| Literature DB >> 24666525 |
An-Sheng Lee, Wei-Yu Chen, Hua-Chen Chan, Jing-Fang Hsu, Ming-Yi Shen, Chia-Ming Chang, Henry Bair, Ming-Jai Su, Kuan-Cheng Chang1, Chu-Huang Chen.
Abstract
<span class="abstract_title">BACKGROUND: Increased levels of the most electronegative type of LDL, L5, have been observed in the plasma of <span class="Species">patients with metabolic syndrome (MetS) and ST-segment elevation myocardial infarction and can induce endothelial dysfunction. Because men have a higher predisposition to developing coronary artery disease than do premenopausal women, we hypothesized that LDL electronegativity is increased in men and promotes endothelial damage.Entities:
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Year: 2014 PMID: 24666525 PMCID: PMC3974745 DOI: 10.1186/1475-2840-13-64
Source DB: PubMed Journal: Cardiovasc Diabetol ISSN: 1475-2840 Impact factor: 9.951
Gender-stratified characteristics of MetS patients and healthy control subjects
| | ||||||
|---|---|---|---|---|---|---|
| Age (years) | 41.2 ± 9.8 | 48.9 ± 7.1* | 49.3 ± 15.7 | 53.2 ± 4.4 | 45.9 ± 13.9 | 51.1 ± 6.2* |
| Waist (cm) | 88.5 ± 10.6 | 106.4 ± 12.9** | 74.4 ± 8.0
| 106.2 ± 15.2** | 80.4 ± 11.5 | 106.3 ± 13.9** |
| SBP (mmHg) | 121.3 ± 9.6 | 136.2 ± 16.5* | 120.1 ± 26.8 | 120.2 ± 14.8 | 120.6 ± 21.0 | 127.5 ± 17.3 |
| DBP (mmHg) | 81.5 ± 10.2 | 83.4 ± 9.8 | 73.0 ± 14.6 | 74.5 ± 9.6 | 76.6 ± 13.4 | 78.6 ± 10.5 |
| Glucose (mg/dL) | 89.2 ± 7.7 | 142.7 ± 59.1** | 85.1 ± 7.4 | 102.4 ± 19.4** | 86.9 ± 7.6 | 122.5 ± 47.8** |
| TC (mg/dL) | 232.0 ± 47.8 | 196.9 ± 48.0 | 224.9 ± 60.0 | 220.0 ± 59.1 | 227.9 ± 54.2 | 208.5 ± 54.2 |
| TG (mg/dL) | 151.8 ± 95.0 | 180.9 ± 151.8 | 106.3 ± 95.5 | 144.1 ± 59.0* | 125.6 ± 96.2 | 162.5 ± 114.7 |
| HDL-C (mg/dL) | 52.7 ± 15.8 | 44.0 ± 12.2 | 62.1 ± 13.7 | 54.0 ± 19.2 | 58.1 ± 15.1 | 49.0 ± 16.6* |
| LDL-C (mg/dL) | 149.0 ± 37.9 | 120.9 ± 45.3 | 142.3 ± 52.1 | 143.9 ± 41.2 | 145.2 ± 45.9 | 132.8 ± 44.0 |
| L5 (%) | 4.1 ± 5.3 | 16.9 ± 14.6** | 5.1 ± 5.6 | 10.1 ± 8.5* | 4.7 ± 5.4 | 13.5 ± 12.2** |
Values represent the mean ± standard deviation. P-values were determined by using the Wilcoxon rank sum test (Mann–Whitney U test). MetS metabolic syndrome; SBP systolic blood pressure; DBP diastolic blood pressure; TC total cholesterol; TG triglyceride; HDL-C HDL cholesterol; LDL-C LDL cholesterol. *P < 0.05, **P < 0.01 vs gender-matched control group; P < 0.05 vs male control group.
Figure 1Percent L5 in total LDL (L5%) among healthy control subjects and MetS patients, grouped by gender. L5% was significantly higher in MetS patients than in healthy subjects. In addition, men with MetS had slightly higher L5% than did women with MetS. Values for L5% were determined by using fast protein liquid chromatography. The solid line indicates the mean value for each group.
Gender-stratified characteristics of leptin receptor–deficient ( ) mice and wild-type (C57B6/J) littermates
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|---|---|---|---|---|
| Body weight (g) | 36.50 ± 1.46 | 62.50 ± 3.33** | 35.00 ± 0.84 | 57.80 ± 4.84** |
| Glucose (mg/dL) | 206.88 ± 10.74 | 398.00 ± 19.89** | 219.17 ± 9.04 | 307.20 ± 41.11* |
| TC (mg/dL) | 74.63 ± 4.69 | 188.88 ± 16.00** | 73.17 ± 2.23 | 183.60 ± 10.80** |
| TG (mg/dL) | 47.13 ± 5.78 | 52.88 ± 6.24 | 41.33 ± 8.10 | 49.40 ± 7.05 |
| HDL-C (mg/dL) | 51.00 ± 3.29 | 97.25 ± 8.24** | 50.83 ± 2.82 | 89.60 ± 7.92** |
| LDL-C (mg/dL) | 14.20 ± 1.89 | 81.05 ± 11.29** | 14.07 ± 4.08 | 84.12 ± 6.04** |
Values represent the mean ± standard error of the mean. TC total cholesterol; TG triglyceride; HDL-C HDL cholesterol; LDL-C LDL cholesterol. Variation between groups was determined by using the two-independent-sample test with the Mann–Whitney U test for comparisons. *P < 0.05, **P < 0.01 vs gender-matched control group. #No parameter was significantly different from that of female mice of the same genotype.
Figure 2Comparison of LDL electronegativity and protein composition between and wild-type mice. A, Representative results of agarose gel electrophoresis showing the relative electronegativity of LDL isolated from male and female db/db (KO) and wild-type (WT) mice. Relative mobility (Rf) was compared among groups. B, Representative results of SDS-PAGE showing the relative concentration of ApoCIII in LDL isolated from male and female db/db (KO) and wild-type (WT) mice. C, Western blot analysis of ApoCIII and ApoB100 protein levels in LDL isolated from male and female db/db (KO) and wild-type (WT) mice. The ratio of ApoCIII to ApoB100 was compared among groups. n = 5 for each group.
Figure 3Analysis of cellular senescence and DNA damage in the aortas of and wild-type mice. A, Representative SA-β-galactosidase staining of senescent cells (blue) in descending thoracic aortas from male and female db/db and wild-type mice. B, Telomerase activity in aortas from male and female db/db and wild-type mice. C, Representative γH2AX immunostaining (green) of aortic cross-sections from male and female db/db and wild-type mice. L, lumen. Arrows indicate positive staining. D, The percentage of γH2AX-positive nuclei was compared among groups (n = 8 per group).
Figure 4Effect of LDL electronegativity and estrogens on bovine aortic endothelial cell (BAEC) senescence. A, Representative images of SA-β-gal staining of senescent BAECs (blue) 5 days after incubation with 30 μg/mL LDL isolated from male or female db/db or wild-type mice in the presence or absence of pretreatment with 17β-estradiol (10 nM) or genistein (100 nM). B, The percentage of senescent cells and (C) telomerase activity in BAECs treated with LDL from male or female db/db or wild-type mice in the presence or absence of 17β-estradiol or genistein. n = 4 for each group. *P < 0.01 vs. gender-matched wild-type LDL, #P < 0.05 and ##P < 0.01 vs. gender-matched db/db LDL.
Figure 5LOX-1 and TNF-α expression in bovine aortic endothelial cells (BAECs) treated with LDL and/or estrogens. A, Representative Western blot showing LOX-1 and TNF-α protein expression in BAECs treated with LDL from male db/db mice (mdbLDL) in the presence or absence of pretreatment with 100 nM genistein (Gen) or 10 nM 17β-estradiol (E2). B, Quantification of protein expression shown in (A), expressed as a percent ratio to the expression of β-actin (internal loading control) (n = 4). *P < 0.05 vs control-treated BAECs, #P < 0.05 vs. mdbLDL-treated BAECs.