| Literature DB >> 22848362 |
Sandra Barbosa-da-Silva1, Julio C Fraulob-Aquino, Jessica R Lopes, Carlos A Mandarim-de-Lacerda, Marcia B Aguila.
Abstract
BACKGROUND: Obesity is associated with low-grade chronic inflammation attributed to dysregulated production, release of cytokines and adipokines and to dysregulated glucose-insulin homeostasis and dyslipidemia. Nutritional interventions such as dieting are often accompanied by repeated bouts of weight loss and regain, a phenomenon known as weight cycling (WC).Entities:
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Year: 2012 PMID: 22848362 PMCID: PMC3405086 DOI: 10.1371/journal.pone.0039837
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Schematic design of the experiment detailing the formation of the groups and sample size.
SC is standard chow; HF is high-fat diet; n is the number of mice in the sample. The subscript number after the acronym of the group indicates the number of months the diet was consumed by animals. The gray charts represent the final groups studied.
Linear regressions of the body mass against the cycles of different diets (in weeks) based on the allometric model with log-transformed data, log y = log a+b log x (where a is the intercept and b is the slope).
| Variable X (weeks) | Variable Y (body mass) | Intercept | Slope |
|
|
| 1–8 | SC2 | 1.436 | 0.024 | 0.747 | 0.03 |
| HF2 | 1.429 | 0.086 | 0.914 | 0.002 | |
| 9–16 | SC4 | 1.421 | 0.041 | 0.753 | 0.03 |
| HF4 | 1.364 | 0.134 | 0.796 | 0.02 | |
| SC2/HF2 | 1.430 | 0.083 | 0.724 | 0.04 | |
| HF2/SC2 | 1.560 | −0.066 | −0.776 | 0.02 | |
| 17–24 | SC6 | 1.488 | −0.011 | −0.118 | Ns. |
| HF6 | 1.330 | 0.169 | 0.940 | <0.0001 | |
| SC2/HF2/SC2 | 1.747 | −0.180 | −0.679 | Ns. | |
| HF2/SC2/HF2 | 0.917 | 0.474 | 0.945 | <0.0001 |
R is the coefficient of correlation of Pearson, P is the probability. The group abbreviations were defined in the text (Material and Methods). Ns, not significant.
Body Mass (BM) (in gram, values are means with their standard error) and percentage BM gain in experimental groups after 1st, 2nd and 3th cycles, where SC is standard chow and HF is the high-fat diet.
| Groups | 1st Cycle | 2nd Cycle | 3rd Cycle |
| (weeks 1–8) | (weeks 9–16) | (weeks 17–24) | |
| SC2 | 28.3±0.8 | ||
| HF2 | 33.3±0.9 | ||
| SC4 | 29.4±0.6 | ||
| HF4 | 34.6±1.7 | ||
| SC2/HF2 | 33.6±0.9[ | ||
| HF2/SC2 | 30.0±0.6[ | ||
| SC6 | 29.5±0.4 | ||
| HF6 | 36.8±1.0 | ||
| SC2/HF2/SC2 | 30.4±0.3[ | ||
| HF2/SC2/HF2 | 36.6±1.0[ |
Differences among groups were analyzed using one-way ANOVA and post hoc test of Bonferroni (in the signaled cases, P<0.05, when:
different from SC counterpart;
different from HF counterpart,
different from SC2/HF2/SC2).
Differences among the cycles were analyzed using one-way ANOVA of repeated measures and post-hoc test of Bonferroni (in the signaled cases, P<0.05, when:
different from SC2;
different from HF2,
different from SC2/HF2,
different from HF2/SC2.
Figure 2Trends of the body mass evolution determined using the allometric model log y = a+b log x.
The regressions show how the standard chow (SC) or the high-fat diet (HF), or the switching between these two diets throughout the experiment changed the body mass of the animals. In the signaled cases (comparison of slopes), P<0.05, when: [a] different from SC; [b] different from SC2/HF2; [c] different from SC2/HF2/SC2; [A] different from HF counterpart; § different from 2nd cycle. The details about the calculated equations as well as the significance of the comparison of their slopes are shown in Table 2.
Food intake, feed efficiency, blood total cholesterol, triglycerides, oral glucose tolerance test (OGTT, a.u.c is the area under de curve in arbitrary units), serum insulin of groups after the cycles of diets.
| Parameters | Groups | |||
| 1st cycle (2 months) | SC2 | HF2 | ||
| Food intake (g/animal/day) | 3.72±0.09 | 3.20±0.05 | ||
| Feed Efficiency (kJ) ×100 | 0.47±0.03 | 1.25±0.09 | ||
| Total Cholesterol (mg/dl) | 81.5±3.3 | 129.0±5.6 | ||
| Triglycerides (mg/dl) | 34.8±3.4 | 50.8±1.1 | ||
| OGTT (a.u.c.) | 1005.0±9.1 | 1244.0±14.1 | ||
| Insulin (µIU/L) | 36.2±1.8 | 59.2±3.9 |
SC is standard chow; HF is high-fat diet; n is the number of mice in the sample. The subscript number after the acronym of the group indicates the number of months the diet was consumed by animals. Values are means and standard error of the mean (n = 8 per group In the signaled cases (one-way ANOVA and post-hoc test of Bonferroni), P<0.05, when:
different from SC counterpart;
different from HF counterpart,
different from SC2/HF2;
different from SC2/HF2/SC2.
Fat pad masses and serum adipokines in the cycles of the diet.
| 1st cycle (2 months) | SC2 | HF2 | ||
| Intra-abdominal fat pad (g) | 0.17±0.02 | 1.6±0.09 | ||
| Subcutaneous fat pad (g) | 0.12±0.02 | 0.83±0.04 | ||
| Adiposity index (%) | 1.02±0.12 | 7.73±0.5 | ||
| QA[adipocytes]/mm2 | 33.0±1.0 | 14.0±0.7 | ||
| Adiponectin (105 pg/mL) | 100±13 | 60±1 | ||
| Leptin (pg/mL) | 366.5±99.8 | 9183.9±914.4 | ||
| Resistin (pg/mL) | 4358.2±354.7 | 5424.9±687.0 | ||
| IL-6 (pg/mL) | 34.7±8.2 | 126.5±18.7 | ||
| TNF-alpha (pg/mL) | 3.3±0.2 | 5.0±0.5 | ||
| MCP-1 (pg/mL) | 27.7±6.8 | 31.5±4.3 |
Values are mean and standard error of the mean (n = 8 per group). In the signaled cases (one-way ANOVA and post-hoc test of Bonferroni), P< 0.05, when:
different SC counterpart;
different HF counterpart,
different from SC2/HF2; and,
different from SC2/HF2/SC2. QA[adipocytes] is numerical density per area of adipocytes.