| Literature DB >> 21461352 |
Thomas Nickel1, Henner Hanssen, Ingrid Emslander, Verena Drexel, Gernot Hertel, Arno Schmidt-Trucksäss, Claudia Summo, Zeljka Sisic, Marius Lambert, Eva Hoster, Martin Halle, Michael Weis.
Abstract
INTRODUCTION: Physical inactivity and obesity are independent risk factors for atherosclerosis. We analyzed the immunomodulatory capacity of 10-week intensified exercise training (ET) in obese and lean athletes. Markers of the innate immune response were investigated in obese (ONE: ET≤40 km/week) and lean athletes (LNE: ET≤40 km/week and LE: ET≥55 km/week).Entities:
Mesh:
Substances:
Year: 2011 PMID: 21461352 PMCID: PMC3065046 DOI: 10.1155/2011/308965
Source DB: PubMed Journal: Mediators Inflamm ISSN: 0962-9351 Impact factor: 4.711
Clinical characteristics such as age, weight, BMI, waist circumference (WC), body fat, and individual anaerobic threshold (IAT) in all probands including baseline and posttraining parameters. Measured cytokines-serum levels in pg/ml or ng/ml include pre training and post training parameters. Cytokines in all groups decreased compared to pre training. Significant P values are marked in bold. Statistical analysis of the different time-points (intra group-analysis) was performed using the Wilcoxon Test; the comparison of the different groups with each other (inter group analysis) was done by using the Mann-Whitney U Test.
| ONE ( | LNE ( | LE ( | |||||||
|---|---|---|---|---|---|---|---|---|---|
| Clinical characteristics | Pre | Post |
| Pre | Post |
| Pre | Post |
|
| Weight (kg) | 99 ± 11.9 | 97.6 ± 12.2 |
| 79.6 ± 8 | 78.5 ± 9 |
| 75.7 ± 11.5 | 74.4 ± 11 |
|
| BMI (kg/m2) | 30 ± 2 | 29 ± 2 |
| 25 ± 2 | 24 ± 2 | .06 | 23 ± 2 | 22 ± 1 |
|
| WC (cm) | 106 ± 5 | 103 ± 7 |
| 87 ± 8 | 86 ± 7 | .47 | 83 ± 8 | 81 ± 7 |
|
| Body Fat (%) | 27 ± 3 | 24 ± 3 | .058 | 17 ± 5 | 15 ± 4 |
| 13 ± 4 | 11 ± 2 |
|
| IAT (km/h) | 10.6 ± 0.8 | 11.1 ± 1 |
| 11.6 ± 1 | 12,1 ± 1 |
| 13.6 ± 1.4 | 14.1 ± 1 |
|
|
| |||||||||
| Cytokines-serum levels | |||||||||
|
| |||||||||
| TNF- | 1.62 ± 3.1 | 1.12 ± 2.3 | n.s. | 1.19 ± 2.9 | 0.77 ± 2.1 | n.s. | 0.55 ± 1.7 | 0.22 ± 0.8 | n.s. |
| IL-6 (pg/mL) | 1.43 ± 1.5 | 1.68 ± 1.4 | n.s. | 1.24 ± 1.8 | 1.52 ± 2.4 | n.s. | 0.72 ± 0.5 | 0.44 ± 0.3 |
|
| oxLDL (ng/mL) | 272.6 + 403.0 | 65.5 + 57.3 |
| 83.1 + 39.3 | 186.3 + 202.7 | n.s. | 76.6 + 41.4 | 243.9 + 204.4 |
|
| Adiponectin (ng/mL) | 5465.5 + 2999 | 5932.5 + 3131 | n.s. | 5972.2 + 2999 | 7355.1 + 3399 | n.s. | 7642.4 + 3574 | 8219.6 + 3855 | n.s. |
Figure 1Representative FACS scans in PBMC expressing of BDCA-1 (a) and BDCA-2 (b) in LE, LNE, and ONE at baseline and after training. Data presented state the expression of the corresponding receptors in percent. Statistical analysis of the different timepoints (intra group analysis) was performed using the Wilcoxon Test; the comparison of the different groups with each other (inter group analysis) was done by using the Mann-Whitney U Test (*P < .05; n = 15/16/16).
Figure 2Expression of TLR-2 (a), TLR-4 (b), and TLR-7 (c) by analysis of mRNA levels via RT-PCR. Training-induced changes were analyzed using the delta-delta ct method. Expression of MyD88 (d), TLR-2 (e), TLR-4 (f), and TLR-7 (g) by analyses of protein expression (Western blot of 4 representative examples of the LNE-group). Densitometry analysis (h) found a significant increased expression for TLR-4 and TLR-7. For MyD88 and TLR-2, no significant changes were found. Statistical analysis of the different time-points (intra group-analysis) was performed using the Wilcoxon-Test; the comparison of the different groups with each other (inter group analysis) was done by using the Mann-Whitney U Test (**P < .01; *P < .05; n = 15/16/16 for PCR and n = 8 for Western blot).