| Literature DB >> 25487139 |
Rustem F Baikeev1, Roman A Gubanov, Kamil K Sadikov, Sufiya Z Safina, Farhat F Muhamadiev, Timur A Sibgatullin.
Abstract
BACKGROUND: The parameters that characterize the intricate water diffusion in tumors may also reveal their distinct pathology. Specifically, characterization of breast cancer could be aided by diffusion magnetic resonance.The present in vitro study aimed to discover connections between the NMR biexponential diffusion parameters [fast diffusion phase (D(FDP)), slow diffusion phase (D(SDP)), and spin population of fast diffusion phase (P1)] and the histological constituents of nonmalignant (control) and malignant human breast tissue. It also investigates whether the diffusion coefficients indicate tissue status.Entities:
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Year: 2014 PMID: 25487139 PMCID: PMC4295355 DOI: 10.1186/1756-0500-7-887
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Figure 1
Scheme of the slope of function A(g) at the different time of diffusion: t
(■)
Morphometry features (share,%) of the mammary gland tissue samples
| Diagnosis | Parenchyma | Stroma | Adipose tissue | PCE | PVE | Vessels |
|---|---|---|---|---|---|---|
| 1. Control n = 6 | 1.1. | 1.2. | 1.3. | 1.4. | 1.5. | 1.6. |
| 16,7 ± 19,71 | 35,7 ± 8,8 | 32,6 ± 21,0 | 4,0 ± 6,4 | 5,9 ± 5,8 | 5,1 ± 4,9 | |
| (0,01 - 54,7)2 | (25,5-49,0) | (0,01-53,8) | (0,01-17,0) | (0,01-13,6) | (0,2-14,1) | |
| 54703 | 1,9 | 5380 | 1700 | 1360 | 70,5 | |
| 2. Breast cancer n = 11 | 2.1. | 2.2. | 2.3. | 2.4. | 2.5. | 2.6. |
| 30,7 ± 15,7 | 39,9 ± 13,6 | 11,6 ± 16,1 | 7,1 ± 6,9 | 7,5 ± 11,1 | 3,1 ± 2,6 | |
| (10,3-56,6) | (26,1-64,2) | (0,01-50,4) | (0,01-16,0) | (0,01-32,3) | (0,1-7,3) | |
| 5,5 | 2,5 | 5040 | 1600 | 3230 | 73 |
Note: n - number of the samples; 1 – mean value ± SD, 2 - range of parameter; 3 - ratio of high/low range values of the certain morphological constituents percentage.
Comparison of 2 groups (Wilcoxon): 1.1-2.1 p < 0,028 1.4-2.4 p < 0,047.
1.2-2.2 p > 0,6 1.5-2.5 p > 0,17.
1.3-2.3 p < 0,047 1.6-2.6 p < 0,047.
Self-diffusion coefficients of the water molecules in breast cancer
| Parameter | Control n = 6 | Breast cancer | Share of stroma * (%) (control + cancer) | |||
|---|---|---|---|---|---|---|
| The entire group of cancer specimens n = 11 | T 2 N 0 M 0 n = 6 | T 2 N 1 M 0 n = 5 | < 50 n = 14 | ≥50 n = 3 | ||
| 1 | 2 | 3 | 4 | 5 | 6 | |
| ADCm · 10−9 (m2/s) | 0,78 ± 0,281 | 1,62 ± 1,28 | 0,85 ± 0,34 | 2,54 ± 1,30 | 0,91 ± 0,28 | 3,25 ± 0,75 |
| (0,41-1,16)2 | (0,33-3,43) | (0,33-1,22) | (0,79-3,43) | (0,41-1,35) | (0,33-3,43) | |
| 2,843 | 10,39 | 3,69 | 4,34 | 3,30 | 10,39 | |
| DFDP · 10−9 (m2/s) | 1,25 ± 0,13 | 0,97 ± 0,25 | 0,93 ± 0,24 | 1,01 ± 0,28 | 1,06 ± 0,27 | 1,10 ± 0,18 |
| (1,10-1,40) | (0,57-1,25) | (0,60-1,20) | (0,57-1,29) | (0,57-1,40) | (0,90-1,20) | |
| 1,27 | 2,19 | 2,00 | 2,25 | 2,46 | 1,34 | |
| P1 (share) | 0,48 ± 0,17 | 0,75 ± 0,22 | 0,74 ± 0,28 | 0,78 ± 0,14 | 0,69 ± 0,24 | 0,53 ± 0,26 |
| (0,27-0,77) | (0,23-0,97) | (0,23-0,97) | (0,63-0,95) | (0,27-0,97) | (0,23-0,72) | |
| 2,84 | 4,23 | 4,22 | 1,51 | 3,59 | 3,14 | |
| DSDP · 10−11 (m2/s) | 1,67 ± 0,15 | 0,86 ± 0,68 | 1,75 ± 0,17 | 2,00 ± 1,03 | 1,69 ± 0,16 | 2,30 ± 1,34 |
| (0,50-1,91) | (0,40-3,84) | (1,50-1,98) | (1,40-3,84) | (1,40-1,98) | (1,50-3,84) | |
| 3,82 | 9,6 | 1,32 | 2,74 | 1,41 | 2,56 | |
Note: n - number of the samples; 1 – mean value ± SD, 2 - range of parameter.; 3 - ratio of high/low range values of the certain diffusion parameter.
*- crosslinked collagen is embedded into the carbohydrate matrix of stroma.
Comparison of 2 groups (Wilcoxon):
ADCm: 1-2 p<0,03; DFDP: 1-2 p<0,05; P1: 1-2 p>0,15; DSDP: 1-2 p>0,9; 1-3 p>0,9; 1-3 p<0,05; 1-3 p>0,15; 1-3 p>0,3; 1-4 p>0,7; 1-4 p>0,05; 1-4 p<0,05; 1-4 p=1; 1-5 p>0,7; 1-5 p>0,5; 1-5 p>0,05; 1-5 p=1; 1-6 p=1; 1-6 p>0,5; 1-6 p>0,2; 1-6 p=1; 3-4 p>0,2; 3-4 p>0,8; 3-4 p>0,8; 3-4 p>0,5; 5-6 p=1; 5-6 p>0,5; 5-6 p>0,1; 5-6 p=1.
Figure 2Breast cancer morphology (A-D). Ly-lymphocyte (lymhocyte size≈7 μm) is used as a unit; PVE - perivascular edema; PCE - pericellular edema; C – tumor cell enriched in vacuoles is visible on the left side of the microscopic field.
Self-diffusion coefficients of molecules in the peritumoral breast tissue (n = 3)
| № | Registered parameter | Time of diffusion (t d , ms) | |||
|---|---|---|---|---|---|
| 11 | 50 | 200 | 800 | ||
| 1 | ADCm (10−9 m2/s) | 0,73 ± 0,55 | 0,75 ± 0,05 | 1,0 ± 0,1 | 1,4 ± 0,1 |
| 2 | DFDP (10−9 m2/s), | 1,6 ± 0,1 | 1,4 ± 0,1 | 1,7 ± 0,2 | 1,5 ± 0,2 |
| 3 | DSDP (10−11 m2/s) | 2,2 ± 0,1 | 2,0 ± 0,1 | 1,8 ± 0,2 | 2,2 ± 0,3 |
| 4 | Р1 (share) | 0,49 ± 0,01 | 0,52 ± 0,01 | 0,70 ± 0.01 | 0,90 ± 0.01 |
Note: n – number of the specimens.
The correlation factors (r) of the parameters of dynamic characteristics of water molecules with the breast tissues’ histological constituents percentage
| Parameter | The group of specimens | Parenchyma | Stroma | Adipose tissue | PCE | PVE | Vessels |
|---|---|---|---|---|---|---|---|
| ADCm | 1.1 | 1.1.1 | 1.1.2 | 1.1.3 | 1.1.4 | 1.1.5 | 1.1.6 |
| Control | −0,497 | −0,497 | 0,671 | −0,598 | −0,992 | 0,895 | |
| 2.1 | 2.1.1 | 2.1.2 | 2.1.3 | 2.1.4 | 2.1.5 | 2.1.6 | |
| Stroma <50% | 0,850 | −0,912 | −0,876 | 0,748 | −0,837 | −0,945 | |
| 3.1 | 3.1.1 | 3.1.2 | 3.1.3 | 3.1.4 | 3.1.5 | 3.1.6 | |
| Stroma ≥50% | −0,540 | −0,104 | 0,458 | 0,823 | 0,933 | 0,909 | |
| DFDP | 4.1 | 4.1.1 | 4.1.2 | 4.1.3 | 4.1.4 | 4.1.5 | 4.1.6 |
| Control | −0,130 | −0,291 | 0,252 | −0,080 | 0,288 | −0,186 | |
| 5.1 | 5.1.1 | 5.1.2 | 5.1.3 | 5.1.4 | 5.1.5 | 5.1.6 | |
| Stroma <50% | −0,149 | 0,074 | 0,260 | 0,297 | 0,195 | −0,576 | |
| 6.1 | 6.1.1 | 6.1.2 | 6.1.3 | 6.1.4 | 6.1.5 | 6.1.6 | |
| Stroma ≥50% | 0,841 | −0,722 | 0,500 | 0,295 | −0,756 | 0,397 | |
| P1 | 7.1 | 7.1.1 | 7.1.2 | 7.1.3 | 7.1.4 | 7.1.5 | 7.1.6 |
| Control | 0,701 | −0,197 | −0,662 | 0,751 | −0,114 | −0,413 | |
| 8.1 | 8.1.1 | 8.1.2 | 8.1.3 | 8.1.4 | 8.1.5 | 8.1.6 | |
| Stroma <50% | 0,678 | −0,211 | −0,709 | 0,601 | −0,202 | 0,021 | |
| 9.1 | 9.1.1 | 9.1.2 | 9.1.3 | 9.1.4 | 9.1.5 | 9.1.6 | |
| Stroma ≥50% | 0,793 | −0,895 | −0,984 | 0,800 | 0,872 | −0,998 | |
| DSDP | 10.1 | 10.1.1 | 10.1.2 | 10.1.3 | 10.1.4 | 10.1.5 | 10.1.6 |
| Control | 0,847 | −0,130 | −0,795 | 0,763 | −0,401 | −0,304 | |
| 11.1 | 11.1.1 | 11.1.2 | 11.1.3 | 11.1.4 | 11.1.5 | 11.1.6 | |
| Stroma <50% | −0,243 | 0,093 | −0,136 | 0,239 | −0,004 | 0,106 | |
| 12.1 | 12.1.1 | 12.1.2 | 12.1.3 | 12.1.4 | 12.1.5 | 12.1.6 | |
| Stroma ≥50% | 0,067 | 0,256 | −0,516 | 0,979 | 0,207 | −0,611 |
The significant values of the correlation factors, p < 0,05 :
ADCm:1.1- 1.1.2; p=0,041; 2.1-2.1.2; p=0,028; 3.1-3.1.2; p=0,045.
DFDP: 5.1 – 5.1.6; p=0,031.
DSDP: 10.1 – 10.1.1 p=0,033; 10.1 – 10.1.3 p=0,046; 11.1 – 11.1.3 p=0,028; 12.1 – 12.1.3 p=0,016; P1 : 8.1 – 8.1.1; p=0,008; 8.1 – 8.1.3; p=0,004; 8.1 – 8.1.4 p=0,023.
Dynamic parameters of breast tissues’ water molecules are influenced by the histological constituents
| Function of dependence | Equation of dependence (p ≤ 0,05) | R 2 |
|---|---|---|
| DFDP = f | DFDP = 4,07*-0,06 · | 0,92 |
| DSDP = f | DSDP = 2,42 + 0,03 · | 0,81 |
| P1 = f | P1 = 1,05 + 0,02 · | 0,93 |
Note: 1– the value of certain morphological constituents’ percentage, R – determination coefficient, *– p ≤ 0,05.
Identification of the breast tissues’ nature (malignant, nonmalignant) according to theirs morphological constituents percentage or the dynamical properties of water
| Function of dependence | Equation of dependence (p ≤ 0,05) | R 2 |
|---|---|---|
| CanP1 = f | CanP = −2.18 + 0,099 · | 0,66 |
| CanP=f | CanP = −3,01 + 8,02 · | 0,69 |
| CanP=f | CanP = 2,71 + 5,69 · | 0,85 |
Note: 1– cancer probability (0 → 1); *– the value of certain morphological consituent’s percentage, R2– determination coefficient.
Figure 3D (10 m /s) is stipulated by the morphological constituents’ percentage (%). The values of fixed parameters (AT, PCE, V, P) were picked as: 1. Mean values of the entire group (control + cancer) of samples, index A. 2. Mean values of the malignant specimens only, index B. The scale is shared by A and B section.
Figure 4D (10 m /s) is stipulated by the morphological constituents, percentage (%). The values of fixed parameters (AT, PCE, V, P) were picked as: 1. Mean values of the entire group (control + cancer) of samples, index A. 2. Mean values of the malignant specimens only, index B. The scale is shared by A and B sections.
Figure 5P is stipulated by the morphology constituents, percentage (%). The values of fixed parameters (AT, PCE, V, P) were picked as: 1. Mean values of the entire group (control + cancer) of samples, index A. 2. Mean values of the malignant specimens only, index B.
Figure 6Cancer tissues identification according to the morphological constituents’ percentage (%). The values of fixed parameters (AT, PCE, V, P) were picked as mean values of the entire group (control + cancer) of specimens.
Figure 7Cancer tissues identification according to the values of D 10 m /s, D 10 m /s (1), D 10 m /s, D 10 m /s, P (2-4). The values of fixed parameters (DFDP, DSDP, P1) were picked as mean values of the entire group (control + cancer) of specimens.