Journal of Forensic Medicine ›› 2024, Vol. 40 ›› Issue (2): 179-185.DOI: 10.12116/j.issn.1004-5619.2023.430506
• Original Articles • Previous Articles
Juan-juan WU1,2,3(), Jun-jie HUANG1,2,3, Yu ZHANG1,2,3, Jia-ying ZHUO1,2,3, Gang CHEN1,2,3, Shu-han YANG1,2,3, Yun-qi ZHAO1,2,3, Yan-yan FAN1,2,3(
)
Received:
2023-05-24
Online:
2024-06-07
Published:
2024-04-25
Contact:
Yan-yan FAN
CLC Number:
Juan-juan WU, Jun-jie HUANG, Yu ZHANG, Jia-ying ZHUO, Gang CHEN, Shu-han YANG, Yun-qi ZHAO, Yan-yan FAN. Time-Dependent Sequential Changes of IL-10 and TGF-β1 in Mice with Deep Vein Thrombosis[J]. Journal of Forensic Medicine, 2024, 40(2): 179-185.
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基因 | 引物序列(5′→3′) |
---|---|
GAPDH | F:AGGTCGGTGTGAACGGATTTG |
R:GGGGTCGTTGATGGCAACA | |
IL-10 | F:GCTGTCATCGATTTCTCCCCT |
R:GACACCTTGGTCTTGGAGCTTAT | |
TGF-β1 | F:ACTGGAGTTGTACGGCAGTG |
R:GGGGCTGATCCCGTTGATT |
Tab. 1 Specific primer sequences of IL-10, TGF-β1 and GAPDH genes
基因 | 引物序列(5′→3′) |
---|---|
GAPDH | F:AGGTCGGTGTGAACGGATTTG |
R:GGGGTCGTTGATGGCAACA | |
IL-10 | F:GCTGTCATCGATTTCTCCCCT |
R:GACACCTTGGTCTTGGAGCTTAT | |
TGF-β1 | F:ACTGGAGTTGTACGGCAGTG |
R:GGGGCTGATCCCGTTGATT |
时间点 | IL-10 | TGF-β1 |
---|---|---|
术后1 d | 16.4±2.7 | 2.2±1.3 |
术后3 d | 23.3±1.8 | 17.3±5.01) |
术后5 d | 64.3±2.51) | 54.0±1.61) |
术后7 d | 73.0±3.91) | 74.9±1.91) |
术后10 d | 81.2±2.81) | 79.1±2.1 |
术后14 d | 81.8±2.9 | 85.8±1.71) |
术后21 d | 68.8±1.41) | 69.8±0.41) |
Tab. 2 The positive cell rates of IL-10 and TGF-β1 inthrombus samples at different time points after ligation
时间点 | IL-10 | TGF-β1 |
---|---|---|
术后1 d | 16.4±2.7 | 2.2±1.3 |
术后3 d | 23.3±1.8 | 17.3±5.01) |
术后5 d | 64.3±2.51) | 54.0±1.61) |
术后7 d | 73.0±3.91) | 74.9±1.91) |
术后10 d | 81.2±2.81) | 79.1±2.1 |
术后14 d | 81.8±2.9 | 85.8±1.71) |
术后21 d | 68.8±1.41) | 69.8±0.41) |
组别 | IL-10 | TGF-β1 | ||
---|---|---|---|---|
蛋白 | mRNA | 蛋白 | mRNA | |
对照 | 1.00±0.00 | 1.00±0.08 | 1.00±0.00 | 1.00±0.06 |
1 d | 3.16±0.201) | 2.17±0.161) | 1.79±0.061) | 1.17±0.10 |
3 d | 4.48±0.151)2) | 3.18±0.221)2) | 2.47±0.161)2) | 1.79±0.071)2) |
5 d | 5.19±0.131)2) | 3.32±0.191) | 3.06±0.101)2) | 2.00±0.081) |
7 d | 5.63±0.151) | 4.72±0.151)2) | 3.28±0.131) | 2.28±0.091) |
10 d | 7.15±0.281)2) | 3.31±0.151)2) | 3.77±0.241)2) | 2.58±0.141)2) |
14 d | 6.62±0.181)2) | 2.19±0.061)2) | 4.34±0.191)2) | 2.02±0.121)2) |
21 d | 4.48±0.241)2) | 0.53±0.041)2) | 1.67±0.171)2) | 1.14±0.102) |
Tab. 3 Relative expression of IL-10 and TGF-β1protein and mRNA in thrombus samples ofcontrol group and experimental group
组别 | IL-10 | TGF-β1 | ||
---|---|---|---|---|
蛋白 | mRNA | 蛋白 | mRNA | |
对照 | 1.00±0.00 | 1.00±0.08 | 1.00±0.00 | 1.00±0.06 |
1 d | 3.16±0.201) | 2.17±0.161) | 1.79±0.061) | 1.17±0.10 |
3 d | 4.48±0.151)2) | 3.18±0.221)2) | 2.47±0.161)2) | 1.79±0.071)2) |
5 d | 5.19±0.131)2) | 3.32±0.191) | 3.06±0.101)2) | 2.00±0.081) |
7 d | 5.63±0.151) | 4.72±0.151)2) | 3.28±0.131) | 2.28±0.091) |
10 d | 7.15±0.281)2) | 3.31±0.151)2) | 3.77±0.241)2) | 2.58±0.141)2) |
14 d | 6.62±0.181)2) | 2.19±0.061)2) | 4.34±0.191)2) | 2.02±0.121)2) |
21 d | 4.48±0.241)2) | 0.53±0.041)2) | 1.67±0.171)2) | 1.14±0.102) |
1 | BONFIELD M, CRAMP F, POLLOCK J. Deep vein thrombosis resolution, recurrence and post-thrombotic syndrome: A prospective observational study protocol[J]. BMC Hematol,2016,16:24. doi:10.1186/s12878-016-0063-7 . |
2 | RAHAGHI F N, MINHAS J K, HERESI G A. Diagnosis of deep venous thrombosis and pulmonary embolism: New imaging tools and modalities[J]. Clin Chest Med,2018,39(3):493-504. doi:10.1016/j.ccm.2018.04.003 . |
3 | MOUSTAFA A, ALIM H M, CHOWDHURY M A, et al. Postthrombotic syndrome: Long-term sequela of deep venous thrombosis[J]. Am J Med Sci,2018,356(2):152-158. doi:10.1016/j.amjms.2018.03.004 . |
4 | KHAN F, TRITSCHLER T, KAHN S R, et al. Venous thromboembolism[J]. Lancet,2021,398(10294):64-77. doi:10.1016/S0140-6736(20)32658-1 . |
5 | 王林林,张富源,梁雪莹,等. 静脉血栓形成时间推断的法医学研究进展[J].法医学杂志,2019,35(2):171-177,180. doi:10.12116/j.issn.1004-5619.2019.02.008 . |
WANG L L, ZHANG F Y, LIANG X Y, et al. Research progress on age determination of venous thrombosis in forensic medicine[J]. Fayixue Zazhi,2019,35(2):171-177,180. | |
6 | VON BRÜHL M L, STARK K, STEINHART A, et al. Monocytes, neutrophils, and platelets cooperate to initiate and propagate venous thrombosis in mice in vivo [J]. J Exp Med,2012,209(4):819-835. doi:10 . |
1084/jem.20112322. | |
7 | NOSAKA M, ISHIDA Y, KIMURA A, et al. Time-dependent appearance of intrathrombus neutrophils and macrophages in a stasis-induced deep vein thrombosis model and its application to thrombus age determination[J]. Int J Legal Med,2009,123(3):235-240. doi:10.1007/s00414-009-0324-0 . |
8 | PROCTOR M C, SULLIVAN V, ZAJKOWSKI P, et al. A role for interleukin-10 in the assessment of venous thromboembolism risk in injured patients[J]. J Trauma,2006,60(1):147-151. doi:10.1097/01.ta.00 |
00197180.79965.bc. | |
9 | POREDOS P, JEZOVNIK M K. In patients with idiopathic venous thrombosis, interleukin-10 is decreased and related to endothelial dysfunction[J]. Heart Vessels,2011,26(6):596-602. doi:10.1007/s00380-010-0111-3 . |
10 | 胡继红,吴雪梅,李兴国,等. 转化生长因子β1和纤溶酶原激活物抑制因子1促进创伤性深静脉血栓形成的实验研究[J].介入放射学杂志,2011,20(11):890-894. doi:10.3969/j.issn.1008-794X.2011.11.014 . |
HU J H, WU X M, LI X G, et al. The predisposing effect of TGF-β1 and serpine-1 on the formation of traumatic deep vein thrombosis: An experimental study in rats[J]. Jieru Fangshexue Zazhi,2011,20(11):890-894. | |
11 | NOSAKA M, ISHIDA Y, KUNINAKA Y, et al. The application of autophagy to thrombus age estimation in murine deep vein thrombosis model[J]. Int J Legal Med,2020,134(3):1061-1066. doi:10.1007/s00414-019-02168-0 . |
12 | NOSAKA M, ISHIDA Y, KIMURA A, et al. Detection of intrathrombotic endothelial progenitor cells and its application to thrombus age estimation in a murine deep vein thrombosis model[J]. Int J Legal Med,2017,131(6):1633-1638. doi:10.1007/s00414-017-1668-5 . |
13 | IRNIGER W. Histologische altersbestimmung von thrombosen und embolien[J]. Virchows Arch Pathol Anat Physiol Klin Med,1963,336:220-237. doi:10.1007/BF00957911 . |
14 | FINESCHI V, TURILLAZZI E, NERI M, et al. Histological age determination of venous thrombosis: A neglected forensic task in fatal pulmonary thromboembolism[J]. Forensic Sci Int,2009,186(1/2/3):22-28. doi:10.1016/j.forsciint.2009.01.006 . |
15 | MERCER P F, CHAMBERS R C. Coagulation and coagulation signalling in fibrosis[J]. Biochim Biophys Acta,2013,1832(7):1018-1027. doi:10.1016/j.bbadis.2012.12.013 . |
16 | OPNEJA A, KAPOOR S, STAVROU E X. Contribution of platelets, the coagulation and fibrinolytic systems to cutaneous wound healing[J]. Thromb Res,2019,179:56-63. doi:10.1016/j.thromres.2019.05.001 . |
17 | 杨琛腾,左敏,王松军,等. 血栓形成时间的推断[J].法医学杂志,2018,34(4):352-358. doi:10.12116/j.issn.1004-5619.2018.04.002 . |
YANG C T, ZUO M, WANG S J, et al. Estimation on formation time of thrombus[J]. Fayixue Zazhi,2018,34(4):352-358. | |
18 | HESKETH M, SAHIN K B, WEST Z E, et al. Macrophage phenotypes regulate scar formation and chronic wound healing[J]. Int J Mol Sci,2017,18(7):1545. doi:10.3390/ijms18071545 . |
19 | RŐSZER T. Understanding the mysterious M2 macrophage through activation markers and effector mechanisms[J]. Mediators Inflamm,2015,2015:816460. doi:10.1155/2015/816460 . |
20 | SHAPOURI-MOGHADDAM A, MOHAMMADIAN S, VAZINI H, et al. Macrophage plasticity, polarization, and function in health and disease[J]. J Cell Physiol,2018,233(9):6425-6440. doi:10.1002/jcp.26429 . |
21 | KIM S Y, NAIR M G. Macrophages in wound healing: Activation and plasticity[J]. Immunol Cell Biol,2019,97(3):258-267. doi:10.1111/imcb.12236 . |
22 | DOWNING L J, STRIETER R M, KADELL A M, et al. IL-10 regulates thrombus-induced vein wall inflammation and thrombosis[J]. J Immunol,1998,161(3):1471-1476. |
23 | PIERA-VELAZQUEZ S, JIMENEZ S A. Endothelial to mesenchymal transition: Role in physiology and in the pathogenesis of human diseases[J]. Physiol Rev,2019,99(2):1281-1324. doi:10.1152/physrev.00021.2018 . |
24 | BOCHENEK M L, LEIDINGER C, ROSINUS N S, et al. Activated endothelial TGFβ1 signaling promotes venous thrombus nonresolution in mice via endothelin-1: Potential role for chronic thromboembolic pulmonary hypertension[J]. Circ Res,2020,126(2):162-181. doi:10.1161/CIRCRESAHA.119.315259 . |
25 | CECCHI R. Estimating wound age: Looking into the future[J]. Int J Legal Med,2010,124(6):523-536. doi:10.1007/s00414-010-0505-x . |
26 | FAN Y Y, ZHANG S T, YU L S, et al. The time-dependent expression of α7nAChR during skeletal muscle wound healing in rats[J]. Int J Legal Med,2014,128(5):779-786. doi:10.1007/s00414-014-1001-5 . |
27 | TIAN Z L, JIANG S K, ZHANG M, et al. Detection of satellite cells during skeletal muscle wound healing in rats: Time-dependent expressions of Pax7 and MyoD in relation to wound age[J]. Int J Legal Med,2016,130(1):163-172. doi:10.1007/s00414-015-1251-x . |
28 | JI X Y, CHEN Y, YE G H, et al. Detection of RAGE expression and its application to diabetic wound age estimation[J]. Int J Legal Med,2017,131(3):691-698. doi:10.1007/s00414-016-1529-7 . |
29 | ABD-ELHAKIM Y M, OMRAN B H F, EZZEL-DEIN S A, et al. Time-dependent expression of high-mobility group box-1 and toll-like receptors proteins as potential determinants of skin wound age in rats: Forensic implication[J]. Int J Legal Med,2022,136(6):1781-1789. doi:10.1007/s00414-022-02788-z . |
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