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1.
Exp Gerontol ; 190: 112410, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38527636

ABSTRACT

BACKGROUND: Chronic low-grade inflammatory profile (CLIP) is one of the pathways involved in type 2 diabetes (T2D). Currently, there is limited evidence for ameliorating effects of combined lifestyle interventions on CLIP in type 2 diabetes. We investigated whether a 13-week combined lifestyle intervention, using hypocaloric diet and resistance exercise plus high-intensity interval training with or without consumption of a protein drink, affected CLIP in older adults with T2D. METHODS: In this post-hoc analysis of the PROBE study 114 adults (≥55 years) with obesity and type 2 (pre-)diabetes had measurements of C-reactive protein (CRP), pro-inflammatory cytokines interleukin (IL)-6, tumor-necrosis-factor (TNF)-α, and monocyte chemoattractant protein (MCP)-1, anti-inflammatory cytokines IL-10, IL-1 receptor antagonist (RA), and soluble tumor-necrosis-factor receptor (sTNFR)1, adipokines leptin and adiponectin, and glycation biomarkers carboxymethyl-lysine (CML) and soluble receptor for advanced glycation end products (sRAGE) from fasting blood samples. A linear mixed model was used to evaluate change in inflammatory biomarkers after lifestyle intervention and effect of the protein drink. Linear regression analysis was performed with parameters of body composition (by dual-energy X-ray absorptiometry) and parameters of insulin resistance (by oral glucose tolerance test). RESULTS: There were no significant differences in CLIP responses between the protein and the control groups. For all participants combined, IL-1RA, leptin and adiponectin decreased after 13 weeks (p = 0.002, p < 0.001 and p < 0.001), while ratios TNF-α/IL-10 and TNF-α/IL-1RA increased (p = 0.003 and p = 0.035). CRP increased by 12 % in participants with low to average CLIP (pre 1.91 ± 0.39 mg/L, post 2.13 ± 1.16 mg/L, p = 0.006) and decreased by 36 % in those with high CLIP (pre 5.14 mg/L ± 1.20, post 3.30 ± 2.29 mg/L, p < 0.001). Change in leptin and IL-1RA was positively associated with change in fat mass (ß = 0.133, p < 0.001; ß = 0.017, p < 0.001) and insulin resistance (ß = 0.095, p = 0.024; ß = 0.020, p = 0.001). Change in lean mass was not associated with any of the biomarkers. CONCLUSION: 13 weeks of combined lifestyle intervention, either with or without protein drink, reduced circulating adipokines and anti-inflammatory cytokine IL-1RA, and increased inflammatory ratios TNF-α/IL-10 and TNF-α/IL-1RA in older adults with obesity and T2D. Effect on CLIP was inversely related to baseline inflammatory status.


Subject(s)
Biomarkers , Diabetes Mellitus, Type 2 , Inflammation , Obesity , Humans , Diabetes Mellitus, Type 2/therapy , Diabetes Mellitus, Type 2/blood , Male , Female , Aged , Middle Aged , Inflammation/blood , Obesity/therapy , Obesity/blood , Biomarkers/blood , Resistance Training/methods , Diet, Reducing/methods , Cytokines/blood , Life Style
2.
Diabet Med ; 40(7): e15096, 2023 07.
Article in English | MEDLINE | ID: mdl-36997475

ABSTRACT

AIMS: This systematic review and meta-analysis evaluates the additional effect of exercise to hypocaloric diet on body weight, body composition, glycaemic control and cardio-respiratory fitness in adults with overweight or obesity and type 2 diabetes. METHODS: Embase, Medline, Web of Science and Cochrane Central databases were evaluated, and 11 studies were included. Random-effects meta-analysis was performed on body weight and measures of body composition and glycaemic control, to compare the effect of hypocaloric diet plus exercise with hypocaloric diet alone. RESULTS: Exercise interventions consisted of walking or jogging, cycle ergometer training, football training or resistance training and duration varied from 2 to 52 weeks. Body weight and measures of body composition and glycaemic control decreased during both the combined intervention and hypocaloric diet alone. Mean difference in change of body weight (-0.77 kg [95% CI: -2.03; 0.50]), BMI (-0.34 kg/m2 [95% CI: -0.73; 0.05]), waist circumference (-1.42 cm [95% CI: -3.84; 1.00]), fat-free mass (-0.18 kg [95% CI: -0.52; 0.17]), fat mass (-1.61 kg [95% CI: -4.42; 1.19]), fasting glucose (+0.14 mmol/L [95% CI: -0.02; 0.30]), HbA1c (-1 mmol/mol [95% CI: -3; 1], -0.1% [95% CI: -0.2; 0.1]) and HOMA-IR (+0.01 [95% CI: -0.40; 0.42]) was not statistically different between the combined intervention and hypocaloric diet alone. Two studies reported VO2max and showed significant increases upon the addition of exercise to hypocaloric diet. CONCLUSIONS: Based on limited data, we did not find additional effects of exercise to hypocaloric diet in adults with overweight or obesity and type 2 diabetes on body weight, body composition or glycaemic control, while cardio-respiratory fitness improved.


Subject(s)
Diabetes Mellitus, Type 2 , Obesity , Adult , Humans , Obesity/complications , Obesity/therapy , Overweight/complications , Overweight/therapy , Diet, Reducing , Glycemic Control , Body Weight , Body Composition
3.
Front Nutr ; 9: 874980, 2022.
Article in English | MEDLINE | ID: mdl-35719168

ABSTRACT

Background: The diagnosis of sarcopenia is essential for early treatment of sarcopenia in older adults, for which assessment of appendicular lean mass (ALM) is needed. Multi-frequency bio-electrical impedance analysis (MF-BIA) may be a valid assessment tool to assess ALM in older adults, but the evidences are limited. Therefore, we validated the BIA to diagnose low ALM in older adults. Methods: ALM was assessed by a standing-posture 8 electrode MF-BIA (Tanita MC-780) in 202 community-dwelling older adults (age ≥ 55 years), and compared with dual-energy X-ray absorptiometry (DXA) (Hologic Inc., Marlborough, MA, United States; DXA). The validity for assessing the absolute values of ALM was evaluated by: (1) bias (mean difference), (2) percentage of accurate predictions (within 5% of DXA values), (3) the mean absolute error (MAE), and (4) limits of agreement (Bland-Altman analysis). The lowest quintile of ALM by DXA was used as proxy for low ALM (< 22.8 kg for men, < 16.1 kg for women). Sensitivity and specificity of diagnosing low ALM by BIA were assessed. Results: The mean age of the subjects was 72.1 ± 6.4 years, with a BMI of 25.4 ± 3.6 kg/m2, and 71% were women. BIA slightly underestimated ALM compared to DXA with a mean bias of -0.6 ± 1.2 kg. The percentage of accurate predictions was 54% with a MAE of 1.1 kg, and limits of agreement were -3.0 to + 1.8 kg. The sensitivity for ALM was 80%, indicating that 80% of subjects who were diagnosed as low ALM according to DXA were also diagnosed low ALM by BIA. The specificity was 90%, indicating that 90% of subjects who were diagnosed as normal ALM by DXA were also diagnosed as normal ALM by the BIA. Conclusion: This comparison showed a poor validity of MF-BIA to assess the absolute values of ALM, but a reasonable sensitivity and specificity to recognize the community-dwelling older adults with the lowest muscle mass.

4.
Nutrients ; 13(1)2020 Dec 28.
Article in English | MEDLINE | ID: mdl-33379181

ABSTRACT

BACKGROUND: Weight loss is key to treatment of older adults with obesity and type 2 diabetes, but also a risk for muscle mass loss. This study investigated whether a whey protein drink enriched with leucine and vitamin D could preserve muscle mass and improve glycemic control during combined lifestyle intervention in this population. METHODS: 123 older adults with obesity and type 2 diabetes were randomized into a 13-week lifestyle intervention with dietary advice and exercise, receiving either the enriched protein drink (test) or an isocaloric control (control). Muscle mass was assessed with dual-energy X-ray absorptiometry and glycemic control by oral glucose tolerance test. Statistical analyses were performed using a linear mixed model. RESULTS: There was a nonsignificant increase in leg muscle mass (+0.28 kg; 95% CI, -0.01 to 0.56) and a significant increase in appendicular muscle mass (+0.36 kg; 95% CI, 0.005 to 0.71) and total lean mass (+0.92 kg; 95% CI, 0.19 to 1.65) in test vs. control. Insulin sensitivity (Matsuda index) also increased in test vs. control (+0.52; 95% CI, 0.07 to 0.97). CONCLUSIONS: Use of an enriched protein drink during combined lifestyle intervention shows beneficial effects on muscle mass and glycemic control in older adults with obesity and type 2 diabetes.


Subject(s)
Diabetes Mellitus, Type 2/complications , Dietary Proteins/administration & dosage , Glycemic Control/methods , Life Style , Muscles , Obesity/complications , Absorptiometry, Photon , Aged , Anthropometry , Body Composition , Double-Blind Method , Exercise , Female , Glucose Tolerance Test , Humans , Insulin Resistance , Leucine , Male , Middle Aged , Muscle Strength , Overweight , Proteins , Vitamin D , Weight Loss
5.
Nutrients ; 12(10)2020 Sep 29.
Article in English | MEDLINE | ID: mdl-33003389

ABSTRACT

(1) Background: Recent research showed that subtypes of patients with type 2 diabetes may differ in response to lifestyle interventions based on their organ-specific insulin resistance (IR). (2) Methods: 123 Subjects with type 2 diabetes were randomized into 13-week lifestyle intervention, receiving either an enriched protein drink (protein+) or an isocaloric control drink (control). Before and after the intervention, anthropometrical and physiological data was collected. An oral glucose tolerance test was used to calculate indices representing organ insulin resistance (muscle, liver, and adipose tissue) and ß-cell functioning. In 82 study-compliant subjects (per-protocol), we retrospectively examined the intervention effect in patients with muscle IR (MIR, n = 42) and without MIR (no-MIR, n = 40). (3) Results: Only in patients from the MIR subgroup that received protein+ drink, fasting plasma glucose and insulin, whole body, liver and adipose IR, and appendicular skeletal muscle mass improved versus control. Lifestyle intervention improved body weight and fat mass in both subgroups. Furthermore, for the MIR subgroup decreased systolic blood pressure and increased VO2peak and for the no-MIR subgroup, a decreased 2-h glucose concentration was found. (4) Conclusions: Enriched protein drink during combined lifestyle intervention seems to be especially effective on increasing muscle mass and improving insulin resistance in obese older, type 2 diabetes patients with muscle IR.


Subject(s)
Beverages , Diabetes Mellitus, Type 2/therapy , Dietary Proteins/administration & dosage , Food, Fortified , Insulin Resistance/physiology , Adipose Tissue/metabolism , Aged , Blood Glucose/analysis , Diabetes Mellitus, Type 2/blood , Female , Glucose Tolerance Test , Glycated Hemoglobin/analysis , Humans , Insulin/blood , Life Style , Male , Muscle, Skeletal/drug effects , Retrospective Studies , Treatment Outcome
6.
Clin Nutr ; 37(1): 250-253, 2018 02.
Article in English | MEDLINE | ID: mdl-28062083

ABSTRACT

BACKGROUND & AIM: The aim of this study was to describe a decrease in resting energy expenditure during weight loss that is larger than expected based on changes in body composition, called adaptive thermogenesis (AT), in overweight and obese older adults. METHODS: Multiple studies were combined to assess AT in younger and older subjects. Body composition and resting energy expenditure (REE) were measured before and after weight loss. Baseline values were used to predict fat free mass and fat mass adjusted REE after weight loss. AT was defined as the difference between predicted and measured REE after weight loss. The median age of 55 y was used as a cutoff to compare older with younger subjects. The relation between AT and age was investigated using linear regression analysis. RESULTS: In this study 254 (M = 88, F = 166) overweight and obese subjects were included (BMI: 31.7 ± 4.4 kg/m2, age: 51 ± 14 y). The AT was only significant for older subjects (64 ± 185 kcal/d, 95% CI [32, 96]), but not for younger subjects (19 ± 152 kcal/d, 95% CI [-9, 46]). The size of the AT was significantly higher for older compared to younger adults (ß = 47, p = 0.048), independent of gender and type and duration of the weight loss program. CONCLUSIONS: We conclude that adaptive thermogenesis is present only in older subjects, which might have implications for weight management in older adults. A reduced energy intake is advised to counteract the adaptive thermogenesis.


Subject(s)
Body Composition/physiology , Energy Metabolism/physiology , Obesity , Weight Loss/physiology , Adult , Aged , Female , Humans , Male , Middle Aged , Obesity/epidemiology , Obesity/physiopathology , Thermogenesis/physiology
7.
Nutr J ; 16(1): 10, 2017 Feb 06.
Article in English | MEDLINE | ID: mdl-28166780

ABSTRACT

BACKGROUND: Intentional weight loss in obese older adults is a risk factor for accelerated muscle mass loss. We investigated whether a high protein diet and/or resistance exercise preserves fat free mass (FFM) during weight loss in overweight and obese older adults. METHODS: We included 100 overweight and obese adults (55-80 year) in a randomized controlled trial (RCT) with a 2 × 2 factorial design and intention-to-treat analysis. During a 10-week weight loss program all subjects followed a hypocaloric diet. Subjects were randomly allocated to either a high protein (1.3 g/kg body weight) or normal protein diet (0.8 g/kg), with or without a resistance exercise program 3 times/week. FFM was assessed by air displacement plethysmography. RESULTS: At baseline, mean (±SD) BMI was 32 ± 4 kg/m2. During intervention, protein intake was 1.13 ± 0.35 g/kg in the high protein groups vs. 0.98 ± 0.29 in the normal protein groups, which reflects a 16.3 ± 5.2 g/d higher protein intake in the high protein groups. Both high protein diet and exercise did not significantly affect change in body weight, FFM and fat mass (FM). No significant protein*exercise interaction effect was observed for FFM. However, within-group analysis showed that high protein in combination with exercise significantly increased FFM (+0.6 ± 1.3 kg, p = 0.011). CONCLUSION: A high protein diet, though lower than targeted, did not significantly affect changes in FFM during modest weight loss in older overweight and obese adults. There was no significant interaction between the high protein diet and resistance exercise for change in FFM. However, only the group with the combined intervention of high protein diet and resistance exercise significantly increased in FFM. TRIAL REGISTRATION: Dutch Trial Register, number NTR4556, date 05-01-2014.


Subject(s)
Diet, High-Protein , Obesity/diet therapy , Overweight/diet therapy , Resistance Training , Weight Loss , Aged , Aged, 80 and over , Body Composition , Body Mass Index , Caloric Restriction , Diet, Reducing , Dietary Fats/administration & dosage , Dietary Proteins/administration & dosage , Female , Hand Strength , Humans , Male , Middle Aged , Patient Compliance , Treatment Outcome , Waist Circumference
8.
Nutr J ; 13: 9, 2014 Jan 22.
Article in English | MEDLINE | ID: mdl-24450500

ABSTRACT

BACKGROUND: Decreased ability of muscles to respond to anabolic stimuli is part of the underlying mechanism for muscle loss with aging. Previous studies suggest that substantial amounts of essential amino acids (EAA), whey protein and leucine are beneficial for stimulation of acute muscle protein synthesis in older adults. However, these studies supplied only proteins, and no bolus studies have been done with dairy products or supplements that contained also fat and carbohydrates besides proteins. The aim of this study was to evaluate whether a specifically designed nutritional supplement in older adults stimulates muscle protein synthesis acutely to a greater extent than a conventional dairy product. Moreover, the combined effect with resistance exercise was studied by using a unilateral resistance exercise protocol. METHODS: Utilizing a randomized, controlled, double blind study design, healthy older adults received a single bolus of a high whey protein, leucine-enriched supplement (EXP: 20 g whey protein, 3g total leucine, 150 kcal; n = 9) or an iso-caloric milk protein control ( CONTROL: 6g milk protein; n = 10), immediately after unilateral resistance exercise. Postprandial mixed muscle protein fractional synthesis rate (FSR) was measured over 4h using a tracer infusion protocol with L-[ring-¹³C6]-phenylalanine and regular blood and muscle sampling. RESULTS: FSR was significantly higher overall after EXP (0.0780 ± 0.0070%/h) vs CONTROL (0.0574 ± 0.0066%/h (EMM ± SE)) (p = 0.049). No interaction between treatment and exercise was observed (p = 0.519). Higher postprandial concentrations of EAA and leucine are possible mediating factors for the FSR response, while plasma insulin increase did not dictate the FSR response. Moreover, when the protein intake from the supplements was expressed per kg leg lean mass (LLM), a significant correlation was observed with resting postprandial FSR (r = 0.48, P = 0.038). CONCLUSIONS: Ingestion of a high whey protein, leucine-enriched supplement resulted in a larger overall postprandial muscle protein synthesis rate in healthy older subjects compared with a conventional dairy product. This acute effect is promising for long-term effects on parameters of muscle mass, strength and function in sarcopenic older people, which requires further study. TRIAL REGISTRATION: This trial is registered in the Dutch Trial Register under number NTR1823.


Subject(s)
Amino Acids, Essential/administration & dosage , Leucine/administration & dosage , Milk Proteins/administration & dosage , Muscle Proteins/biosynthesis , Postprandial Period , Aged , Carbon Isotopes , Dietary Supplements , Double-Blind Method , Exercise/physiology , Female , Humans , Male , Middle Aged , Whey Proteins
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