6). In Study 2, participants were divided into three groups and consumed either AD (n = 10), PD (n = 10) or AD + DF, a 70% animal protein diet loaded with the same amount of fibre as PD (n = 9). The phosphorus contents of the diets used in this study were nearly equivalent (AD, 710.1 mg; PD, 709.7 mg; AD + DF, 708.9 mg). Blood and urine samples were collected before, and 2 and 4 h after the meal to measure phosphorus and calcium levels. RESULTS: In Study 1, PD consumption resulted in lower blood and urinary phosphorus concentrations 2 h postprandially compared with AD (p < 0.05). In Study 2, blood phosphorus levels in AD + DF after the diet remained lower, but not significantly so compared with AD, and urinary phosphorus levels were significantly lower 2 h postprandially (p < 0.05). CONCLUSIONS: A plant protein-rich diet reduced rapid postprandial increases in blood and urinary phosphorus concentrations compared with the animal protein-rich diets, suggesting that dietary fibre may play a partial role in the postprandial decreases in blood and urinary phosphorus concentrations.


Subject(s)
Postprandial Period , Humans , Male , Young Adult , Dietary Fiber/administration & dosage , Animal Proteins, Dietary , Phosphates/blood , Phosphates/urine , Calcium/blood , Calcium/urine , Phosphorus/blood , Phosphorus/urine , Plant Proteins, Dietary/administration & dosage , Adult , Diet/methods , Plant Proteins/administration & dosage
5.
J Nutr Health Aging ; 28(4): 100163, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38350300

ABSTRACT

OBJECTIVES: Inflammation and impaired muscle synthesis are important factors of sarcopenia. Plant protein may reduce inflammation but may not be as efficient as animal protein in providing essential amino acids. We therefore examined the associations between dietary protein intake and changes in muscle mass and physical performance, incident sarcopenia, and the interaction effect of inflammation. DESIGN: Prospective cohort study. SETTING: The Mr. OS and Ms. OS (Hong Kong) cohort. PARTICIPANTS: A total of 2,811 sarcopenia-free participants and 569 sarcopenia participants aged ≥65 years were recruited from communities. MEASUREMENTS: Dietary protein intake was assessed using a validated food frequency questionnaire. Serum high-sensitivity C-reactive protein (hs-CRP) was measured. Linear regression examined the associations between dietary protein intake and 4-year changes in muscle mass and physical performance. Cox regression examined the association between dietary protein intake and incident sarcopenia. RESULTS: Higher plant protein intake, but not total and animal protein, was associated with less decline in muscle mass and gait speed among sarcopenia-free participants. Conversely, higher ratio of animal-to-plant protein was associated with reduced muscle mass loss among participants with sarcopenia. The highest tertile of plant protein intake was associated with lower incident sarcopenia risk (HR: 0.75, 95% CI: 0.57-0.98; P-trend = 0.034) compared to the lowest tertile. Notably, this association was observed among participants with higher serum hs-CRP levels (HR: 0.57, 95% CI: 0.34-0.95), but not in those with lower hs-CRP levels. CONCLUSION: Dietary animal and plant protein intake have differential associations with muscle mass and physical performance in older adults with and without sarcopenia. The role of plant protein in preventing sarcopenia involves modulation of inflammation.


Subject(s)
C-Reactive Protein , Dietary Proteins , Independent Living , Inflammation , Muscle, Skeletal , Physical Functional Performance , Sarcopenia , Humans , Sarcopenia/prevention & control , Sarcopenia/epidemiology , Aged , Male , Female , Inflammation/blood , Prospective Studies , Dietary Proteins/administration & dosage , C-Reactive Protein/analysis , Hong Kong/epidemiology , Incidence , Plant Proteins, Dietary/administration & dosage , Animal Proteins, Dietary/administration & dosage , Asian People , East Asian People
6.
Br J Nutr ; 131(10): 1709-1719, 2024 May 28.
Article in English | MEDLINE | ID: mdl-38268105

ABSTRACT

This study evaluated the feasibility and safety of a telehealth delivered exercise plus plant-based protein diet in adults with non-alcoholic fatty liver disease (NAFLD). This was a 12-week, randomised controlled feasibility trial including twenty-eight adults aged > 45 years with NAFLD randomised to a home muscle strengthening program (3 d/week) with increased protein intake (target ∼1·2-1·5 g/kg/d) from predominately plant-based sources and behavioural change support (3-4 text messages/week) (Pro-Ex n 14) or usual care (UC, n 14). Feasibility was assessed via retention (≤ 10 % attrition), adherence (exercise ≥ 66 %; recommended daily protein serves ≥ 80 %) and safety (adverse events). Secondary outcomes included macronutrient intake (3 × 24-h records), weight, moderate-to-vigorous physical activity (MVPA) and 30 s sit-to-stand (STS) performance. Study retention was 89 %. Mean exercise adherence (Pro-Ex) was 52 % with one adverse event from 241 sessions. In Pro-Ex, mean daily plant protein serves increased (0·9 to 1·4/d) and animal protein decreased (1·5 to 1·2/d) after 12-weeks, but overall adherence (serves/day) was 32[RD1] % (plant) and 42 % (animal). Relative to UC, Pro-Ex experienced a mean 2·7 (95 % CI: 0·9, 4·4) increase in 30 s STS number, 46-minute (95 % CI: -153, 245) increase in MVPA, 1·7 kg (95 % CI: -3·5, 0·2) decrease in weight, 35·2 g (95 % CI: 11·0, 59·3) increase in protein. In adults with NAFLD a telehealth home exercise and dietary intervention was safe and improved habitual plant and animal protein intake, but overall adherence was modest suggesting more intensive healthcare support may be required.


Subject(s)
Feasibility Studies , Non-alcoholic Fatty Liver Disease , Patient Compliance , Telemedicine , Humans , Non-alcoholic Fatty Liver Disease/diet therapy , Non-alcoholic Fatty Liver Disease/prevention & control , Middle Aged , Male , Female , Telemedicine/methods , Aged , Exercise , Exercise Therapy/methods , Plant Proteins, Dietary/administration & dosage , Dietary Proteins/administration & dosage
7.
Br J Nutr ; 131(9): 1540-1553, 2024 May 14.
Article in English | MEDLINE | ID: mdl-38220222

ABSTRACT

Whole-body tissue protein turnover is regulated, in part, by the postprandial rise in plasma amino acid concentrations, although minimal data exist on the amino acid response following non-animal-derived protein consumption. We hypothesised that the ingestion of novel plant- and algae-derived dietary protein sources would elicit divergent plasma amino acid responses when compared with vegan- and animal-derived control proteins. Twelve healthy young (male (m)/female (f): 6/6; age: 22 ± 1 years) and 10 healthy older (m/f: 5/5; age: 69 ± 2 years) adults participated in a randomised, double-blind, cross-over trial. During each visit, volunteers consumed 30 g of protein from milk, mycoprotein, pea, lupin, spirulina or chlorella. Repeated arterialised venous blood samples were collected at baseline and over a 5-h postprandial period to assess circulating amino acid, glucose and insulin concentrations. Protein ingestion increased plasma total and essential amino acid concentrations (P < 0·001), to differing degrees between sources (P < 0·001), and the increase was further modulated by age (P < 0·001). Postprandial maximal plasma total and essential amino acid concentrations were highest for pea (2828 ± 106 and 1480 ± 51 µmol·l-1) and spirulina (2809 ± 99 and 1455 ± 49 µmol·l-1) and lowest for chlorella (2053 ± 83 and 983 ± 35 µmol·l-1) (P < 0·001), but were not affected by age (P > 0·05). Postprandial total and essential amino acid availabilities were highest for pea, spirulina and mycoprotein and lowest for chlorella (all P < 0·05), but no effect of age was observed (P > 0·05). The ingestion of a variety of novel non-animal-derived dietary protein sources elicits divergent plasma amino acid responses, which are further modulated by age.


Subject(s)
Amino Acids , Cross-Over Studies , Dietary Proteins , Insulin , Postprandial Period , Spirulina , Humans , Male , Female , Aged , Young Adult , Amino Acids/blood , Dietary Proteins/administration & dosage , Double-Blind Method , Insulin/blood , Amino Acids, Essential/blood , Amino Acids, Essential/administration & dosage , Chlorella , Blood Glucose/metabolism , Blood Glucose/analysis , Adult , Animals , Plant Proteins, Dietary/administration & dosage , Pisum sativum/chemistry , Pea Proteins/blood , Milk/chemistry , Milk Proteins/administration & dosage , Age Factors
8.
Appetite ; 180: 106346, 2023 01 01.
Article in English | MEDLINE | ID: mdl-36257358

ABSTRACT

The revised Canada's food guide released in 2019 promotes the consumption of plant-based protein foods (PBP). Yet, older adults consume little of them. This qualitative study aimed to identify older adults' beliefs about consuming PBP and to assess differences in beliefs by gender and baseline PBP consumption. Recruitment was done to obtain an equal number of men and women, 20 PBP-consumers and 40 non-consumers. Each participant completed an online questionnaire collecting sociodemographic data and took part in an individual semi-structured interview based on the Theory of Planned Behavior. A thematic analysis was performed using the Nvivo software. Health benefits, good taste and protecting the environment were perceived as advantages of consuming PBP, whereas difficulty digesting and not liking the taste were reported as disadvantages. Family members were frequently named as people who would approve and/or disapprove the consumption of PBP. Having more knowledge about PBP would facilitate consumption, while lack of motivation to change eating habits and lack of knowledge on how to prepare PBP meals were perceived barriers. Several differences in beliefs by gender and baseline PBP consumption were observed. Future interventions should focus on the beliefs that were identified as important to older adults (i.e., health benefits and food preparation skills), and should be tailored to their gender and PBP consumption.


Subject(s)
Intention , Plant Proteins, Dietary , Aged , Female , Humans , Qualitative Research , Male , Plant Proteins, Dietary/administration & dosage , Diet , Theory of Planned Behavior
9.
Curr Opin Clin Nutr Metab Care ; 25(6): 425-429, 2022 11 01.
Article in English | MEDLINE | ID: mdl-35788119

ABSTRACT

PURPOSE OF REVIEW: To highlight contemporary findings comparing the digestibility of animal and plant proteins, their stimulatory effects on muscle protein synthesis, and associations with sarcopenia. RECENT FINDINGS: Animal proteins are more digestible than plant proteins, resulting in greater amino acid availability and stimulation of muscle protein synthesis. However, isolated plant proteins, plant protein blends, and modified plant proteins enriched with indispensable amino acids can elicit comparable digestion and absorption kinetics to animal proteins. More research is needed to determine whether these modified plant protein sources can effectively mitigate sarcopenia risk. SUMMARY: Both animal and plant protein foods can be incorporated into a healthful eating plan that limits risk of age-related diseases, such as sarcopenia. Humans eat food rather than isolated nutrients; as such, considering the context of the overall diet and its impact on health, instead of solely focusing on individual nutrients in isolation, is important.


Subject(s)
Animal Proteins, Dietary , Plant Proteins, Dietary , Sarcopenia , Amino Acids/metabolism , Animal Proteins, Dietary/administration & dosage , Animals , Diet , Humans , Muscle Proteins/biosynthesis , Plant Proteins, Dietary/administration & dosage , Sarcopenia/prevention & control
10.
Nutrients ; 13(6)2021 Jun 20.
Article in English | MEDLINE | ID: mdl-34203033

ABSTRACT

The Kaliningrad region is known for its specific climate, which can negatively affect the adaptive potential of the body. This manifests in an increased incidence of respiratory diseases and skin conditions. To prevent high morbidity, a plant protein product was included in the diet of first-year university students. This study aimed to assess the effectiveness of this food intervention in preventing the most common diseases among Kaliningrad students. Two groups of university students took part in the food trial. In the control group, catabolic processes prevailed in nutrient metabolism. Disadaptation manifested itself in the metabolism of proteins, vitamins, minerals, hematopoiesis and humoral immunity. Inflammation was indicated by α1- and α2-globulins, a weak immune response, and IgM and IgG. High oxidative stress and low antioxidative ability of blood serum were observed. The plant-based protein product (FP) helped preserve testosterone level and prevent an increase in catabolic reactions. Moreover, it had a positive effect on both red blood cell hematopoiesis (a smaller increase in the average volume of erythrocytes, the same average concentration and content of hemoglobin, an increased relative red cell distribution width (RDW) and white blood cell hematopoiesis (a beneficial effect for the immune system: lymphocytes, the relative content of neutrophils, monocytes, basophils and eosinophils). The stimulation of humoral immunity was evidenced by beta- and gamma-globulins, an active immune response, the level of IgM and IgG, antioxidant protection, reduction of peroxides and an increase in antioxidant activity of blood serum. The 34-week observation showed a 1.7-fold decrease in the incidence of respiratory illnesses and a 5.7-fold decrease in skin and subcutaneous tissue diseases. Acute respiratory infections were reduced 1.8-fold. There were no cases of community-acquired pneumonia in the treatment group, compared with 55.1‰ in the control group. The incidence of respiratory diseases was 3.3-10.6 times lower in the treatment group than in the control group in weeks 6-19. The findings testify to the prophylactic effect of functional food during social adaptation and acclimatization of students.


Subject(s)
Functional Food , Plant Proteins, Dietary/administration & dosage , Respiratory Tract Diseases/prevention & control , Skin Diseases/prevention & control , Blood Cell Count , Climate , Functional Food/analysis , Hematopoiesis , Humans , Immunity, Humoral , Micronutrients/analysis , Minerals/blood , Oxidative Stress , Respiratory Tract Diseases/epidemiology , Russia , Skin Diseases/epidemiology , Testosterone/blood , Vitamins/blood
11.
Reprod Sci ; 28(9): 2481-2494, 2021 09.
Article in English | MEDLINE | ID: mdl-34159572

ABSTRACT

Protein sources in maternal diet are important for mammary gland differentiation and milk protein; however, few studies have examined the metabolic and cellular adaptations of mothers based on protein source diets during pregnancy and lactation, and leptin concentration in offspring. We evaluated metabolic parameters and maternal key organs and milk components in mothers at the end of lactation, who were fed different sources of proteins. In postnatal day 110 and 250, we studied development parameters and leptin in male offspring. Female rats received a Vegetal (V) or Animal (A) diet during pregnancy and lactation. After weaning, male offspring ate V diet until postnatal day 250, which yielded two groups: Vv and Av. Milk dry, protein and fat were analyzed. Maternal metabolic parameters, leptin, and liver, adipose tissue and mammary gland histological analyses were studied. Body weight, food intake and leptin were analyzed in offspring at two ages. Adipose tissue weight and cells size and liver fat, mammary gland apoptosis, weight, milk protein and leptin were higher in A vs V. Maternal liver and milk dry were lower in A vs V. All offspring parameters were higher in Av vs Vv at postnatal day 110; however, at postnatal day 250, leptin was higher in Av vs Vv. Maternal serum and milk leptin had a positive correlation with offspring serum leptin at both ages. Consumption of animal protein-based diets by mothers during developmental periods affects specific maternal organs and changes milk composition during lactation, leading to a hyperleptinemic phenotype in male offsprings.


Subject(s)
Animal Nutritional Physiological Phenomena , Dietary Proteins/administration & dosage , Lactation/metabolism , Mammary Glands, Animal/metabolism , Maternal Nutritional Physiological Phenomena , Milk/metabolism , Prenatal Exposure Delayed Effects , Age Factors , Animals , Caseins/administration & dosage , Caseins/metabolism , Dietary Proteins/metabolism , Dietary Proteins/toxicity , Female , Gestational Age , Leptin/blood , Male , Mammary Glands, Animal/cytology , Nutritional Status , Nutritive Value , Plant Proteins, Dietary/administration & dosage , Plant Proteins, Dietary/metabolism , Pregnancy , Rats, Wistar , Sex Factors
12.
Nutrition ; 89: 111276, 2021 09.
Article in English | MEDLINE | ID: mdl-34091193

ABSTRACT

OBJECTIVE: This study examined the association between index component score levels of the Dietary Approaches to Stop Hypertension (DASH) density-based index and the Healthy Eating Index-2015 (HEI-2015) for protein foods and a high-sensitivity C-reactive protein (hs-CRP) level in US adults with diabetes status. METHODS: This cross-sectional study used data from adult participants (≥20 y) in the National Health and Nutrition Examination Survey 2005-2010 (n = 12070) to obtain hs-CRP levels and index scores in US adults. Odds ratios (OR) of having an elevated hs-CRP (>3.0 mg/L) by score levels of protein food components (low: <80% versus high: ≥80% of the maximum score) were acquired using survey multivariable logistic regression analysis. RESULTS: After adjusting for age group, sex, race/ethnicity, and other potential confounders, participants with a low score were more likely to have an elevated hs-CRP level than those with a high score (DASH plant proteins and HEI-2015 seafood and plant proteins: P < 0.001). Adults with diabetes who had a low score were more likely to have an elevated hs-CRP than adults without diabetes who had a high score (DASH animal proteins: OR 1.53, 95% confidence interval [CI] 1.24-1.87) (DASH plant proteins: OR 1.51, 95% CI 1.22-1.87) (HEI-2015 seafood and plant proteins: OR 1.38, 95% CI 1.16-1.65). Among adults with diabetes, those with a low score for animal protein foods were more likely to have an elevated hs-CRP (DASH animal proteins: OR 1.42, 95% CI 1.11-1.82) than those with a high score. CONCLUSIONS: Moderate intake of animal protein foods and adequate intake of plant protein foods were inversely associated with an elevated hs-CRP level in US adults, especially in those with diabetes. Further investigation is required to establish ideal density-based amounts or proportions of protein food subgroups.


Subject(s)
Animal Proteins, Dietary/administration & dosage , C-Reactive Protein , Diabetes Mellitus , Diet , Plant Proteins, Dietary/administration & dosage , Adult , Animals , C-Reactive Protein/analysis , Cross-Sectional Studies , Diabetes Mellitus/diagnosis , Humans , Nutrition Surveys
13.
Sci Rep ; 11(1): 10899, 2021 05 25.
Article in English | MEDLINE | ID: mdl-34035318

ABSTRACT

Nutritional Programming (NP) has been studied as a means of improving dietary plant protein (PP) utilization in different fish species. This study investigated the use of enriched live feed as a vehicle for NP in larval fish. The objective of this study was to determine the effect of NP induced during the larval stage via PP-enriched live feed on: (1) growth performance; (2) expression of genes associated with inflammation and any morphological changes in the intestine; and (3) muscle free amino acid composition in largemouth bass (Micropterus salmoides) during its later life stages. Two diets were used in this study, a fish meal (FM)-based diet, and a soybean mean (SBM)-based diet, serving as the PP diet. There were 4 groups in this study. The two control groups, ( +) Control and (-) Control, were not programmed and received the FM-diet and SBM-diet, respectively throughout the whole trial after the live feed stage (27-122 days post hatch (dph). The next group, programmed, was programmed with SBM-enriched Artemia nauplii during the live feed stage (4-26 dph) and challenged with the SBM-diet during the final stage of the study (79-122 dph). The final group, non-programmed, did not receive any programming and, was challenged with the SBM-diet during the final stage of the study. The programmed group experienced a significantly higher (%) weight gain during the PP-Challenge than the non-programmed group. In addition, the live feed programming resulted in significantly longer distal villi, and a higher villi length to width ratio, compared to the non-programmed group. No significant effects on free amino acid composition and gene expression were observed between the programmed and non-programmed group, except for an increased post-prandial concentration of free proline in the programmed group. The results of this study support use of live feed as a vehicle for nutritional programming and improving the growth performance of largemouth bass fed with a SBM-based diet.


Subject(s)
Bass/growth & development , Fish Proteins, Dietary/administration & dosage , Glycine max/metabolism , Plant Proteins, Dietary/administration & dosage , Animal Feed/analysis , Animal Nutritional Physiological Phenomena , Animals , Diet/veterinary , Fish Proteins, Dietary/pharmacology , Gene Expression Regulation, Developmental/drug effects , Larva/growth & development , Plant Proteins, Dietary/pharmacology
14.
Nutrients ; 13(3)2021 Mar 10.
Article in English | MEDLINE | ID: mdl-33801995

ABSTRACT

The impact of diet on inflammation and oxidative stress (OS) in girls with polycystic ovary syndrome (PCOS) is unknown. Therefore, our study aimed to investigate, in PCOS girls, whether certain macronutrient intakes can be associated with these disturbances. For this purpose, 59 PCOS participants (aged 14-18 years) were recruited to this study and divided into two subgroups: overweight/obese-Ov/Ob group (n = 22) and normal weight-N group (n = 37). Nutrition was assessed using a 3-day food record. The studied markers were total antioxidant capacity (TAC), malondialdehyde (MDA), C-reactive protein (CRP), tumor necrosis factor α (TNF-α), and interleukins 1 and 6 (IL-1 and IL-6). We found plant protein intake inversely correlated with IL-6 (p = 0.007; r = -0.557), TNF-α (p = 0.006; r = -0.564), MDA (p = 0.01; r = -0.539) in the Ov/Ob group and with TAC (p = 0.021; r = -0.38) in the N group. Inverse correlations in the Ov/Ob group were observed between protein intake and IL-6 (p = 0.031; r = -0.461), TNF- α (p = 0.043; r = -0.435); carbohydrates and IL-6 (p = 0.037; r = -0.448), MDA (p = 0.045; r = -0.431); fiber and IL-6 (p = 0.025; r = -0.475). A positive relationship between cholesterol intake and CRP concentration (p = 0.038; r = 0.342) was also found in the N group. These findings revealed that inflammation and OS are increased in Ov/Ob girls with decreased plant protein intake and low carbohydrates in the diet. Moreover, inflammation may be increased by cholesterol intake in slim PCOS girls. On the other hand, decreased intake of fiber and total protein intake increased inflammation. ClinicalTrials.gov Identifier: NCT04738409.


Subject(s)
Eating , Inflammation/complications , Obesity/complications , Overweight/complications , Oxidative Stress , Polycystic Ovary Syndrome/physiopathology , Adolescent , Antioxidants/analysis , Body Mass Index , C-Reactive Protein/analysis , Cytokines/blood , Diet Records , Dietary Fats/administration & dosage , Dietary Proteins/administration & dosage , Female , Humans , Malondialdehyde/blood , Obesity/physiopathology , Overweight/physiopathology , Plant Proteins, Dietary/administration & dosage , Polycystic Ovary Syndrome/complications , Polycystic Ovary Syndrome/immunology
15.
Allergol Immunopathol (Madr) ; 49(1): 129-132, 2021.
Article in English | MEDLINE | ID: mdl-33641286

ABSTRACT

Routine diagnostic methods for allergies to plant-derived foods are based on skin prick test (SPT) with commercial extracts, prick-by-prick (PbP) with fresh food, serum-specific IgE measurement, and oral food challenge.We discuss the possibility and the advantages of performing, in patients with oral allergy syndrome (OAS) by fruit and vegetables (excluding nuts) PR-10 allergy, component-resolved diagnosis (CRD) by SPT and PbP with raw and cooked vegetables, rather than performing a CRD with in vitro tests by drawing blood.Based on our clinical experience and the studies published in the literature, we believe that, at least for the OAS by fruit and vegetables (excluding nuts) PR-10 allergy, the search for sensitizing allergens and related cross-reactive allergens with SPT and PbP can be performed routinely in clinical practice, even at the primary-care level.


Subject(s)
Allergens/adverse effects , Food Hypersensitivity/diagnosis , Fruit/adverse effects , Plant Proteins, Dietary/adverse effects , Vegetables/adverse effects , Allergens/administration & dosage , Allergens/immunology , Child , Cross Reactions , Female , Food Hypersensitivity/immunology , Fruit/immunology , Humans , Plant Proteins, Dietary/administration & dosage , Plant Proteins, Dietary/immunology , Skin Tests , Vegetables/immunology
16.
Poult Sci ; 100(2): 1068-1075, 2021 Feb.
Article in English | MEDLINE | ID: mdl-33518065

ABSTRACT

A 49-d feeding study was conducted to evaluate the effects of the genetically modified (GM) maize strain C0030.3.5 on Japanese quails (Coturnix japonica) in terms of body performance and egg quality. Furthermore, the bodily fats of transgenic proteins in the Japanese quails were investigated. The results showed that the parameters body weight, hematology, serum chemistry, relative organ weight, and histopathological appearance were normal in male and female quails that consumed GM diets, and no differences could be attributed to the varying diets in regard to the laying performances or nutrient egg compositions between the groups. Furthermore, the transgenic Cry1Ab and EPSPS proteins were undetectable by Western blot in the blood, organ, fecal, and whole egg samples of quails fed a diet containing GM maize. The results obtained after 49 d suggested that consumption of C0030.3.5 transgenic feed did not adversely affect quail health or egg quality, and there was no evidence of transgenic protein translocation to the blood, tissues, feces, and eggs. Based on the different parameters assessed, C0030.3.5 transgenic maize is a safe food source for quails that does not differ in quality from non-GM maize.


Subject(s)
Coturnix , Eggs/standards , Food, Genetically Modified , Plant Proteins, Dietary/administration & dosage , Zea mays/genetics , Animal Feed/analysis , Animals , Coturnix/blood , Coturnix/growth & development , Coturnix/physiology , Diet/veterinary , Dietary Proteins/administration & dosage , Dietary Proteins/classification , Female , Male , Plant Proteins, Dietary/classification , Plant Proteins, Dietary/genetics
17.
Appl Physiol Nutr Metab ; 46(8): 877-886, 2021 Aug.
Article in English | MEDLINE | ID: mdl-33566737

ABSTRACT

Dietary guidance and Canada's 2019 Food Guide encourage increased consumption of plant-based foods as a source of dietary protein. However, there is an absence of recent data on protein and nutrient intakes and quality of Canadian dietary patterns that might occur with increased plant protein intakes. This study compared food sources and nutrient intakes of Canadian adults within groups of increasing plant protein-containing diets. The CCHS 2015 Public-Use Microdata File of single 24-hour dietary recalls of males and females ≥19 years (n = 6498) or ≥70 years (n = 1482) were examined. Respondents were allocated into 4 groups defined by their protein intake percentage coming from plant-based foods (i.e., group 1: 0-24.9%, group 2: 25-49.9%, group 3: 50-74.9%, group 4: 75-100%). Protein intake in adults averaged 63.3% animal and 36.7% plant protein. Where plant protein contributed >50% protein, higher intakes of carbohydrate, dietary fibre, folate, dietary folate equivalents, iron and magnesium (p < 0.001) but lower intakes of total and saturated fat, protein, vitamin D, vitamin B12, riboflavin and niacin (p < 0.0001) were reported. In contrast, group 1 had higher total and saturated fat, protein, vitamin B12, thiamin, niacin, and zinc, but lower carbohydrate, dietary fibre, and magnesium. Balancing plant- with animal-based protein foods leads to healthier dietary patterns with more favourable nutritional properties when compared with diets based on either high animal or high plant protein content. Novelty: Combinations of animal- and plant-based proteins improve nutrient quality of Canadian diets. The source of protein influences diet quality.


Subject(s)
Animal Proteins, Dietary/administration & dosage , Diet/methods , Nutrients/administration & dosage , Nutrition Surveys/methods , Nutritive Value , Plant Proteins, Dietary/administration & dosage , Canada , Female , Humans , Male , Middle Aged
18.
Nutrients ; 13(1)2021 Jan 09.
Article in English | MEDLINE | ID: mdl-33435386

ABSTRACT

Whether the source of dietary protein intake is related to appendicular skeletal muscle mass (AMM) and muscle mass (MM) remains unclear. We conducted this cross-sectional study of 277 residents (115 men, 162 women) aged ≥65 years in Japan to examine the association of the amount of dietary protein intake with AMM and MM. We measured dietary protein intake using a brief self-administered diet history questionnaire. AMM and MM were assessed based on bioelectrical impedance. Multivariable linear regression analyses were used to estimate ß coefficients that were adjusted for potential confounders. Among Japanese women aged ≥75 years, but not among women aged 65-74 years, dietary animal protein intake was significantly associated with AMM (ß (95% confidence interval (CI)): 0.25 (0.10, 0.40)) and MM (ß (95% CI): 0.40 (0.16, 0.64)). However, dietary vegetable protein intake was not associated with AMM (ß (95% CI): -0.17 (-0.74, 0.41)) and MM (ß (95% CI): -0.30 (-1.23, 0.63)). Furthermore, in men aged ≥65 years, dietary protein intake was not associated with AMM or MM. In conclusion, dietary animal protein intake, but not vegetable protein intake, were positively associated with AMM and MM among this population of Japanese women aged ≥75 years.


Subject(s)
Dietary Proteins , Eating , Independent Living , Muscle, Skeletal/physiology , Aged , Aged, 80 and over , Aging/physiology , Animals , Cross-Sectional Studies , Female , Humans , Japan , Linear Models , Male , Plant Proteins, Dietary/administration & dosage
19.
Clin Nutr ; 40(3): 919-927, 2021 03.
Article in English | MEDLINE | ID: mdl-32753351

ABSTRACT

BACKGROUND & AIMS: Protein intake has been shown to lower risk of aging-related functional decline. The goal of this study was to assess long-term effects of weight-adjusted animal (AP) and plant protein (PP) intakes on aging-related change in functional status and grip strength. METHODS: Framingham Offspring Study participants (n = 1896, 891 men and 1005 women), ≥age 50, were followed for an average of 14.4 years. Protein intake derived from two sets of 3-day diet records (exams 3 and 5) was expressed as both weight-adjusted intake (from residuals) and per kilogram of body weight (g/kg/d). Seven tasks from two standardized assessments (Nagi and the Rosow-Breslau scales) were selected to determine functional status at exams 5-9. Functional impairment was defined as failure to complete (or having a lot of difficulty completing) a given task. Grip strength was assessed by dynamometer at exams 7-9. RESULTS: Participants with higher (vs. lower) weight-adjusted intakes of AP and PP maintained higher functional scores (p = 0.001 and p < 0.001, respectively). After accounting for baseline skeletal muscle mass (SMM) and physical activity, only AP was linked with lower risks of functional impairment. Higher AP intake among sedentary individuals led to 29% (95% CI: 0.51-1.00) reduced risks of impairment; among subjects with lower SMM, higher AP was associated with 30% (95% CI: 0.49-0.98) reduced risks. Physical activity and SMM were independently associated with reduced risks of functional impairment, regardless of protein intake. Finally, higher AP intake led to 34% and 48% greater preservation of grip strength in men (p = 0.012) and women (p = 0.034). Results were similar for protein intake expressed as g/kg/d. CONCLUSIONS: Higher AP intake and higher levels of physical activity and SMM were independently associated with lower risks of functional impairment and greater preservation of grip strength in adults over the age of 50 years.


Subject(s)
Animal Proteins, Dietary/administration & dosage , Diet/methods , Frail Elderly , Frailty/prevention & control , Sarcopenia/prevention & control , Aged , Aged, 80 and over , Diet/adverse effects , Diet Surveys , Exercise , Female , Frailty/etiology , Functional Status , Geriatric Assessment , Hand Strength , Humans , Male , Middle Aged , Muscle Strength Dynamometer , Plant Proteins, Dietary/administration & dosage , Risk Factors , Sarcopenia/etiology
20.
Nephrol Dial Transplant ; 36(9): 1640-1647, 2021 08 27.
Article in English | MEDLINE | ID: mdl-32457981

ABSTRACT

BACKGROUND: Many older women demonstrate an age-related accelerating rate of renal decline that is associated with increased rates of bone disease, cardiovascular disease and mortality. Population-based protein restriction has been studied principally in patients with reduced renal function. In this investigation, we examined the hypothesis of a differential effect of plant-derived protein compared with animal-derived protein on renal function in older women. METHODS: We assessed dietary intake from a validated food frequency questionnaire and the estimated glomerular filtration rate (eGFR) (using the Chronic Kidney Disease Epidemiology Collaboration creatinine and cystatin C equation) at baseline, 5 and 10 years in the Longitudinal Study of Aging Women cohort. We tested the association between plant- and animal-sourced protein intake and kidney function using linear mixed modeling. RESULTS: A total of 1374 Caucasian women [mean (standard deviation, SD) age = 75 years (2.7) and mean (SD) baseline eGFR = 65.6 mL/min/1.73 m2 (13.1)] contributed to the analysis. The average decline in eGFR was 0.64 mL/min/1.73 m2/year [95% confidence interval (CI) 0.56-0.72]. Higher intakes of plant-sourced protein were associated with slower declines in eGFR after adjusting for covariates including animal protein and energy intake (P = 0.03). For each 10 g of plant protein, the yearly decline in eGFR was reduced by 0.12 mL/min/1.73 m2 (95% CI 0.01-0.23), principally associated with fruit-, vegetable- and nut-derived protein. The intake of animal protein was not associated with eGFR decline (P = 0.84). CONCLUSIONS: Older women consuming a diet that is richer in plant-sourced protein have a slower decline in kidney function. These data extend support for the health benefits of plant-rich diets in the general population to maintain kidney health.


Subject(s)
Animal Proteins, Dietary/administration & dosage , Diet , Glomerular Filtration Rate , Plant Proteins, Dietary/administration & dosage , Aged , Cohort Studies , Female , Humans , Longitudinal Studies , Risk Factors
SELECTION OF CITATIONS
SEARCH DETAIL
...