| Literature DB >> 33228154 |
Antonin Lamaziere1, Dominique Rainteau1, Pukar Kc2, Lydie Humbert1, Emilie Gauliard1, Farid Ichou3, Maharajah Ponnaiah3, Nadine Bouby4, Joe-Elie Salem2,5, Jean-Maurice Mallet6, Maryse Guerin2, Philippe Lesnik2.
Abstract
Bile acids (BAs) regulate dietary lipid hydrolysis and absorption in the proximal intestine. Several studies have highlighted a determinant role of circulating levels and/or metabolism of BAs in the pathogenesis of major cardiometabolic diseases. Whether changes in BA profiles are causative or are consequence of these diseases remains to be determined. Healthy male volunteers (n = 71) underwent a postprandial exploration following consumption of a hypercaloric high fat typical Western meal providing 1200 kcal. We investigated variations of circulating levels of 28 BA species, together with BA synthesis marker 7α-hydroxy-4-cholesten-3-one (C4) over an approximately diurnal 12 h period. Analysis of BA variations during the postprandial time course revealed two major phenotypes with opposite fluctuations, i.e., circulating levels of each individual species of unconjugated BAs were reduced after meal consumption whereas those of tauro- and glyco-conjugated BAs were increased. By an unbiased classification strategy based on absolute postprandial changes in BA species levels, we classified subjects into three distinct clusters; the two extreme clusters being characterized by the smallest absolute changes in either unconjugated-BAs or conjugated-BAs. Finally, we demonstrated that our clustering based on postprandial changes in BA profiles was associated with specific clinical and biochemical features, including postprandial triglyceride levels, BMI or waist circumference. Altogether, our study reveals that postprandial profiles/patterns of BAs in response to a hypercaloric high fat challenge is associated with healthy or unhealthy metabolic phenotypes that may help in the early identification of subjects at risk of developing metabolic disorders.Entities:
Keywords: HDL; LDL; bile acids; health status; lipoproteins; microbiota; postprandial; profiling; triglycerides
Mesh:
Substances:
Year: 2020 PMID: 33228154 PMCID: PMC7699492 DOI: 10.3390/nu12113545
Source DB: PubMed Journal: Nutrients ISSN: 2072-6643 Impact factor: 5.717
Clinical and biological characteristic of the study population.
| Male Healthy Volunteers (n = 71) | |||||
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| Variables | Median | Q1 | Q3 | Mini | Maxi |
| Age, year | 24.0 | 22.0 | 36.0 | 18.0 | 56.0 |
| 13 (18.3) | |||||
| BMI, kg/m² | 22.7 | 21.2 | 24.5 | 17.2 | 30.7 |
| 2 (2.8) | |||||
| Waist circumference (cm) | 81.0 | 78.0 | 87.0 | 68.0 | 111.0 |
| 3 (4.2) | |||||
| Systolic blood pressure, mmHg | 118.0 | 114.0 | 126.0 | 101.0 | 143.0 |
| 11 (15.5) | |||||
| Diastolic blood pressure, mmHg | 75.0 | 71.0 | 80.0 | 59.0 | 98.0 |
| 15 (21.1) | |||||
| Fasting blood glucose, mmol/L | 4.60 | 4.40 | 5.00 | 3.30 | 6.10 |
| 2 (2.8) | |||||
| Hba1c, % | 5.30 | 5.10 | 5.50 | 4.40 | 6.30 |
| 9 (12.7) | |||||
| Insulin, mU/L | 3.44 | 1.41 | 6.24 | 0.28 | 11.3 |
| HOMA-IR | 0.69 | 0.27 | 1.19 | 0.05 | 2.40 |
| Creatinine, µmol/L | 88.0 | 80.0 | 96.0 | 72.0 | 108.0 |
| Creatinine Clearance, mL/min | 112.2 | 95.4 | 127.8 | 73.2 | 171.1 |
| ASAT, UI/L | 25.0 | 22.0 | 29.0 | 16.0 | 37.0 |
| ALAT, UI/L | 20.0 | 16.0 | 31.0 | 11.0 | 54.0 |
| TSH, mUI/L | 1.58 | 1.20 | 2.12 | 0.58 | 3.67 |
| CRPus, mg/L | 0.50 | 0.11 | 1.39 | 0.01 | 6.76 |
| Fasting Lipid phenotyping | |||||
| Total cholesterol, g/L | 1.73 | 1.43 | 1.95 | 1.01 | 2.68 |
| 1 (1.4) | |||||
| LDL-Cholesterol, g/L | 1.03 | 0.81 | 1.20 | 0.49 | 1.71 |
| 2 (2.8) | |||||
| HDL-Cholesterol, g/L | 0.48 | 0.41 | 0.56 | 0.21 | 0.77 |
| 14 (19.7) | |||||
| Triglycerides, g/L | 0.63 | 0.44 | 0.85 | 0.30 | 2.34 |
| 2 (2.8) | |||||
| Postprandial Triglycerides, g/L | |||||
| Before test meal, T0: 11:30 a.m. | 0.77 | 0.62 | 1.10 | 0.39 | 4.31 |
| 2 h after test meal, T2: 1:30 p.m. | 1.46 | 1.15 | 1.98 | 0.53 | 4.60 |
| 4 h after test meal, T4: 3:30 p.m. | 1.33 | 0.96 | 2.11 | 5.60 | 5.67 |
| 6 h after test meal, T6: 5:30 p.m. | 1.01 | 0.70 | 1.56 | 0.41 | 5.21 |
| 8 h after test meal, T8: 7:30 p.m. | 0.71 | 0.56 | 0.93 | 0.32 | 3.97 |
BMI: body mass index; ASAT: aspartate aminotransferase; ALAT: alanine aminotransferase; TSH: thyroid-stimulating hormone; LDL: low density lipoprotein; HDL: high density lipoprotein.
Figure 1Study design.
Descriptive statistics of circulating bile acids levels in fasting and postprandial states.
| Fasting State (n = 71) | Postprandial State (n = 71) | Fold Change from Fasting State | |||||||||||
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| BAs (µM) | Median | Q1 | Q3 | Mini | Maxi | Interindividual Variability | Median | Q1 | Q3 | Mini | Maxi | Interindividual Variability | |
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| CA | 0.110 | 0.040 | 0.380 | < | 3.050 | 2.3 | 0.020 | 0.010 | 0.040 | 0.010 | 0.300 | 1.9 | −5.5 |
| CDCA | 0.310 | 0.150 | 0.640 | 0.010 | 3.050 | 1.8 | 0.050 | 0.030 | 0.090 | 0.010 | 1.340 | 2.7 | −6.2 |
| Taurine-Conj | |||||||||||||
| TCA | 0.020 | 0.010 | 0.050 | < | 0.890 | 3.4 | 0.080 | 0.040 | 0.140 | < | 1.060 | 1.9 | 4.0 |
| TCDCA | 0.090 | 0.040 | 0.200 | < | 1.030 | 1.8 | 0.380 | 0.190 | 0.700 | 0.050 | 3.020 | 1.6 | 4.2 |
| Glycine-Conj | |||||||||||||
| GCA | 0.070 | 0.040 | 0.150 | 0.010 | 0.680 | 1.6 | 0.270 | 0.150 | 0.370 | 0.060 | 1.310 | 1.5 | 3.9 |
| GCDCA | 0.500 | 0.360 | 0.930 | 0.070 | 2.790 | 1.4 | 2.020 | 1.460 | 3.160 | 0.520 | 9.050 | 1.3 | 4.0 |
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| UnConj | |||||||||||||
| DCA | 0.420 | 0.180 | 0.660 | 0.020 | 2.430 | 1.5 | 0.180 | 0.080 | 0.280 | 0.010 | 0.860 | 1.5 | −2.3 |
| LCA | < | < | < | < | 0.010 | 5.0 | 0.010 | 0.010 | 0.020 | < | 0.120 | 1.8 | na |
| HDCA | < | < | < | < | 0.110 | 11.5 | < | < | < | < | 0.210 | na | na |
| HCA | < | < | < | < | 0.090 | 4.7 | < | < | < | < | 0.100 | 4.3 | na |
| Taurine-Conj | |||||||||||||
| TDCA | 0.090 | 0.060 | 0.120 | < | 3.600 | 4.9 | 0.160 | 0.100 | 0.250 | < | 4.020 | 2.6 | 1.8 |
| THDCA | < | < | < | < | 0.060 | na | < | < | < | < | 0.030 | na | na |
| TLCA | < | < | < | < | 0.010 | 5.0 | 0.010 | 0.010 | 0.020 | < | 0.120 | 1.8 | na |
| Glycine-Conj | |||||||||||||
| GDCA | 0.190 | 0.070 | 0.280 | < | 1.000 | 1.5 | 0.570 | 0.360 | 0.910 | 0.040 | 3.910 | 1.5 | 3 |
| GHDCA | < | < | < | < | na | < | < | < | < | < | na | na | |
| GLCA | 0.010 | < | 0.010 | < | 0.050 | 1.7 | 0.070 | 0.040 | 0.120 | < | 0.240 | 1.4 | 7 |
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| UDCA | 0.060 | 0.030 | 0.110 | < | 0.550 | 1.7 | 0.020 | 0.010 | 0.040 | < | 0.380 | 2.2 | −3 |
| Taurine-Conj | |||||||||||||
| TUDCA | < | < | 0.010 | < | 0.060 | 2.9 | 0.010 | < | 0.020 | < | 0.120 | 1.7 | na |
| Glycine-Conj | |||||||||||||
| GUDCA | 0.090 | 0.060 | 0.180 | < | 1.420 | 1.9 | 0.270 | 0.160 | 0.440 | 0.030 | 2.100 | 1.6 | 3.0 |
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| CA-3S | < | < | < | < | < | na | < | < | < | < | < | na | na |
| CDCA-3S | < | < | < | < | 0.020 | 3.5 | < | < | < | < | 0.010 | na | na |
| DCA-3S | < | < | 0.010 | < | 0.040 | 2.4 | < | < | 0.010 | < | 0.040 | 2.9 | na |
| LCA-3S | < | < | 0.010 | < | 0.070 | 3.0 | < | < | < | < | 0.040 | 4.3 | na |
| TLCA-3S | 0.100 | 0.050 | 0.170 | < | 0.550 | 1.5 | 0.150 | 0.100 | 0.260 | < | 0.800 | 1.4 | 1.5 |
| GLCA-3S | 0.190 | 0.110 | 0.270 | < | 1.100 | 1.5 | 0.390 | 0.240 | 0.550 | < | 1.150 | 1.3 | 2.1 |
| UDCA-3S | < | < | < | < | < | na | < | < | < | < | < | na | na |
| TUDCA-3S | < | < | < | < | < | na | < | < | < | < | < | na | na |
| GUDCA-3S | < | < | < | < | 0.020 | na | < | < | < | < | 0.020 | 10.6 | na |
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| Unconj BAs | 0.962 | 0.572 | 1.882 | 0.099 | 11.97 | 1.7 | 0.309 | 0.173 | 0.418 | 0.043 | 2.660 | 1.6 | −3.2 |
| Conj BAs | 1.569 | 1.081 | 2.527 | 0.264 | 5.292 | 1.3 | 4.606 | 3.526 | 6.778 | 1.780 | 15.620 | 1.3 | 2.9 |
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Interindividual variability expressed as the ratio of 95th percentile/5th percentile; Conj: conjugated; Unconj: unconjugated; Taurine-conj: Taurine-conjugated; Glycine-Conj: Glycine-conjugated. na indicates: not applicable.
Figure 2Postprandial levels of individual BA species during postprandial exploration: FS for overnight fasting samples, T0, T2, T4, T6, T8 for before and 2 h, 4 h, 6 h and 8 h after consumption of a hypercaloric high fat test meal. (A) Hierarchical cluster analysis of plasma concentrations of BA species according to postprandial time course: Mean circulating levels of individual species of unconjugated BAs (B) and of conjugated BAs (C) during postprandial exploration. Values are mean ± SEM. * p < 0.05 versus overnight fasting sample.
Relationship between circulating levels of bile acid species and triglycerides in both fasting and postprandial states.
| Fasting State | Postprandial State | |||
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| Spearman r | Spearman r | |||
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| −0.002 |
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| CA |
| 0.002 | −0.046 | 0.50 |
| CDCA |
| 0.01 | 0.079 | 0.25 |
| TCA | 0.127 | 0.09 |
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| TCDCA | 0.061 | 0.37 |
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| GCA |
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| GCDCA | 0.124 | 0.07 |
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| −0.045 | 0.50 |
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| DCA | −0.112 | 0.10 |
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| TDCA | 0.103 | 0.38 |
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| GDCA | 0.093 | 0.17 |
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| 0.014 | 0.83 | 0.102 | 0.13 |
| UDCA | −0.056 | 0.43 |
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| GUDCA |
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| −0.086 | 0.21 | −0.015 |
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| TLCA−3S | −0.112 | 0.10 | −0.001 | 0.98 |
| GLCA−3S | −0.035 | 0.60 | 0.038 | 0.57 |
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| −0.021 | 0.75 |
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| Unconjugated BAs |
| 0.01 |
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| Conjugated BAs | 0.095 | 0.16 |
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| Primary BAs/Secondary BAs | 0.025 | 0.71 | 0.046 | 0.49 |
| Glycoconjugated−BAs | 0.127 | 0.06 |
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| Tauroconjugated−BAs | 0.024 | 0.72 | 0.119 | 0.08 |
| Hydrophobic Index |
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| 0.083 | 0.22 |
Samples collected after an overnight fast (FS), before (T0) and after 8 h (T8) after test meal intake was used to assess the relationship between bile acids and triglyceride levels in the fasting state (n = 213). Samples collected 2 h (T2), 4 h (T4) and 6 h (T6) after test meal intake was used to assess the relationship between bile acids and triglyceride levels in the postprandial state (n = 213). Statistically significant correlations are printed in boldface.
Figure 3Interindividual variability of maximal absolute postprandial change from fasting sate in circulating BA levels. (A) Primary BAs. (B) Secondary and Tertiary BAs. (C) Sulfo-conjugated BAs. (D) Total BAs, unconjugated, conjugated BAs, and BA synthesis marker 7α-hydroxy-4-cholesten-3-one, C4.
Multiple regression analyses for the association of maximal absolute postprandial change in bile acid species with fasting lipid levels or selected clinical parameters.
| R² | TG | LDL-C | HDL-C | Age | BMI | Glucose | |
|---|---|---|---|---|---|---|---|
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| 0.125 | 0.074 |
| −0.134 | −0.050 | −0.170 | −0.065 |
| CA | 0.054 | 0.096 | 0.015 | −0.152 | 0.120 | −0.059 | 0.040 |
| CDCA | 0.133 | 0.198 | 0.200 | −0.103 | 0.127 | −0.038 | −0.159 |
| TCA | 0.153 | −0.044 |
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| −0.015 | −0.129 | −0.145 |
| TCDCA | 0.116 | −0.061 |
| −0.098 | −0.044 | −0.110 | 0.004 |
| GCA | 0.098 | 0.079 |
| −0.116 | 0.014 | −0.251 | 0.094 |
| GCDCA | 0.114 | −0.029 |
| 0.052 |
| −0.061 | 0.098 |
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| 0.168 | −0.036 |
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| 0.093 |
| −0.128 |
| DCA | 0.141 | 0.188 | −0.080 |
| 0.256 |
| −0.030 |
| TDCA | 0.122 | −0.132 | 0.205 |
| −0.036 | −0.249 | −0.025 |
| GDCA | 0.136 | −0.075 |
| −0.190 | −0.037 |
| −0.067 |
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| 0.104 | 0.074 |
| 0.161 | −0.177 | 0.117 | 0.005 |
| UDCA | 0.205 | 0.125 | 0.153 |
| 0.149 | −0.154 | 0.176 |
| GUDCA | 0.216 | 0.043 |
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| 0.128 | 0.183 |
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| 0.153 | 0.078 | 0.080 |
| 0.218 | −0.135 | −0.161 |
| TLCA-3S | 0.129 | 0.047 | 0.133 | −0.203 |
| −0.152 | −0.121 |
| GLCA-3S | 0.027 | 0.048 | 0.031 |
| 0.178 | −0.041 | −0.192 |
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| 0.138 | 0.046 |
| −0.171 | −0.037 | −0.189 | 0.027 |
| Unconjugated BAs | 0.142 | 0.176 | 0.093 |
| 0.188 | −0.181 | 0.041 |
| Conjugated BAs | 0.105 | −0.037 |
| −0.043 | −0.130 | −0.179 | 0.013 |
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| 0.103 | −0.167 | 0.030 | 0.027 | −0.222 |
| −0.029 |
Values indicated standardized β regression coefficient. TG: fasting triglycerides; LDL-C: LDLC-Cholesterol; HDL-C: HDL-Cholesterol; BMI: Body Mass Index. Statistically significant and independent associations are highlighted in bold face while trends (p < 0.01) are underlined.
Figure 4(A) Hierarchical cluster analysis of subjects based on their corresponding maximal absolute postprandial change from fasting state in circulating levels of individual BA species. Three clusters were identified and referred to C0 (n = 57, red), C1 (n = 9, green) and C2 (n = 5, blue). (B) PCA score. (C) PCA biplot. (D) Distribution of maximal absolute postprandial change from fasting state of unconjugated and conjugated. Black bars indicate median (upper panel) BAs according to clusters. Circulating levels of unconjugated and conjugated BAs according to postprandial time course in subjects from cluster C0, C1 and C2. Values are mean ± SEM. (bottom panel).
Figure 5Biological signatures associated with postprandial bile acid profiles. Distribution of plasma triglyceride levels according to postprandial time course in subjects from cluster C0, C1 and C2. (left upper panel). Distribution of AUC0-11h30–TG, iAUC0-11h30-TG BMI and waist circumference in subjects from cluster C0, C1 and C2. Black bars indicate median.
Figure 6Circulating levels of unconjugated and conjugated BAs according to postprandial time course in subjects stratified according the number of co-existing criteria of the metabolic syndrome (MS). MS0: patients without out any MS component (n = 45); MS1: patients with 1 MS component (n = 16); MS > 2: patients with at least 2 MS components (n = 10). Values are mean ± SEM.