| Literature DB >> 18275592 |
Jürgen E Schneider1, Lee-Anne Stork, Jordana T Bell, Michiel ten Hove, Dirk Isbrandt, Kieran Clarke, Hugh Watkins, Craig A Lygate, Stefan Neubauer.
Abstract
BACKGROUND: High-resolution magnetic resonance imaging (cine-MRI) is well suited for determining global cardiac function longitudinally in genetically or surgically manipulated mice, but in practice it is seldom used to its full potential. In this study, male and female guanidinoacetate N-methyltransferase (GAMT) knockout, and wild type littermate mice were subjected to a longitudinal cine-MRI study at four time points over the course of one year. GAMT is an essential enzyme in creatine biosynthesis, such that GAMT deficient mice are entirely creatine-free. Since creatine plays an important role in the buffering and transfer of high-energy phosphate bonds in the heart, it was hypothesized that lack of creatine would be detrimental for resting cardiac performance during ageing.Entities:
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Year: 2008 PMID: 18275592 PMCID: PMC2254407 DOI: 10.1186/1532-429X-10-9
Source DB: PubMed Journal: J Cardiovasc Magn Reson ISSN: 1097-6647 Impact factor: 5.364
Figure 1(a) Mid-ventricular end-diastolic (top row) and end-systolic (bottom row) frames in the short-axis orientation of a male wild type mouse heart for the four different time points covering the study duration of one year. (b) Corresponding mid-ventricular end-diastolic (top row) and end-systolic (bottom row) frames in the short-axis orientation of a male GAMT-ko mouse heart at the respective time points. While the hearts of the transgenic mice were significantly smaller, cardiac function did not deteriorate over time, despite the lack of creatine. Scale bars: 2 mm.
Figure 2(a) Bodyweight (BW), (b) left ventricular mass (LVM), (c) EDV, and (d) ESV for all four groups (open square – male wt; open diamond – male ko; black diamond – female ko; black square – female wt) as a function of time. LVM, EDV and ESV were normalized to the respective body weight.
Cardiac Parameters for Male and Female WT and GAMT-ko Mice measured by MRI
| 6 weeks | 4 months | 8 months | 12 months | ||||||
| WT | GAMT-ko | WT | GAMT-ko | WT | GAMT-ko | WT | GAMT-ko | ||
| M | 7 | 7 | 7 | 7 | 7 | 7 | 7 | 5 | |
| Body weight ( | M | 22 ± 2 | 17 ± 3 | 29 ± 3 | 24 ± 2 | 32 ± 3 | 24 ± 3 | 35 ± 3 | 25 ± 2 |
| LV Mass | M | 80 ± 6 | 70 ± 13 | 108 ± 12 | 82 ± 11 | 118 ± 9 | 92 ± 11 | 112 ± 19 | 98 ± 8 |
| End-diastolic volume | M | 45 ± 6 | 39 ± 12 | 54 ± 8 | 49 ± 18 | 64 ± 13 | 50 ± 16 | 66 ± 12 | 54 ± 15 |
| End-systolic volume | M | 16 ± 5 | 11 ± 5 | 23 ± 8 | 16 ± 10 | 24 ± 7 | 21 ± 10 | 28 ± 7 | 19 ± 9 |
| Stroke volume | M | 29 ± 4 | 28 ± 8 | 31 ± 5 | 32 ± 8 | 40 ± 9 | 29 ± 9 | 38 ± 13 | 35 ± 8 |
| Ejection fraction | M | 65 ± 7 | 72 ± 4 | 58 ± 12 | 68 ± 7 | 62 ± 7 | 58 ± 13 | 56 ± 14 | 66 ± 6 |
| Heart rate | M | 485 ± 42 | 506 ± 20 | 555 ± 63 | 465 ± 35 | 514 ± 25 | 450 ± 31 | 488 ± 46 | 441 ± 66 |
| Cardic output | M | 14.2 ± 1.4 | 13.9 ± 3.3 | 17.3 ± 3.3 | 14.9 ± 3.4 | 20.3 ± 4.0 | 13.1 ± 4.5 | 18.1 ± 6.0 | 15.9 ± 5.5 |
| dV/dtmax.EDV-1 | M | 20.5 ± 5.0 | 21.6 ± 3.5 | 21.5 ± 5.0 | 19.3 ± 1.7 | 17.8 ± 3.2 | 18.0 ± 2.1 | 17.8 ± 3.7 | 20.2 ± 4.1 |
| dV/dtmin.EDV-1 | M | -18.2 ± 3.9 | -21.3 ± 4.7 | -17.8 ± 1.5 | -21.7 ± 5.5 | -19.4 ± 4.6 | -16.7 ± 3.6 | -15.8 ± 3.0 | -17.5 ± 4.5 |
All parameters are for the left ventricle(LV) and represent mean ± standard deviation.
Summary of the significant findings from the mixed-effects regression
| BW | Sex | -5.13 | [-6.72, -3.54] | <0.0001 |
| Genotype | -2.40 | [-4.3, -0.49] | <0.0001 | |
| Time | - | - | <0.0001 | |
| 4 months | 6.34 | [4.86, 7.82] | <0.0001 | |
| 8 months | 8.28 | [6.9, 9.66] | <0.0001 | |
| 12 months | 11.73 | [10.33, 13.13] | <0.0001 | |
| Genotype*Time | - | - | 0.0003 | |
| Genotype*4 months | -1.52 | [-3.55, 0.52] | 0.1415 | |
| Genotype*8 months | -2.60 | [-4.56, -0.64] | 0.0102 | |
| Genotype*12 months | -4.79 | [-6.88, -2.69] | <0.0001 | |
| LVM | BW | 0.88 | [-0.06, 1.81] | <0.0001 |
| Sex | -4.50 | [-13.36, 4.35] | 0.2636 | |
| Genotype | -8.85 | [-16.91, -0.78] | 0.7443 | |
| Time | - | - | 0.0003 | |
| 4 months | 15.35 | [7.9, 22.8] | 0.0001 | |
| 8 months | 18.55 | [10.27, 26.84] | <0.0001 | |
| 12 months | 19.29 | [8.84, 29.74] | 0.0005 | |
| EF | Sex | 1.06 | [-2.55, 4.66] | 0.4924 |
| Genotype | 3.46 | [-0.02, 6.94] | 0.0334 | |
| Time | - | - | 0.0027 | |
| 4 months | -1.43 | [-5.58, 2.72] | 0.4947 | |
| 8 months | -5.42 | [-9.44, -1.4] | 0.009 | |
| 12 months | -7.30 | [-11.55, -3.06] | 0.001 | |
| Heart rate | Sex | -48.49 | [-74.64, -22.33] | 0.1958 |
| Genotype | -42.08 | [-67.96, -16.2] | 0.698 | |
| Time | - | - | 0.0519 | |
| 4 months | 4.99 | [-17.61, 27.58] | 0.6611 | |
| 8 months | -23.16 | [-44.79, -1.54] | 0.0362 | |
| 12 months | -20.67 | [-43.49, 2.15] | 0.0751 | |
| Sex*Genotype | 73.26 | [35.93, 110.6] | 0.0004 | |
| dV/dtmax.EDV-1 | Sex | 0.002 | [0.001, 0.004] | 0.0048 |
| Genotype | 0.000 | [-0.001, 0.002] | 0.8454 | |
| Time | 0.0009 | |||
| 4 months | -0.001 | [-0.003, 0.001] | 0.2688 | |
| 8 months | -0.003 | [-0.005, -0.001] | 0.0017 | |
| 12 months | -0.004 | [-0.005, -0.002] | 0.0004 |
a Traits for which at least one factor in the model had significant (P < 0.01) effects.
b Estimated effects of KO compared to WT (baseline) for Genotype, female compared to male (baseline) for Sex, and trait values at 4 months, 8 months, and 12 months compared to trait values at 6 weeks (baseline) for Time (3df test)
Figure 3(a) Heart rate (HR), (b) stroke volume (SV) (c) ejection fraction (EF), and (d) (dV/dt)max·EDV-1 for all four groups (open square – male wt; open diamond – male ko; black diamond – female ko; black square – female wt) as a function of time. SV was normalized to the respective body weight, the time-volume curves to EDV before fitting.