| Literature DB >> 28761676 |
Ahmed Sabra1,2,3, Matthew James Lawrence1,2, Robert Aubrey1, Daniel Obaid4, Alexander Chase4, Dave Smith4, Phillip Thomas4, Sharon Storton1,2, Gareth R Davies1,2, Karl Hawkins2, Phylip Rhodri Williams5, Keith Morris6, Phillip Adrian Evans1,2,7.
Abstract
BACKGROUND: Coronary artery disease (CAD) is associated with an increased prothrombotic tendency and is also linked to unfavourably altered clot microstructure. We have previously described a biomarker of clot microstructure (df) that is unfavourably altered in acute myocardial infarction. The df biomarker assesses whether the blood will form denser or looser microstructures when it clots. In this study we assessed in patients with stable chest pain whether df can differentiate between obstructed and unobstructed CAD.Entities:
Keywords: atherosclerosis; clot microstructure; coagulation; coronary angiography; coronary artery disease
Year: 2017 PMID: 28761676 PMCID: PMC5515126 DOI: 10.1136/openhrt-2016-000562
Source DB: PubMed Journal: Open Heart ISSN: 2053-3624
Figure 1Diagram of a double-gap concentric cylinder measurement geometry. The double-gap geometry consists of a stationary cup or stator into which a 6.6 mL sample of blood is added after which a bob that is free to rotate called a rotor is then lowered into the sample. The movement of the rotor is controlled by an AR-G2-controlled stress rheometer and will oscillate at four different frequencies (0.20, 0.43, 0.93 and 2.00 Hz) sequentially over time.
Figure 2Gel point (GP) trace. This represents a typical GP result for one sample of blood. The illustration demonstrates how phase angle, δ, changes as coagulation progresses. δ has a range of 0° to 90°, where 90° identifies a purely viscous response and 0° identifies a purely elastic response with any value in between being a measure of the viscoelastic response to imposed stress. In a material that is changing from a liquid to a solid such as blood, there will be a decrease in δ. At the establishment of the incipient clot, when the clot becomes a viscoelastic solid, there is a point where the value of δ will be independent of frequency called the GP. The structural property of the incipient clot (in terms of its fractal dimension, df) is derived from this frequency independent value of δGP.
Patient baseline characteristics and demographics
| Normal (n=80) | Unobstructed CAD (n=88) | Unobstructed (n=168) | Obstructive CAD (n=83) | p Value | |
| Age | 58.6±8.8 | 63.5±10.3 | 61.1±9.8 | 64.3±9.7 | 0.013 |
| Sex (M:W) | 32:48 (40%) | 45:43 (51%) | 77:91 (46%) | 58:25 (70%) | <0.001 |
| BMI | 30.3±5.4 | 30.8±5.7 | 30.4±5.5 | 30.0±7.0 | 0.59 |
| Smoking (current) | 10 (12%) | 14 (16%) | 24 (14%) | 14 (17%) | 0.34 |
| Hypercholesterol | 54 (68%) | 71 (81%) | 125 (74%) | 69 (83%) | 0.31 |
| HTN | 40 (50%) | 40 (45%) | 90 (54%) | 43 (52%) | 0.82 |
| DM | 12 (15%) | 29 (33%) | 41 (24%) | 16 (19%) | 0.19 |
| FHx MI | 33 (42%) | 47 (53%) | 80 (48%) | 39 (47%) | 0.91 |
| Antiplatelet use | 60 (75%) | 51 (58%) | 111 (66%) | 66 (78%) | 0.11 |
| Aspirin | 58 | 34 | 92 | 57 | |
| P2Y12 | 0 | 6 | 6 | 2 | |
| Both | 2 | 11 | 13 | 7 | |
| Statins | 50 (63%) | 50 (63%) | 109 (65%) | 66 (80%) | 0.045 |
All Caucasians but two. Other lowering lipid drugs: four ezetimibe and two fenofibrates.
BMI, body mass index; CAD, coronary artery disease; DM, diabetes mellitus; FHx MI, family history of stroke myocardial infarction; HTN, hypertension; M:W, men:women.
Results of the viscoelastic testing, standard and specific markers for non-severe and severe CAD groups
| Normal (n=80) | Unobstructed CAD (n=88) | Unobstructed (n=168) | Obstructive CAD (n=83) | p Value | |
| df | 1.728±0.052 | 1.735±0.053 | 1.732±0.052 | 1.749±0.057 | 0.028 |
| IL-6 | 50.1±5.0 | 52.1±4.3 | 51.6±4.1 | 67.6±7.5 | 0.38 |
| MPO | 4541±1450 | 4563±1471 | 4544±1456 | 4636±1482 | 0.66 |
| CRP | 3.6±3.2 | 3.7±3.0 | 3.7±2.8 | 3.7±3.0 | 0.75 |
| Hb (g/dL) | 14.0±1.2 | 14.3±1.3 | 14.1±1.3 | 14.2±1.2 | 0.45 |
| Plt (×109/L) | 263±67 | 253±69 | 258±67 | 249±53 | 0.22 |
| HCT (g/g) | 0.418±0.033 | 0.425±0.035 | 0.422±0.035 | 0.437±0.035 | 0.24 |
| PT (s) | 10.5±0.4 | 10.5±0.5 | 10.5±0.4 | 10.6±0.5 | 0.057 |
| APTT (s) | 25.8±2.1 | 25.8±1.9 | 25.8±2.0 | 26.2±1.9 | 0.13 |
| FBG (g/L) | 3.3±0.6 | 3.4±0.7 | 3.3±0.6 | 3.4±0.7 | 0.26 |
| DD* | 94 (IQR 71–147) | 122 (IQR 81–178) | 110 (IQR 74–167) | 131 (IQR 80–209) | 0.095 |
| TG | 137±44 | 119±50 | 128±76 | 136±93 | 0.51 |
| FVIII | 132±44 | 138±46 | 135±45 | 135±38 | 0.99 |
| Multiplate ADP | 85.3±32.2 | 77.1±27.5 | 81.4±29.8 | 76.9±28.5 | 0.24 |
| Multiplate ASPI* | 28 (IQR 13–70) | 30 (IQR 18–83) | 29.0 (IQR 15.8–78.1) | 25.4 (IQR 18.0–64.5) | 0.41 |
*Median and interquartile values reported.
APPT, activated partial thromboplastin time; CAD, coronary artery disease; CRP, C-reactive protein; DD, D-Dimer; FBG, fibrinogen; FVIII, Ffactor VIII; Hb, haemoglobin; HCT, haematocrit; IL-6, interleukin 6; MPO, myeloperoxidase; Plt, platelet count; PT, prothrombin time; TG, thrombin generation.
Figure 3A graph showing the dispersion of df measurements among the unobstructed and the obstructed coronary artery disease (CAD) groups, where a significant increase in the value of df was observed for those patients with obstructive CAD when compared with unobstructed (df=1.748±0.057 vs 1.732±0.052, p=0.028).
Figure 4Fractal dimension (df) versus mass. Graph showing the simplified non-linear relationship between df and the amount of mass incorporated into the incipient clot microstructure. Fibrin networks have fractal properties, where the mass, M, is related to df by the following power law equation (M≈ɛdf, where ɛ is some length scale value in the range 100 nm to 10 µm). The mass value on the y-axis is normalised to the unobstructed CAD value of df=1.732, where at a df of 1.732 the normalised mass value is equal to 1 (blue dotted lines). The figure illustrates that a structure that forms with a df of 1.748, like the mean value of the obstructive CAD group (red dotted lines) would have an increased relative mass compared with a structure that formed with a df value of 1.732, having 1.27 times more mass.