系列体内成像直接评估炎症在血栓溶解和组织中的作用的有效性。

IF 2.5 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Aditya Adinata , Tetsuya Hara , Arinal Chairul Achyar , Yoko Suzuki , Ken-ichi Hirata , Hiromasa Otake , Noriaki Emoto
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引用次数: 0

摘要

深静脉血栓形成(DVT)仍然是一个重要的健康问题。尽管动物模型对深静脉血栓病理生理学提供了重要的见解,但同一动物的病程评估在技术上是有限的。最近,我们报道了一种新的小鼠隐静脉DVT模型,用于炎症细胞的时空动态的体内可视化。本研究进一步揭示了DVT在体内连续成像技术的分辨率和组织过程。与氯化铁诱导的血栓模型类似,我们的隐静脉血栓模型可以用荧光显微镜进行连续的体内成像。然而,与氯化铁诱导的血栓模型不同,我们观察到深静脉血栓负担明显减少。随着时间的推移,红细胞面积逐渐减少,纤维蛋白和胶原沉积,尽管氯化铁模型诱导了富含血小板的动脉血栓。组织学检查显示,中性粒细胞内流在DVT诱导后3 h达到峰值,巨噬细胞在诱导后120 h开始迁移,与传统停滞性DVT模型的组织过程相似。Ly6G/Ly6C阳性细胞在3 h预测DVT负荷的减少(r > 0.8;P
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Usefulness of serial in vivo imaging to directly assess the role of inflammation in thrombus resolution and organization
Deep vein thrombosis (DVT) remains a significant health problem. Although animal models have provided significant insights into the DVT pathophysiology, time-course assessment in a same animal is technically limited. Recently, we reported a novel murine saphenous DVT model for in vivo visualization of spatiotemporal dynamics of inflammatory cells. This study further shed a light on the resolution and organization process of DVT using serial in vivo imaging technique. Similar with ferric chloride-induced thrombus model, our saphenous DVT model allowed serial in vivo imaging with fluorescence microscopy. However, unlike ferric chloride-induced thrombus model, we observed a significant decrease of DVT burden. Red blood cells area gradually decreased followed by fibrin and collagen deposition over time, although ferric chloride model induced platelet-rich arterial thrombus. Histological assessment revealed that neutrophils influx peaked 3 h after DVT induction, followed by macrophages' migration at 120 h’ post-induction, indicating similar organization process with traditional stasis-induced DVT model. Ly6G/Ly6C positive cells at 3 h predicted the reduction of DVT burden (r > 0.8; P < 0.01), suggesting that inflammatory response at acute phase plays pivotal role in DVT resolution. MMP-9 expression was observed and colocalized with neutrophils at early timepoints in both traditional stasis-induced DVT model and our femoral imaging models. Taken together, our in vivo imaging model might allow better understanding of the resolution and organization processes in DVT.
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来源期刊
Biochemical and biophysical research communications
Biochemical and biophysical research communications 生物-生化与分子生物学
CiteScore
6.10
自引率
0.00%
发文量
1400
审稿时长
14 days
期刊介绍: Biochemical and Biophysical Research Communications is the premier international journal devoted to the very rapid dissemination of timely and significant experimental results in diverse fields of biological research. The development of the "Breakthroughs and Views" section brings the minireview format to the journal, and issues often contain collections of special interest manuscripts. BBRC is published weekly (52 issues/year).Research Areas now include: Biochemistry; biophysics; cell biology; developmental biology; immunology ; molecular biology; neurobiology; plant biology and proteomics
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