| Literature DB >> 33994541 |
Zhanxuan E Wu1,2,3, Karl Fraser4,5,6, Marlena C Kruger2,7, Ivana R Sequeira3,8, Wilson Yip3,8, Louise W Lu3,8, Lindsay D Plank9, Rinki Murphy3,10, Garth J S Cooper10,11,12, Jean-Charles Martin13, Kieren G Hollingsworth14, Sally D Poppitt3,7,8,10,11.
Abstract
BACKGROUND: Excess visceral obesity and ectopic organ fat is associated with increased risk of cardiometabolic disease. However, circulating markers for early detection of ectopic fat, particularly pancreas and liver, are lacking.Entities:
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Year: 2021 PMID: 33994541 PMCID: PMC8310794 DOI: 10.1038/s41366-021-00854-x
Source DB: PubMed Journal: Int J Obes (Lond) ISSN: 0307-0565 Impact factor: 5.095
Comparison of model performances of PLS with sevenfold cross-validation between full metabolome vs post-selection.
| Full metabolome | Post-selection | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| nVar | nComp | R2Y | Q2 | PCV-ANOVA | nVar | nComp | R2Y | Q2 | PCV-ANOVA | |||
| Pancreatic fat | 910 | 1 | 0.39 | 0.25 | 2.43E–04 | 0.63 | 56 | 3 | 0.81 | 0.69 | 2.12E–12 | 0.90 |
| Liver fat | 910 | 1 | 0.52 | 0.33 | 6.86E–06 | 0.72 | 64 | 3 | 0.80 | 0.66 | 6.11E–12 | 0.89 |
| VAT/SAT | 910 | 1 | 0.47 | 0.30 | 1.32E–05 | 0.69 | 31 | 2 | 0.70 | 0.62 | 1.88E–12 | 0.83 |
nVar: number of variables; nComp: number of components; R2Y: goodness of model fit; Q2: predictivity; Pcv-anova: statistical significance of the PLS model; r: Pearson correlation coefficient.
Fig. 1Partial least squares (PLS) regression analysis of ectopic fat deposition.
Scatter plots of measured vs PLS-estimated value of (a) pancreatic fat, (b) liver fat and (c) VAT/SAT ratio, and bar plots showing the coeffCS (centred and scaled coefficient) with error bars indicating cross-validation confidence interval (95% CI) of variables in each corresponding PLS model used for estimation. The numbers in the bracket beside YPred and CoeffCS denotes the number of components in the PLS model.
Fig. 2Association of clinical measurements with ectopic fat deposition.
Adjusted β-coefficient with 95% CI of each individual clinical variable regressed on level of (a) pancreatic fat, (b) liver fat and (c) VAT/SAT ratio in linear regression models adjusting for ethnicity. Significantly associated clinical variables (p < 0.05) are displayed in solid filled circle.
Comparison of model performances of PLS with sevenfold cross-validation among models built on metabolites markers (M), clinical markers (C) or combination of metabolite and clinical markers (C + M).
| Dataset | Biomarker panel | nComp | R2Y | Q2 | PCV-ANOVA | RMSEE | RMSEcv | |
|---|---|---|---|---|---|---|---|---|
| Pancreatic fat | M | 3 | 0.81 | 0.69 | 2.12E–12 | 0.72 | 0.89 | 0.90 |
| C | 1 | 0.51 | 0.46 | 1.15E–08 | 1.14 | 1.18 | 0.71 | |
| C + M | 3 | 0.81 | 0.67 | 1.12E–11 | 0.72 | 0.92 | 0.90 | |
| Liver fat | M | 3 | 0.80 | 0.66 | 6.11E–12 | 3.84 | 4.65 | 0.89 |
| C | 1 | 0.48 | 0.40 | 3.51E–07 | 5.98 | 6.37 | 0.70 | |
| C + M | 2 | 0.74 | 0.63 | 5.49E–12 | 4.25 | 4.94 | 0.86 | |
| VAT/SAT | M | 2 | 0.70 | 0.62 | 1.88E–12 | 0.13 | 0.14 | 0.83 |
| C | 2 | 0.56 | 0.44 | 1.42E–07 | 0.16 | 0.17 | 0.74 | |
| C + M | 2 | 0.74 | 0.67 | 3.98E-14 | 0.12 | 0.13 | 0.86 |
nComp: number of components; RMSEE: roo mean square error of estimation; RMSEcv: root mean square error of cross-validation; r: Pearson correlation coefficient.
Fig. 3Association of individual metabolite marker with ectopic fat deposition.
Association of individual metabolite markers with (a) pancreatic fat, (b) liver fat, (c) VAT/SAT ratio assessed by linear regression, with adjustment for ethnicity (M1), ethnicity + BMI + TBF(%) (M2); pancreatic fat and liver fat were further adjusted for VAT/SAT (M3); and additionally for age (M4). Significance tests were after multiple testing correction (p < 0.05). For the (b) liver fat age-adjusted model (M4, green) did not alter the β-coefficient therefore dots were mostly overlapped with M3; details of the β-coefficient values can be found in Table S5. Markers were categorised by classes and within each class, ordered by β-coefficient in M1 from the highest to the lowest. FA fatty acyls, GL glycerolipids, GP glycerophospholipids, SP sphingolipids, ST sterol lipids, HILIC HILIC-measured polar metabolites.